Nguyen Michael, Walimbe Tanaya, Woolley Andrew, Paderi John, Panitch Alyssa
Department of Biomedical Engineering, University of California, Davis, USA.
Symic Bio, USA.
Proteoglycan Res. 2023 Apr 1;1(2). doi: 10.1002/pgr2.3. Epub 2023 Jun 1.
Many endothelial complications, whether from surgical or pathological origins, can result in the denudation of the endothelial layer and the exposure of collagen. Exposure of collagen results in the activation of platelets, leading to thrombotic and inflammatory cascades that ultimately result in vessel stenosis. We have previously reported the use of peptide-GAG compounds to target exposed collagen following endothelial injury. In this paper we optimize the spacer sequence of our collagen binding peptide to increase its conjugation to GAG backbones and increase the peptide-GAG collagen binding affinity by increasing peptide C-terminal cationic charge. Furthermore, we demonstrate the use of these molecules to inhibit platelet activation through collagen blocking, as well as their localization to exposed vascular collagen following systemic delivery. Altogether, optimization of peptide sequence and linkage chemistry can allow for increased conjugation and function, having implications for glycoconjugate use in other clinical applications.
许多内皮并发症,无论是源于手术还是病理原因,都可能导致内皮层剥脱和胶原蛋白暴露。胶原蛋白暴露会激活血小板,引发血栓形成和炎症级联反应,最终导致血管狭窄。我们之前曾报道过使用肽 - 糖胺聚糖化合物来靶向内皮损伤后暴露的胶原蛋白。在本文中,我们优化了胶原蛋白结合肽的间隔序列,以增加其与糖胺聚糖主链的结合,并通过增加肽C末端阳离子电荷来提高肽 - 糖胺聚糖与胶原蛋白的结合亲和力。此外,我们证明了这些分子通过胶原阻断来抑制血小板激活的作用,以及它们在全身给药后在暴露的血管胶原蛋白上的定位。总之,肽序列和连接化学的优化可以增加结合和功能,这对糖缀合物在其他临床应用中的使用具有重要意义。