Area of research
Pulmonary and Respiratory Medicine · Molecular Biology
Research interest
Research focused on Vascular smooth muscle and Oxidative stress, with related work in Contraction (grammar), Protein kinase B, Endocrinology. Notable publications include 'Epigallocatechin-3-Gallate Protects HUVECs from PM2.5-Induced Oxidative Stress Injury by Activating Critical Antioxidant Pathways', 'Deferoxamine ameliorated Al(mal) 3 -induced neuronal ferroptosis in adult rats by chelating brain iron to attenuate oxidative damage', and 'Relaxation of Rat Aorta by Farrerol Correlates with Potency to Reduce Intracellular Calcium of VSMCs'.
A comprehensive retrospect on the current perspectives and future prospects of pneumoconiosis
Plant‐Derived Monomers for Grey Hair Reversal Through Upregulation of Melanogenesis and Tyrosinase Activity
Predictive Value of Smoking Index Combined with NT-proBNP for Patients with Pulmonary Hypertension Due to Chronic Lung Disease: A Retrospective Study
Cognitive status and its risk factors in patients with hypertension and diabetes in a low‐income rural area of China: A cross‐sectional study
Dibazol-induced relaxation of ophthalmic artery in C57BL/6J mice is correlated with the potency to inhibit voltage-gated Ca2+ channels
Down-regulation of connexin 43 contributes to structure and function of pulmonary artery in nicotine-administered mice
Deferoxamine ameliorated Al(mal)<sub>3</sub>-induced neuronal ferroptosis in adult rats by chelating brain iron to attenuate oxidative damage
Connexins may play a critical role in cigarette smoke-induced pulmonary hypertension
The pharmacological properties and corresponding mechanisms of farrerol: a comprehensive review
Up-regulation of nPKC contributes to proliferation of mice pulmonary artery smooth muscle cells in hypoxia-induced pulmonary hypertension
α1D-adrenoceptor involves the relaxation effect of farrerol in rat aortic vascular smooth muscle cells
Research on determination of BTEX in human whole blood using purge and trap-gas chromatography-mass spectrometry combined with isotope internal standard
Farrerol Modulates Aorta Gene Expression Profile in Spontaneously Hypertensive Rats
[Vasodilation of quercetin on rat renal artery and the relationship with L-type voltage-gated Ca<sup>2+</sup> channels and protein kinase C].
PubMed 2017cited by 5position: last
Radio-protective effect of hydrogen rich water combined with amifostine in mice
Epigallocatechin-3-Gallate Protects HUVECs from PM2.5-Induced Oxidative Stress Injury by Activating Critical Antioxidant Pathways
Farrerol can attenuate the aortic lesion in spontaneously hypertensive rats via the upregulation of eNOS and reduction of NAD(P)H oxidase activity
Relaxation of Rat Aorta by Farrerol Correlates with Potency to Reduce Intracellular Calcium of VSMCs