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Kaichuan He

Hebei General Hospital · CN
Area of research
Biochemistry · Physiology
Research interest
Research interests include Sulfur Compounds in Biology, Folate and B Vitamins Research, Adipose Tissue and Metabolism, and Hydrogen's biological and therapeutic effects.
h-index
4
citations
58
works
12
NIH funding
primary concept
email

Recent publications

Hydrogen sulfide attenuates sepsis-induced cardiac dysfunction in infant rats by inhibiting the expression of cold-inducible RNA-binding protein
Bioscience Reports 2025cited by 3position: middledoi
Canagliflozin improves high-salt-induced aortic arteriosclerosis and premature aging in dahl salt-sensitive rats through the SIRT6/HIF-1 α signaling pathway
Molecular and Cellular Biochemistry 2025cited by 1position: middledoi
Integrated analysis of the diagnostic value and mechanism of action of the senescence-associated secretory phenotype in thoracic aortic aneurysm relying on bulk RNA-Seq and scRNA-Seq
Research Square 2025cited by 0position: middledoi
H2S alleviated sepsis-induced acute kidney injury by inhibiting PERK/Bax-Bcl2 pathway
Nitric Oxide 2024cited by 8position: middledoi
Hydrogen sulfide ameliorated endothelial dysfunction in hyperhomocysteinemia rats: Mechanism of IRE1α/JNK pathway-mediated autophagy
Nitric Oxide 2024cited by 4position: middledoi
Hydrogen Sulfide Ameliorates Heart Aging by Downregulating Matrix Metalloproteinase-9
Cardiovascular Drugs and Therapy 2024cited by 4position: firstdoi
Asynchronous changes of hydrogen sulfide and its generating enzymes in most tissues with the aging process
Bioscience Reports 2024cited by 2position: firstdoi
Hydrogen Sulfide Improves Cardiac Aging by Upregulating Cartilage Oligomeric Matrix Proteins
SSRN Electronic Journal 2024cited by 0position: firstdoi
Hydrogen Sulfide Ameliorated Endothelial Dysfunction In Hyperhomocysteinemia Rats: Mechanism of Endoplasmic Reticulum Stress-Mediated Autophagy
SSRN Electronic Journal 2024cited by 0position: middledoi
Hydrogen Sulfide Alleviates Lipopolysaccharide-Induced Myocardial Injury Through TLR4-NLRP3 Pathway
Physiological Research 2023cited by 14position: middledoi
Hydrogen Sulfide Ameliorated High Choline‐Induced Cardiac Dysfunction by Inhibiting cGAS‐STING‐NLRP3 Inflammasome Pathway
Oxidative Medicine and Cellular Longevity 2022cited by 22position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Yuming Wu · Hebei Medical University8 papers (2022–2025)Hongmei Xue · Sun Yat-sen University7 papers (2022–2025)Danyang Tian · Hebei Medical University7 papers (2022–2025)Sheng Jin · Hebei Medical University6 papers (2022–2025)Xu Teng · Hebei Medical University6 papers (2022–2025)Cuixia An · Qingdao University6 papers (2024–2025)Qi Guo · Hebei Medical University4 papers (2022–2025)Chengqing Song · Fuyang City People's Hospital4 papers (2024–2024)Lin Xiao · Hebei Medical University3 papers (2022–2025)Bo Tan · Fudan University3 papers (2024–2024)Jiao Xu · Suzhou Institute of Nano-tech and Nano-bionics2 papers (2024–2024)Jing Dai · Hebei Medical University2 papers (2022–2024)Yuxuan Xia · Dalian Medical University2 papers (2022–2023)Lixia Zhang · National Institutes of Health2 papers (2024–2024)Lin Xiao · Jiangmen Central Hospital2 papers (2024–2024)Sheng Jin · East China University of Science and Technology2 papers (2024–2024)Qi Guo · Central South University2 papers (2024–2024)Lu Bai · Hebei Medical University2 papers (2022–2023)Huaxing Zhang · Hebei Medical University2 papers (2024–2024)Zihui Liang · Hebei Medical University2 papers (2024–2024)