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体外治疗骨肉瘤后辐射诱导的人骨成分变化。

Irradiation-Induced Compositional Effects on Human Bone After Extracorporeal Therapy for Bone Sarcoma.

机构信息

Applied Mechanics, Indian Institute of Technology, Delhi, India.

Mechanical Engineering, GBPUAT, Pant Nagar, India.

出版信息

Calcif Tissue Int. 2018 Aug;103(2):175-188. doi: 10.1007/s00223-018-0408-2. Epub 2018 Mar 2.

Abstract

The present study investigates Raman scattering of human bone irradiated with 50 Gy single dose during therapeutic treatment of Ewing and Osteosarcoma. Bone quality was evaluated via mineral-to-matrix ratio, degree of crystallinity, change in amount of calcium, and carbonate substitution. Alteration in collagen and its cross-links was quantified through second-derivative deconvolution of Amide I peak. A dose of 50 Gy radiation leads to almost 50% loss of mineral content, while maintaining mineral crystallinity, and small changes in carbonate substitution. Deconvolution of Amide I suggested modifications in collagen structure via increase in amount of enzymatic trivalent cross-linking (p < 0.05). Overall irradiation led to detrimental effect on bone quality via changes in its composition, consequently reducing its elastic modulus with increased plasticity. The study thus quantifies effect of single-dose 50 Gy radiation on human bone, which in turn is necessary for designing improved radiation dosage during ECRT and for better understanding post-operative care.

摘要

本研究调查了在对尤文肉瘤和骨肉瘤进行治疗性治疗时,单次 50Gy 剂量照射的人骨的喇曼散射。通过矿化基质比、结晶度、钙量变化和碳酸盐取代来评估骨质量。通过酰胺 I 峰的二阶导数解卷积来定量评估胶原及其交联的变化。50Gy 的辐射剂量会导致矿物质含量几乎损失 50%,而矿物质结晶度和碳酸盐取代的变化很小。酰胺 I 的解卷积表明,通过增加酶三价交联的量,胶原蛋白结构发生了变化(p<0.05)。总的来说,辐射通过改变其组成对骨质量产生了不利影响,从而降低了其弹性模量,增加了其塑性。因此,该研究定量评估了单次 50Gy 辐射对人骨的影响,这对于设计 ECRT 期间的改进辐射剂量以及更好地理解术后护理是必要的。

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