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ICG-Doped Albumin Protein Solders for Improved Tissue Repair

机译:ICG掺杂白蛋白蛋白焊料,用于改善组织修复

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An in vitro study was performed using an 808nm-diode laser in conjunction with indocyanine green (ICG) - doped albumin protein solders to repair bovine aorta specimens. Investigations were conducted to determine optimal solder and laser parameters for tissue repair in terms of tensile strength, temperature rise and damage and the microscopic nature of the bond formed. Liquid and solid protein solders prepared from 25% and 60% bovine serum albumin (BSA), respectively, were compared. The tensile strengths of the repairs were greatly improved with an increase in BSA concentration from 25% to 60% and a reduction in ICG dye concentration from 2.5 mg/ml to 0.25 mg/ml. Increasing the laser irradiance and thus surface temperature resulted in an increased severity of histological injury. Thermal denaturation of the tissue substrate increased laterally and in depth with higher temperatures. Optimal repairs in terms of bond strength and thermal damage were achieved by denaturing a solid protein solder composed of 60% BSA and 0.25mg/ml ICG with an irradiance of 6.4 W/cm~2. Using this combination of solder and laser parameters, surface temperatures were observed to reach 85 ± 5 °C with an average temperature difference across the solder strips of 15 °C across a thickness of 150 μm. Histological examination of the repairs formed using these parameters showed negligible evidence of collateral thermal damage to the underlying tissue. Scanning electron microscopy suggested albumin intertwining within the tissue collagen matrix and subsequent fusion with the collagen as the mechanism for laser tissue soldering.
机译:使用808nm-二极管激光与吲哚菁绿(ICG)掺杂白蛋白蛋白焊料结合进行体外研究,以修复牛主动脉标本。进行研究以确定在拉伸强度,温度升高和损伤方面进行组织修复的最佳焊料和激光参数,并且形成的粘合剂的微观性质。比较了从25%和60%牛血清白蛋白(BSA)制备的液体和固体蛋白质焊料。大大提高了维修的拉伸强度,随着25%〜60%的BSA浓度增加,ICG染料浓度的降低从2.5mg / ml至0.25mg / ml。增加激光辐照度,因此表面温度导致组织学损伤的严重程度增加。组织基质的热变性横向增加,深度较高。通过使由60%BSA和0.25mg / ml ICG组成的固体蛋白质焊料来实现粘合强度和热损伤方面的最佳修复,其具有6.4W / cm〜2的辐照度。使用这种焊料和激光参数的组合,观察到表面温度达到85±5℃,在15°C的焊料条上占150μm的焊条中的平均温度差。使用这些参数形成的维修的组织学检查显示出可忽略的抵押品损伤对底层组织的证据。扫描电子显微镜表明白蛋白在组织胶原基质内交织在组织胶原基质中,随后与胶原蛋白的融合作为激光组织焊接的机理。

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