1.IMP3 and CD44 protein expression in recurrent bladder urothelial carcinoma
Muhan LI ; Tianying XING ; Huiying HE
Chinese Journal of Clinical Oncology 2015;42(8):416-420
Objective:To evaluate the expression of IMP3 and CD44 proteins in recurrent urothelial carcinoma (UC) and to deter-mine the correlation between the two proteins. Methods: Data from transurethral resection of bladder (TURB) cancer cases between January 2002 and December 2012 were reviewed. Of the 54 UC recurrent cases in this study, one group of 25 had experienced recur-rence within 6 months after surgery, and the other group of 29 had their first recurrence after more than 3 years. IMP3 and CD44 immu-noreactivities were increased, which correlated with the clinicopathologic parameters. The relationship between IMP3 and CD44 pro-tein expressions was also explored. Results:Six of the 25 short-term recurrent UC cases were tested positive for IMP3 and all belonged to high-grade UC. Among the 29 long-term recurrent patients, only one case of low-grade UC tested positive for IMP3. IMP3 expres-sion rate [24%(6/25)] and intensity [weak staining at 16%(4/25) and strong staining at 8%(2/25)] were higher in the short-term recur-rent group than those in the long-term group, which had an expression rate of 3.45% (1/29) and intensity rates for weak staining at 3.45%(1/29) and without strong staining (0/29). No difference was observed in the CD44 expression between the two groups. In addi-tion, the high expression of IMP3 correlated with higher tumor stage and grade, whereas the CD44 expression tended to be inversely correlated with the tumor grade in recurrent UC patients. Furthermore, no correlation existed between the expression of IMP3 and CD44 proteins in the bladder carcinoma specimens. Conclusion:IMP3 exhibited a significantly higher expression rate in short-term re-current UC specimens than in the long-term recurrent cases. Therefore, IMP3 could be used as a novel marker, together with the other factors including tumor stage and grade, for predicting the high risk of short-term recurrence in UC patients who underwent TURB.
2.Clinical Evidence of Oral Chinese Patent Medicines in Treatment of Cardiac Arrhythmia: A Scoping Review
Te WANG ; Tianying CHANG ; Yingzi CUI ; Chunhui FAN ; Huan LIU ; Yongsheng HUANG ; Xing LIAO
Chinese Journal of Experimental Traditional Medical Formulae 2023;29(6):157-166
ObjectiveTo review the drug information and research progress on oral Chinese patent medicines in the treatment of cardiac arrhythmia to identify existing problems and provide references for follow-up research. MethodChinese patent medicines against cardiac arrhythmia were retrieved from the three major drug catalogues,Yaozh.com,and relevant guidelines with arrhythmia as the retrieval term. The instructions for included Chinese patent medicines were retrieved through Yaozh.com and specific information was extracted. The research articles on Chinese patent medicines included were retrieved from the five databases,and the information meeting the inclusion and exclusion criteria was extracted and displayed in the form of text description and graphs after statistical analysis. ResultSixty-five oral Chinese patent medicines were included in this study,with the main functions of activating the blood and resolving stasis. The average daily cost of medicines was 8.17 yuan,and there were 42 medicines with an average daily cost of less than 10 yuan,showing a moderate medicine cost. A total of 351 research articles on Chinese patent medicines were screened out,including 259 randomized controlled trials (RCTs),16 non-RCTs,eight non-controlled trials,62 systematic reviews,two guidelines,and two expert consensuses. Eighteen types of Chinese patent medicines were involved,whose clinical trials had been conducted in 28 provinces,cities,autonomous regions,and municipalities in China. Wenxin granules and Shensong Yangxin capsules were the top medicines under investigation,accounting for 75.21% of all research articles. Among the included studies,the most common comparison design was Chinese patent medicine combined with western medicine vs western medicine (64.25%). The outcome evaluation was mainly based on clinical efficacy,symptom efficacy,arrhythmia efficacy,adverse reactions,and heart rate changes. ConclusionThe number of clinical studies of oral Chinese patent medicines against cardiac arrhythmia varies greatly,but traditional Chinese medicine (TCM) syndrome differentiation thinking is less considered in practical application. Due to unstandardized clinical research and low-quality literature,further advancement is required in the future.
