行业发展

氢气医学文献汇总G24

发布时间:2022-07-19本文来源: 氢思语

到底有多少篇氢医学研究论文,这不是一个容易回答的问题。

主要原因是,1,论文每天都在更新,这是一个动态的数值,你即使现在搞清楚了,以后仍然有可能会不准确。2、哪些属于医学研究论文,这也是个没有标准答案的问题。有一些非常重要的观点,就是只有看法,但没有具体研究证据,算不算?有更多相关研究论文综述,算不算?3、和医学相关的生物学研究,例如对微生物,真菌,甚至植物的效应。一般不认为是医学研究,但这些研究对于理解氢气的生物医学效应,了解整个领域的研究进展,都是非常重要的。

但是总结和整理氢气医学研究论文,对于全面了解氢医学研究进展,是非常重要的工作。尤其是对下游从事氢健康产品推广的企业,全面掌握这方面的信息更为重要。作为氢健康企业,本应该在这方面投入一定资源,随时整理氢医学研究文献。根据我的观察,国内很少有企业在这方面有系统性工作。日本Miz公司是这方面非常值得让人尊敬的企业,一直在这方面非常重视,不仅有自己的文献汇编,而且经常进行更新。更重要的是,他们把整理的资料在网上公布,这大大方便了大家。Miz公司的氢医学文献目录有几个突出几个特点是,1,只收录医学相关文献,只收录原始文献,3,按照疾病、使用方法、研究类型等进行了分类。

我主要参考该公司的氢医学文献目录,并对文章题目的核心含义进行中文解释,以方便大家使用。对文献按照第一作者的英文字母顺序排列给大家介绍。

 

  1. Gao L, Jiang D, Geng J, et al (2019): Hydrogen inhalation attenuated bleomycin-induced pulmonary fibrosis by inhibiting TGF-β1 and relevant oxidative stress and EMT. Exp Physiol. 2019 Sep 18. doi: 10. 1113/EPO88028. [Epub ahead of print]. 氢气吸入降低博来霉素诱导肺纤维化

  2. Gao Q, Song H, Wang XT, et al (2017): Molecular hydrogen increases resilience to stress in mice. Sci Rep., 7(1):9625. 氢气提高小鼠对应激的耐受力,66%氢气吸入预防抑郁和焦虑样行为

  3. Gao Y, Yang H, Fan Y, et al (2016): Hydrogen-rich saline attenuates cardiac and hepatic injury in doxorubicin rat model by inhibiting inflammation and apoptosis. Mediators Inflamm, 2016; 2016: 1320365. doi: 10. 1155/2016/1320365. 氢气盐水减少阿霉素诱导的心脏和肝脏损伤。

  4. Gao Y, Yang H, Chi J, et al (2017): Hydrogen Gas Attenuates Myocardial Ischemia Reperfusion Injury Independent of Postconditioning in Rats by Attenuating Endoplasmic Reticulum Stress-Induced Autophagy. Cell Physiol Biochem., 43(4):1503-1514. 氢气降低心脏缺血再灌注损伤,内质网应激诱导自噬

  5. Gao Y, Gui Q, Jin L, et al (2017): Hydrogen-rich saline attenuates hippocampus endoplasmic reticulum stress after cardiac arrest in rats. Neurosci Lett, 640: 29-36. 氢气盐水降低心脏骤停大鼠大脑海马内质网应激

  6. Gharib B, Hanna S, Abdallahi OMS, et al (2001): Anti-inflammatory properties of molecular hydrogen: investigation on parasite induced liver inflammation. C R Acad Sci III,.324: 719-724.高压8大气压氢气抗炎症作用,血吸虫诱导肝炎。2001年法国潜水医学家

  7. Ge L, Wei LH, Du CQ, et al (2017): Hydrogen-rich saline attenuates spinal cord hemisection-induced testicular injury in rats. Oncotarget. 2017 Mar 3, doi: 10. 18632/oncotarget. 15876.  氢气盐水降低脊髓半切诱导的睾丸损伤

  8. Ge P, Zhao J, Li S, et al (2012): Inhalation of hydrogen gas attenuates cognitive impairment in transient cerebral ischemia via inhibition of oxidative stress. Neurol Res. 34: 187-194.氢气吸入改善全脑缺血后认知障碍,抗氧化应激效应

  9. Ge Y, Wu F, Sun X, et al (2014): Intrathecal infusion of hydrogen-rich normal saline attenuates neuropathic pain via inhibition of activation of spinal astrocytes and microglia in rats. PLoS ONE, 9: e109482. 大鼠脊髓髓鞘内注射氢气盐水镇痛效应,对脊髓胶质细胞激活的抑制作用

