Page 127 - 中国全科医学2022-18
P. 127
·2300· http://www.chinagp.net E-mail:zgqkyx@chinagp.net.cn
obesity and intestinal microbiota:advances in research[J]. issn.0577-7402.2021.09.04.
Chinese Journal of Microecology,2019,31(8):969-975,993. [15]BARTOLOMAEUS H,BALOGH A,YAKOUB M,et al. Short-
DOI:10.13381/j.cnki.cjm.201908024. chain fatty acid propionate protects from hypertensive cardiovascular
[3]中国高血压防治指南修订委员会,高血压联盟(中国),中华 damage[J]. Circulation,2019,139(11):1407-1421.
医学会心血管病学分会,等 . 中国高血压防治指南(2018 年修 DOI:10.1161/CIRCULATIONAHA.118.036652.
订版)[J]. 中国心血管杂志,2019,24(1):24-56. DOI: [16]XING J L,WANG G,ZHANG Q X,et al. Determining antioxidant
10.3969/j.issn.1007-5410.2019.01.002. activities of lactobacilli cell-free supernatants by cellular antioxidant
[4]朱玮,范荆阳,薛庆节,等 . 人体肠道菌群与高血压的研究 assay:a comparison with traditional methods[J]. PLoS One,
进 展[J]. 中 国 微 生 态 学 杂 志,2021,33(9):1109-1112. 2015,10(3):e0119058. DOI:10.1371/journal.pone.0119058.
DOI:10.13381/j.cnki.cjm.202109025. [17]AGUS A,DENIZOT J,THÉVENOT J,et al. Western diet
ZHU W,FAN J Y,XUE Q J,et al. Human intestinal flora induces a shift in microbiota composition enhancing susceptibility to
and hypertension:research progress[J]. Chinese Journal of Adherent-Invasive E.coli infection and intestinal inflammation[J].
Microecology,2021,33(9):1109-1112. DOI:10.13381/j. Sci Rep,2016,6:19032. DOI:10.1038/srep19032.
cnki.cjm.202109025. [18]吴箴言,刘美君,谭林琳,等 . 氧化三甲胺与心血管疾病研
[5]周丹,黄雨晴,余雪菊,等 . 肠道菌群与心血管病关系的研究 究进展[J]. 中国实验诊断学,2020,24(11):1916-1919.
进展[J]. 中华高血压杂志,2018,26(5):417-423. DOI: DOI:10.3969/j.issn.1007-4287.2020.11.048.
10.16439/j.cnki.1673-7245.2018.05.005. [19]SHEN X Z,LI Y,LI L,et al. Microglia participate in neurogenic
regulation of hypertension[J]. Hypertension,2015,66(2):
[6]VAN HECKE T,DE VRIEZE J,BOON N,et al. Combined
309-316. DOI:10.1161/HYPERTENSIONAHA.115.05333.
consumption of beef-based cooked mince and sucrose stimulates
[20]YANG T,RICHARDS E M,PEPINE C J,et al. The gut
oxidative stress,cardiac hypertrophy,and colonic outgrowth of
microbiota and the brain-gut-kidney axis in hypertension and
Desulfovibrionaceae in rats[J]. Mol Nutr Food Res,2019,63(2):
chronic kidney disease[J]. Nat Rev Nephrol,2018,14(7):
e1800962. DOI:10.1002/mnfr.201800962.
442-456. DOI:10.1038/s41581-018-0018-2.
[7]LI J,ZHAO F Q,WANG Y D,et al. Gut microbiota dysbiosis
[21]BROWN J M,HAZEN S L. Microbial modulation of cardiovascular
contributes to the development of hypertension[J]. Microbiome,
disease[J]. Nat Rev Microbiol,2018,16(3):171-181.
2017,5(1):14. DOI:10.1186/s40168-016-0222-x.
DOI:10.1038/nrmicro.2017.149.
