生物技术进展 ›› 2022, Vol. 12 ›› Issue (3): 332-343.DOI: 10.19586/j.2095-2341.2022.0028
王濛(), 仪杨, 孙梦婷, 刘梓嘉, 姜雪, 马晨, 宋怡菲, 谢飞(
)
收稿日期:
2022-03-09
接受日期:
2022-04-22
出版日期:
2022-05-25
发布日期:
2022-05-26
通讯作者:
谢飞
作者简介:
王濛 E-mail:wangmeng_1995@163.com;
基金资助:
Meng WANG(), Yang YI, Mengting SUN, Zijia LIU, Xue JIANG, Chen MA, Yifei SONG, Fei XIE(
)
Received:
2022-03-09
Accepted:
2022-04-22
Online:
2022-05-25
Published:
2022-05-26
Contact:
Fei XIE
摘要:
自2007年发现吸氢可有效保护脑缺血再灌注损伤以来,氢气的生物学作用被陆续发现。富氢水或富氢生理盐水作为主要的氢气干预方式已广泛应用于基础医学和临床研究中,并且已被证实对多种疾病有很好的预防和治疗作用。以往关于富氢水或富氢生理盐水的研究多是针对其医学效应的介绍,通过介绍富氢水或富氢生理盐水干预后体内氢浓度的变化情况、对正常生理功能的影响、对疾病的保护作用以及对肠道菌群的影响,并对不同动物实验中富氢水或富氢生理盐水的氢气浓度、干预介入时间点、干预时长以及每次干预剂量进行阐述,以期为氢分子基础研究提供一定的理论依据。
中图分类号:
王濛, 仪杨, 孙梦婷, 刘梓嘉, 姜雪, 马晨, 宋怡菲, 谢飞. 富氢水和富氢生理盐水生物医学研究进展——动物实验[J]. 生物技术进展, 2022, 12(3): 332-343.
Meng WANG, Yang YI, Mengting SUN, Zijia LIU, Xue JIANG, Chen MA, Yifei SONG, Fei XIE. Biomedical Research Progress of Hydrogen⁃rich Water and Hydrogen⁃rich Saline: Animal Experiment[J]. Current Biotechnology, 2022, 12(3): 332-343.
1 | DOLE M, WISLSON F R, FIFE W P. Hyperbaric hydrogen therapy: a possible treatment for cancer[J]. Science, 1975, 190(4210): 152-154. |
2 | OHSAWA I, ISHIKAWA M, TAKAHASHI K, et al.. Hydrogen acts as a therapeutic antioxidant by selectively reducing cytotoxic oxygen radicals[J]. Nat. Med., 2007, 13(6): 688-694. |
3 | LIU C, KUROKAWA R, FUJINO M . et al .. Estimation of the hydrogen concentration in rat tissue using an airtight tube following the administration of hydrogen via various routes[J/OL]. Sci Rep., 2014, 4: 5485[2022-03-28]. . |
4 | 何晋,寻治铭,谢飞,等.长期饮用富氢水对正常大鼠生理功能的影响[J].生物技术进展,2021,11(3):353-360. |
5 | XUN Z, ZHAO Q, ZHANG Y, et al.. Effects of long-term hydrogen intervention on the physiological function of rats[J/OL]. Sci. Rep., 2020, 10: 18509[2022-03-28]. . |
6 | KAMIMURA N, NISHIMAKI K, OHSAWA I, et al.. Molecular hydrogen improves obesity and diabetes by inducing hepatic FGF21 and stimulating energy metabolism in db/db mice[J]. Obesity (Silver Spring), 2011, 19: 1396-1403. |
7 | ZONG C, SONG G, YAO S, et al.. Administration of hydrogen-saturated saline decreases plasma low-density lipoprotein cholesterol levels and improves high-density lipoprotein function in high-fat diet-fed hamsters[J]. Metabolism, 2012, 61(6): 794-800. |
8 | KAEAI D, TAKAKI A, NAKATSUKA A, et al.. Hydrogen-rich water prevents progression of non-alcoholic steatohepatitis and accompanying hepatocarcinogenesis in mice[J]. Hepatology, 2012, 56(3): 912-921 . |
9 | LIN C P, CHUANG W C, LU F J, et al.. Anti-oxidant and anti-inflammatory effects of hydrogenrich water alleviate ethanol-induced fatty liver in mice[J]. World J. Gastroenterol., 2017, 23(27): 4920-4934. |
10 | 王艺文,姜磊,徐沪济.氢对晶体关节炎动物模型治疗机制的研究[J].中华风湿病学杂志.,2014,18(12):806-809, 867. |
11 | JI Q, HUI K, ZHANG L, et al.. The effect of hydrogen-rich saline on the brain of rats with transient ischemia[J/OL]. J. Surg. Res., 2011, 168(1): e95-e101[2022-03-28]. . |
