The potential use of biogas producing microorganisms in radiation protection

Hamid Abdollahi , Mohammadreza Atashzar , Maryam Amini
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引用次数: 8

Abstract

Radiation induced injury is a limiting factor in radiation related approaches from earth to space. Inductions of a wide spectrum of damages in radiotherapy patients due to unwanted normal tissues irradiation and space radiation related diseases in astronauts have been caused many limitations in cancer treatment and space missions. There are many radiation protection/mitigation approaches including: physical, chemical, biological and physiological methods. Radiation protection using these methods is expensive and also has many problems including acute toxicities and difficulties in their targeting to normal tissues. Based on experimental and hypothetical data, showing that medical/biological gases have many protective effects such as antioxidant, anti-inflammatory, anti-apoptotic, and induction of radioresistance, we hypothesize that similar gases which have been produced by microorganisms (biogases) have those properties and may be used as radiation mitigators/protectors in radiation related approaches such as radiotherapy, radiation accidents and in space missions. Isolation microorganism in safe laboratory conditions in enough amounts, finding non-toxic dose of microorganisms that provide highest radioprotection percent, dose reduction factor (DRF) calculation to compare the radioprotective efficacy of the microorganisms, finding the best targeting techniques to deliver those microorganisms into normal tissues, genetically manipulations of microorganism to achieve the highest amount of biogases with lowest side effects can be done for testing the hypothesis.

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产气微生物在辐射防护中的潜在应用
在从地球到空间的辐射相关方法中,辐射引起的损伤是一个限制因素。由于不必要的正常组织照射和宇航员的空间辐射相关疾病对放射治疗患者造成广泛的损伤,这在癌症治疗和空间任务中造成了许多限制。有许多辐射防护/减缓方法,包括:物理、化学、生物和生理方法。使用这些方法进行辐射防护是昂贵的,并且存在许多问题,包括急性毒性和难以靶向正常组织。根据实验和假设数据,医疗/生物气体具有许多保护作用,如抗氧化、抗炎、抗凋亡和诱导辐射抗性,我们假设微生物(生物气体)产生的类似气体具有这些特性,并可在放射治疗、辐射事故和空间任务等与辐射有关的方法中用作辐射缓解剂/保护剂。在安全的实验室条件下分离足够数量的微生物,找到提供最高辐射防护百分比的微生物的无毒剂量,计算剂量减少因子(DRF)以比较微生物的辐射防护功效,找到将这些微生物送入正常组织的最佳靶向技术;可以对微生物进行基因操作,以获得最多的沼气量和最低的副作用,以检验这一假设。
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