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用于临床伤口应用的羊膜衍生膜的特性研究

Characterization of Amnion-Derived Membrane for Clinical Wound Applications.

作者信息

Ingraldi Alison L, Allen Tim, Tinghitella Joseph N, Merritt William C, Becker Timothy, Tabor Aaron J

机构信息

Axolotl Biologix, Scottsdale, AZ 85260, USA.

Biological Sciences, Northern Arizona University, Flagstaff, AZ 86011, USA.

出版信息

Bioengineering (Basel). 2024 Sep 24;11(10):953. doi: 10.3390/bioengineering11100953.

Abstract

Human amniotic membrane (hAM), the innermost placental layer, has unique properties that allow for a multitude of clinical applications. It is a common misconception that birth-derived tissue products, such as dual-layered dehydrated amnion-amnion graft (dHAAM), are similar regardless of the manufacturing steps. A commercial dHAAM product, Axolotl Biologix DualGraft™, was assessed for biological and mechanical characteristics. Testing of dHAAM included antimicrobial, cellular biocompatibility, proteomics analysis, suture strength, and tensile, shear, and compressive modulus testing. Results demonstrated that the membrane can be a scaffold for fibroblast growth (cellular biocompatibility), containing an average total of 7678 unique proteins, 82,296 peptides, and 96,808 peptide ion variants that may be antimicrobial. Suture strength results showed an average pull force of 0.2 N per dHAAM sample (equating to a pull strength of 8.5 MPa). Tensile modulus data revealed variation, with wet samples showing 5× lower stiffness than dry samples. The compressive modulus and shear modulus displayed differences between donors (lots). This study emphasizes the need for standardized processing protocols to ensure consistency across dHAAM products and future research to explore comparative analysis with other amniotic membrane products. These findings provide baseline data supporting the potential of amniotic membranes in clinical applications.

摘要

人羊膜(hAM)是胎盘的最内层,具有独特的特性,可用于多种临床应用。一种常见的误解是,源自出生的组织产品,如双层脱水羊膜-羊膜移植物(dHAAM),无论制造步骤如何都是相似的。对一种商业dHAAM产品Axolotl Biologix DualGraft™进行了生物学和力学特性评估。对dHAAM的测试包括抗菌、细胞生物相容性、蛋白质组学分析、缝合强度以及拉伸、剪切和压缩模量测试。结果表明,该膜可以作为成纤维细胞生长的支架(细胞生物相容性),平均总共含有7678种独特蛋白质、82296种肽和96808种可能具有抗菌作用的肽离子变体。缝合强度结果显示,每个dHAAM样品的平均拉力为0.2 N(相当于8.5 MPa的拉伸强度)。拉伸模量数据显示存在差异,湿样品的刚度比干样品低5倍。压缩模量和剪切模量在不同供体(批次)之间存在差异。本研究强调需要标准化的加工方案,以确保dHAAM产品之间的一致性,并开展未来研究以探索与其他羊膜产品的比较分析。这些发现提供了基线数据,支持羊膜在临床应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bdb/11504399/9b8a0b51e63b/bioengineering-11-00953-g001.jpg

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