12 | CAI J, KANG Z, LIU K, et al.. Neuroprotective effects of hydrogen saline in neonal hypoxia-ischemia rat model[J]. Brain Res., 2009, 1256: 129-137. |
13 | HONG Y, SHAO A, WANG J, et al.. Neuroprotective effect of hydrogen-rich saline against neurologic damage and apoptosis in early brain injury following subarachnoid hemorrhage: possible role of the Akt/GSK3β signaling pathway[J/OL]. PLoS ONE, 2014, 9(4): e96212[2022-02-13]. . |
14 | HOU Z, LUO W, SUN X, et al.. Hydrogen-rich saline protects against oxidative damage and cognitive deficits after mild traumatic brain injury[J]. Brain Res. Bull., 2012, 88(6): 560-565. |
15 | DOHI K, KRAEMER B C, ERICKSON M A, et al.. Molecular hydrogen in drinking water protects against neurodegenerative changes induced by traumatic brain injury[J/OL]. PLoS ONE, 2014, 9(9): e108034[2022-01-02]. . |
16 | REICH S G, SAVITT J M. Parkinson's disease[J]. Med. Clin. North Am., 2019, 103(2): 337-350. |
17 | FU Y, ITO M, FUJITA Y, et al.. Molecular hydrogen is protective against 6-hydroxydopamine-induced nigrostriatal degeneration in a rat model of Parkinson's disease[J]. Neurosci. Lett., 2009, 453(2): 81-85. |
18 | FUJITA K, SEIKE T, YUTSUDO N, et al.. Hydrogen in drinking water reduces dopaminergic neuronal loss in the 1-methyl-4-phenyl- 1,2,3,6-tetrahydropyridine mouse model of Parkinson's disease[J/OL]. PLoS ONE, 2009,4(9): e7247[2022-02-16]. . |
19 | GU Y, HUANG C S, INOUE T, et al.. Drinking hydrogen water ameliorated cognitive impairment in senescence-accelerated mice[J]. J. Clin. Biochem. Nutr., 2010, 46(3): 269-276. |
20 | ZHANG Y, S U W J, CHEN Y, et al.. Effects of hydrogen-rich water on depressive-like behavior in mice[J/OL]. Sci. Rep., 2016, 6: 23742[2022-02-04]. . |
21 | PROCKOP L D, CHICHKOVA R I. Carbon monoxide intoxication: an updated review[J]. J. Neurol. Sci., 2007, 262(1-2): 122-130. |
22 | SUN Q, CAI J, ZHOU J, et al.. Hydrogen-rich saline reduces delayed neurologic sequelae in experimental carbon monoxide toxicity[J]. Crit. Care Med., 2011, 39(4): 765-769. |
23 | WANG W, LI Y, REN J, et al.. Hydrogen rich saline reduces immune-mediated brain injury in rats with acute carbon monoxide poisoning[J]. Neurol. Res., 2012, 34(10): 1007-1015. |
24 | SHAO C, WANG J, TIAN J, et al.. Coronary artery disease: from mechanism to clinical practice[J]. Adv. Exp. Med. Biol., 2020, 1177: 1-36. |
25 | OHSAWA I, NISHIMAKI K, YAMAGATA K, et al.. Consumption of hydrogen water prevents atherosclerosis in apolipoprotein E knockout mice[J]. Biochem. Biophys. Res. Commun., 2008, 377(4): 1195-1198. |
26 | SONG G, TIAN H, LIU J, et al.. H2 inhibits TNF-α-induced lectin-like oxidized LDL receptor-1 expression by inhibiting nuclear factor κB activation in endothelial cells[J]. Biotechnol. Lett., 2011, 33(9): 1715-1722. |
