唐惠儒

發布時間:2021-05-06瀏覽次數:17608

教師基本信息

職稱:教授

電子郵箱:huiru_tangatfudan.edu.cn (at means @)

辦公地點:複旦生科院D105

辦公電話:021-31246725

  

個人簡介

狗万外围充值 特聘教授、國家傑出青年科學基金獲得者、英國皇家化學會會士、國家重點研發計劃項目首席。1986年獲西北輕工業學院(現陝西科技大學)學士、1994年獲倫敦大學博士學位。1992-2005年先後在英國BBSRC食品研究所、帝國理工學院生物醫學部任Senior Scientist等職。2005-2014年先後任中科院武漢物數所研究員、博導、研究部副主任、中科院生物磁共振分析重點實驗室創建主任。2014年加盟万博英超狼队网官方网 。曾任英國NHS、科技部973及蛋白質重大計劃等評審專家、J Proteome Res編委。發表NatureNat MicrobiolNat AgingCell RepCell Rep MedImmunityPNASEMBO JJ HepatolJACSAnal ChemSCI論文220餘篇,被引1.5萬餘次(H指數~70);有國內外發明專利10餘項。部分工作被ScienceNature等作為研究亮點專文評述。

現任中國生物物理學會代謝組學分會會長;中國抗癌協會腫瘤代謝分會、中國生物化學與分子生物學會脂質與脂蛋白委員會、中國營養學會基礎營養分會、中國生物物理學會自由基生物學及醫學分會等常務理事,國際實驗磁共振大會(ENC)執委(大中華地區唯一);MetabolomicsArch Pharm和《基礎醫學與臨床》等編委,Nutrition & MetabolismPhenomics等副主編。

Personal website: http://www.metabolome.cn/

 

主要研究方向 (Research Interests)

定量代謝組學技術及引用,包括定量代謝組學與脂質組學新技術體係、重要疾病發生發展和有效幹預的代謝組機製、宿主代謝與腸道菌群相互作用機製與健康。聚焦代謝物功能及代謝組學30餘年,發展了高通量超靈敏代謝組學、代謝組與轉錄組/蛋白質組/微生物組數據整合分析等技術,研究重大疾病發生發展及有效幹預的分子基礎。曾主持國家傑出青年科學基金、國家重點研發計劃、國家自然科學基金重大、973課題等項目多項。現承擔國家重點研發計劃、國家創新群體、上海市級重大專項等任務。

榮譽及獲獎情況 (Awards)

英國皇家化學會會士(2005)、國家傑出青年科學基金(2008)、新世紀百千萬人才工程國家級人選稱號(2009)、王天眷波譜學獎(2010)、武漢市優秀科技工作者(2011)、“精準醫學研究”國家重點研發計劃項目首席(2017-2020)、“生物前沿技術”國家重點研發計劃項目首席(2022-2027

代表性通訊作者論文(含共通訊; 一區)

1.         Q. Huang, et al, “A metabolome-derived score predicts metabolic dysfunction-associated steatohepatitis and mortality from liver disease”, J Hepatol,82:781-793, 2025

2.         H. Wang, et al, “Simultaneous profiling of multiple phosphorylated metabolites in typical biological matrices via ion-pair reversed-phase ultrahigh-performance liquid chromatography and mass spectrometry”, Anal Chem, 97:1681–1687, 2025.

3.         Y. Sun, et al, “Simultaneous quantification of carboxylate enantiomers in multiple human matrices with the hydrazide-assisted ultrahigh-performance liquid chromatography coupled with tandem mass spectrometry”, Anal Chem, 96:18141-18149 2024.

4.         J. Xiao, et al, “25-Hydroxycholesterol regulates lysosome AMP kinase activation and metabolic reprogramming to educate immunosuppressive macrophages”, Immunity, 57:1087–1104, 2024

5.         Z.L. Wang, et al, “Total synthesis of all stereoisomers of C5-glyceryl-methyl-20-deoxycytidine 5gmC and their occurrence in Chlamydomonas reinhardtii”, Cell Rep Phys Sci, 5:102041, 2024

6.         Y.N. Pu, et al, “Gut microbial features and circulating metabolomic signatures of frailty in older adults”, Nat Aging, 4:1249-1262,2004

7.         Q.S. Chen, et al, “A novel endogenous retention-index for minimizing retention-time variations in metabolomic analysis with reversed-phase ultrahigh-performance liquid-chromatography and mass spectrometry”, Talanta, 268:125318, 2024.

8.         J.X. Zhang, et al, “Simultaneously quantifying hundreds of acylcarnitines in multiple biological matrices within ten minutes using ultrahigh-performance liquid-chromatography and tandem mass spectrometry”, J Pharm Anal, 14:140-148, 2024.

9.         C.C. Zhang, et al, “Detecting sub-micromolar analytes in mixtures with a 5-min acquisition on 600 MHz NMR spectrometers”, J Am Chem Soc, 145:25513–25517, 2023

10.     Y.B. Feng, et al, “Anopheline mosquitoes are protected against parasite infection by tryptophan catabolism in gut microbiota”, Nat Microbiol, 7:707-715, 2022.

11.     Z.M. Hou, et al, “Inhibiting 3bHSD1 to eliminate the oncogenic effects of progesterone in prostate cancer”, Cell Rep Med, 3:100561, 2022.

12.     J.H. Liu, et al, “Simultaneous quantification of 70 elements in biofluids within 5 min using inductively coupled plasma mass spectrometry to reveal elementomic phenotypes of healthy Chinese adults”, Talanta, 238:123720, 2022

13.     M. F. Xia, et al, “Insights into contribution of genetic variants towards the susceptibility of MAFLD revealed by the NMR_based lipoprotein profiling”, J Hepatol, 74:974-977, 2021.

14.     Y. Xu, et al, “Asparagine reinforces mTORC1 signaling to boost thermogenesis and glycolysis in adipose tissues”, EMBO J. e108069, 2021.\

15.     M.F. Wang, et al, “Glucose-mediated proliferation of a gut commensal bacterium promotes Plasmodium infection by increasing mosquito midgut pH”, Cell Rep, 35:108992, 2021

16.     J.H. Xue, et al, “A vitamin-C-derived DNA modification catalysed by an algal TET homologue”, Nature, 569:581–585, 2019.

17.     H. Lin, et al, “Alterations of bile acids and gut microbiota in obesity induced by high fat diet in rat model”, J Agric Food Chem, 67:3624-3632. 2019.高被引, 年均被引>30

18.     Q.F. Wan, et al, Quantitative 13C traces of glucose fate in hepatitis B virus infected hepatocytes, Anal Chem, 89:3293–3299, 2017

19.     L. Sun, et al, cMyc-mediated activation of serine biosynthesis pathway is critical for cancer progression under nutrient deprivation conditions. Cell Res, 25:429–444, 2015.

20.     M. Li, et al, “Human symbiotic gut microbes specifically modulate metabolic phenotypes”, PNAS, 105:2117-2122, 2008.高被引, 年均被引>50


論文及引用Publication List  publons.com/researcher/2776607/huiru-tang/

www.researchgate.net/profile/Huiru-Tang/research


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