1.A study on the application of predictive extracorporeal membrane oxygenation intraoperative support in high-risk liver transplant recipients
Zhiying LEI ; Xuyong SUN ; Yuanyuan MO ; Jianhui DONG ; Ning WEN ; Rong PENG ; Juhua ZENG ; Silin LI
Organ Transplantation 2026;17(4):618-624
Objective To investigate the clinical safety and efficacy of predictive extracorporeal membrane oxygenation (ECMO) support during liver transplantation in high-risk recipients. Methods A single-center retrospective study was conducted. A total of 35 liver transplant recipients who underwent predictive ECMO assistance during surgery at the Second Affiliated Hospital of Guangxi Medical University from January 2021 to April 2025 were included. Baseline characteristics, ECMO application, ECMO operating parameters and hemodynamic conditions during ECMO operation were analyzed. The cumulative survival rate was calculated using the Kaplan-Meier method and survival curves were plotted. Results Veno-arterial ECMO in 35 recipients was established after induction of general anesthesia. The median ECMO operation time was 8.5 h, and the success rate of weaning from ECMO was 97%. The cardiac index (CI) during the non-liver period and the new liver period was higher than that before cannulation, and CI increased during the non-liver period and before weaning (all P<0.001). The mean invasive arterial pressure and central venous pressure remained stable. No ECMO-related complications occurred in the recipients. The average survival time was (25 ± 3) months. The main causes of death were severe pulmonary infection and multiple organ failure. Conclusions For liver transplant recipients with severe cardiopulmonary dysfunction, hemodynamic disorders, or multiple organ failure risk factors, implementing predictive ECMO support during liver transplantation through active risk prediction is a safe and effective circulatory guarantee strategy.
2.Effects of soybean isoflavones on the reproductive development of young mice
Wenda XU ; Silin DONG ; Han ZHANG ; Yinglin SONG ; Jingyi CHI ; Zhenjun ZHAO ; Hui SHI
China Pharmacy 2024;35(6):678-682
OBJECTIVE To investigate the effects of soybean isoflavones (SI) on the reproductive development of young mice. METHODS C57BL/6 young mice were randomly divided into control group, SI low-dose and high-dose groups (10, 100 mg/kg), with 10 mice in each group (half male and half female). The young mice in each group were given corresponding liquid intragastrically, once a day, for 2 consecutive weeks. After the last administration, the percentage of body weight increase was calculated; serum estradiol and testosterone levels, malondialdehyde (MDA) content, total antioxidant capacity (T-AOC), superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) activities in the reproductive organs of the young mice were determined. The histopathological changes in the reproductive organs were observed. The cell apoptosis of reproductive organs was detected. RESULTS Compared with the control group, the percentage of body weight increase in female mice was increased significantly in the SI high-dose group, while that of male mice was decreased significantly (P<0.05 or P<0.01). Cystic follicles could be seen in the ovarian tissue in SI groups, a loose arrangement of spermatocytes could be seen in the testicular tissue, and partial epithelial cell shedding could be seen in epididymal tissue. The serum level of testosterone in female young mice and the serum levels of testosterone and estradiol in male young mice in SI groups, GSH-Px activity in the ovarian tissue of female young mice in the SI low-dose group, T-AOC activities in the ovarian tissue of female young mice in SI groups as well as the apoptotic rates of cells in testicular and epididymal tissue of male young mice in SI groups were increased significantly (P<0.05 or P< 0.01); the serum level of estradiol in female young mice in SI groups, SOD activity in the ovarian tissue of female young mice in the SI high-dose group, and MDA contents in the ovarian tissue of female young mice in SI groups as well as the apoptotic rates of cells in ovarian tissue of female mice in SI groups were decreased significantly (P<0.05 or P<0.01). CONCLUSIONS SI can enhance the antioxidant stress capacity of ovarian tissue in female young mice and reduce their oxidative stress damage, but it has certain toxicity to reproductive organs in male mice.

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