27 | ZHENG H, YU Y S. Chronic hydrogen-rich saline treatment attenuates vascular dysfunction in spontaneous hypertensive rats[J]. Biochem. Pharmacol., 2012, 83(9): 1269-1277. |
28 | TAKEUCHI S, NAGATANI K, OTANI N, et al.. Hydrogen improves neurological function through attenuation of blood-brain barrier disruption in spontaneously hypertensive stroke-prone rats[J/OL]. BMC Neurosci., 2015, 16: 22[2022-02-05]. . |
29 | ZHANG Y, SUN Q, HE B, et al.. Anti-inflammatory effect of hydrogen-rich saline in a rat model of regional myocardial ischemia and reperfusion[J]. Int. J. Cardiol., 2011, 148(1): 91-95. |
30 | FENG R, CAI M, WANG X, et al.. Early aerobic exercise combined with hydrogen-rich saline as preconditioning protects myocardial injury induced by acute myocardial infarction in rats[J]. Appl. Biochem. Biotechnol., 2019, 187(3): 663-676. |
31 | NING Y, SHANG Y, HUANG H, et al.. Attenuation of cigarette smoke-induced airway mucus production by hydrogen-rich saline in rats[J/OL]. PLoS ONE, 2013, 8(12): e83429[2022-01-21]. . |
32 | LIU Z, GENG W, JIANG C, et al.. Hydrogen-rich saline inhibits tobacco smoke-induced chronic obstructive pulmonary disease by alleviating airway inflammation and mucus hypersecretion in rats[J]. Exp. Biol. Med. (Maywood), 2017, 242(15): 1534-1541. |
33 | XIAO M, ZHU T, WANG T, et al.. Hydrogen-rich saline reduces airway remondeling via inactivation of NF-κB in a murine model of asthma[J]. Eur. Rev. Med. Pharmacol. Sci., 2013, 17(8): 1033-1043. |
34 | ZHAO C, YU S, LI J, et al.. Changes in IL-4 and IL-13 expression in allergic-rhinitis treated with hydrogen-rich saline in guinea-pig model[J]. Allergol. Immunopathol. (Madr)., 2017, 45(4): 350-355. |
35 | YU S, ZHAO C, CHE N, et al.. Hydrogen-rich saline attenuates eosinophil activation in a guinea pig model of allergic rhinitis via reducing oxidative stress[J/OL]. J. Inflamm. (Lond.), 2017, 14: 1[2022-01-03]. . |
36 | CHEN H, SUN Y P, LI Y, et al.. Hydrogen-rich saline ameliorates the severity of L-arginine-induced acute pancreatitis in rats[J]. Biochem. Biophys. Res. Commun., 2010, 393(2): 308-313. |
37 | REN J D, MA J, HOU J, et al.. Hydrogen-rich saline inhibits NLRP3 inflammasome activation and attenuates experimental acute pancreatitis in mice[J/OL]. Mediat. Inflamm., 2014, 2014: 930894[2022-01-23]. . |
38 | REN J, LUO Z, TIAN F, et al.. Hydrogen-rich saline reduces the oxidative stress and relieves the severity of trauma-induced acute pancreatitis in rats[J]. J. Trauma Acute Care Surg., 2012, 72(6): 1555-1561. |
39 | KASUYAMA K, TOMOFUJI T, EKUNI D, et al.. Hydrogen-rich water attenuates experimental periodontitis in a rat model[J]. J. Clin. Periodontol., 2011, 38(12): 1085-1090. |
40 | EKUNI D, TOMOFUJI T, ENDO Y, et al.. Hydrogen-rich water prevents lipid deposition in the descending aorta in a rat periodontitis model[J]. Arch. Oral. Biol., 2012, 57(12): 1615-1622. |
