1.THE INFLUENCES OF AMMONIUM GLYCYRRHIZANATE AGON PROSTAGLANDIN(PG) AND DNA BIOSYNTHESIS IN CULTURED RAT AND HUMAN LYMPHOCYTES
Jinhong DUAN ; Jinxuan CHENG ; Jiren CHENG
Chinese Pharmacological Bulletin 1986;0(06):-
The influences of varied concentrations of AG on the 8H-TdR(3H-Thymidine ) incorporation inhibition rate and the release of PGI2 and TXA2 were studied in cultured human and rat lymphocytes . The results indicated that the AG increased the 3H-TdR incorporation inhibition rate on the concentrations of 1.5? 10-7mol/L and 3?10-7mol/L. Using the RIA method, authors find that AG on the concentrations of 4 ? 10-7mol/L, 4 ? 10-3mol/L and 4 ? 10-11mo/L can significantly decrease the cultured lymphocytes TXA2 release while has no clear influences on PGI2 release
2.Evolution and transition of source of Patrinia Herba and Patrinia Radix.
Ying-Long XIANG ; Gui-Lin MEI ; Han LUO ; Wen-Tao FANG ; Hua-Sheng PENG ; Cheng-Wu FENG ; Qing-Shan YANG ; Xiang-Yu LI ; Yan-Peng ZHANG
China Journal of Chinese Materia Medica 2017;42(13):2606-2611
Both Patrinia Herba and Patrinia Radix are traditional Chinese herbal medicines. The herbal source and medicinal part of them are confusing in the herbal medicine market of China. To explore the evolution and transition of the herbal source and medicinal part of Patrinia Herba and Patrinia Radix, this paper systematically summarizes the record of the herbal source and medicinal part of them in ancient classics of herbal medicine in China. According to the findings, before Ming Dynasty, Patrinia Herba originated from the radix of the plants with yellow flowers of Patrinia. In Ming and Qing Dynasty, Patrinia Herba originates from the whole plant (including the radix)of the plant with white flowers of Patrinia. In Ming Dynasty, Patrinia Radix, stemming from the radix of the plants with yellow flowers of Patrinia, started to be used as a traditional Chinese herbal medicine, which had the same herbal source with that of Patrinia Herba before Ming Dynasty. Therefore, Patrinia Herba and Patrinia Radix can be seen as the same traditional Chinese herbal medicine, and the genuine of Patrinia Herba should be the radix and the whole herba of P. scabiosaefolia and P. heterophylla.
3.Exploring the Pathogenesis of T2DM based on the Correlation between “Qi-fire Imbalance” and Ferroptosis
Xinhui SHEN ; Jiren AN ; Yufeng YANG ; Qingfeng WANG ; Hanwen ZHANG ; Jiaxiang YU ; Cheng ZHOU ; Hui ZHANG ; Mingdan GUAN ; Yan SHI
Journal of Tradition Chinese Medicine 2023;64(17):1759-1762
Ferroptosis is a novel iron-dependent mode of programmed cell death characterized by iron deposition and accumulation of lipid peroxidation. More and more studies have found that ferroptosis is closely related to the pathogenesis of type 2 diabetes mellitus (T2DM). The yin-fire theory is an important part of LI Gao's spleen-stomach theory, and it is believed that qi-fire imblance and yin-fire internal generation is the main pathogenesis of T2DM. Abnormal iron metabolism may be an important prerequisite for T2DM yin-fire internal generation, while oxidative stress is the specific manifestation of T2DM qi-fire imbalance. Reactive oxygen species (ROS) is the end product of qi-fire imbalance, and lipid peroxide is the pathological products of T2DM yin-fire internal generation. This study intends to explore the pathological mechanism of qi-fire imbalance and yin-fire internal generation from the perspectives of iron metabolism, oxidative stress and lipid peroxidation, enriching the modern connotation of yin-fire theory, and benefiting traditional Chinese medicine to target against ferroptosis, and prevent and treat T2DM precisely.
4.Exploring the Pathogenesis of T2DM based on the Correlation between “Qi-fire Imbalance” and Ferroptosis
Xinhui SHEN ; Jiren AN ; Yufeng YANG ; Qingfeng WANG ; Hanwen ZHANG ; Jiaxiang YU ; Cheng ZHOU ; Hui ZHANG ; Mingdan GUAN ; Yan SHI
Journal of Traditional Chinese Medicine 2023;64(17):1759-1762
Ferroptosis is a novel iron-dependent mode of programmed cell death characterized by iron deposition and accumulation of lipid peroxidation. More and more studies have found that ferroptosis is closely related to the pathogenesis of type 2 diabetes mellitus (T2DM). The yin-fire theory is an important part of LI Gao's spleen-stomach theory, and it is believed that qi-fire imblance and yin-fire internal generation is the main pathogenesis of T2DM. Abnormal iron metabolism may be an important prerequisite for T2DM yin-fire internal generation, while oxidative stress is the specific manifestation of T2DM qi-fire imbalance. Reactive oxygen species (ROS) is the end product of qi-fire imbalance, and lipid peroxide is the pathological products of T2DM yin-fire internal generation. This study intends to explore the pathological mechanism of qi-fire imbalance and yin-fire internal generation from the perspectives of iron metabolism, oxidative stress and lipid peroxidation, enriching the modern connotation of yin-fire theory, and benefiting traditional Chinese medicine to target against ferroptosis, and prevent and treat T2DM precisely.
