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Painful Terminal Neuroma Prevention by Capping PRGD/PDLLA Conduit in Rat Sciatic Nerves

机译:封堵大鼠坐骨神经PRGD / PDLLA导管可预防疼痛性终末神经瘤

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摘要

Neuroma formation after amputation as a long‐term deficiency leads to spontaneous neuropathic pain that reduces quality of life of patients. To prevent neuroma formation, capping techniques are implemented as effective treatments. However, an ideal, biocompatible material covering the nerves is an unmet clinical need. In this study, biocompatible characteristics presented by the poly(D,L‐lactic acid)/arginylglycylaspartic acid (RGD peptide) modification of poly{(lactic acid)‐co‐ [(glycolic acid)‐alt‐(L‐lysine)]} (PRGD/PDLLA) are evaluated as a nerve conduit. After being capped on the rat sciatic nerve stump in vivo, rodent behaviors and tissue structures are compared via autotomy scoring and histological analyses. The PRGD/PDLLA capped group gains lower autotomy score and improves the recovery, where inflammatory infiltrations and excessive collagen deposition are defeated. Transmission electron microscopy images of the regeneration of myelin sheath in both groups show that abnormal myelination is only present in the uncapped rats. Changes in related genes (MPZ, MBP, MAG, and Krox20) are monitored quantitative real‐time polymerase chain reaction (qRT‐PCR) for mechanism investigation. The PRGD/PDLLA capping conduits not only act as physical barriers to inhibit the invasion of inflammatory infiltration in the scar tissue but also provide a suitable microenvironment for promoting nerve repairing and avoiding neuroma formation during nerve recovery.
机译:截肢后长期长期缺乏神经瘤会导致自发性神经性疼痛,降低患者的生活质量。为了防止神经瘤形成,采用封盖技术作为有效的治疗方法。然而,覆盖神经的理想的生物相容性材料尚未满足临床需求。在这项研究中,由聚{(乳酸)-co-[(乙醇酸)-alt-(L-赖氨酸)]的聚(D,L-乳酸)/精氨酰糖基葡萄糖酸天冬氨酸(RGD肽)修饰呈现的生物相容性特征}(PRGD / PDLLA)被评估为神经导管。在体内被盖在大鼠坐骨神经残端上之后,通过尸体解剖评分和组织学分析来比较啮齿动物的行为和组织结构。 PRGD / PDLLA封端的组的尸体解剖评分降低,并改善了炎症浸润和胶原蛋白过多沉积的恢复。两组中髓鞘的再生的透射电子显微镜图像显示,异常髓鞘仅存在于未封盖的大鼠中。通过定量实时聚合酶链反应(qRT-PCR)监测相关基因(MPZ,MBP,MAG和Krox20)的变化以进行机理研究。 PRGD / PDLLA封盖导管不仅充当物理屏障以抑制疤痕组织中炎性浸润的侵袭,而且还提供了合适的微环境,以促进神经修复并在神经恢复过程中避免神经瘤的形成。

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