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Physico-mechanical properties of wound dressing material and its biomedical application.

机译:伤口敷料的物理力学性能及其生物医学应用。

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A bioadhesive wound dressing material, based on gelatin, was prepared by solution casting, and its properties were evaluated. The tensile strength (TS) and percentage elongation at break (Eb) of the membranes were found to be 12.7 MPa and 40.4%, respectively. The buffer uptake and water uptake of the prepared membranes were found to be 298 and 312%, respectively, after 8 min. A scanning electron micrograph of the membrane revealed its uniform porosity, which is an essential criterion to be an ideal wound dressing. From microbial sensitivity analysis, it was found that the membrane had a significant resistance against infection. The wound-healing characteristics of the membrane were evaluated using a rat (Rattus norvegicus) model. Full-thickness wounds were created on the ventral side of the Rattus norvegicus and were dressed with the membrane; eco-plast was used as a control. The wound healing and bioadhesion were monitored at 3-day intervals by real-time imaging. The results revealed that the prepared membrane was more effective in healing the wound than conventional wound dressing.
机译:通过溶液流延制备基于明胶的生物粘合剂伤口敷料,并评价其性质。膜的抗张强度(TS)和断裂伸长率(Eb)分别为12.7 MPa和40.4%。在8分钟后,发现所制备的膜的缓冲液吸收和水吸收分别为298%和312%。膜的扫描电子显微照片显示出其均匀的孔隙率,这是成为理想伤口敷料的必要标准。通过微生物敏感性分析,发现该膜具有明显的抗感染性。使用大鼠(Rattus norvegicus)模型评估膜的伤口愈合特性。在褐家鼠的腹侧形成全层伤口,并用膜包扎;将生态塑料用作对照。通过实时成像以3天为间隔监测伤口的愈合和生物粘附。结果表明,与常规伤口敷料相比,制备的膜在伤口愈合方面更有效。

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