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	<title>Pacific Blue Dyes &#8211; VectorLabs</title>
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	<title>Pacific Blue Dyes &#8211; VectorLabs</title>
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	<item>
		<title>PB NHS Ester</title>
		<link>https://staging.vectorlabs.com/products/pb-nhs-ester/</link>
		
		<dc:creator><![CDATA[Vector Laboratories R&D]]></dc:creator>
		<pubDate>Tue, 19 Sep 2023 22:37:46 +0000</pubDate>
				<guid isPermaLink="false">https://staging.vectorlabs.com/?post_type=product&#038;p=23182</guid>

					<description><![CDATA[<h3>Description</h3>
<p><img class="size-full wp-image-5177 alignleft" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/407nm-laser.webp" alt="" width="197" height="192" /></p>
<div class="product__description formatted">
<p>PB dye (Pacific Blue™) is a bright, blue-fluorescent dye optimally excited by the 405 nm line of the violet laser and with excitation/emission at 410/455 nm. The excitation and emission spectrum of PB dye offers minimal overlap with green fluorophore emission spectra, making it an ideal choice for the first violet channel. Conjugates of this dye are strongly fluorescent even at neutral pH.</p>
<p>The amine-reactive PB NHS Etser (Pacific Blue™ succinimidyl ester) can be used to can be used to create blue-fluorescent bioconjugates with excitation/emission maxima ~410/455 nm that are excitable by the 405 nm spectral line of the blue diode (violet) laser. NHS Ester reacts specifically and efficiently with a primary amine (e.g., side chain of lysine residues or aminosilane-coated surfaces) at pH 7-9 to form a stable, covalent amide bond</p>
<p>[caption id="attachment_26250" align="alignnone" width="1000"]<img class="wp-image-26250 size-full" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="" width="1000" height="454" /> Abs/Em Spectra[/caption]</p>
<h3>Specifications</h3>
<table id="product-attribute-specs-table" class="data table additional-attributes" width="585">
<tbody>
<tr>
<th class="col label" scope="row">Unit Size</th>
<td class="col data" data-th="Unit Size">5 mg, 25 mg, 100 mg</td>
</tr>
<tr>
<th class="col label" scope="row">Reactivity</th>
<td class="col data" data-th="Target Species">Primary amines</td>
</tr>
<tr>
<th class="col label" scope="row">Abs/Em Maxima</th>
<td class="col data" data-th="Target Species">416/451 nm</td>
</tr>
<tr>
<th class="col label" scope="row">Extinction coefficient</th>
<td class="col data" data-th="Conjugate">30,000 cm-1M-1</td>
</tr>
<tr>
<th class="col label" scope="row">Solubility</th>
<td class="col data" data-th="Format">DMSO, DMF</td>
</tr>
<tr>
<th class="col label" scope="row">Spectrally similar dyes</th>
<td class="col data" data-th="Format">Alexa Fluor® 405, DyLight® 405, Cascade Blue</td>
</tr>
<tr>
<th class="col label" scope="row">Molecular weight</th>
<td class="col data" data-th="Format">339.21</td>
</tr>
<tr>
<th class="col label" scope="row">Storage Conditions</th>
<td class="col data" data-th="Format">-20°C.</td>
</tr>
<tr>
<th class="col label" scope="row">Shipping Conditions</th>
<td class="col data" data-th="Format">Ambient temperature</td>
</tr>
</tbody>
</table>
</div>
<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-nhs-ester/">PB NHS Ester</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
]]></description>
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                                                            <h2 class="eael-tab-title title-after-icon" >Description</h2>                                                    </li>
                                            <li id="specifications" class="inactive eael-tab-item-trigger eael-tab-nav-item" aria-selected="false" data-tab="2" role="tab" tabindex="-1" aria-controls="specifications-tab" aria-expanded="false">
                            
                            
                            
                                                            <h2 class="eael-tab-title title-after-icon" >Specifications</h2>                                                    </li>
                                            <li id="absem-spectra" class="inactive eael-tab-item-trigger eael-tab-nav-item" aria-selected="false" data-tab="3" role="tab" tabindex="-1" aria-controls="absem-spectra-tab" aria-expanded="false">
                            
                            
                            
                                                            <h2 class="eael-tab-title title-after-icon" >Abs/Em Spectra</h2>                                                    </li>
                                            <li id="protein-labeling-calculator" class="inactive eael-tab-item-trigger eael-tab-nav-item" aria-selected="false" data-tab="4" role="tab" tabindex="-1" aria-controls="protein-labeling-calculator-tab" aria-expanded="false">
                            
                            
                            
