1.Ursodeoxycholic acid inhibits the uptake of cystine through SLC7A11 and impairs de novo synthesis of glutathione.
Fu'an XIE ; Yujia NIU ; Xiaobing CHEN ; Xu KONG ; Guangting YAN ; Aobo ZHUANG ; Xi LI ; Lanlan LIAN ; Dongmei QIN ; Quan ZHANG ; Ruyi ZHANG ; Kunrong YANG ; Xiaogang XIA ; Kun CHEN ; Mengmeng XIAO ; Chunkang YANG ; Ting WU ; Ye SHEN ; Chundong YU ; Chenghua LUO ; Shu-Hai LIN ; Wengang LI
Journal of Pharmaceutical Analysis 2025;15(1):101068-101068
Ursodeoxycholic acid (UDCA) is a naturally occurring, low-toxicity, and hydrophilic bile acid (BA) in the human body that is converted by intestinal flora using primary BA. Solute carrier family 7 member 11 (SLC7A11) functions to uptake extracellular cystine in exchange for glutamate, and is highly expressed in a variety of human cancers. Retroperitoneal liposarcoma (RLPS) refers to liposarcoma originating from the retroperitoneal area. Lipidomics analysis revealed that UDCA was one of the most significantly downregulated metabolites in sera of RLPS patients compared with healthy subjects. The augmentation of UDCA concentration (≥25 μg/mL) demonstrated a suppressive effect on the proliferation of liposarcoma cells. [15N2]-cystine and [13C5]-glutamine isotope tracing revealed that UDCA impairs cystine uptake and glutathione (GSH) synthesis. Mechanistically, UDCA binds to the cystine transporter SLC7A11 to inhibit cystine uptake and impair GSH de novo synthesis, leading to reactive oxygen species (ROS) accumulation and mitochondrial oxidative damage. Furthermore, UDCA can promote the anti-cancer effects of ferroptosis inducers (Erastin, RSL3), the murine double minute 2 (MDM2) inhibitors (Nutlin 3a, RG7112), cyclin dependent kinase 4 (CDK4) inhibitor (Abemaciclib), and glutaminase inhibitor (CB839). Together, UDCA functions as a cystine exchange factor that binds to SLC7A11 for antitumor activity, and SLC7A11 is not only a new transporter for BA but also a clinically applicable target for UDCA. More importantly, in combination with other antitumor chemotherapy or physiotherapy treatments, UDCA may provide effective and promising treatment strategies for RLPS or other types of tumors in a ROS-dependent manner.
2.Drug metabolism and excretion of14Cbirociclib in Chinese male healthy subjects
Quan-Kun ZHUANG ; Hui-Rong FAN ; Shi-Qi DONG ; Bin-Ke FAN ; Ming-Ming LIU ; Ling-Mei XU ; Li WANG ; Xue-Mei LIU ; Fang HOU
The Chinese Journal of Clinical Pharmacology 2024;40(14):2118-2123
Objective To evaluate the characteristics of the mass balance and pharmacokinetics of[14 C]birociclib in Chinese male healthy volunteers after a single oral administration.Methods This study used a 14 C labeled method to investigate the mass balance and biological transformation of birociclib in human.Subjects were given a single oral dose of 360 mg/50 pCi of[14 C]birociclib suspension after meals.The blood,urine,and fecal samples were collected at specified time points/intervals after administration.The radiation levels of 14 C labeled birociclib-related compounds in the blood,plasma,urine,and feces were analyzed using liquid scintillation counting.In addition,a combination of high-performance liquid chromatography and on-line/off-line isotope detectors was used to obtain radioactive isotope metabolite spectra of plasma,urine,and fecal samples,and high-resolution mass spectrometry was used to identify the main metabolites.Results A total of 6 healthy male subjects were enrolled in this study.The median peak time of radioactive components in plasma was 5.00 h and the average terminal elimination half-life was 43.70 h after administration.The radioactive components were basically excreted and cleared from the body within 288.00 hours after administration,and average cumulative recovery rate of radioactive drugs was(94.10±8.19)%.The radioactive drugs were mainly excreted through feces,accounting for(84.60±7.10)%of the dose of radioactive drugs administered.Urine was the secondary excretory pathway,accounting for 9.41%of the dose of radioactive drugs administered.Metabolic analysis indicated that the prototype drug was the main radioactive components in plasma samples.The main metabolites in plasma were RM4(XZP-5286),RM6(XZP-3584),and RM7(XZP-5736).The drugs were mainly cleared from the body in the form of prototype drugs and metabolites.In addition to prototype drugs,a total of 9 metabolites were identified and analyzed in plasma,urine,and fecal samples,all of which were phase 1 metabolites.The main metabolic and clearance pathways of drugs in the body were deethylation,diisopropylat ion,oxidation,etc.Conclusion After a single oral administration of[14C]birociclib suspension to healthy subjects,it was mainly cleared from the body in the form of prototype drugs and metabolites,with feces as the main excretory pathway and urine as the secondary excretory pathway.Drugs mainly undergo metabolic reactions in the body,such as deethylation,diisopropylation,and oxidation.The subjects were well tolerance after administration.
