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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >An improved freeze-dried PRP-coated biodegradable material suitable for connective tissue regenerative therapy
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An improved freeze-dried PRP-coated biodegradable material suitable for connective tissue regenerative therapy

机译:一种适用于结缔组织再生治疗的改良的冻干PRP涂层生物降解材料

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摘要

We previously published an investigation indicating freeze-dried platelet-rich plasma (PRP)-coated polyglactin mesh was a promising wound-dressing material. However, one of its disadvantages was the inflammatory nature due to degradation of the polyglactin. Therefore, in this study, we investigated the use of a collagen sponge as the carrier for PRP. When implanted subcutaneously in nude mice, the PRP-coated sponge alone rapidly induced angiogenesis and infiltration of surrounding connective tissue without inducing appreciable inflammation. Moreover, addition of periosteal fibroblastic cells substantially augmented the angiogenic response. With in vitro studies, the PRP-coated sponge provided various major growth factors at high levels to stimulate the proliferation of cells cultured on plastic dishes, but did not stimulate the proliferation of cells inoculated into the PRP-coated sponge. Cells were embedded in the fibrin mesh and maintained their spherical shape without stretching. The atomic force microscopic analysis demonstrated that the fibrin gel formed on the PRP-coated sponge was much softer (approx. 22. kPa) than the cross-linked collagen that formed the sponge base (appox. 1.9. MPa). Because insoluble matrices have recently and increasingly been considered important regulatory factors of cellular behavior, as are soluble growth factors, it is suggested that this soft fibrin mesh possibly suppresses cell survival. Overall, our investigation has successfully demonstrated improved wound-healing and regenerative potential of the PRP-coated mesh by combining it with the collagen sponge. In the clinical setting, this PRP-coated collagen sponge is a promising material for connective tissue regenerative therapy, such as periodontal therapy, burn victim treatment and in cosmetic or plastic surgery.
机译:我们先前发表的一项研究表明,冻干富含血小板的血浆(PRP)涂层的聚凝乳素网是一种很有前途的创面材料。然而,它的缺点之一是由于聚乳蛋白降解引起的炎性。因此,在这项研究中,我们研究了使用胶原蛋白海绵作为PRP的载体。当皮下植入裸鼠时,单独涂覆PRP的海绵可迅速诱导血管生成和周围结缔组织的浸润,而不会引起明显的炎症。此外,骨膜成纤维细胞的添加大大增强了血管生成反应。通过体外研究,涂有PRP的海绵可提供高水平的各种主要生长因子,以刺激在塑料培养皿上培养的细胞的增殖,但不会刺激接种入PRP的海绵中的细胞的增殖。将细胞包埋在纤维蛋白网中,并保持其球形而不拉伸。原子力显微镜分析表明,在形成PRP的海绵上形成的纤维蛋白凝胶比形成海绵基的交联胶原蛋白(约1.9 MPa)软得多(约22. kPa)。由于不溶性基质最近和越来越多地被认为是细胞行为的重要调控因子,可溶性生长因子也是如此,因此有人提出,这种柔软的纤维蛋白网可能会抑制细胞存活。总体而言,我们的研究成功地证明了将PRP涂层网布与胶原蛋白海绵结合后,伤口愈合和再生潜力得到改善。在临床环境中,这种涂有PRP的胶原蛋白海绵是用于结缔组织再生治疗的有前途的材料,例如牙周治疗,烧伤患者治疗以及美容或整形外科。

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