                                                            <h2 class="eael-tab-title title-after-icon" >Protein Labeling Calculator</h2>                                                    </li>
                                            <li id="documents" class="inactive eael-tab-item-trigger eael-tab-nav-item" aria-selected="false" data-tab="5" role="tab" tabindex="-1" aria-controls="documents-tab" aria-expanded="false">
                            
                            
                            
                                                            <h2 class="eael-tab-title title-after-icon" >Documents</h2>                                                    </li>
                                    </ul>
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            <div class="eael-tabs-content">
		        
                    <div id="description-tab" class="clearfix eael-tab-content-item inactive" data-title-link="description-tab">
				        <h3>Description</h3><p><img decoding="async" class="size-full wp-image-5177 alignleft" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/407nm-laser.webp" alt="407nm laser" width="197" height="192" title="PB NHS Ester 1"></p><div class="product__description formatted"><p>PB dye (Pacific Blue™) is a bright, blue-fluorescent dye optimally excited by the 405 nm line of the violet laser and with excitation/emission at 410/455 nm. The excitation and emission spectrum of PB dye offers minimal overlap with green fluorophore emission spectra, making it an ideal choice for the first violet channel. Conjugates of this dye are strongly fluorescent even at neutral pH.</p><p>The amine-reactive PB NHS Etser (Pacific Blue™ succinimidyl ester) can be used to can be used to create blue-fluorescent bioconjugates with excitation/emission maxima ~410/455 nm that are excitable by the 405 nm spectral line of the blue diode (violet) laser. NHS Ester reacts specifically and efficiently with a primary amine (e.g., side chain of lysine residues or aminosilane-coated surfaces) at pH 7-9 to form a stable, covalent amide bond</p></div>                    </div>
		        
                    <div id="specifications-tab" class="clearfix eael-tab-content-item inactive" data-title-link="specifications-tab">
				        <h3>Specifications</h3><table id="product-attribute-specs-table" class="data table additional-attributes" style="height: 186px;" width="585"><tbody><tr><th class="col label" scope="row">Unit Size</th><td class="col data" data-th="Unit Size">5 mg, 25 mg, 100 mg</td></tr><tr><th class="col label" scope="row">Reactivity</th><td class="col data" data-th="Target Species">Primary amines</td></tr><tr><th class="col label" scope="row">Abs/Em Maxima</th><td class="col data" data-th="Target Species">416/451 nm</td></tr><tr><th class="col label" scope="row">Extinction coefficient</th><td class="col data" data-th="Conjugate">30,000 cm-1M-1</td></tr><tr><th class="col label" scope="row">Solubility</th><td class="col data" data-th="Format">DMSO, DMF</td></tr><tr><th class="col label" scope="row">Spectrally similar dyes</th><td class="col data" data-th="Format">Alexa Fluor® 405, DyLight® 405, Cascade Blue</td></tr><tr><th class="col label" scope="row">Molecular weight</th><td class="col data" data-th="Format">339.21</td></tr><tr><th class="col label" scope="row">Storage Conditions</th><td class="col data" data-th="Format">-20°C.</td></tr><tr><th class="col label" scope="row">Shipping Conditions</th><td class="col data" data-th="Format">Ambient temperature</td></tr></tbody></table>                    </div>
		        
                    <div id="absem-spectra-tab" class="clearfix eael-tab-content-item inactive" data-title-link="absem-spectra-tab">
				        <h3>Abs/Em Spectra</h3><p><img fetchpriority="high" decoding="async" class="alignnone size-full wp-image-26250" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="pacific blue" width="1000" height="454" title="PB NHS Ester 2" srcset="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp 1940w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1024x464.webp 1024w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-768x348.webp 768w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1536x697.webp 1536w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-300x136.webp 300w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-600x272.webp 600w" sizes="(max-width: 1000px) 100vw, 1000px" /></p>                    </div>
		        
                    <div id="protein-labeling-calculator-tab" class="clearfix eael-tab-content-item inactive" data-title-link="protein-labeling-calculator-tab">
				        <h3>Protein Labeling Calculator</h3><p>	<form class="calculator" id="calculator-protein-labeling">

		<!-- <h2>Protein Labeling Calculator</h2> -->

		<div class="color-back gray-back">
			<div class="form-group calculator__first protein_name">
				<div class="calculator__title">
					<label><strong>Protein name</strong></label>
				</div>
				<div class="calculator__value">
					<input class="req form-control val" name="" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__middle">
				<div class="calculator__title">
					<label><strong>Protein molecular weight</strong> (daltons)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="MW_pr" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__middle">
				<div class="calculator__title">
					<label><strong>Protein concentration</strong> (mg/mL)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="c_pr" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__last">
				<div class="calculator__title">
					<label><strong>Volume of protein to be labeled</strong> (µL)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="V_pr" type="text" value="">
				</div>
			</div>
		</div>

		<div class="calculator__choose blue-choose">
			Enter only one — either volume or amount of protein to be labeled
		</div>

