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Evaluation of biocompatibility and toxicity of biodegradable poly (DL-lactic acid) films

机译:评价可生物降解的聚(DL-乳酸)薄膜的生物相容性和毒性

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摘要

Regeneration and functional recovery of nerves after peripheral nerve injury is the key to peripheral nerve repair. One of the putative therapeutic strategies is to use anti-adhesion polymer films, made of polymeric biomaterials. Recently, a novel biodegradable poly (DL-lactic acid) (PDLLA) film has been prepared using a method of phase transformation with biodegradable polylactic acid polymer as the substrate. This novel, anti-adhesion film has a porous structure, which provides better mechanical properties, better flexibility, more complete diffusion through the polymer of tissue biologic factors like growth factors, and more controllable degradation compared to traditional non-porous films. Little is known, however, about the in vitro and in vivo biocompatibility and cytotoxicity of this type of PDLLA film. Therefore, our aim was to evaluate the biocompatibility and cytotoxicity of this novel PDLLA film using various experimental methods, including a skin irritation test, MTT analysis, and the mouse bone marrow cell micronucleus test, as well as hematology or clinical chemistry measurements in rats after receiving sciatic nerve transection and anastomosis with wrapping of the anastomosis with DLLA films. We demonstrated that exposure to PDLLA film extracts did not generate apparent erythema or edema in rabbit skin and had no effect on the proliferation of Vero cells. Additionally, treatment with PDLLA film extracts did not alter the incidence of micronucleated polychromatic erythrocytes as compared with saline Treated group. Furthermore, implantation of PDLLA film did not alter liver or renal function as measured by serum levels of ALT, AST, TP, A/G, Cr, and BUN, and pathologic examinations showed that implantation of PDLLA film did not cause pathologic changes to the rat liver, kidney, pancreas, or spleen. Taken together, these results suggest that PDLLA films have excellent biocompatibility and no obvious toxicity in vivo, and may be used to prevent nerve adhesion, thereby promoting nerve regeneration.
机译:周围神经损伤后神经的再生和功能恢复是修复周围神经的关键。推定的治疗策略之一是使用由高分子生物材料制成的抗粘连聚合物薄膜。近来,已经使用以可生物降解的聚乳酸聚合物为底物的相变方法制备了新型的可生物降解的聚(DL-乳酸)(PDLLA)膜。与传统的无孔膜相比,这种新颖的抗粘膜具有多孔结构,可提供更好的机械性能,更好的柔韧性,通过组织生物学因素(例如生长因子)的聚合物更完全地扩散,以及可控的降解。然而,关于这种类型的PDLLA膜的体外和体内生物相容性和细胞毒性知之甚少。因此,我们的目的是使用多种实验方法,包括皮肤刺激试验,MTT分析和小鼠骨髓细胞微核试验,以及在大鼠后的血液学或临床化学测量,评估这种新型PDLLA膜的生物相容性和细胞毒性。接受坐骨神经横断和吻合,并用DLLA膜包裹吻合。我们证明暴露于PDLLA膜提取物不会在兔皮肤中产生明显的红斑或水肿,并且对Vero细胞的增殖没有影响。此外,与盐水治疗组相比,用PDLLA膜提取物治疗不会改变微核多色红细胞的发生率。此外,通过血清ALT,AST,TP,A / G,Cr和BUN的水平测量,PDLLA膜的植入不会改变肝脏或肾脏功能,病理检查表明,PDLLA膜的植入不会引起肝脏的病理变化。大鼠肝脏,肾脏,胰腺或脾脏。综上所述,这些结果表明PDLLA膜具有优异的生物相容性并且在体内没有明显的毒性,并且可以用于防止神经粘附,从而促进神经再生。

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