41 | LIU Q, SHEN W F, SUN H Y, et al.. Hydrogen-rich saline protects against liver injury in rats with obstructive jaundice[J]. Liver Int., 2010, 30(7): 958-968. |
42 | LI G M, JI M H, SUN X J, et al.. Effects of hydrogen-rich saline treatment on polymicrobial sepsis[J]. J. Surg. Res., 2013, 181(2): 279-286. |
43 | ZHOU J, CHEN Y, HUANG G Q, et al.. Hydrogen-rich saline reverses oxidative stress, cognitive impairment, and mortality in rats submitted to sepsis by cecal ligation and puncture[J]. J. Surg. Res., 2012, 178(1): 390-400. |
44 | ZHAI Y, ZHOU X, DAI Q, et al.. Hydrogen-rich saline ameliorates lung injury associated with cecal ligation and puncture-induced sepsis in rats[J]. Exp. Mol. Pathol., 2015, 98(2): 268-276. |
45 | ZHAO L, ZHOU C, ZHANG J, et al.. Hydrogen protects mice from radiation induced thymic lymphoma in BALB/c mice[J]. Int. J. Biol. Sci., 2011,7(3): 297-300. |
46 | YANG Y, LIU P Y, BAO W, et al.. Hydrogen inhibits endometrial cancer growth via a ROS/NLRP3/caspase-1/GSDMD-mediated pyroptotic pathway[J/OL]. BMC Cancer, 2020, 20(1):28[2022-02-18]. . |
47 | MEI K, ZHAO S, QIAN L, et al.. Hydrogen protects rats from dermatitis caused by local radiation[J]. J. Dermatolog. Treat., 2014, 25(2): 182-188. |
48 | ZHOU P, LIN B, WANG P, et al.. The healing effect of hydrogen-rich water on acute radiation-induced skin injury in rats[J]. J. Radiat. Res., 2019, 60(1): 17-22. |
49 | KITAMURA A, KOBAYASHI S, MATSUSHITA T, et al. Experimental verification of protective effect of hydrogen-rich water against cisplatin-induced nephrotoxicity in rats using dynamic contrast-enhanced CT[J]. Br. J. Radiol., 2010, 83(990): 509-514. |
50 | MATSUSHITA T, KUSAKABE Y, KITAMURA A, et al.. Investigation of protective effect of hydrogen-rich water against cisplatin-induced nephrotoxicity in rats using blood oxygenation level-dependent magnetic resonance imaging[J]. Jpn. J. Radiol., 2011, 29 (7): 503-512. |
51 | TERASAKI Y, SUZUKI T, TONAKI K, et al.. Molecular hydrogen attenuates gefitinib-induced exacerbation of naphthalene-evoked acute lung injury through a reduction in oxidative stress and inflammation[J]. Lab. Invest., 2019, 99(6): 793-806. |
52 | IGNACIO R M, KWAK H S, YUN Y U, et al.. The drinking effect of hydrogen water on atopic dermatitis induced by dermatophagoides farinae allergen in NC/Nga mice[J/OL]. Evid. Based Complement Alternat. Med., 2013, 2013: 538673[2022-01-08]. . |
53 | YOON Y S, SAJO M E, IGNACIO R M, et al.. Positive effects of hydrogen water on 2,4-dinitrochlorobenzene-induced atopic dermatitis in NC/Nga mice[J]. Biol. Pharm. Bull., 2014, 37(9):1480-1485. |
54 | ZHAO L, WANG Y B, QIN S R, et al.. Protective effects of hydrogen-rich saline on ischemia/reperfusion injury in rat skin flap[J]. J. Zhejiang Univ. Sci. B, 2013,14(5): 382-391. |