		<div class="color-back blue-back">

			<div class="form-group calculator__first calculator__color1">
				<div class="calculator__title">
					<label><strong>Amount of protein to be labeled</strong> (mg)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="m_pr" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__middle calculator__color1">
				<div class="calculator__title">
					<label><strong>Molecular weight of labeling reagent</strong> (Da)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="MW_L" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__middle calculator__color1">
				<div class="calculator__title">
					<label><strong>Amount of labeling reagent used</strong> (mg)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="m_L" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__last calculator__color1">
				<div class="calculator__title">
					<label><strong>Maximum concentration of DMSO (%)</strong>
						<small>Leave blank or 0 if not used</small>
					</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="D_max" type="text" value="">
				</div>
			</div>
		</div>

		<div class="calculator__choose green-choose">
			Enter only one — either maximum concentration of DMSO or volume DMSO added to label
		</div>

		<div class="color-back green-back">

			<div class="form-group calculator__first calculator__color2">
				<div class="calculator__title">
					<label><strong>Volume of anhydrous DMSO added</strong> (µL)</label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="V_D" type="text" value="">
				</div>
			</div>

			<div class="form-group calculator__last calculator__color2">
				<div class="calculator__title">
					<label><strong>Molar equivalents of labeling reagent used</strong></label>
				</div>
				<div class="calculator__value">
					<input class="req form-control numchar val" name="Ex_L" type="text" value="">
				</div>
			</div>
		</div>

		<div class="calculator__submit">
			<div class="calculator__submit-inner">
				<input class="btn submit" type="button" value="Calculate">
			</div>
		</div>

		<div class="calculator__message">

		</div>

		<div class="color-back purple-back">

			<div class="form-group calculator__first calculator__color3">
				<div class="calculator__title">
					<label><strong>Volume of DMSO required to make a stock solution</strong> (µL)</label>
				</div>
				<div class="calculator__value">
					<input class="res form-control" name="V_DMSO" type="text" readonly="readonly">
				</div>
			</div>

			<div class="form-group calculator__middle calculator__color3">
				<div class="calculator__title">
					<label><strong>Volume of protein to be labeled</strong> (µL)</label>
				</div>
				<div class="calculator__value">
					<input class="res form-control" name="V_pr" type="text" readonly="readonly">
				</div>
			</div>

			<div class="form-group calculator__middle calculator__color3">
				<div class="calculator__title">
					<label><strong>Amount of stock labeling reagent to be added</strong> (µL)</label>
				</div>
				<div class="calculator__value">
					<input class="res form-control" name="V_L" type="text" readonly="readonly">
				</div>
			</div>

			<div class="form-group calculator__last calculator__color3">
				<div class="calculator__title">
					<label><strong>Amount of DMSO in labeling reaction</strong> (%)</label>
				</div>
				<div class="calculator__value">
					<input class="res form-control" name="DMSO_p" type="text" readonly="readonly">
				</div>
			</div>
		</div>

	</form>
</p>                    </div>
		        
                    <div id="documents-tab" class="clearfix eael-tab-content-item inactive" data-title-link="documents-tab">
				        <h3>Documents</h3><div class="explorer_section applications container documentSection catalog-product-document"><ul class="document_list"><li class="documentContainer documentItem"><a class="documentTitle" href="https://staging.vectorlabs.com/productattachments/sds/VL_FP-1245_sds.pdf">Safety Data Sheet</a></li><li><a class="woocommerce-print-products-pdf-link" href="https://staging.vectorlabs.com/products/pb-nhs-ester/?print-products=pdf" target="_blank">Datasheet</a></li></ul></div>                    </div>
		                    </div>
        </div>
				</div>
				</div>
					</div>
		</div>
					</div>
		</section>
				</div>
		<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-nhs-ester/">PB NHS Ester</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>PB Azide Plus</title>
		<link>https://staging.vectorlabs.com/products/pb-azide-plus/</link>
		
		<dc:creator><![CDATA[Vector Laboratories R&D]]></dc:creator>
		<pubDate>Tue, 19 Sep 2023 19:59:28 +0000</pubDate>
				<guid isPermaLink="false">https://staging.vectorlabs.com/?post_type=product&#038;p=22340</guid>

