1.Xiaoqinglong decoction combined with standard treatment for acute exacerbation of chronic obstructive pulmonary disease
Wenlian ZHENG ; Jinhuan WANG ; Yanlei GE
International Journal of Traditional Chinese Medicine 2016;38(4):319-321
Objective To evaluate the therapeutic effect of Xiaoqinglong decoction combined with standard treatment for acute exacerbation of chronic obstructive pulmonary disease (COPD).Methods A total of 60 patients with acute exacerbation of COPD were enrolled and randomly divided into a standard treatment group and a combined treatment group, 30 in each group. The standard treatment group received standard therapy and the combined treatment group receivedXiao Qing Long decoction combined with standard treatment. The forced vital capacity (FVC), forced expiratory volume in first second (FEV1), FEV1/FVC were detected using a pulmonary function tester. The partial pressure of arterial oxygen (PaO2), carbon dioxide (PaCO2) were evaluated.Results After the treatment, the FVC (1.94 ± 0.26 Lvs. 1.55 ± 0.33 L;t=-2.201, P<0.05), FEV1 (1.34 ± 0.24 Lvs. 0.99 ± 0.25 L;t=-6.004,P<0.05), and PaO2 (86.12 ± 13.26 mmHgvs. 80.02 ± 12.75 mmHg;t=-14.158,P<0.05) in the combined treatment group were significantly higher than those in the standard treatment group. The total effective rate in the combined treatment group was significantly higher than that in the standard treatment group (86.7%vs.70.0%;χ2=2.095,P=0.036).Conclusions Xiaoqinglong decoction combined with standard treatment can improve symptom, sign, arterial blood gas and the pulmonary function in patients with acute exacerbation of COPD, and its efficiency is superior to standard therapy alone.
2.Comparison of PG-SGA, NRS 2002 and BIA in nutritional assessment and screening of patients with gynecologic cancers
Yongning CHEN ; Yang GUAN ; Li ZHENG ; Wenlian LIU ; Chunhua WU ; Yadi ZHANG ; Li CHEN ; Shipeng GONG
Parenteral & Enteral Nutrition 2017;24(4):221-224
Objective:To evaluate the application of PG-SGA,NRS 2002 and BIA in nutritional assessment and screening of patients with gynecologic cancers.Methods:118 patients were randomly selected.Nutritional status were evaluated by PG-SGA,NRS 2002 and BIA,and consistency between each tools were compared.Results:The prevalence of malnutrition or nutritional risk of patients were 64.4% (PG-SGA),57.6% (NRS 2002),and 33.9% (BIA) respectively.In all patients,the consistency of PG-SGA and NRS 2002 was high (P < 0.001),while there were not significantly consistent between BIA and PG-SGA,or between BIA and NRS 2002 (P < 0.001).Conclusion:According to the evaluation of PG-SGA or NRS 2002 in gynecologic patients,the prevalence of malnutrition or nutritional risk is high,and these two scales are suitable for nutritional assessment and screening of gynecologic cancer patients,especially in ovarian cancer patients.In addition,BIA may be a promising tool to evaluate cervical cancer patients' nutritional status.
3.Exploring the causality between intestinal flora and hyperplastic scars of human based on two-sample Mendelian randomization analysis
Wentao CHEN ; Xiaoxiang WANG ; Wenlian ZHENG ; Weiqiang ZHANG ; Lujia MAO ; Jianan ZHUO ; Sitong ZHOU ; Ronghua YANG
Chinese Journal of Burns 2024;40(4):333-341
Objective:To investigate the causality between intestinal flora and hypertrophic scars (HS) of human.Methods:This study was a study based on two-sample Mendelian randomization (TSMR) analysis. The data on intestinal flora ( n=18 473) and HS ( n=208 248) of human were obtained from the genome-wide association study database. Genetically variable genes at five levels (phylum, class, order, family, and genus) of known intestinal flora, i.e., single nucleotide polymorphisms (SNPs), were extracted as instrumental variables for linkage disequilibrium (LD) analysis. Human genotype-phenotype association analysis was performed using PhenoScanner V2 database to exclude SNPs unrelated to HS in intestinal flora and analyze whether the selected SNPs were weak instrumental variables. The causal relationship between intestinal flora SNPs and HS was analyzed through four methods of TSMR analysis, namely inverse variance weighted (IVW), MR-Egger regression, weighted median, and weighted mode. Scatter plots of significant results from the four aforementioned analysis methods were plotted to analyze the correlation between intestinal flora SNPs and HS. Both IVW test and MR-Egger regression test were used to assess the heterogeneity of intestinal flora SNPs, MR-Egger regression test and MR-PRESSO outlier test were used to assess the horizontal multiplicity of intestinal flora SNPs, and leave-one-out sensitivity analysis was used to determine whether HS was caused by a single SNP in the intestinal flora. Reverse TSMR analyses were performed for HS SNPs and genus Intestinimonas or genus Ruminococcus2, respectively, to detect whether there was reverse causality between them. Results:A total of 196 known intestinal flora, belonging to 9 phyla, 16 classes, 20 orders, 32 families, and 119 genera, were obtained, and multiple SNPs were obtained from each flora as instrumental variables. LD analysis showed that the SNPs of the intestinal flora were consistent with the hypothesis that genetic variation was strongly