3.Protective mechanism of salvianolic acid B on blood vessels.
Chun-Kun YANG ; Qing-Quan PAN ; Zhuang TIAN ; Yan-Jun DU ; Feng-Qin SUN ; Jin LU ; Jun LI
China Journal of Chinese Materia Medica 2023;48(5):1176-1185
Salvianolic acid B(Sal B) is the main water-soluble component of Salvia miltiorrhiza Bunge. Studies have found that Sal B has a good protective effect on blood vessels. Sal B can protect endothelial cells by anti-oxidative stress, inducing autophagy, inhibiting endoplasmic reticulum stress(ERS), inhibiting endothelial inflammation and adhesion molecule expression, inhibiting endothelial cell permeability, anti-thrombosis, and other ways. In addition, Sal B can alleviate endothelial cell damage caused by high glucose(HG). For vascular smooth muscle cell(VSMC), Sal B can reduce the synthesis and secretion of inflammatory factors by inhibiting cyclooxygenase. It can also play a vasodilatory role by inhibiting Ca~(2+) influx. In addition, Sal B can inhibit VSMC proliferation and migration, thereby alleviating vascular stenosis. Sal B also inhibits lipid deposition in the subendothelium, inhibits macrophage conversion to foam cells, and reduces macrophage apoptosis, thereby reducing the volume of subendothelial lipid plaques. For some atherosclerosis(AS) complications, such as peripheral artery disease(PAD), Sal B can promote angiogenesis, thereby improving ischemia. It should be pointed out that the conclusions obtained from different experiments are not completely consistent, which needs further research. In addition, previous pharmacokinetics showed that Sal B was poorly absorbed by oral administration, and it was unstable in the stomach, with a large first-pass effect in the liver. Sal B had fast distribution and metabolism in vivo and short drug action time. These affect the bioavailability and biological effects of Sal B, and the development of clinically valuable Sal B non-injectable delivery systems remains a great challenge.
Endothelial Cells
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Oxidative Stress
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Benzofurans/pharmacology*
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Lipids
4.Protective mechanism of tetramethylpyrazine on cardiovascular system.
Chun-Kun YANG ; Qing-Quan PAN ; Kui JI ; Chuan-Chao LUO ; Zhuang TIAN ; Hong-Yuan ZHOU ; Jun LI
China Journal of Chinese Materia Medica 2023;48(6):1446-1454
Tetramethylpyrazine is the main component of Ligusticum chuanxiong. Studies have found that tetramethylpyrazine has a good protective effect against cardiovascular diseases. In the heart, tetramethylpyrazine can reduce myocardial ischemia/reperfusion injury by inhibiting oxidative stress, regulating autophagy, and inhibiting cardiomyocyte apoptosis. Tetramethylpyrazine can also reduce the damage of cardiomyocytes caused by inflammation, relieve the fibrosis and hypertrophy of cardiomyocytes in infarcted myocardium, and inhibit the expansion of the cardiac cavity after myocardial infarction. In addition, tetramethylpyrazine also has a protective effect on the improvement of familial dilated cardiomyopathy. Besides, the mechanisms of tetramethylpyrazine on blood vessels are more abundant. It can inhibit endothelial cell apoptosis by reducing oxidative stress, maintain vascular endothelial function and homeostasis by inhibiting inflammation and glycocalyx degradation, and protect vascular endothelial cells by reducing iron overload. Tetramethylpyrazine also has a certain inhibitory effect on thrombosis. It can play an anti-thrombotic effect by reducing inflammatory factors and adhesion molecules, inhibiting platelet aggregation, and suppressing the expression of fibrinogen and von Willebrand factor. In addition, tetramethylpyrazine can also reduce the level of blood lipid in apolipoprotein E-deficient mice, inhibit the subcutaneous deposition of lipids, inhibit the transformation of macrophages into foam cells, and inhibit the proliferation and migration of vascular smooth muscle cells, thereby reducing the formation of atherosclerotic plaque. In combination with network pharmacology, the protective mechanism of tetramethylpyrazine on the cardiovascular system may be mainly achieved through the regulation of phosphatidylinositol 3 kinase/protein kinase B(PI3K/Akt), hypoxia-inducible factor 1(HIF-1), and mitogen-activated protein kinase(MAPK) pathways. Tetramethylpyrazine hydrochloride and sodium chloride injection has been approved for clinical application, but some adverse reactions have been found in clinical application, which need to be paid attention to.
