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	<title>PrinTiss® &#8211; Polbionica</title>
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	<title>PrinTiss® &#8211; Polbionica</title>
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		<title>PrinTiss® dECM</title>
		<link>https://polbionica.com/produkt/printiss-decm-pan/</link>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Fri, 17 May 2024 14:59:51 +0000</pubDate>
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					<description><![CDATA[PrinTiss® dECM-PAN is a decellularized extracellular matrix (dECM) derived from porcine pancreas tissue, developed as a functional biomaterial for advanced biofabrication applications. Its primary value lies in delivering authentic tissue-specific cues — a combination of biochemical signals and microenvironmental features that cells recognize as native. As a result, dECM-PAN can support cell adhesion, proliferation, and migration, creating culture conditions that more closely resemble physiological tissue environments than fully synthetic materials.

In practical applications, PrinTiss® dECM-PAN serves as a biological foundation for designing bioinks and hydrogels when reliable microenvironmental fidelity and improved translational relevance of 3D models are critical. The product is supplied as a sterile lyophilized powder, with each package sufficient to prepare 12.5 mL of dECM-PAN hydrogel at a concentration of 1.0% (w/v), enabling workflow standardization and improved experimental reproducibility across batches.]]></description>
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									<p><strong>Key Features</strong></p><ul><li>Porcine pancreas-derived dECM providing an ECM-mimicking cellular environment</li><li>Supports cell adhesion, proliferation, and migration</li><li>Sterile lyophilized format for convenient transport and storage</li><li>Batch-level purity and safety controls, including: DNA &lt; 30 ng/mg, lipids &lt; 4%, Triton X-100 &lt; 50 ng/mg</li><li>Certificate of Analysis (CoA) and usage protocol available upon request</li></ul><p><strong>Applications</strong></p><ul><li>Bioinks and hydrogels for pancreatic tissue models and other 3D systems requiring authentic ECM microenvironments</li><li>Reconstruction of biologically relevant microenvironments for functional studies (adhesion, proliferation, migration assays)</li><li>Formulations designed to replicate the biological layer within structural biomaterial constructs</li></ul>								</div>
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