Nedunchezhian Kavitaa, Aswath Nalini, Thiruppathy Manigandan, Thirugnanamurthy Sarumathi
Postgraduate Student, Department of Oral Medicine and Radiology, Sree Balaji Dental College and Hospital , Chennai, Tamil Nadu, India .
Professor and Head, Department of Oral Medicine and Radiology, Sree Balaji Dental College and Hospital , Chennai, Tamil Nadu, India .
J Clin Diagn Res. 2016 Dec;10(12):ZE01-ZE04. doi: 10.7860/JCDR/2016/19890.9024. Epub 2016 Dec 1.
Boron Neutron Capture Therapy (BNCT) is a radiation science which is emerging as a hopeful tool in treating cancer, by selectively concentrating boron compounds in tumour cells and then subjecting the tumour cells to epithermal neutron beam radiation. BNCT bestows upon the nuclear reaction that occurs when Boron-10, a stable isotope, is irradiated with low-energy thermal neutrons to yield α particles (Helium-4) and recoiling lithium-7 nuclei. A large number of 10 Boron (10B) atoms have to be localized on or within neoplastic cells for BNCT to be effective, and an adequate number of thermal neutrons have to be absorbed by the 10B atoms to maintain a lethal 10B (n, α) lithium-7 reaction. The most exclusive property of BNCT is that it can deposit an immense dose gradient between the tumour cells and normal cells. BNCT integrates the fundamental focusing perception of chemotherapy and the gross anatomical localization proposition of traditional radiotherapy.
硼中子俘获疗法(BNCT)是一门放射科学,正逐渐成为治疗癌症的一种有前景的工具,它通过将硼化合物选择性地集中在肿瘤细胞中,然后使肿瘤细胞接受超热中子束辐射来实现。BNCT利用了这样一种核反应:当稳定同位素硼-10受到低能热中子辐照时,会产生α粒子(氦-4)和反冲锂-7核。为使BNCT有效,大量的硼-10(¹⁰B)原子必须定位在肿瘤细胞上或细胞内,并且¹⁰B原子必须吸收足够数量的热中子,以维持致死性的¹⁰B(n,α)锂-7反应。BNCT最独特的特性是它能够在肿瘤细胞和正常细胞之间形成巨大的剂量梯度。BNCT融合了化疗的基本靶向理念和传统放疗的大体解剖定位特点。