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猪去细胞神经组织水凝胶作为修复周围神经缺损的有前途的生物材料。

Hydrogel derived from porcine decellularized nerve tissue as a promising biomaterial for repairing peripheral nerve defects.

机构信息

Department of Orthopedic and Microsurgery, The First Affiliated Hospital of Sun Yat-sen University, Guangzhou, China; Guangdong Provincial Peripheral Nerve Tissue-engineering and Technology Research Center, Guangdong Provincial Functional Biomaterials Engineering Technology Research Center, Guangzhou, China.

PCFM Lab, GD HPPC Lab, School of Chemistry, Sun Yat-sen University, Guangzhou, China; Guangdong Provincial Peripheral Nerve Tissue-engineering and Technology Research Center, Guangdong Provincial Functional Biomaterials Engineering Technology Research Center, Guangzhou, China.

出版信息

Acta Biomater. 2018 Jun;73:326-338. doi: 10.1016/j.actbio.2018.04.001. Epub 2018 Apr 9.

Abstract

UNLABELLED

Decellularized matrix hydrogels derived from tissues or organs have been used for tissue repair due to their biocompatibility, tunability, and tissue-specific extracellular matrix (ECM) components. However, the preparation of decellularized peripheral nerve matrix hydrogels and their use to repair nerve defects have not been reported. Here, we developed a hydrogel from porcine decellularized nerve matrix (pDNM-G), which was confirmed to have minimal DNA content and retain collagen and glycosaminoglycans content, thereby allowing gelatinization. The pDNM-G exhibited a nanofibrous structure similar to that of natural ECM, and a ∼280-Pa storage modulus at 10 mg/mL similar to that of native neural tissues. Western blot and liquid chromatography tandem mass spectrometry analysis revealed that the pDNM-G consisted mostly of ECM proteins and contained primary ECM-related proteins, including fibronectin and collagen I and IV). In vitro experiments showed that pDNM-G supported Schwann cell proliferation and preserved cell morphology. Additionally, in a 15-mm rat sciatic nerve defect model, pDNM-G was combined with electrospun poly(lactic-acid)-co-poly(trimethylene-carbonate)conduits to bridge the defect, which did not elicit an adverse immune response and promoted the activation of M2 macrophages associated with a constructive remodeling response. Morphological analyses and electrophysiological and functional examinations revealed that the regenerative outcomes achieved by pDNM-G were superior to those by empty conduits and closed to those using rat decellularized nerve matrix allograft scaffolds. These findings indicated that pDNM-G, with its preserved ECM composition and nanofibrous structure, represents a promising biomaterial for peripheral nerve regeneration.

STATEMENT OF SIGNIFICANCE

Decellularized nerve allografts have been widely used to treat peripheral nerve injury. However, given their limited availability and lack of bioactive factors, efforts have been made to improve the efficacy of decellularized nerve allograft for nerve regeneration, with limited success. Xenogeneic decellularized tissue matrices or hydrogels have been widely used for surgical applications owing to their ease of harvesting and low immunogenicity. Moreover, decellularized tissue matrix hydrogels show good biocompatibility and are highly tunable. In this study, we prepared a porcine decellularized nerve matrix (pDNM-G) and evaluated its potential for promoting nerve regeneration. Our results demonstrate that pDNM-G can support Schwann cell proliferation and peripheral nerve regeneration by means of residual primary extracellular matrix components and nano-fibrous structure features.

摘要

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由于其生物相容性、可调节性和组织特异性细胞外基质 (ECM) 成分,从组织或器官中提取的去细胞基质水凝胶已被用于组织修复。然而,去细胞化周围神经基质水凝胶的制备及其用于修复神经缺损尚未见报道。在这里,我们开发了一种源自猪去细胞神经基质 (pDNM-G) 的水凝胶,该水凝胶的 DNA 含量极低,并且保留了胶原蛋白和糖胺聚糖的含量,从而使其能够胶凝。pDNM-G 表现出类似于天然 ECM 的纳米纤维结构,在 10mg/mL 时约 280Pa 的储存模量与天然神经组织相似。Western blot 和液相色谱串联质谱分析表明,pDNM-G 主要由 ECM 蛋白组成,并且包含主要的 ECM 相关蛋白,包括纤连蛋白和胶原蛋白 I 和 IV)。体外实验表明,pDNM-G 支持施万细胞增殖并保持细胞形态。此外,在 15mm 大鼠坐骨神经缺损模型中,pDNM-G 与静电纺丝聚 (乳酸-共-聚 (三亚甲基碳酸酯)) 导管结合以桥接缺损,这不会引起不良的免疫反应,并促进与建设性重塑反应相关的 M2 巨噬细胞的激活。形态分析以及电生理和功能检查表明,pDNM-G 再生效果优于空导管,接近于使用大鼠去细胞神经基质同种异体移植物支架的效果。这些发现表明,pDNM-G 具有保留的 ECM 组成和纳米纤维结构,代表了一种有前途的周围神经再生生物材料。

意义声明

去细胞化神经同种异体移植物已被广泛用于治疗周围神经损伤。然而,由于其可用性有限且缺乏生物活性因子,因此人们努力提高去细胞化神经同种异体移植物的神经再生效果,但收效甚微。异种去细胞化组织基质或水凝胶由于易于采集和免疫原性低而广泛用于外科应用。此外,去细胞化组织基质水凝胶具有良好的生物相容性,并且具有高度的可调节性。在这项研究中,我们制备了猪去细胞神经基质 (pDNM-G),并评估了其促进神经再生的潜力。我们的结果表明,pDNM-G 可以通过残留的主要细胞外基质成分和纳米纤维结构特征来支持施万细胞增殖和周围神经再生。

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