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NANO-CRYOSURGERY: A BASIC WAY TO ENHANCE FREEZING TREATMENT OF TUMOR

机译:纳米冷冻蛋白:一种增强肿瘤冷冻处理的基本方法

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Cryosurgery is a minimally invasive clinical technique with controlled destruction of target tissues through a specifically administrated freezing procedure. This method has now been used in a wide variety of clinical situations such as treatment of skin cancers, glaucoma, lung and prostate tumor etc. However, there still exist many bottle necks to impede the success of a cryosurgery. A most critical factor has been that insufficient or inappropriate freezing will not completely destroy the target tumor tissues, which as a result may lead to tumor regenesis and thus failure of treatment. Meanwhile, the surrounding healthy tissues may suffer from serious freeze injury due to unavoidable release of a large amount of cold from the freezing probe. To resolve this difficulty, we proposed an innovative strategy, termed as nano-cryosurgery, to significantly improve freezing efficiency of a conventional cryosurgical procedure. The basic principle of this protocol is to inject functional solution with nano particles into the target tissues, which then serves as either to maximize the freezing heat transfer process, regulate freezing scale, modify ice-ball formation orientation or prevent the surrounding healthy tissues from being frozen. Meanwhile, introduction of nanoparticles during cryosurgery could also help better image the edge of a tumor as well as the margin of the iceball. Along this direction, several progresses have been made on mechanism interpretation, theoretical modeling, numerical prediction, conceptual experimental demonstration and treatment planning etc. in the authors' lab. This study is dedicated to present a preliminary outline on the nano-cryosurgery by summing up the aspects as mentioned above. The evident merits and shortcomings of the nano cryosurgery will be illustrated. Some potential feasibility, versatile applications and possible challenges when nanotechnology meets cryosurgery will be pointed out. It is expected that the concepts of nano-cryosurgery may suggest new opportunities for realizing a highly safe, targeted and accurate freezing therapy in future tumor clinics.
机译:冷冻胶是一种微创临床技术,通过专门给药的冻结程序控制靶组织的破坏。该方法现在已经用于各种临床局势,如治疗皮肤癌,青光眼,肺和前列腺肿瘤等,仍然存在许多瓶颈,以阻碍冷冻胶的成功。最关键的因素是,冻结不充分或不恰当不会完全破坏靶肿瘤组织,这可能导致肿瘤重新创位,从而导致治疗失败。同时,由于从冷冻探针中不可避免的释放,周围健康组织可能患有严重的冻结损伤。为了解决这个困难,我们提出了一种创新的策略,被称为纳米冷冻乳酪乳酪,以显着提高常规冷冻动作的冻结效率。该方案的基本原理是将纳米颗粒注入靶组织中的功能溶液,然后用作最大化冷冻热转移过程,调节冷冻量,修饰冰球形成取向或防止周围的健康组织存在冷冻。同时,在冷冻机期间引入纳米颗粒也可能有助于更好地呈现肿瘤的边缘以及冰球的边缘。在此方向上,作者实验室的机制解释,理论建模,数值预测,概念实验示范和治疗规划等若干进展。本研究专用于通过总结如上所述的方面来展示纳米冷冻疗法的初步轮廓。将说明纳米冷冻胸的明显优点和缺点。当纳米技术达到冷冻机构时,一些潜在的可行性,多功能应用以及可能的挑战将被指出。预计纳米冷冻手术的概念可能会暗示在未来肿瘤诊所实现高度安全,有针对性和准确的冻结治疗的新机会。

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