  10. Ge YS, Zhang QZ, Li H, et al (2019): Hydrogen-rich saline protects against hepatic injury induced by ischemia-reperfusion and laparoscopic hepatectomy in swine. Hepatobiliary Pancreat Dis Int, 18: 48-61. 氢气盐水保护肝脏缺血再灌注损伤保护,猪肝脏部分切除实验

  11. Gokalp N, Basaklar AC, Sonmez K, et al (2016): Protective effect of hydrogen rich saline solution on experimental ovarian ischemia reperfusion model in rats. J Pediatr Surg, 2016 Oct 21. pii; S0022-3468(16)30467-5. doi: 10. 1016/j.jpedsurg. 2016.10.006. 氢气盐水对实验卵巢缺血再灌注损伤的保护作用

  12. Gong ZJ, Guan JT, Ren XZ, et al (2016): Protective effect of hydrogen on the lung of sanitation workers exposed to haze. Zhonghua Jie He He Hu Xi Za Zhi, 39: 916-923. (in Chinese). 高浓度氢吸入对暴露在雾霾中的环卫工人肺的保护作用

  13. Gu H, Yang M, Zhao X, et al (2014): Pretreatment with hydrogen-rich saline reduces the damage caused by glycerol-induced rhabdomyolysis and acute kidney injury in rats. J Surg Res, 188: 243-249. 氢气生理盐水降低横纹肌溶解急性肾损伤的保护作用

  14. Gu Y, Huang CS, Inoue T, et al (2010): Drinking hydrogen water ameliorated cognitive impairment in senescence-accelerated mice. J Clin Biochem Nutri, 46: 269-276. 氢水饮用对早衰老小鼠认知障碍的缓解作用。

  15. Guan P, Lin XM, Yang SC, et al (2018): Hydrogen gas reduces chronic intermittent hypoxia-induced hypertension by inhibiting sympathetic nerve activity and increasing vasodilator responses via the antioxidation. J Cell Biochem, 2018 Sep 27. doi: 10. 1002/jcb. 27684. 氢气降低慢性间歇性低氧诱导高血压,呼吸暂停综合征,交感神经活性和血管扩张效应研究 

  16. Guan WJ, Wei CH, Chen AL, et al (2020): Hydrogen/oxygen mixed gas inhalation improves disease severity and dyspnea in patients with Coronavirus disease 2019 in a recent multicenter, open-label clinical trial. J Thorac Dis, 12: 3448-3452. 氢氧混合器吸入改善新冠肺炎患者严重性和呼吸困难效应的临床研究

  17. Gulburun WA, Karabulut R, Turkyilmaz Z, et al (2021): Protective effects of hydrogen rich saline solution on ventral penile mathieu type flap with penile tourniquet application in rats. J Pediat Urol, 2021 Feb 4; S1477-5131(21)00077-2. doi.10.1016/j.jpurol. 2021.01.046. Online ahead of print. 氢气盐水对阴茎皮瓣抑制后损伤的保护作用,土耳其的研究

  18. Guo J, Dong W, Jin L, et al (2017): Hydrogen-rich saline prevents bone loss in diabetic rats induced by streptozotocin. Int Orthop. 41(10):2119-2128.氢气盐水对糖尿病大鼠骨质丢失的预防作用

  19. Guo JD, Li L, Shi YM, et al (2012): Hydrogen water consumption prevents osteopenia in ovariectomized rats. Br J Pharmacol, 2012 Nov 2. doi: 10. 1111/bph. 12036.氢水保护去卵巢大鼠骨质疏松

  20. Guo Q, Yin X, Giao M, et al (2018): Hydrogen-rich water ameliorates autistic-like behavioral abnormalities in valproic acid-treated adolescent mice offspring. Front Behav Neurosci, 12: 170. 氢水降低小鼠自闭症样行为

  21. Guo SX, Jin YY, Fang Q, et al (2015): Beneficial effects of hydrogen-rich saline on early burn-wound progression in rats. PLoS One. 10 (4): e0124897. 氢气盐水对深度烧伤早期进展病理生理学的改善作用

  22. Guo SX, Fang Q, You CG, et al (2015): Effects of hydrogen-rich saline on early acute kidney injury in severely burned rats by suppressing oxidative stress induced apoptosis and inflammation. J Transl Med, 13: 183. 氢气盐水对急性肾损伤,严重烧伤大鼠,炎症和凋亡

  23. Guo Z, Zhou B, Li W, et al (2012): Hydrogen-rich saline protects against ultraviolet B radiation injury in rats. J Biomed Res, 26: 365-371. 氢气盐水保护紫外线B大鼠皮肤损伤

  24. Gvozdjakova A, Kucharska J, Kura B, et al (2019): A new insight into molecular hydrogen effect on coenzyme Q and mitochondrial function of rats. Can J Physiol Pharmacol, 2019 Sep 19. doi: 10. 1139/cjpp-2019-0281. [Epub ahead of print]. 氢气对辅酶Q和线粒体功能的影响。