					<description><![CDATA[<h3>Description</h3>
<p>Azide Plus reagents is the most recent step in improving CuAAC reaction in complex media developed by scientists at Click Chemistry Tools. Azide Plus reagents contain a complete copper-chelating system in their structure, allowing for the formation of strong, active copper complexes that act simultaneously as both reactant and catalyst in the CuAAC reaction. This azide-copper complex reacts almost instantaneously with alkynes under diluted conditions. This unprecedented reactivity in the CuAAC reaction is of special value for the detection of low abundance targets, improving biocompatibility, and is also valuable for any other application where greatly improved S/N ratio is highly desired.</p>
<p>[caption id="attachment_26250" align="alignnone" width="1000"]<img class="wp-image-26250 size-full" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="" width="1000" height="454" /> Abs/Em Spectra[/caption]</p>
<h3>Specifications</h3>
<table id="product-attribute-specs-table" class="data table additional-attributes" width="585">
<tbody>
<tr>
<th class="col label" scope="row">Unit Size</th>
<td class="col data" data-th="Unit Size">1 mg, 5 mg, 25 mg</td>
</tr>
<tr>
<th class="col label" scope="row">Abs/Em Maxima</th>
<td class="col data" data-th="Applications">403/453 nm</td>
</tr>
<tr>
<th class="col label" scope="row">Extinction Coefficient</th>
<td class="col data" data-th="Target Species">
<div class="d-flex">
<div class="col-sm-6">30,000</div>
</div>
</td>
</tr>
<tr>
<th class="col label" scope="row">Spectrally Similar Dyes</th>
<td class="col data" data-th="Target Species">Alexa Fluor® 405, CF® 405, Pacific Blue®, DyLight® 405</td>
</tr>
<tr>
<th class="col label" scope="row">Molecular weight</th>
<td class="col data" data-th="Target Species">580.55</td>
</tr>
<tr>
<th class="col label" scope="row">CAS</th>
<td class="col data" data-th="Conjugate">N/A</td>
</tr>
<tr>
<th class="col label" scope="row">Solubility</th>
<td class="col data" data-th="Format">Water, DMSO, DMF</td>
</tr>
<tr>
<th class="col label" scope="row">Purity</th>
<td class="col data" data-th="Format">&#62;95% (HPLC)</td>
</tr>
<tr>
<th class="col label" scope="row">Appearance</th>
<td class="col data" data-th="Format">Yellow amorphous solid</td>
</tr>
<tr>
<th class="col label" scope="row">Storage Conditions</th>
<td class="col data" data-th="Format">-20°C. Desiccate</td>
</tr>
<tr>
<th class="col label" scope="row">Shipping Conditions</th>
<td class="col data" data-th="Format">Ambient temperature</td>
</tr>
</tbody>
</table>
<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-azide-plus/">PB Azide Plus</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
]]></description>
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                                                            <h2 class="eael-tab-title title-after-icon" >Description</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Specifications</h2>                                                    </li>
                                            <li id="absem-spectra" class="inactive eael-tab-item-trigger eael-tab-nav-item" aria-selected="false" data-tab="3" role="tab" tabindex="-1" aria-controls="absem-spectra-tab" aria-expanded="false">
                            
                            
                            
                                                            <h2 class="eael-tab-title title-after-icon" >Abs/Em Spectra</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Documents</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Click Reaction Protocol</h2>                                                    </li>
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                    <div id="description-tab" class="clearfix eael-tab-content-item inactive" data-title-link="description-tab">
				        <h3>Description</h3><p>Azide Plus reagents is the most recent step in improving CuAAC reaction in complex media developed by scientists at Click Chemistry Tools. Azide Plus reagents contain a complete copper-chelating system in their structure, allowing for the formation of strong, active copper complexes that act simultaneously as both reactant and catalyst in the CuAAC reaction. This azide-copper complex reacts almost instantaneously with alkynes under diluted conditions. This unprecedented reactivity in the CuAAC reaction is of special value for the detection of low abundance targets, improving biocompatibility, and is also valuable for any other application where greatly improved S/N ratio is highly desired.</p>                    </div>
		        
                    <div id="specifications-tab" class="clearfix eael-tab-content-item inactive" data-title-link="specifications-tab">
				        <h3>Specifications</h3><table id="product-attribute-specs-table" class="data table additional-attributes" style="height: 186px;" width="585"><tbody><tr><th class="col label" scope="row">Unit Size</th><td class="col data" data-th="Unit Size">1 mg, 5 mg, 25 mg</td></tr><tr><th class="col label" scope="row">Abs/Em Maxima</th><td class="col data" data-th="Applications">403/453 nm</td></tr><tr><th class="col label" scope="row">Extinction Coefficient</th><td class="col data" data-th="Target Species"><div class="d-flex"><div class="col-sm-6">30,000</div></div></td></tr><tr><th class="col label" scope="row">Spectrally Similar Dyes</th><td class="col data" data-th="Target Species">Alexa Fluor® 405, CF® 405, Pacific Blue®, DyLight® 405</td></tr><tr><th class="col label" scope="row">Molecular weight</th><td class="col data" data-th="Target Species">580.55</td></tr><tr><th class="col label" scope="row">CAS</th><td class="col data" data-th="Conjugate">N/A</td></tr><tr><th class="col label" scope="row">Solubility</th><td class="col data" data-th="Format">Water, DMSO, DMF</td></tr><tr><th class="col label" scope="row">Purity</th><td class="col data" data-th="Format">&gt;95% (HPLC)</td></tr><tr><th class="col label" scope="row">Appearance</th><td class="col data" data-th="Format">Yellow amorphous solid</td></tr><tr><th class="col label" scope="row">Storage Conditions</th><td class="col data" data-th="Format">-20°C. Desiccate</td></tr><tr><th class="col label" scope="row">Shipping Conditions</th><td class="col data" data-th="Format">Ambient temperature</td></tr></tbody></table>                    </div>
		        