Mice
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Animals
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Endothelial Cells/metabolism*
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Phosphatidylinositol 3-Kinases/metabolism*
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Myocardial Infarction
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Myocardium/metabolism*
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Myocytes, Cardiac
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Thrombosis
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Inflammation
;
Apoptosis
5.Qishen Taohong Granule () as Adjuvant Therapy for Improving Cardiac Function and Quality of Life in Patients with Chronic Heart Failure: A Randomized Controlled Trial.
Xing-Xing LI ; Yang WU ; Zong-Jing FAN ; Jie CUI ; Dong LI ; Quan LIN ; Rui ZHUANG ; Rong-Kun YAN ; Qian LIN ; Yan LI
Chinese journal of integrative medicine 2022;28(1):12-19
OBJECTIVE:
To confirm the improvement of cardiac function and quality of life (QOL) in patients with chronic heart failure (CHF) via Chinese medicine (CM) Qishen Taohong Granule (, QTG).
METHODS:
This study was a single-center, prospective, randomized, controlled clinical trial. Seventy-six patients from 27 to 84 years old diagnosed with CHF New York Heart Association (NYHA) class II or III in stage C were enrolled and randomly assigned at a 1:1 ratio to receive QTG or trimetazidine (TMZ), in addition to their standard medications for the treatment of CHF. The study period was 4 weeks. The primary outcomes included cardiac function evaluated by NYHA classification and left ventricular ejection fraction (LVEF), as well as QOL evaluated by CHF Integrated Chinese and Western Medicine Survival Scale (CHFQLS). The secondary outcomes included 6-min walking test (6MWT), CM syndrome score, symptom and sign scores and N-terminal pro-B-type natriuretic peptide (NT-proBNP). All indices were measured at baseline and the end of the trial.
RESULTS:
At the 4-week follow-up period, the effective rate according to NYHA classification in the QTG group was better than that in the TMZ group (74.29% vs. 54.29%, P<0.05). But there was no significant difference in post-treatment level of LVEF between the two groups (P>0.05). The CHFQLS scores improved by 13.82±6.04 vs. 7.49±2.28 in the QTG and TMZ groups, respectively (P<0.05). Subgroup analysis of the CHFQLS results showed that physiological function, role limitation and vitality were significantly higher in the QTG group than in the TMZ group (15.76±7.85 vs. 7.40±3.36, P<0.05; 16.00±8.35 vs. 10.53±4.64, P<0.05; 15.31±8.09 vs. 7.89±4.60, P<0.05). Compared with TMZ group, treatment with QTG also demonstrated superior performance with respect to 6MWT, CM syndrome, shortness of breath, fatigue, gasping, general edema and NT-proBNP level. No significant adverse reactions or adverse cardiac events occurred during treatment in either group.
CONCLUSION
In addition to conventional treatments, the use of QTG as an adjuvant therapy significantly improved cardiac function and QOL in patients with CHF class II or III in stage C. [Registration No. ChiCTR1900022036 (retrospectively registered)].
Adult
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Aged
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Aged, 80 and over
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Chronic Disease
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Double-Blind Method
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Heart Failure/drug therapy*
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Humans
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Middle Aged
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Natriuretic Peptide, Brain
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Peptide Fragments
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Prospective Studies
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Quality of Life
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Stroke Volume
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Ventricular Function, Left

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