1.Risk of ovarian cancer in women with pelvic inflammatory disease and homologous recombination repair gene mutations under 55:a population-based cohort study
Chenzhao FENG ; Wanwan LUO ; Zanhong WANG ; Xi CAO ; Chunlin DONG ; Fuxia LI ; Rourou XIAO ; Bin YANG ; Gang CHEN ; Chaoyang SUN ; Zhiqiang HAN ; Xingjie HAO ; Beibei WANG
Journal of Gynecologic Oncology 2025;36(6):e126-
Objective:
To address the relation among pelvic inflammatory disease (PID), genetic vulnerability and ovarian cancer (OC) risk, we assessed the association between PID and OC risk, alongside the interplay with germline homologous recombination repair (gHR) mutation, utilizing the UK Biobank.
Methods:
We conducted a prospective cohort study in the UK Biobank by tracking OC incidences between individuals with and without a PID history. Identification of gHR mutations (BRCA1, BRCA2, RAD51C, RAD51D, BRIP1) carriers were accomplished through paired whole-exome sequencing data. We used Cox’s regression models to evaluate the hazard ratios (HRs) for OC risks under PID.
Results:
In the large prospective cohort study, the adjusted HR for OC in patients with PID was 1.45 (95% confidence interval [CI]=0.90, 2.32) compared with those with non-PID.Intriguingly, age-stratified analysis unveiled a positive association between PID history and OC risk in those aged under 55 years (HR=1.92; 95% CI=1.02, 3.63). Moreover, individuals aged younger than 55 years harboring both a history of PID and gHR mutations exhibited the highest risk of OC (HR=7.40; 95% CI=1.03, 53.10).
Conclusion
An association between PID and OC risk emerged, notably in the subgroup aged younger than 55 years old. Individuals with both a PID history and gHR mutations exhibited the highest risk of OC. These findings imply PID as a potential precursor for OC, underscoring the importance of early intervention, particularly in the younger population with gHR mutations.
2.Effect of carbonic anhydrase 9 on hypoxia-induced proliferation of retinal microvascular endothelial cells in preterm fetus
Xianqiong LUO ; Wanwan FAN ; Ning WANG ; Juan CHEN ; Jian MA
Chinese Journal of Neonatology 2024;39(1):38-44
Objective:We applied a hypoxia-induced model of human fetal retinal microvascular endothelial cell (RMEC) to study the effect of carbonic anhydrase 9 (CA9) on cell proliferation.Methods:The eyeballs of spontaneously aborted fetuses in Guangdong Women and Children's Hospital were obtained, and the retinas were isolated. RMEC was obtained by trypsin and collagenase two-step enzyme digestion, and endothelial cells were identified by CD34. The fetal RMEC and the purchased adult RMEC were cultured in normoxic and hypoxic incubators (1%O 2+5%CO 2+94%N 2), and the expression of CA9 was detected by qPCR and Western blot. After knocking down the CA9 by small interference RNA technique, the cell proliferation was detected by CCK-8 method, and the cell viability was detected by CCK-8 after adding CA9 inhibitor U-104. Results:The primary RMEC was extracted successfully. Immunofluorescence staining showed the percentage of CD34 positive cells in the third-generation cells was nearly 100%. The expression of CA9 mRNA in immature fetus and adult RMEC under hypoxia culture was higher than that under normoxic culture (fetal 1% O 2 group vs. fetal 21% O 2 group: 67.80±10.31 vs. 1.00±0.04, P<0.001; adult 1% O 2 group vs. adult 21% O 2 group: 1.72±0.22 vs. 1.00±0.02, P=0.014). Western blot analysis showed significantly increased expression of CA9 in the fetal RMEC exposed to hypoxia, which aligned with the expression of CA9 mRNA. When fetal RMEC was transfected with siCA9 20 nM, the knockdown rate of CA9 was 95% ( P<0.001). CCK-8 assay showed significantly lower proliferation of fetal RMEC cells in siCA9 group compared to siNC group (0.57±0.05 vs. 0.90±0.03, P<0.001), which was reflected by the OD value. With the addition of 100 μM CA9 inhibitor U-104, the viability of fetal RMEC in the treated groupwas significantly lower than that in the untreated group (99.16%±3.82% vs. 119.10% ±1.72%, P=0.002). Conclusions:The expression of CA9 differed between adult and preterm fetus in our hypoxia-induced RMEC model. Inhibiting CA9 can inhibit the proliferation of retinal microvascular endothelial cells of preterm fetus.
3.Research advance on the role of hypoxia-inducible factor-1 in oxygen-induced retinal neovascularization
Chinese Journal of Applied Clinical Pediatrics 2023;38(3):230-233
Hypoxia-inducible factor-1 (HIF-1) is an essential transcription factor, which mediates the transcription of multiple target genes to adapt the body for hypoxia.Oxygen-induced retinal neovascularization (RNV) is an important pathological process of retinopathy of prematurity (ROP). By mediating the transcription of vascular endothelial growth factors, angiopoietin and platelet-derived growth factors, HIF-1 can promote RNV and then lead to ROP.Therefore, HIF-1 plays a vital role in the pathological process of ROP.In this paper, the recent research progress on the role of HIF-1 in oxygen-induced RNV was summarized in order to further the understanding of ROP pathogenesis and treatment.
4.In-Vitro Anti-HBV Activity of Bushen Jianpi Formula
Wanwan HE ; Ni LIU ; Huiquan XIAO ; Riyong LUO ; Yutong ZHU
Journal of Guangzhou University of Traditional Chinese Medicine 2001;0(01):-
[Objective]: To study the in-vitro anti-HBV activity of Bushen Jianpi Formula (BJF). [Methods] 2.2.15 cell strain was cultured in vitro to observe the effect of BJF on its secretion of HBsAg and HBeAg. [Results] After the addition of BJF for ten days, median toxic concentration of BJF was 37.80g/L, median inhibitory concentrations of HBsAg and HBeAg were 19.05g/L and 9.55g/L, and the therapeutic index was 1.98and 3.96. [Conclusion] It is suggested that BJF has an in-vitro inhibitory effect on the secretion of HBeAg.

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