                    <div id="absem-spectra-tab" class="clearfix eael-tab-content-item inactive" data-title-link="absem-spectra-tab">
				        <h3>Abs/Em Spectra</h3><p><img decoding="async" class="alignnone size-full wp-image-26250" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="pacific blue" width="1000" height="454" title="PB Azide Plus 3" srcset="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp 1940w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1024x464.webp 1024w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-768x348.webp 768w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1536x697.webp 1536w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-300x136.webp 300w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-600x272.webp 600w" sizes="(max-width: 1000px) 100vw, 1000px" /></p>                    </div>
		        
                    <div id="documents-tab" class="clearfix eael-tab-content-item inactive" data-title-link="documents-tab">
				        <h3>Documents</h3><div class="explorer_section applications container documentSection catalog-product-document"><ul class="document_list"><li class="documentContainer documentItem"><a class="documentTitle" href="https://staging.vectorlabs.com/productattachments/sds/VL_CCT-1483_sds.pdf">Safety Data Sheet</a></li><li><a class="woocommerce-print-products-pdf-link" href="https://staging.vectorlabs.com/products/pb-azide-plus/?print-products=pdf" target="_blank">Datasheet</a></li></ul></div>                    </div>
		        
                    <div id="click-reaction-protocol-tab" class="clearfix eael-tab-content-item inactive" data-title-link="click-reaction-protocol-tab">
				        <h5 class="blue">Click Reaction Protocol for Staining Fixed/Permeabilized Cell</h5><div class="wp-block-spacer" aria-hidden="true"> </div><p>This is a general protocol for fixed/permeabilized cell imaging through a copper-catalyzed click reaction using the fluorescent Azide Plus reagent. We recommend using this protocol as a starting point for optimization of particular click chemistry procedures. We have found that a 1.5-3.0 μM concentration of Azide Plus reagent was optimal for most applications, including imaging of EdU incorporated into newly synthesized DNA and imaging of OPP labeled proteins without causing a high background signal. The optimal final concentration of the Azide Plus reagent is sample dependent and may range from 0.5 μM to 10 μM. Final concentrations below or above this range are also possible, and should be optimized per the specific application.</p><ol class="protocol_list"><li>Prepare the following click solutions:<br />— 50 mM copper sulfate in water<br />— 300 mM sodium ascorbate in water (dissolve 60 mg of sodium ascorbate in 1 mL of water)<br />— Subtext</li><li>1 mM Azide Plus reagent in DMSO or water<br /><br /><p class="sbold">Table 1</p><table id="t08"><thead><tr><th class="namesect" rowspan="2">Reac­tion Compo­nent</th><th class="col-headsec table_head" colspan="4">Number of cover­slipsor wells of a 96-well plate</th></tr><tr><th class="col-headsec">1 cover­slip or 10 wells</th><th class="col-headsec">5 cover­slips or 50 wells</th><th class="col-headsec">10 cover­slips or 100 wells</th><th class="col-headsec">20 cover­slips or 200 wells</th></tr></thead><tbody><tr><td class="bordsectt namesect">Reaction Buffer (Tris)</td><td class="bordsectt col1-4">888 µL</td><td class="bordsectt col1-4">4.4 mL</td><td class="bordsectt col1-4">8.9 mL</td><td class="bordsectt col1-4">17.8 mL</td></tr><tr><td class="bordsectt namesect">50 mM Copper Sulfate</td><td class="bordsectt col1-4">10 µL</td><td class="bordsectt col1-4">50 µL</td><td class="bordsectt col1-4">100 µL</td><td class="bordsectt col1-4">200 µL</td></tr><tr><td class="bordsectt namesect">AZDye Azide Plus­ Solu­tion (2 µM final concentration)</td><td class="bordsectt col1-4">2 µL</td><td class="bordsectt col1-4">10 µL</td><td class="bordsectt col1-4">20 µL</td><td class="bordsectt col1-4">40 µL</td></tr><tr><td class="bordsectt namesect">Sodium ascorbate</td><td class="bordsectt col1-4">100 µL</td><td class="bordsectt col1-4">500 µL</td><td class="bordsectt col1-4">1 mL</td><td class="bordsectt col1-4">2 mL</td></tr><tr><td class="namesect">Total Volume</td><td class="col1-4">1 mL</td><td class="col1-4">5 mL</td><td class="col1-4">10 mL</td><td class="col1-4">20 mL</td></tr></tbody></table></li><li>Remove the permeabilization buffer (if used). Wash the cells in each well twice with 1 ml of PBS. Remove PBS.