1.Terms Related to The Study of Biomacromolecular Condensates
Ke RUAN ; Xiao-Feng FANG ; Dan LI ; Pi-Long LI ; Yi LIN ; Zheng WANG ; Yun-Yu SHI ; Ming-Jie ZHANG ; Hong ZHANG ; Cong LIU
Progress in Biochemistry and Biophysics 2025;52(4):1027-1035
Biomolecular condensates are formed through phase separation of biomacromolecules such as proteins and RNAs. These condensates exhibit liquid-like properties that can futher transition into more stable material states. They form complex internal structures via multivalent weak interactions, enabling precise spatiotemporal regulations. However, the use of inconsistent and non-standardized terminology has become increasingly problematic, hindering academic exchange and the dissemination of scientific knowledge. Therefore, it is necessary to discuss the terminology related to biomolecular condensates in order to clarify concepts, promote interdisciplinary cooperation, enhance research efficiency, and support the healthy development of this field.
2.Preparation and preliminary application of the polyclonal antibody against Toxoplasma gondii dense granule protein 24
Shengnan FU ; Yun YANG ; Cong WANG ; Qingli LUO ; Li YU
Chinese Journal of Schistosomiasis Control 2024;36(3):279-285
Objective To prepare and characterize the mouse polyclonal antibody against the dense granule protein 24 (GRA24) of Toxoplasma gondii, and explore its preliminary applications. Methods The GRA24 coding sequences of different T. gondii strains were aligned using the MEGA-X software, and the dominant peptide of the GRA24 protein was analyzed with the Protean software. The base sequence encoding this peptide was amplified using PCR assay and ligated into the pET-28a vector, and the generated GRA24 truncated protein was transformed into Escherichia coli BL21. After induction by isopropyl-beta-D-thiogalactopyranoside (IPTG), the expression and purification of the recombinant GRA24 protein was analyzed using sodium dodecyl sulfate - polyacrylamide gel electrophoresis (SDS-PAGE). BALB/c mice were immunized by subcutaneous injection with the purified recombinant GRA24 truncated protein to generate the polyclonal antibody, and the titer of the polyclonal antibody was measured using enzyme linked immunosorbent assay (ELISA). The specificity of the polyclonal antibody was tested using Western blotting, and the intracellular localization of the polyclonal antibody was investigated using immunofluorescence assay (IFA). Results SDS-PAGE showed successful construction of the recombinant expression plasmid, and Coomassie brilliant blue staining showed the generation of the high-purity recombinant GRA24 truncated protein. ELISA measured that the titer of the polyclonal antibody against the GRA24 truncated protein was higher than 1:208 400, and Western blotting showed that the polyclonal antibody was effective to recognize the endogenous GRA24 proteins of different T. gondii strains and specifically recognize the recombinant GRA24 truncated protein. Indirect IFA showed that the GRA24 protein secreted 16 hour following T. gondii invasion in host cells. Conclusions The polyclonal antibody against the T. gondii GRA24 protein has been successfully prepared, which has a widespread applicability, high titers and a high specificity. This polyclonal antibody is available for Western blotting and IFA, which provides the basis for investigating the function of the GRA24 protein.
3.Clinical application of vaginoscopy technology in the diagnosis and treatment of uterine cavity diseases in women with asexual life history
Ting-Ting SU ; Hong-Wei ZHANG ; Qing WANG ; Feng XIE ; Qing CONG ; Yan-Yun LI ; Long SUI ; Li-Mei CHEN
Fudan University Journal of Medical Sciences 2024;51(5):772-777
Objective To explore the clinical value of vaginoscopy in the diagnosis and treatment of uterine cavity diseases in virgins.Methods We retrospectively reviewed the data of 450 patients who underwent vaginoscopy and traditional hysteroscopy in Obstetrics and Gynecology Hospital,Fudan University from Jan 2020 to Dec 2023,including vaginoscopy group(n=232)and traditional hysteroscopy group(n=218).The average ages of the two groups were 24.9±4.7 years and 25.5±5.4 years,and there was no significant difference between the two groups(P>0.05).The operation time,estimated blood loss,fluid deficit,false passage,surgical failure,incidence of complications and postoperative pain score were compared between vaginoscopy group and traditional hysteroscopy group.Results Compared with the traditional hysteroscopy group,the average operation time in the vaginoscopy group was shorter,the fluid deficit was less,and the VAS pain score was lower,but the rate of surgical failure was higher(7.8%vs.0),all the differences were statistically significant(P<0.05).In terms of complications,the incidence of false passage in the vaginoscopy group was less(0 vs.3.2%)and the rate of hymen injury was lower(0 vs.85.3%),the differences were statistically significant(P<0.05).There was no significant difference in the estimated blood loss between the two groups,and the incidence of postoperative infection was similar in both groups.There were no complications such as uterine perforation and air embolism in both groups.Conclusion Vaginoscopy is safe and effective,more minimally invasive than traditional hysteroscopy,does not damage the hymen,and is suitable for virgins.This technology is worthy of clinical application.
