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激光诱导对含有吲哚菁绿的葡聚糖包被介孔胶囊进行加热。

Laser-induced heating of dextran-coated mesocapsules containing indocyanine green.

作者信息

Yaseen Mohammad A, Yu Jie, Wong Michael S, Anvari Bahman

机构信息

Department of Bioengineering, Rice University, MS-142, Houston, Texas 77251, USA.

出版信息

Biotechnol Prog. 2007 Nov-Dec;23(6):1431-40. doi: 10.1021/bp0701618. Epub 2007 Oct 3.

Abstract

Indocyanine green (ICG) is a photosensitive reagent with clinically relevant diagnostic and therapeutic applications. Recently, ICG has been investigated for its utility as an exogenous chromophore during laser-induced heating. However, ICG's effectiveness remains hindered by its molecular instability, rapid circulation kinetics, and nonspecific systemic distribution. To overcome these limitations, we have encapsulated ICG within dextran-coated mesocapsules (MCs). Our objective in this study was to explore the ability of MCs to induce thermal damage in response to laser irradiation. To simulate tumorous tissue targeted with MCs, cylindrical phantoms were prepared consisting of gelatin, intralipid emulsion, and various concentrations of MCs. The phantoms were embedded within fresh chicken breast tissue representing surrounding normal tissue. The tissue models were irradiated at lambda = 808 nm for 10 min at constant power (P = 4.2 W). Five hypodermic thermocouples were used to record the temperature at various depths below the tissue surface and transverse distances from the laser beam central axis during irradiation. Temperature profiles were processed to remove the baseline temperature and influence of light absorption by the thermocouple and subsequently used to calculate a damage index based on the Arrhenius damage integral. Tissue models containing MCs experienced a maximum temperature change of 18.5 degrees C. Damage index calculations showed that the heat generation from MCs at these parameters is sufficient to induce thermal damage, while no damage was predicted in the absence of MCs. ICG maintains its heat-generating capabilities in response to NIR laser irradiation when encapsulated within MCs. Such encapsulation provides a potentially useful methodology for laser-induced therapeutic strategies.

摘要

吲哚菁绿(ICG)是一种具有临床相关诊断和治疗应用的光敏试剂。最近,ICG作为激光诱导加热过程中的外源性发色团的效用受到了研究。然而,ICG的有效性仍然受到其分子不稳定性、快速循环动力学和非特异性全身分布的阻碍。为了克服这些限制,我们将ICG封装在葡聚糖包被的介孔胶囊(MCs)中。我们在这项研究中的目标是探索MCs响应激光照射诱导热损伤的能力。为了模拟用MCs靶向的肿瘤组织,制备了由明胶、脂质乳剂和各种浓度的MCs组成的圆柱形体模。这些体模被嵌入代表周围正常组织的新鲜鸡胸肉组织中。在波长λ = 808 nm下,以恒定功率(P = 4.2 W)对组织模型照射10分钟。使用五个皮下热电偶记录照射期间组织表面以下不同深度以及距激光束中心轴横向距离处的温度。对温度曲线进行处理以去除基线温度和热电偶光吸收的影响,随后用于基于阿伦尼乌斯损伤积分计算损伤指数。含有MCs的组织模型经历了18.5摄氏度的最大温度变化。损伤指数计算表明,在这些参数下MCs产生的热量足以诱导热损伤,而在没有MCs的情况下预计不会有损伤。当ICG封装在MCs中时,它在近红外激光照射下保持其发热能力。这种封装为激光诱导治疗策略提供了一种潜在有用的方法。

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