1.A new caffeate compound from Nardostachys chinensis.
Yingpeng CHEN ; Zhongping WANG ; Honghong ZHENG ; Yantong XU ; Yani ZHU ; Peng ZHANG ; Honghua WU
Acta Pharmaceutica Sinica 2016;51(1):100-4
A new caffeate compound, (E)-erythro-syringylglyceryl caffeate (1), was isolated from the roots and rhizomes of Nardostachys chinensis Batal., together with nine known phenolic compounds, including (+)-licarin A (2), naringenin 4', 7-dimethyl ether (3), pinoresinol-4-O-β-D-glucoside (4), caraphenol A (5), Z-miyabenol C (6), protocatechuic acid (7), caffeic acid (8), gallic acid (9) and vanillic acid (10). Their chemical structures were elucidated on the basis of spectroscopic data and physicochemical properties. Furthermore, this is the first report of compounds 2, 5 and 6 from Nardostachys genus.
2.Advances in the application of e-health technology in family caregivers of cancer patients
Shuanghan YU ; Wei ZHANG ; Chen ZHANG ; Mengmeng XU ; Qi TIAN ; Yantong LIU ; Minglu CAO ; Li PIAO
Chinese Journal of Nursing 2023;58(23):2936-2940
With the rapid development of the Internet,e-health technology-based interventions provide high-quality supportive care to meet the care needs of family caregivers of cancer patients,thereby improving the physical and mental health of family caregivers.This article aims to summarize the concept of e-health technology,its current applications,intervention content,and effects among family caregivers of cancer patients.Additionally,it analyzes the shortcomings in the current stage of research and applications,with the goal of providing insights for promoting the utilization of e-health technology in the context of family caregivers of cancer patients.
3.Progress in animal models of sick sinus syndrome
Ran SUN ; Guanzhen XU ; Yue LIU ; Yingying SUN ; Shuhan ZHANG ; Huiying BO ; Yantong WU ; Ping HOU
Acta Laboratorium Animalis Scientia Sinica 2024;32(9):1198-1206
Sick sinus syndrome(SSS)refers to damage to the sinoatrial node and its surrounding tissues,which leads to excitation and conduction dysfunction of the sinoatrial node,Resultsing in arrhythmia diseases.A better understanding of the pathogenesis of SSS is required to provide a basis for its treatment,including establishing an animal model that can simulate human sinus node dysfunction.In this paper,we review the animal selection,the principles and method of modeling,and the evaluation method and detection indicators of the models,to provide a basis for further studies of the pathogenesis of SSS.