55 | XIAO Y D, LIU Y Q, ZHANG M Z, et al.. Synergistic effect of hyperbaric oxygen preconditioning and hydrogen-rich saline in ameliorating rat flap ischemia/reperfusion injury[J]. Plat. Aesthet. Res., 2015, 2: 332-339. |
56 | IGNACIO R M, YOON Y S, SAJO M E J, et al.. The balneotherapy effect of hydrogen reduced water on UVB-mediated skin injury in hairless mice[J]. Mol. Cell Toxicol., 2013, 9: 15-21. |
57 | GUO S X, JIN Y Y, FANG Q, et al.. Beneficial effects of hydrogen-rich saline on early burn-wound progression in rats[J/OL]. PLoS ONE, 2015, 10(4): e0124897[2022-01-21]. . |
58 | QI D, DING M, WANG T, et al.. The therapeutic effects of oral intake of hydrogen rich water on cutaneous wound healing in dogs[J/OL]. Vet. Sci., 2021, 8(11): 264[2022-04-26]. . |
59 | LI Y, SHEN C, ZHOU X, et al.. Local treatment of hydrogen-rich saline promotes wound healing in vivo by inhibiting oxidative stress vi Nrf-2/HO-1 pathway[J/OL]. Oxid. Med. Cell Longev., 2022, 2022: 2949824[2022-03-27]. . |
60 | WOLF P G, BISWAS A, MORALES S E, et al.. H2 metabolism is widespread and diverse among human colonic microbes[J]. Gut. Microbes., 2016, 7: 235-245. |
61 | CARBONERO F, BENEFIEL A C, GASKINS H R. Contributions of the microbial hydrogen economy to colonic homeostasis[J]. Nat. Rev. Gastroenterol. Hepatol., 2012, 9(9): 504-518. |
62 | ZHENG W, JI X, ZHANG Q, et al.. Intestinal microbiota ecological response to oral administrations of hydrogen-rich water and lactulose in female piglets fed a fusarium toxin-contaminated diet[J/OL]. Toxins (Basel), 2018, 10(6): 246[2022-04-26]. . |
63 | SONG L, ZHANG Y, ZHU C, et al.. Hydrogen-rich water partially alleviate inflammation, oxidative stress and intestinal flora dysbiosis in DSS-induced chronic ulcerative colitis mice[J]. Adv. Med. Sci., 2021, 67(1): 29-38. |
64 | XIAO H, LI Y, LUO D, et al.. Hydrogen-water ameliorates radiation-induced gastrointestinal toxicity via MyD88's effects on the gut microbiota[J/OL]. Exp. Mol. Med., 2018, 50(1): e433[2022-03-30].. |
65 | 仪杨,赵鹏翔,刘梦昱,等.富氢水和富氢生理盐水生物医学研究进展——临床试验[J].生物技术进展,2022,12(3):344-351. |
[1] | 刘梓嘉, 姜雪, 仪杨, 王濛, 马晨, 宋怡菲, 谢飞. 氢气与肠道菌群的关系研究进展[J]. 生物技术进展, 2022, 12(6): 847-852. |
[2] | 仪杨, 赵鹏翔, 刘梦昱, YAO Mawulikplimi Adzavon, 谢飞, 马雪梅. 富氢水和富氢生理盐水生物医学研究进展——临床试验[J]. 生物技术进展, 2022, 12(3): 344-351. |
[3] | 丁宁, 许叶, 曾玮思, 胡彦周, 洪凌宇, 黄昆仑, 贺晓云. 重组人乳铁蛋白和重组人溶菌酶对小鼠溃疡性结肠炎的改善作用研究[J]. 生物技术进展, 2022, 12(1): 120-128. |
[4] | 何晋,寻治铭,谢飞,仪杨,刘梦昱,赵鹏翔. 长期饮用富氢水对正常大鼠生理功能的影响[J]. 生物技术进展, 2021, 11(3): 353-360. |
[5] | 张晓康,仪杨,谢飞,张昭,马胜男,赵鹏翔,马雪梅. 氢气影响大鼠神经兴奋传导的研究[J]. 生物技术进展, 2020, 10(4): 393-399. |
[6] | 张昭,魏娅楠,仪杨,马胜男,张晓康,马雪梅,张鑫. 水相中氢气浓度检测方法的建立[J]. 生物技术进展, 2020, 10(2): 158-163. |
[7] | 谢亚东,解明旭,李解,王安然,杨培龙,冉超,周志刚. 无菌斑马鱼感染鲤春病毒血症病毒模型的建立[J]. 生物技术进展, 2019, 9(4): 369-374. |
[8] | 王华,王志红. 大鼠慢性束缚应激后肠道病理及其菌群变化[J]. 生物技术进展, 2017, 7(1): 52-57. |
[9] | 朱晓慧,张成岗,刘海峰,. 急性应激后大鼠胃肠道病理变化及其菌群ERIC-PCR图谱分析[J]. 生物技术进展, 2016, 6(3): 200-205. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||
版权所有 © 2021《生物技术进展》编辑部