</li><li> Immediately add 1 mL of the <b>Reaction Cocktail</b> to the sample. Evenly distribute the reaction cocktail over the sample.</li><li><b>Protect from light</b>, and incubate the plate for 30 minutes at room temperature.</li><li>6Remove the reaction cocktail. Wash each well once with 1 ml of Wash Buffer. Remove the Wash Buffer.</li><li>Wash each well with 1 mL of PBS. Remove PBS.</li></ol><div class="wp-block-spacer" aria-hidden="true"> </div><h5 class="blue">Click Reaction Protocol for Cell Lysates Labeling</h5><div class="wp-block-spacer" aria-hidden="true"> </div><p>This is a general protocol for labeling proteins in cell lysate through a copper-catalyzed click reaction using the fluorescent Azide Plus reagent. We recommend using this protocol as a starting point for optimization of particular click chemistry procedures. We have found that a 20 μM concentration of Azide Plus reagent was sufficient to label all alkyne-tagged proteins in the cell lysate without causing a high background signal. The optimal final concentration of the Azide Plus reagent is sample dependent and may range from 5 μM to 50 μM. Final concentrations below or above this range are also possible, and should be optimized per the specific application.</p><ol class="protocol_list"><li>Prepare the following click solutions:<br />— 100 mM THPTA ligand in water (100 mg of THPTA in 2.3 mL of water)<br />— 20 mM copper sulfate in water (dissolve 11.6 mg of copper II sulfate pentahydrate in 2.3 mL of water)<br />— 300 mM sodium ascorbate in water (dissolve 60 mg of sodium ascorbate in 1 mL of water)<br />— 1 mM Azide Plus reagent in DMSO or water</li><li>For each protein lysate sample, add the following to a 1.5 mL microfuge tube, then vortex briefly to mix.<br />— 50 µL of protein lysate (1-5 mg/mL) in protein extraction buffer<br />— 120 µL of Tris buffer<br />— 4 µL of Azide Plus reagent stock solution (5 μM final concentration)</li><li>Add 10 µL of 100 mM THPTA solution, vortex briefly to mix.</li><li>Add 10 µL of 20 mM CuSO<sub>4</sub> solution, vortex briefly to mix.</li><li>Add 10 µL of 300 mM sodium ascorbate solution to initiate click reaction, vortex briefly to mix.</li><li>Vortex continuously or rotate end-over-end for 30 minutes at room temperature.</li><li>Add the labeling reaction to 3 mL of cold (–20°C) methanol, 0.75 ml of Chloroform and 2.1 mL of water. Cool it to –20°C for 1 hour.</li><li>Centrifuge for 10 minutes at 13,000-20,000 x g, then carefully remove upper aqueous layer without disturbing the interface layer containing proteins.</li><li>Add 450 µL of methanol, vortex briefly.</li><li>Centrifuge for 5 minutes at 13,000-20,000 × g to pellet protein. Carefully remove and discard supernatant.</li><li>Open the lid to microfuge tube and allow protein pellet to air dry. Do not over dry the pellet!</li></ol>                    </div>
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		<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-azide-plus/">PB Azide Plus</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
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		<title>PB Picolyl Azide</title>
		<link>https://staging.vectorlabs.com/products/pb-picolyl-azide/</link>
		
		<dc:creator><![CDATA[Vector Laboratories R&D]]></dc:creator>
		<pubDate>Tue, 19 Sep 2023 19:31:26 +0000</pubDate>
				<guid isPermaLink="false">https://staging.vectorlabs.com/?post_type=product&#038;p=22039</guid>