4.Quercetin alleviates podocyte injury by inhibiting inflammation and pyroptosis through SIRT1/STAT3/GSDME
Jie-Qiong WANG ; Ge LI ; Shao-Hua WANG ; Yu WAN ; Yun LIU ; Cong-Gai HUANG ; Qu-Lian GUO ; Fang-Fang ZHONG
Chinese Pharmacological Bulletin 2024;40(7):1279-1287
Aim To investigate the effect of quercetin(Que)on podocyte inflammatory injury and the under-lying mechanism.Methods MPC5 cells were divided into normal glucose group(NG),mannitol group(MA),high glucose group(HG)and high glucose+quercetin group(HG+Que).Cell proliferation and apoptosis were detected by CCK-8 and flow cytometry.The expression of SIRT1,STAT3,apoptosis-related proteins(Bax,Bcl-2,caspase-3)and pyroptosis pro-tein GSDME was detected by Western blot.The ex-pression levels of inflammatory factors(IL-6,TNF-α,IL-18,IL-1β)in cell supernatants were detected by ELISA.Then small interfering RNA technology was used to knockdown SIRT1 expression.To further eval-uate the biological significance of SIRT1 in response to high glucose and Que treatment,negative control group(HG+si-NC+Que)and SIRT1 interference group(HG+si-SIRT1+Que)were added in the presence of high glucose and Que.Results Compared with the high glucose group,40 μmol·L-1 Que could alleviate the apoptosis of MPC5 cells induced by high glucose,decrease the expression of apoptosis related protein Bax and caspase-3,as well as increase the expression of anti-apoptotic protein Bcl-2;ELISA results showed that Que could decrease the expression of TNF-α,IL-6,IL-1 β and IL-18 induced by high glucose.Mechanical-ly,Que could alleviate the inhibitory effect of high glu-cose on the expression of SIRT1,and further decrease the activation of STAT3 and N-GSDME,and inhibit pyroptosis.Compared with the si-NC group,si-SIRT1 group could reverse the protective effect of Que on the high glucose induced inflammatory damage of podo-cytes,the expression of apoptotic proteins Bax and caspase-3 increased,while the expression of anti-apop-totic protein Bcl-2 decreased.At the same time,the levels of inflammatory cytokines TNF-α,IL-6,IL-1 βand IL-18 in supernatants increased,and the expres-sion of STAT3 and N-GSDME increased.Conclusion Que could inhibit pyroptosis and relieve the inflam-matory damage of podocytes through SIRT1/STAT3/GSDME pathway.
