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Chitosan Adhesive for Laser Tissue Repair

机译:用于激光组织修复的壳聚糖胶

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Background. Laser tissue repair usually relies on haemoderivate solders, based on serum albumin. These solders have intrinsic limitations that impair their widespread use, such as limited repair strength, high solubility, brittleness and viral transmission. Furthermore, the solder activation temperature (65-70℃) can induce significant damage to tissue. In this study, a new laser-activated biomaterial for tissue repair was developed and tested in vitro and in vivo to overcome some of the shortcomings of traditional solders. Materials and Methods. Flexible and insoluble strips of chitosan adhesive (surface area ~34 mm~2, thickness ~20 μm) were developed and bonded on sheep intestine with a laser fluence and irradiance of 52 ± 2 J/cm~2 and ~15 W/cm~2 respectively. The temperature between tissue and adhesive was measured using small thermocouples. The strength of repaired tissue was tested by a calibrated tensiometer. The adhesive was also bonded in vivo to the sciatic nerve of rats to assess the thermal damage induced by the laser (fluence = 65 ± 11 J/cm~2, irradiance = 15 W/cm~2) four days post-operatively. Results. Chitosan adhesives successfully repaired intestine tissue, achieving a repair strength of 0.50 ± 0.15 N (shear stress = 14.7 ± 4.7 KPa, n=30) at a temperature of 60-65℃. The laser caused demyelination of axons at the operated site; nevertheless, the myelinated axons retained their normal morphology proximally and distally.
机译:背景。激光组织修复通常依赖于基于血清白蛋白的半微细焊料。这些焊料具有限制其广泛使用的固有局限性,例如有限的修复强度,高溶解度,脆性和病毒传播。此外,焊料活化温度(65-70℃)会对组织产生明显的损害。在这项研究中,开发了一种新的用于组织修复的激光激活生物材料,并在体内和体外进行了测试,以克服传统焊料的某些缺点。材料和方法。壳聚糖胶粘剂的柔性和不溶性条带(表面积〜34 mm〜2,厚度〜20μm)被开发并粘结在绵羊肠上,激光通量和辐照度分别为52±2 J / cm〜2和〜15 W / cm〜 2个。使用小型热电偶测量组织和粘合剂之间的温度。修复的组织的强度通过校准的张力计测试。还将粘合剂在体内粘结到大鼠的坐骨神经上,以评估术后四天由激光引起的热损伤(通量= 65±11 J / cm〜2,辐照度= 15 W / cm〜2)。结果。壳聚糖胶粘剂成功地修复了肠道组织,在60-65℃的温度下修复强度为0.50±0.15 N(剪切应力= 14.7±4.7 KPa,n = 30)。激光使手术部位的轴突脱髓鞘;然而,髓鞘轴突在近端和远端仍保持其正常形态。

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