					<description><![CDATA[<h3>Description</h3>
<p>PB Picolyl Azide is an advanced fluorescent probe that incorporates a copper-chelating motif to raise the effective concentration of Cu(I) at the reaction site to boost the efficiency of the CuAAC reaction, resulting in a faster and more biocompatible CuAAC labeling. Up to 40-fold increase of signal intensity, compared to conventional azides, was reported (see Selected References).</p>
<p>In addition, the use picolyl azides instead of conventional azides allows for at least a tenfold reduction in the concentration of the copper catalyst without sacrificing the efficiency of labeling, significantly improving biocompatibility of CuAAC labeling protocol.</p>
<p>In summary, the introduction of a copper-chelating motif into azide probe leads to a substantial increase in the sensitivity and reduced cell toxicity of CuAAC detection alkyne-tagged biomolecules. This will be of special value for the detection of low abundance targets or living system imaging.</p>
<p>PB (structurally equivalent to Pacific Blue® Dye) is a moderately photostable, blue-fluorescent probe optimally excited by the 405 nm laser line. It is routinely used for generation of stable signal in imaging and flow cytometry. The brightness and photostability of blue dyes are best suited to direct imaging of high-abundance targets.</p>
<p>Pacific Blue® Dye is a registered trademark of Thermo Fisher Scientific.</p>
<p>[caption id="attachment_26250" align="alignnone" width="1000"]<img class="wp-image-26250 size-full" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="" width="1000" height="454" /> Abs/Em Spectra[/caption]</p>
<h3>Specifications</h3>
<table id="product-attribute-specs-table" class="data table additional-attributes" width="585">
<tbody>
<tr>
<th class="col label" scope="row">Unit Size</th>
<td class="col data" data-th="Unit Size">1 mg, 5 mg, 25 mg</td>
</tr>
<tr>
<th class="col label" scope="row">Abs/Em Maxima</th>
<td class="col data" data-th="Applications">416/451 nm</td>
</tr>
<tr>
<th class="col label" scope="row">Extinction Coefficient</th>
<td class="col data" data-th="Target Species">
<div class="d-flex">
<div class="col-sm-6">30,000</div>
</div>
</td>
</tr>
<tr>
<th class="col label" scope="row">Spectrally Similar Dyes</th>
<td class="col data" data-th="Target Species">Alexa Fluor® 405, CF® 405, Pacific Blue®, DyLight® 405</td>
</tr>
<tr>
<th class="col label" scope="row">Molecular weight</th>
<td class="col data" data-th="Target Species">444.35</td>
</tr>
<tr>
<th class="col label" scope="row">CAS</th>
<td class="col data" data-th="Conjugate">N/A</td>
</tr>
<tr>
<th class="col label" scope="row">Solubility</th>
<td class="col data" data-th="Format">DMSO, DMF</td>
</tr>
<tr>
<th class="col label" scope="row">Purity</th>
<td class="col data" data-th="Format">&#62;95% (HPLC)</td>
</tr>
<tr>
<th class="col label" scope="row">Appearance</th>
<td class="col data" data-th="Format">Yellow amorphous solid</td>
</tr>
<tr>
<th class="col label" scope="row">Storage Conditions</th>
<td class="col data" data-th="Format">-20°C. Desiccate</td>
</tr>
<tr>
<th class="col label" scope="row">Shipping Conditions</th>
<td class="col data" data-th="Format">Ambient temperature</td>
</tr>
</tbody>
</table>
<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-picolyl-azide/">PB Picolyl Azide</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
]]></description>
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                                                            <h2 class="eael-tab-title title-after-icon" >Description</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Specifications</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Abs/Em Spectra</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Documents</h2>                                                    </li>
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                                                            <h2 class="eael-tab-title title-after-icon" >Selected References</h2>                                                    </li>
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            <div class="eael-tabs-content">
		        
                    <div id="description-tab" class="clearfix eael-tab-content-item inactive" data-title-link="description-tab">
				        <h3>Description</h3><p>PB Picolyl Azide is an advanced fluorescent probe that incorporates a copper-chelating motif to raise the effective concentration of Cu(I) at the reaction site to boost the efficiency of the CuAAC reaction, resulting in a faster and more biocompatible CuAAC labeling. Up to 40-fold increase of signal intensity, compared to conventional azides, was reported (see Selected References).</p><p>In addition, the use picolyl azides instead of conventional azides allows for at least a tenfold reduction in the concentration of the copper catalyst without sacrificing the efficiency of labeling, significantly improving biocompatibility of CuAAC labeling protocol.</p><p>In summary, the introduction of a copper-chelating motif into azide probe leads to a substantial increase in the sensitivity and reduced cell toxicity of CuAAC detection alkyne-tagged biomolecules. This will be of special value for the detection of low abundance targets or living system imaging.</p><p>PB (structurally equivalent to Pacific Blue® Dye) is a moderately photostable, blue-fluorescent probe optimally excited by the 405 nm laser line. It is routinely used for generation of stable signal in imaging and flow cytometry. The brightness and photostability of blue dyes are best suited to direct imaging of high-abundance targets.</p><p>Pacific Blue® Dye is a registered trademark of Thermo Fisher Scientific.</p>                    </div>
		        
