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Preparation of Extracellular Matrix Developed Using Porcine Articular Cartilage and In Vitro Feasibility Study of Porcine Articular Cartilage as an Anti-Adhesive Film

机译:猪关节软骨开发的细胞外基质的制备及猪关节软骨作为抗粘膜的体外可行性研究

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In this study, we examined whether porcine articular cartilage (PAC) is a suitable and effective anti-adhesive material. PAC, which contained no non-collagenous tissue components, was collected by mechanical manipulation and decellularization of porcine knee cartilage. The PAC film for use as an anti-adhesive barrier was easily shaped into various sizes using homemade silicone molds. The PAC film was cross-linked to study the usefulness of the anti-adhesive barrier shape. The cross-linked PAC (Cx-PAC) film showed more stable physical properties over extended periods compared to uncross-linked PAC (UnCx-PAC) film. To control the mechanical properties, Cx-PAC film was thermally treated at 45 °C or 65 °C followed by incubation at room temperature. The Cx-PAC films exhibited varying enthalpies, ultimate tensile strength values, and contact angles before and after thermal treatment and after incubation at room temperature. Next, to examine the anti-adhesive properties, human umbilical vein endothelial cells (HUVECs) were cultured on Cx-PAC and thermal-treated Cx-PAC films. Scanning electron microscopy, fluorescence, and MTT assays showed that HUVECs were well adhered to the surface of the plate and proliferated, indicating no inhibition of the attachment and proliferation of HUVECs. In contrast, Cx-PAC and thermal-treated Cx-PAC exhibited little and/or no cell attachment and proliferation because of the inhibition effect on HUVECs. In conclusion, we successfully developed a Cx-PAC film with controllable mechanical properties that can be used as an anti-adhesive barrier.
机译:在这项研究中,我们检查了猪关节软骨(PAC)是否是合适且有效的抗粘连材料。通过机械操作和猪膝关节软骨的去细胞化收集不包含非胶原组织成分的PAC。使用自制的硅树脂模具,可以轻松地将用作防粘屏障的PAC膜成型为各种尺寸。 PAC膜被交联以研究抗粘屏障形状的有用性。与未交联的PAC(UnCx-PAC)薄膜相比,交联的PAC(Cx-PAC)薄膜在更长的时间内显示出更稳定的物理性能。为了控制机械性能,将Cx-PAC膜在45°C或65°C下进行热处理,然后在室温下孵育。 Cx-PAC膜在热处理前后,室温下孵育后均表现出不同的焓,极限抗拉强度值和接触角。接下来,为了检查抗粘附性能,将人脐静脉内皮细胞(HUVEC)培养在Cx-PAC和热处理过的Cx-PAC膜上。扫描电子显微镜,荧光和MTT分析表明,HUVECs很好地粘附在平板表面并增殖,表明对HUVECs的附着和增殖没有抑制作用。相反,由于对HUVEC的抑制作用,Cx-PAC和热处理的Cx-PAC显示很少和/或没有细胞附着和增殖。总之,我们成功开发了具有可控机械性能的Cx-PAC膜,可用作抗粘连屏障。

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