1.Study on Chemical Constituents from Petroleum Ether Fraction ofLiparis nervosa
Liang LIU ; Qimeng YIN ; Jia LI ; Dan TONG ; Wanjing ZHANG ; Ziqi LIU ; Zhang CHEN ; Yang HE ; Xinyu SHEN
World Science and Technology-Modernization of Traditional Chinese Medicine 2015;(9):1917-1920
This article was aimed to study the chemical constituents of the petroleum ether fraction of Liparis nervosa.Chemicalcompoundswereisolatedandpurifiedthroughvariouschromatographytechniques.The accurate structures of chemical compounds were confirmed with spectral data and literatures. The results showed that7chemicalconstituentswereisolatedfromthepetroleumetherfractionofLiparis nervosa,whichwere moscatin (1), batatasin Ⅲ (2), bergapten (3), isoimpinellin (4), xanthotoxin (5), imperatorin (6) and β-sitosterol (7). It was concluded that chemical constituents 3-7 were isolated from this genus for the first time. And chemical constituents 1-7 were isolated from this plant for the first time.
2.Analysis of drug use in community empty-nest and non-empty-nest elderly hypertension patients
Yan LI ; Shuqin CHEN ; Mei SHEN ; Yang YUAN ; Jiaoling HUANG ; Wanjing SUN ; Jiahui SHEN
Journal of Pharmaceutical Practice 2022;40(2):184-187
Objective To explore the needs of community pharmacy services in elderly hypertensive patients in the community, especially empty-nest elderly patients. Methods Elderly hypertensive patients living in Ouyang street were randomly selected and divided into empty-nest and non-empty-nest groups by cluster random sampling method. The basic information of the respondents, the frequency of hypertension monitoring, the taking of hypertensive drugs, and the taking of other drugs were compared and analyzed. Results In term of “blood pressure monitoring frequency”, the daily pressure measurement of the empty-nest group and the non-empty-nest group accounted for 33.6% and 19.3%, respectively. There was significant difference between the two groups (P<0.05).In term of “the varieties of hypertension drugs” and taking 3 kinds of hypertension drugs at the same times, the empty-nest group accounted for 28.8% and the non-empty-nest group accounted for 16.7%, and the difference between the two groups was significant (P<0.05);In term of “the varieties of drugs” and taking 1-2 kinds of Chinese patent drugs at the same time, the empty-nest group accounted for 39.6% and the non-empty-nest group accounted for 26.0% , and the difference between the two groups was significant (P<0.05)。Conclusion Community elderly patients with hypertension, especially empty-nest elderly patients have an urgent need for community pharmacy services,Community pharmacy services personnel should provide personalized and targeted medication education and guidance to elderly patients, especially empty-nest elderly patients, to promote the rational drug use in elderly patients.
3.Progress on internal exposure to typical environmental persistent organic pollutants and cancer
Xuerui MA ; Wanjing TONG ; Yijia ZHANG ; Wenjuan ZHANG ; Yong LIANG ; Maoyong SONG
Journal of Environmental and Occupational Medicine 2024;41(4):442-450
Environmental pollution is closely linked to the occurrence and development of cancer. Chemical carcinogens are the most important environmental factors causing cancer in humans. Among them, persistent organic pollutants (POPs) are characterized by their widespread distribution, persistence, and bioaccumulation. Research on the carcinogenic effects of POPs has received considerable attention in recent years. This article reviewed the internal exposure, association with cancer risk, and potential carcinogenic mechanisms of five typical classes of POPs in the environment, including polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), per- and poly-fluoroalkyl substances (PFAS), brominated flame retardants (BFRs), and short-chain chlorinated paraffins (SCCPs). These five types of POPs have distinct carcinogenic mechanisms, including interfering with cell proliferation cycle, altering epigenetic inheritance, promoting oxidative stress, altering energy metabolism, and affecting immune function. The development of cancer is the result of interaction between intrinsic genetic factors and external environmental factors. In addition to focusing on how environmental POPs affect the genetic material of organisms, it is also important to consider their effects on the tumor microenvironment, including tumor immunity and angiogenesis. Understanding these effects is crucial for guiding future efforts in pollution control and precision medicine in cancer treatment.