[8]YANG T,SANTISTEBAN M M,RODRIGUEZ V,et al. Gut
[22]NATARAJAN N,HORI D,FLAVAHAN S,et al. Microbial short
dysbiosis is linked to hypertension[J]. Hypertension,2015,65(6):
chain fatty acid metabolites lower blood pressure via endothelial G
1331-1340. DOI:10.1161/HYPERTENSIONAHA.115.05315.
protein-coupled receptor 41[J]. Physiol Genomics,2016,48
[9]WALEJKO J M,KIM S,GOEL R,et al. Gut microbiota and serum
(11):826-834. DOI:10.1152/physiolgenomics.00089.2016.
metabolite differences in African Americans and White Americans
[23]HSU C N,HOU C Y,CHAN J Y H,et al. Hypertension
with high blood pressure[J]. Int J Cardiol,2018,271:336-339.
programmed by perinatal high-fat diet:effect of maternal gut
DOI:10.1016/j.ijcard.2018.04.074.
microbiota-targeted therapy[J]. Nutrients,2019,11(12):
[10]张维忠 . 高血压治疗研究的回顾与展望[J]. 中华心血管病
E2908. DOI:10.3390/nu11122908.
杂 志,2000,28 (3):167. DOI:10.3760/j:issn:0253-
[24]ZUBCEVIC J,RICHARDS E M,YANG T,et al.
3758.2000.03.002.
Impaired autonomic nervous system-microbiome circuit in
[11]ZHERNAKOVA A,KURILSHIKOV A,BONDER M J,et al.
hypertension[J]. Circ Res,2019,125(1):104-116. DOI:
Population-based metagenomics analysis reveals markers for gut
10.1161/CIRCRESAHA.119.313965.
microbiome composition and diversity[J]. Science,2016,352
[25]陈彦豪,赵先英 . 内源性硫化氢与心血管疾病的研究进展[J].
(6285):565-569. DOI:10.1126/science.aad3369.
河 北 医 药,2018,40(15):2365-2367. DOI:10.3969/j.
[12]MADHUR M S,LOB H E,MCCANN L A,et al. Interleukin issn.1002-7386.2018.15.034.
17 promotes angiotensin Ⅱ -induced hypertension and vascular CHEN Y H,ZHAO X Y. Research Progress in the relationship
dysfunction[J]. Hypertension,2010,55(2):500-507. between the endogenous hydrogen sulfide and cardiovascular
DOI:10.1161/HYPERTENSIONAHA.109.145094. diseases[J]. Hebei Medical Journal,2018,40(15):2365-
[13]KNAUF F,BREWER J R,FLAVELL R A. Immunity,microbiota 2367. DOI:10.3969/j.issn.1002-7386.2018.15.034.
and kidney disease[J]. Nat Rev Nephrol,2019,15(5): [26]阮亮亮,李金蓉 . 血液中氧化三甲胺与相关疾病及检测方法[J].
263-274. DOI:10.1038/s41581-019-0118-7. 生 命 的 化 学,2021,41(2):339-343. DOI:10.13488/j.
[14]喻静,彭红英 . 肠道菌群介导的免疫反应与高血压和慢性肾脏 smhx.20200471.
病的关系研究进展[J]. 解放军医学杂志,2021,46(9): RUAN L L,LI J R. Research progress of TMAO in blood with
865-870. DOI:10.11855/j.issn.0577-7402.2021.09.04. related diseases and measurement methods[J]. Chemistry
YU J,PENG H Y. Research progress on the relationship of of Life,2021,41(2):339-343. DOI:10.13488/j.
intestinal flora-mediated immune response to hypertension and smhx.20200471.
chronic kidney disease[J]. Medical Journal of Chinese People's [27]JIANG S,SHUI Y J,CUI Y,et al. Gut microbiota dependent
Liberation Army,2021,46(9):865-870. DOI:10.11855/j. trimethylamine N-oxide aggravates angiotensin II-induced