5.Mechanism of Yitangkang in Improving Apoptosis of Skeletal Muscle Cells by Inhibiting AGE/RAGE Signaling Pathway
Jiaxiang YU ; Hanwen ZHANG ; Lie WANG ; Yan SHI ; Rui YU ; Jianyu DAI ; Chao QU ; Xiande MA ; Xueying HAN ; Zhimin WANG ; Jiren AN ; Yuefeng CHENG ; Hongkai JI ; Wenshun ZHANG
Chinese Journal of Experimental Traditional Medical Formulae 2023;29(13):54-64
ObjectiveTo determine the mechanism of Yitangkang in correcting excessive apoptosis of skeletal muscle cells to improve insulin resistance (IR) by inhibiting the advanced glycation end product (AGE)/receptor for the advanced glycation end product (RAGE) signaling pathway. Method① In vitro experiments. Yitangkang-medicated serum was prepared. C2C12 cells were divided into a blank group, a model group, high-, medium-, and low-dose Yitangkang-medicated serum groups (40, 20, and 10 g·kg-1), and a RAGE inhibitor group. The IR model was induced by palmitic acid in C2C12 cells except for those in the blank group. After the corresponding intervention methods were conducted,the cell viability and glucose consumption level of each group were determined. In addition,the apoptosis rate was determined using flow cytometry. The mRNA and protein expression levels of the important apoptotic proteins [B-cell lymphoma 2 (Bcl-2), Bcl-2-associated X protein (Bax), p53, cysteinyl aspartate-specific protease-3 (Caspase-3), and cysteinyl aspartate-specific protease-9 (Caspase-9)] were determined using Real-time fluorescence quantitative polymerase chain reaction (Real-time PCR) and Western blot. ② In vivo experiments. Ninety-six eligible Wistar rats were divided into a blank group, a model group, high-,medium-,and low-dose Yitangkang groups (40, 20, and 10 g·kg-1), and a western medicine group (pioglitazone hydrochloride,1.35 mg·kg-1). The IR model was induced using high-glucose and high-fat feed for diabetes combined with intraperitoneal injection of low-dose streptozotocin (STZ) in animals and verified by the hyperinsulinemic-euglycemic clamp (HEC) test. After the model was determined successfully, the rats in each group were given intragastric administration of drugs as required. Terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) assay was performed to determine the number of positive apoptotic cells in the skeletal muscle tissues of rats in each group,while Real-time polymerase chain reaction(Real-time PCR) and Western blot were performed to determine the mRNA and protein expression levels of the important apoptotic proteins Bcl-2, Bax, p53, Caspase-3, and Caspase-9. Result① In vitro experiments. compared with the blank group, the model groups showed increased apoptosis rate of C2C12 cells and decreased cell viability and glucose consumption (P<0.01). Compared with the model group, the Yitangkang-medicated serum groups and the RAGE inhibitor group showed decreased apoptosis rate of C2C12 cells and increased cell viability and glucose consumption (P<0.01). Compared with the blank group, the model group showed decreased expression levels of Bcl-2 mRNA and protein in C2C12 cells and increased mRNA and protein expression levels of Bax, p53, Caspase-3, and Caspase-9 (P<0.01). Compared with the model group, the Yitangkang-medicated serum groups and the RAGE inhibitor group showed increased expression levels of Bcl-2 mRNA and protein in C2C12 cells (P<0.01) and decreased mRNA and protein expression levels of Bax, p53, Caspase-3, and Caspase-9 (P<0.05, P<0.01). ② In vivo experiments. The number of positive apoptotic cells in the skeletal muscle tissues of rats in the model group significantly increased as compared with that in the blank group (P<0.01). The number of positive apoptotic cells in the skeletal muscle tissues of rats in the Yitangkang groups and the western medicine group decreased as compared with that in the model group (P<0.01). Compared with the blank group, the model group showed decreased expression levels of Bcl-2 mRNA and protein in skeletal muscle tissues of rats and increased mRNA and protein expression levels of Bax, p53, Caspase-3, and Caspase-9 (P<0.01). Compared with the model group, the Yitangkang groups and the western medicine group showed increased expression levels of Bcl-2 mRNA and protein in skeletal muscle tissues of rats (P<0.01) and decreased mRNA and protein expression levels of Bax, p53, Caspase-3, and Caspase-9 (P<0.05, P<0.01). The medium-dose Yitangkang showed a similar effect as RAGE inhibitor, and the effect was equivalent to that of pioglitazone hydrochloride. ConclusionYitangkang can inhibit skeletal muscle cell apoptosis by inhibiting the AGE/RAGE signaling pathway.