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Carboxymethylchitosan hydrogel manufactured by radiation-induced crosslinking as potential nerve regeneration guide scaffold

机译:羧甲基苯磺酸水凝胶通过辐射诱导的交联作为潜在神经再生导向支架制造

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The main objective of the work was to elaborate a methodology of manufacturing tubular guide with an internal scaffold of polysaccharide hydrogel towards potential application for supporting peripheral nerve regeneration. Carboxymethylchitosan (CMSC), a derivative of chitosan and a prospective material in the medical field, was examined with respect to degradation and crosslinking processes and eventually converted into a hydrogel through radiation-induced crosslinking. Physico-chemical properties of the degraded and crosslinked CMCS materials were evaluated by viscometry, UV-Vis, FTIR, TGA, XRD and SEM. Biological characterization of CMCS gels was done with XTT method for potential cytotoxicity and by preliminary in vivo examination using a rat model, to assess local reaction after implantation. Additionally, an antimicrobial potential of the CMCS materials was examined with bacterial suspension and agar diffusion methods using Gram-positive and -negative strains. The positive results of the abovementioned evaluations, after taking under account sorption characteristics of the gels, allowed to consider 12% CMCS aqueous solutions irradiated with an electron-beam dose of 25 kGy as a suitable material for internal filling of biodegradable tubes made of poly(L-lactic acid) and poly(trimethylene carbonate) blend biomaterial. The radiation processing of CMCS resulted in an in situ synthesis of a soft scaffold inside the tube, and simultaneous sterilization of the entire medical implant. Lack of toxicity of the gel and antimicrobial activity of CMCS against E. coli strain combined with hydrophilic properties make the hydrogel a potential material for supporting peripheral nerveregeneration guides.
机译:该工作的主要目的是详细阐述制造管状导向器的方法论,该方法具有多糖水凝胶的内支架,朝向支持外周神经再生的潜在应用。关于降解和交联过程检查羧甲基苯磺酸(CMSC),壳聚糖的衍生物和医学领域的前瞻性材料,并最终通过辐射诱导的交联转化为水凝胶。通过粘度,UV-Vis,FTIR,TGA,XRD和SEM评估降解和交联的CMCS材料的物理化学性质。 CMCS凝胶的生物学表征是用XTT方法进行的,用于潜在的细胞毒性,并且通过使用RAT模型的体内检查初步进行,以评估植入后的局部反应。另外,使用革兰氏阳性和阴性菌株用细菌悬浮液和琼脂扩散方法检查CMCS材料的抗微生物电位。上述评价的阳性结果,在凝胶的考虑吸附特性后,允许考虑用25kGy的电子束剂量照射12%CMCS水溶液,作为合适的材料,用于内部填充多种( L-乳酸)和聚(三甲基碳酸亚乙酯)共混生物材料。 CMC的辐射加工导致管内的软支架的原位合成,并同时对整个医疗植入物进行灭菌。 CMC对大肠杆菌菌株的凝胶和抗微生物活性的毒性缺乏与亲水性质结合的CMC,使水凝胶成为用于支持外周患者的潜在材料。

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