associated with exposure factors, except for rs1000888, rs12566247, and rs994794. Human genotype-phenotype association analysis showed that none of the selected SNPs after LD analysis was excluded and there were no weak instrumental variables. IVW, MR-Egger regression, weighted median, and weighted mode of TSMR analysis showed that both genus Intestinimonas and genus Ruminococcus2 were causally associated with HS. Among them, forest plots of IVW and MR-Egger regression analyses also showed that 16 SNPs (the same SNPs number of this genus below) of genus Intestinimonas and 15 SNPs (the same SNPs number of this genus below) of genus Ruminococcus2 were protective factors for HS. Further, IVW analysis showed that genus Intestinimonas SNPs (with odds ratio of 0.62, 95% confidence interval of 0.41-0.93, P<0.05) and genus Ruminococcus2 SNPs (with odds ratio of 0.62, 95% confidence interval of 0.40-0.97, P<0.05) were negatively correlated with the risk of HS. Scatter plots showed that SNPs of genus Intestinimonas and genus Ruminococcus2 were protective factors of HS. Both IVW test and MR-Egger regression test showed that SNPs of genus Intestinimonas (with Q values of 5.73 and 5.76, respectively, P>0.05) and genus Ruminococcus2 (with Q values of 13.67 and 15.61, respectively, P>0.05) were not heterogeneous. MR-Egger regression test showed that the SNPs of genus Intestinimonas and genus Ruminococcus2 had no horizontal multiplicity (with intercepts of 0.01 and 0.06, respectively, P>0.05); MR-PRESSO outlier test showed that the SNPs of genus Intestinimonas and genus Ruminococcus2 had no horizontal multiplicity ( P>0.05). Leave-one-out sensitivity analysis showed that no single intestinal flora SNP drove the occurrence of HS. Reverse TSMR analysis showed no reverse causality between HS SNPs and genus Intestinimonas or genus Ruminococcus2 (with odds ratios of 1.01 and 0.99, respectively, 95% confidence intervals of 0.97-1.06 and 0.96-1.04, respectively, P>0.05). Conclusions:There is a causal relationship between intestinal flora and HS of human, in which genus Intestinimonas and genus Ruminococcus2 have a certain effect on inhibiting HS.
4.miR-135a knockdown inhibits the malignant biological behaviors and promotes oxaliplatin-sensitivity of human laryngeal carcinoma Hep-2 cells by down-regulation of SOX2
LIU Yangfan ; QU Zhongyu ; WANG Wenlian ; SUN Xing ; CAI Zheng
Chinese Journal of Cancer Biotherapy 2019;26(9):955-961
Objective: To investigate the effect of miR-135a on the malignant biological behaviors of human laryngeal carcinoma epithelial Hep-2 cells and its sensitivity to oxaliplatin. Methods: Samples of laryngeal carcinoma tissues and para-cancerous tissues were collected from 10 patients who underwent laryngectomy in Nanyang Hospital Affiliated to Zhengzhou University-Nanyang City Center Hospital from January 2018 to June 2018. The expression of miR-135a in laryngeal carcinoma tissues and Hep-2 cells was detected by qPCR.After being transfected with miR-135 inhibitor, cell proliferation viability of Hep-2 cells was measured by CCK-8 assay, cell colony formation ability was detected by colony formation assay, and cell proliferation invasion and migration abilities were detected by Transwell analysis, and the expression of SOX2 protein in Hep-2 cells was detected by WB. Hep-2 cells transfected with miR-135 inhibitor were further treated with various concentrations (0.5, 1.0, 1.5 and 2.0 μmol/L) of oxaliplatin, and the cell proliferation viability was detected by CCK-8 while cell apoptosis was detected by Annexin-V-FITC/PI double staining flow cytometry. miR-135a inhibitor plasmid, control pcDNA empty vector (SOX2-Con) plasmid, and pcDNA-SOX2 (SOX2-OE) plasmid were transfected into Hep-2 cells to construct the miR-135a inhibitor+SOX2-Con group and miR-135a inhibitor+SOX2-OE group, and the cell viability, cell colony formation ability, cell invasion and migration ability in two groups were detected. Results: Compared with para-cancerous tissues, miR135a expression in laryngeal cancer tissues was significantly increased (P<0.01). Compared with normal NHP cells, miR-135a expression in Hep-2 cells was significantly increased (P<0.01). miR-135a inhibitor significantly reduced the expression level of miR-135a in Hep-2 cells (P<0.01). miR-135a knockdown significantly reduced the cell proliferation viability, cell colony number, migration, invasion and SOX2 expression in Hep-2 cells (all P <0.01), but significantly enhanced the sensitivity of Hep-2 cells to oxaliplatin (P<0.01). Compared with miR-135a inhibitor+SOX2-Con group, the cell proliferation viability, cell colony number, migration and invasion of Hep-2 cells in miR-135a inhibitor+SOX2-OE group were significantly increased (P<0.01); Meanwhile, the cells of the 2 groups were treated with different concentrations of oxaliplatin, and the results of CCK-8 assay showed that, compared with the miR-135a inhibitor+ SOX2-Con group, the cell proliferation viability of Hep-2 cells in miR-135a inhibitor+SOX2-OE group was significantly increased (P< 0.01). Conclusion: miR-135a knockdown inhibits the malignant biological behaviors and promotes oxaliplatin-sensitivity of Hep-2 cells possibly by inhibiting the expression of the transcription factor SOX2.