5.Study on the effects of thermotherapy combined with gemcitabine on the biological behavior of tongue squamous cell carcinoma cells
Yun SHAO ; Yuan CONG ; Shouyi LI ; Wei WANG ; Yuying YANG ; Xuexiao ZHOU ; Shengzhi WANG ; Yuli HAO
Chinese Journal of Radiation Oncology 2024;33(9):853-858
Objective:To explore the impacts of thermotherapy combined with gemcitabine on the biological behavior of tongue squamous cell carcinoma cells.Methods:Human tongue squamous cell carcinoma Tca8113 cells were divided into the control group (blank control), gemcitabine group, thermotherapy group (heated in an incubator at 43℃ for 1 h and then incubated at 37℃ for 24 h) and thermotherapy + gemcitabine group. The proliferation ability of Tca8113 cells was assessed by EdU staining and CCK-8 assay. Cell apoptosis and cell cycle of Tca8113 cells were detected by flow cytometry. The invasion of Tca8113 cells was determined by Transwell chamber assay. The expression levels of cyclin D1 (CyclinD1), Bcl-2-associated X protein (Bax), matrix metalloproteinase (MMP)-9, phosphorylated histone H2AX (γH2AX) and Nijmegen breakage syndrome 1 (NBS1) proteins in Tca8113 cells were measured by Western blot. The changes of tumor mass and volume were detected by xenograft tumor in vivo test in nude mice. Multi-group comparison was performed by one-way ANOVA. Two group comparison was conducted by SNK- q test. Results:Compared with the control group, EdU positive cell percentage, OD 450 value, invasive cell number, CyclinD1, MMP-9 and NBS1 protein expression of Tca8113 cells were decreased, whereas the apoptosis rate, the expression of Bax and γH2AX proteins were increased in the gemcitabine, thermotherapy and thermotherapy + gemcitabine groups ( q=4.45-72.06, all P<0.001). Compared with the control group, the proportion of G 0/G 1 phase cells was decreased, whereas the proportion of S and G 2/M phase cells was increased in the gemcitabine and thermotherapy + gemcitabine groups, the proportion of G 0/G 1 phase cells was decreased and the proportion of G 2/M phase cells was increased in the hyperthermia group ( q=10.36-61.09, all P<0.001). Compared with the gemcitabine and thermotherapy groups, EdU positive cell percentage, OD 450 value, G 0/G 1 phase cell proportion, invasive cell number, CyclinD1, MMP-9 and NBS1 protein expression of Tca8113 cells were decreased, whereas apoptosis rate, S, G 2/M phase cell proportion, Bax and γH2AX protein expression were increased in the thermotherapy + gemcitabine group ( q=4.45-28.73, all P<0.001). Xenograft tumor in vivo test in nude mice showed that the tumor volume and mass of nude mice in the gemcitabine, thermotherapy, and thermotherapy + gemcitabine groups were decreased compared with those in the control group ( q=5.58-73.02, all P<0.001). Compared with the gemcitabine and thermotherapy groups, the tumor volume and mass in the thermotherapy + gemcitabine group were decreased ( q=5.58-21.45, all P<0.001). Conclusion:The combination of thermotherapy and gemcitabine can inhibit the proliferation and invasion, block the cell cycle, and induce cell apoptosis of Tca8113 cells.
6.Research progress in factors influencing the polarization of macrophages by hyperthermia
Wei WANG ; Yun SHAO ; Yuan CONG ; Yuying YANG ; Shengzhi WANG
Chinese Journal of Radiation Oncology 2024;33(12):1164-1169
Hyperthermia, as an adjunct to radiotherapy and chemotherapy, can change the immune condition of tumor microenvironment and enhance the effect of tumor treatment without damaging normal tissues. Tumor-associated macrophages are the main immune cells in the tumor microenvironment, and there are two subtypes: M1 phenotype can inhibit the growth of tumor cells, and M2 phenotype can promote the occurrence and metastasis of tumor cells. Therefore, repolarization of M2 phenotype into M1 phenotype is a new research direction. In this paper, the mechanisms of hyperthermia and tumor-associated macrophage repolarization were reviewed based on the current research progress at home and abroad, aiming to provide novel ideas for tumor therapy.
7.Research progress on the effect of hyperthermia on cancer-associated fibroblasts in tumor microenvironment
Yun SHAO ; Yuli HAO ; Yuan CONG ; Pei SHEN ; Xuexiao ZHOU ; Shengzhi WANG
Chinese Journal of Radiation Oncology 2023;32(10):945-950
Tumor microenvironment possesses immunosuppression characteristics via the mechanism of inducing tumor cell immune escape. The interaction between tumor cells and tumor microenvironment is an important factor affecting tumor genesis and development. As an important part of tumor microenvironment, cancer-associated fibroblasts interact directly or indirectly with tumor cells and produce various cytokines to regulate tumor immune microenvironment. In recent years, hyperthermia has become an auxiliary means of anti-tumor therapy. With the development of research on tumor hyperthermia and tumor microenvironment, a large number of studies have found that hyperthermia can regulate cancer-associated fibroblasts in tumor microenvironment. In this article, recent research progresses of the effects of hyperthermia on cancer-associated fibroblasts and related cells and cytokines in tumor microenvironment were reviewed, providing a new way for clinical application of hyperthermia combined with immune or targeted therapy.