                    <div id="specifications-tab" class="clearfix eael-tab-content-item inactive" data-title-link="specifications-tab">
				        <h3>Specifications</h3><table id="product-attribute-specs-table" class="data table additional-attributes" style="height: 186px;" width="585"><tbody><tr><th class="col label" scope="row">Unit Size</th><td class="col data" data-th="Unit Size">1 mg, 5 mg, 25 mg</td></tr><tr><th class="col label" scope="row">Abs/Em Maxima</th><td class="col data" data-th="Applications">416/451 nm</td></tr><tr><th class="col label" scope="row">Extinction Coefficient</th><td class="col data" data-th="Target Species"><div class="d-flex"><div class="col-sm-6">30,000</div></div></td></tr><tr><th class="col label" scope="row">Spectrally Similar Dyes</th><td class="col data" data-th="Target Species">Alexa Fluor® 405, CF® 405, Pacific Blue®, DyLight® 405</td></tr><tr><th class="col label" scope="row">Molecular weight</th><td class="col data" data-th="Target Species">444.35</td></tr><tr><th class="col label" scope="row">CAS</th><td class="col data" data-th="Conjugate">N/A</td></tr><tr><th class="col label" scope="row">Solubility</th><td class="col data" data-th="Format">DMSO, DMF</td></tr><tr><th class="col label" scope="row">Purity</th><td class="col data" data-th="Format">&gt;95% (HPLC)</td></tr><tr><th class="col label" scope="row">Appearance</th><td class="col data" data-th="Format">Yellow amorphous solid</td></tr><tr><th class="col label" scope="row">Storage Conditions</th><td class="col data" data-th="Format">-20°C. Desiccate</td></tr><tr><th class="col label" scope="row">Shipping Conditions</th><td class="col data" data-th="Format">Ambient temperature</td></tr></tbody></table>                    </div>
		        
                    <div id="absem-spectra-tab" class="clearfix eael-tab-content-item inactive" data-title-link="absem-spectra-tab">
				        <h3>Abs/Em Spectra</h3><p><img loading="lazy" decoding="async" class="alignnone size-full wp-image-26250" src="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp" alt="pacific blue" width="1000" height="454" title="PB Picolyl Azide 4" srcset="https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue.webp 1940w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1024x464.webp 1024w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-768x348.webp 768w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-1536x697.webp 1536w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-300x136.webp 300w, https://staging.vectorlabs.com/wp-content/uploads/2023/09/pacific_blue-600x272.webp 600w" sizes="(max-width: 1000px) 100vw, 1000px" /></p>                    </div>
		        
                    <div id="documents-tab" class="clearfix eael-tab-content-item inactive" data-title-link="documents-tab">
				        <h3>Documents</h3><div class="explorer_section applications container documentSection catalog-product-document"><ul class="document_list"><li class="documentContainer documentItem"><a class="documentTitle" href="https://staging.vectorlabs.com/productattachments/sds/VL_CCT-1413_sds.pdf">Safety Data Sheet</a></li><li><a href="https://staging.vectorlabs.com/resources/certificate-of-analysis/">Download CoA</a></li><li><a class="woocommerce-print-products-pdf-link" href="https://staging.vectorlabs.com/products/pb-picolyl-azide/?print-products=pdf" target="_blank">Datasheet</a></li></ul></div>                    </div>
		        
                    <div id="selected-references-tab" class="clearfix eael-tab-content-item inactive" data-title-link="selected-references-tab">
				        <h3>Selected References</h3><ol class="prod-ref_list"><li>Jiang, H., <em>et al.</em> (2014). Monitoring Dynamic Glycosylation in Vivo Using Supersensitive Click Chemistry. <em>Bioconjugate Chem.,</em>, <strong>25</strong>, 698-706. [<a href="https://www.ncbi.nlm.nih.gov/pubmed/24499412" target="_blank" rel="noopener">PubMed</a>]</li><li>Uttamapinant, C., <em>et al</em>. (2012). Fast, Cell-Compatible Click Chemistry with Copper-Chelating Azides for Biomolecular Labeling.<em> Angew. Chem. Int. Ed,.</em>, <strong>51</strong>, 5852-56. [<a href="https://www.ncbi.nlm.nih.gov/pubmed/22555882" target="_blank" rel="noopener">PubMed</a>]</li><li>Gaebler, A.,<em>et al.</em> (2016). A highly sensitive protocol for microscopy of alkyne lipids and fluorescently tagged or immunostained proteins. <em>J. Lipid. Res., </em><strong>57</strong>, 1934-47. [<a href="https://www.ncbi.nlm.nih.gov/pubmed/?term=23552949" target="_blank" rel="noopener">PubMed</a>]</li></ol>                    </div>
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		<p>The post <a rel="nofollow" href="https://staging.vectorlabs.com/products/pb-picolyl-azide/">PB Picolyl Azide</a> appeared first on <a rel="nofollow" href="https://staging.vectorlabs.com">VectorLabs</a>.</p>
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			</item>
	</channel>
</rss>
