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γ射线辐照医疗器械的红细胞沉降率研究。

ESR investigations of gamma irradiated medical devices.

作者信息

Turker N Selcan, Özer A Yekta, Çolak Şeyda, Kutlu Burak, Nohutçu Rahime

机构信息

Hacettepe University, Faculty of Pharmacy, Department of Radiopharmacy, Ankara, Turkey.

Hacettepe University, Faculty of Pharmacy, Department of Radiopharmacy, Ankara, Turkey.

出版信息

Appl Radiat Isot. 2017 Dec;130:121-130. doi: 10.1016/j.apradiso.2017.09.026. Epub 2017 Sep 21.

Abstract

Guided tissue regeneration (GTR) and guided bone regeneration (GBR) biomaterials have been employed in recent years for periodontal procedures. In the present study, widely used dental GTR/GBR biomaterials (grafts: G1, G2, G3 and membranes: M1, M2, M3, M4) were exposed to gamma irradiation at an absorbed dose range of 0-50kGy and the radiolytic intermediates that have been created in the samples upon irradiation were characterized in detail by Electron Spin Resonance (ESR) spectroscopy. We aimed to standardize the measurement conditions for practical applications of gamma radiation sterilization of GTR/GBR biomaterials. We investigated the characteristic features of free radicals in gamma irradiated GTR/GBR biomaterials and examined the stability of the induced radicals at room temperature and accelerated stability conditions with ESR spectroscopy including dose-response curves, microwave power studies, dosimetric features of the biomaterials, variations of the peak heights with temperature, and long term stabilities of the radical species. Long-term stability studies have shown that G1 is quite stable even in accelerated storage conditions. The signal intensities of graft-type GTR/GBR biomaterials stored in normal and stability conditions have decreased very rapidly even only a few days after gamma irradiation sterilization. Thus, those samples indicating relatively low stability features can be very good candidates for the radiosterilization process. The beta-tricalcium phosphate and PLGA containing G1 and M1 respectively have found to be the most gamma stable bone substitute biomaterials and be safely sterilized by gamma radiation. ESR spectroscopy is an appropriate technique in giving important detailed spectroscopic findings in the gamma radiation sterilization studies of GTR/GBR biomaterials.

摘要

引导组织再生(GTR)和引导骨再生(GBR)生物材料近年来已被用于牙周手术。在本研究中,将广泛使用的牙科GTR/GBR生物材料(移植物:G1、G2、G3和膜:M1、M2、M3、M4)暴露于0 - 50kGy吸收剂量范围内的伽马辐射,并通过电子自旋共振(ESR)光谱详细表征辐照后样品中产生的辐射分解中间体。我们旨在规范GTR/GBR生物材料伽马辐射灭菌实际应用的测量条件。我们研究了伽马辐照的GTR/GBR生物材料中自由基的特征,并通过ESR光谱检查了诱导自由基在室温及加速稳定性条件下的稳定性,包括剂量响应曲线、微波功率研究、生物材料的剂量学特征、峰高随温度的变化以及自由基种类的长期稳定性。长期稳定性研究表明,即使在加速储存条件下,G1也相当稳定。在正常和稳定条件下储存的移植物型GTR/GBR生物材料的信号强度在伽马辐照灭菌后仅几天就迅速下降。因此,那些显示出相对较低稳定性特征的样品可能是辐射灭菌过程的良好候选材料。分别含有β - 磷酸三钙和聚乳酸 - 羟基乙酸共聚物(PLGA)的G1和M1已被发现是最耐伽马辐射的骨替代生物材料,并且可以通过伽马辐射安全灭菌。ESR光谱是一种合适的技术,可在GTR/GBR生物材料的伽马辐射灭菌研究中提供重要的详细光谱学发现。

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