8.Shock and random vibration fatigue analysis of APD module on sanitary train
Ji-Cong LUO ; Jing-Hong ZHAO ; Yun ZHANG ; Wei WANG ; Jing-Dong LI
Chinese Medical Equipment Journal 2023;44(9):38-41
Objective To investigate the effects of shock and vibration on the automated peritoneal dialysis(APD)module in the ICU compartment of the sanitary train during operation.Methods ANSYS-based modal analysis and harmonious response analysis of the APD module on the sanitary train were carried out according to IEC 61373:2010"Railway applications—Rolling stock equipment—Shock and vibration tests"so as to calibrate the strength,stiffness and stability of the whole module structure,and to optimize the weak links.The power spectral density was selected as the excitation according to IEC 61373:2010,and the rationality of the module design was verified by random vibration test and equipment impact test.Results Modal analysis results showed that the natural frequency of the simplified model of the optimized APD fixed support was improved overall,and the second to sixth order frequencies were 156.45,166.35,268.85 and 285.45 Hz,respectively.Harmonic response analysis indicated that the damping platform of the APD module had a low amplitude not more than 2.2 mm.The results of impact and random vibration experiments proved that there were no obvious structural deformation and cracking phenomenon and abnormal mechanical properties and appearance found in the APD module.Conclusion The APD module is well-designed and can be embedded into the ICU compartment of the sanitary train.[Chinese Medical Equipment Journal,2023,44(9):38-41]
9.Effect of hyperthermia on biological behavior of squamous cell carcinoma of the tongue by regulating ferroptosis pathway
Pei SHEN ; Yuli HAO ; Xuexiao ZHOU ; Yuan CONG ; Shengzhi WANG ; Yun SHAO ; Ting XU ; Shouyi LI
Chinese Journal of Radiation Oncology 2023;32(3):260-264
Objective:To investigate the regulation and possible mechanism of hyperthermia (HT) on the ferroptosis of squamous cell carcinoma of the tongue cell line CAL-27.Methods:Half maximal inhibitory concentration (IC 50) of Fer-1, an inhibitor of ferroptosis, was detected by CCK-8 assay and used for subsequent experiments. CAL-27 cells were divided into the HT, control, Fer-1 and HT+ Fer-1 groups according to experimental design. Reactive oxygen species (ROS) levels and iron ion concentration were determined by corresponding detection kits. The p53 and TfR1 mRNA levels were detected by real-time reverse transcription PCR. Cell migration was detected by cell scratch test and cell apoptosis was detected by flow cytometry. Results:HT significantly up-regulated the ROS levels ( P<0.01) and iron ion concentration ( P<0.001), and significantly increased the expression levels of p53 and TfR1 mRNA (both P<0.01). The cell migration ability was decreased ( P<0.001), whereas cell apoptosis rate was increased by HT ( P<0.01). In the HT+Fer-1 group, the ROS levels ( P<0.001), iron ion concentration ( P<0.001), expression levels of p53 and TfR1 mRNA (both P<0.01) were significantly down-regulated, the cell migration ability was recovered ( P<0.01), and cell apoptosis rate was decreased ( P<0.01) compared with those in the HT group, respectively. Conclusions:HT may induce the ferroptosis of CAL-27 cell line, inhibit cell migration ability and promote cell apoptosis by activating the p53/TfR1 pathway.
10.Research progress on the effect of hyperthermia on vascular endothelial growth factor in tumor microenvironment
Yuan CONG ; Yun SHAO ; Xuexiao ZHOU ; Pei SHEN ; Shengzhi WANG
Chinese Journal of Radiation Oncology 2023;32(8):736-741
Vascular endothelial growth factor (VEGF) plays an important role in promoting tumor vascular growth and changing vascular wall permeability. With the in-depth study of tumor hyperthermia and tumor microenvironment, more and more studies have shown that hyperthermia exerts multiple regulatory effects on VEGF in tumor microenvironment. Combined with current research progress in China and abroad, this article reviews the effect of hyperthermia on VEGF and its related cells and factors in tumor microenvironment, aiming to provide new ideas for the clinical application of tumor hyperthermia combined with immune or targeted therapy.

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