首页> 外文会议>Bioengineering Conference (NEBEC), 2012 38th Annual Northeast >Use of genipin to crosslink lyophilized matrices made from collagen nanofibrils
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Use of genipin to crosslink lyophilized matrices made from collagen nanofibrils

机译:用Genipin交联胶原纳米纤维制成的冻干基质

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Collagen has been a key material in many biological studies for some time now due to the strength and stability of the material. The crosslinked collagen studied here is intended for scaffolding applications for cell growth. The fibrils, however, must first be ball-milled, dispersed, and lyophilized to create porous matrices and strengthened through crosslinking to allow for such applications. Glutaraldehyde has in the past been the most promising crosslinking agent because of the chemical's ability to form strong and extensive crosslinks. Although a valuable crosslinker for industrial purposes, glutaraldehyde is limited in biological applications due to concerns regarding cytotoxicity. The limitations of glutaraldehyde in biotechnical applications prompted research into the development of a more natural, less toxic chemical crosslinking agent. The subject of the current research is the potential use of genipin, a natural, biodegradable molecule with low toxicity. In the present study, different concentrations of genipin were added to dispersed ball-milled bovine type I collagen and the samples were lyophilized. Collagenase resistance, scanning electron microscope (SEM) imaging and sodium dodecyl sulfate polyacrlamide gel electrophoresis (SDS-PAGE) were conducted during the experiment to study the strength of each crosslinked sample after lyophilization. Genipin crosslinking resulted in increased resistance to collagenase degradation and higher molecular size and weight while also maintaining the porosity of the material.
机译:由于胶原蛋白的强度和稳定性,它已经成为许多生物学研究中的关键材料。本文研究的交联胶原蛋白旨在用于细胞生长的支架应用。但是,必须首先将原纤维进行球磨,分散和冻干以产生多孔基质,并通过交联进行强化以允许此类应用。戊二醛在过去一直是最有前途的交联剂,因为该化学品能够形成牢固而广泛的交联。尽管戊二醛是工业上有价值的交联剂,但是由于担心细胞毒性,因此戊二醛在生物学应用中受到限制。戊二醛在生物技术应用中的局限性促使人们对开发一种更天然,毒性更小的化学交联剂进行了研究。当前研究的主题是Genipin的潜在用途,genipin是一种天然的,可生物降解的低毒性分子。在本研究中,将不同浓度的genipin添加到分散的球磨牛I型胶原中,并将样品冻干。在实验过程中进行了抗胶原酶,扫描电子显微镜(SEM)成像和十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE),以研究冻干后每个交联样品的强度。 Genipin交联可提高对胶原酶降解的抵抗力,并具有更高的分子大小和重量,同时还能保持材料的孔隙率。

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