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Intermediate layer contribution in placental membrane allografts

机译:胎盘膜同种异体移植物中的中间层贡献

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Placental membrane (PM) allografts are commonly used to treat chronic wounds. Native PM is composed of an amnion, chorion, and intermediate layer (IL) that contain matrix structures and regulatory components beneficial in wound healing. Historically, commercially available allografts were composed of only one or two layers of the PM. To maximize the conserved material in PM allografts, a dehydrated complete human placental membrane (dCHPM) allograft processed using the Clearify (TM) process was developed. Histological and proteomic characterization comparing dCHPM allografts with native PM demonstrated that the majority of matrix structures and regulatory proteins are retained in dCHPM allografts through processing. To evaluate the importance of maintaining the entire intact PM and the contribution of the IL, the structural and proteomic makeup of the IL was compared with that of dCHPM allografts. This is the first known characterization of regulatory proteins in the IL. Results demonstrate that the IL contains over 900 regulatory and signaling components, including chemokines, growth factors, interleukins, and protease inhibitors. These components are key regulators of angiogenesis, neurogenesis, osteogenesis, inflammation, tissue remodeling, and host defense. The results show that the proteomic composition of the IL is consistent with that of the entire dCHPM allograft. Although further investigation is required to fully understand the contribution of the IL in PM allografts, these results demonstrate that the IL contains structural and regulatory proteins that can enhance the barrier and wound healing properties of PM allografts.
机译:胎盘膜(PM)同种异体移植物通常用于治疗慢性伤口。本机PM由含有伤口愈合有益的基质结构和调节组分的羊膜,绒毛膜和中间层(IL)组成。历史上,市售的同种异体移植物仅由PM的一层或两层组成。为了最大化PM同种异体移植物中的保守材料,开发了使用清除(TM)过程处理的脱水完整的人胎盘膜(DCHPM)同种异体移植物。将DCHPM同种异体移植与天然PM进行比较的组织学和蛋白质组学表征证明了大多数基质结构和调节蛋白通过加工在DCHPM同种异体移植物中保留。为了评估维持整个完整PM和IL的贡献的重要性,将IL的结构和蛋白质组学构成与DCHPM同种异体移植物进行比较。这是IL中的第一种已知的调节蛋白表征。结果表明,IL包含超过900个调节和信号传导组分,包括趋化因子,生长因子,白细胞介素和蛋白酶抑制剂。这些组分是血管生成,神经发生,成骨发生,炎症,组织重塑和主体防御的关键调节因子。结果表明,IL的蛋白质组学组成与整个DCHPM同种异体移植物的蛋白质组学组成一致。虽然需要进一步调查来充分了解IL在PM同种异体移植物中的IL的贡献,但这些结果表明IL含有结构和调节蛋白,可以增强PM同种异体移植物的屏障和伤口愈合性能。

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