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Thermal breakdown properties of indocyanine green

机译:吲哚菁绿的热击穿特性

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Abstract: Because indocyanine green (ICG) dye is being used in tissue soldering, investigation of its degradation properties has become important. Studies have demonstrated the kinetics of indocyanine green degradation on light exposure. Temperature dependent changes have not been characterized. Since tissue soldering is a thermal process, we examined how absorption characteristics of aqueous ICG solutions change after heating. A 3.23 mM ICG stock solution in 2.5% human serum albumin (HSA) was prepared daily. From the stock solution, 1.5 ml samples were light shielded and heated to 100$DGR@C for intervals of up to 5.5 hours. Control samples were maintained at room temperature. After heating, samples were diluted to 16.6 $mu@M ICG with 2.5% HSA for scanning. Absorbance from 200 to 900 nm was measured using an absorbance spectrophotometer. Peak absorption intensity decreased as heating time of samples increased from 1 to 5 hours, with the first consistently detectable change occurring after 1 hour. Absorption peak was stable at 805 - 808 nm with no novel peaks and absorbance magnitude was reduced only 2% over 1 hour. Lower temperatures more commonly seen in laser welding (60 - 80$DGR@C) produced even smaller reductions in absorption intensity. Measurable thermal degradation of aqueous ICG solutions occurs at 100$DGR@C after a period of hours. Therefore, thermal degradation of ICG in the context of tissue soldering is probably insignificant.!11
机译:摘要:由于吲哚菁绿(ICG)染料被用于组织焊接,因此对其降解性能的研究变得非常重要。研究表明,在光照下吲哚菁绿降解的动力学。与温度相关的变化尚未得到表征。由于组织焊接是一个热过程,因此我们研究了加热后ICG水溶液的吸收特性如何变化。每天制备在2.5%人血清白蛋白(HSA)中的3.23 mM ICG储备溶液。从储备溶液中,将1.5 ml样品遮光,并加热至100 $ DGR @ C,间隔时间最多为5.5小时。对照样品保持在室温下。加热后,将样品稀释至含2.5%HSA的16.6μMICG进行扫描。使用吸光度分光光度计测量200至900 nm的吸光度。峰吸收强度随样品加热时间从1小时增加到5小时而降低,第一个始终可检测到的变化在1小时后发生。吸收峰在805-808 nm处稳定,没有新的峰,并且吸光度在1小时内仅降低了2%。较低的温度在激光焊接中更常见(60-80 $ DGR @ C),吸收强度的降低幅度甚至更小。数小时后,ICG水溶液的可测量热降解在100 $ DGR @ C下发生。因此,在组织焊接的情况下,ICG的热降解可能微不足道。11

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