3.Meta-analysis of Distribution Frequency of Traditional Chinese Medicine Syndrome in Primary Osteoporosis
Hailong WU ; Tianying CHANG ; Yan LU ; Zongjian LUO ; Xiangyang LENG ; Xing LIAO
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(5):111-117
ObjectiveTo systematically evaluate the distribution of traditional Chinese medicine(TCM) syndromes of primary osteoporosis(POP) in China by using evidence-based medicine methods, and to understand the distribution law of the syndromes. MethodChina National Knowledge Infrastructure(CNKI), VIP Chinese Science and Technology Journal Database(VIP), WanFang Data Knowledge Service Platform(WanFang) and China Biology Medicine(CBM) were searched to obtain representative literature, and each database was searched from the 1994 World Health Organization defined diagnostic criteria for osteoporosis until May 1, 2023. Two researchers independently screened literature according to the criteria, extracted data, and cross-checked them. Meta analysis was conducted using R4.1.3, and subgroup analysis was performed. ResultA total of 56 Chinese papers were included, involving 14 415 patients. After standardized classification of syndromes, 11 articles were excluded, and Meta analysis results of the ultimately included 45 Chinese articles showed that the distribution frequencies of liver-kidney Yin deficiency syndrome, spleen-kidney Yang deficiency syndrome and kidney deficiency and blood stasis syndrome in 12 723 patients were 27%[95% confidence interval(CI) 0.24-0.31], 32%(95% CI 0.29-0.36), 36%(95% CI 0.30-0.42). Subgroup analysis showed that there was a statistically significant difference in the distribution of the three TCM syndromes in the north and south(P<0.05). In addition, the incidence of TCM syndrome fractures in different types of POP was 15%(95% CI 0.09-0.24) for liver-kidney Yin deficiency syndrome, 20%(95% CI 0.12-0.30) for spleen-kidney Yang deficiency syndrome, and 31%(95% CI 0.25-0.39) for kidney deficiency and blood stasis syndrome. ConclusionThe distribution of syndromes in POP patients is mainly kidney deficiency, accompanied by liver and spleen dysfunction. Liver-kidney Yin deficiency syndrome, spleen-kidney Yang deficiency syndrome and kidney deficiency and blood stasis syndrome are all the main syndromes of POP and osteoporotic fractures, and kidney deficiency and blood stasis syndrome is most closely related to the development of osteoporotic fractures. The reference standards for syndrome determination among the included studies are inconsistent, and in the future, it is necessary to focus on their determination standards to obtain consensus research results, at the same time, conduct large-scale syndrome research to obtain representative research results, providing a basis for clinical practice and research.
4.Identification of Panax notoginseng and Its Processed Products Based on HPLC and IR Spectrum
Yuxin LI ; Na XING ; Zhihong ZHANG ; Tianying YU ; Enyao MA ; Xue WANG ; Haodong BAI ; Yuanning ZENG ; Qiuhong WANG
China Pharmacy 2021;32(18):2194-2202
OBJECTIVE:To identify Panax notoginseng and its processed products . METHODS :The fingerprint was established by HPLC. Using ginsenoside Rb 1 as reference ,HPLC fingerprints of 15 batches of P. notoginseng and its processed products were drawn and the similarity evaluation was conducted by using the Similarity Evaluation System for TCM Chromatographic Fingerprints(2012 edition). The common peaks were confirmed by comparing with substance control. SPSS 21.0 and SIMCA 14.1 software were used to perform cluster analysis ,principal component analysis and orthogonal partial least squares-discriminant analysis;taking the variable importance projection (VIP)value greater than 1 as the standard ,the differential marker components causing the quality difference between P. notoginseng and its processed products were screened. IR fingerprints of P. notoginseng and its processed products were established by OMNIC 8.2.0 software,and the spectral similarity was evaluated ;double index sequence analysis was used to analyze absorption peaks of IR fingerprints of 15 batches of P. notoginseng and its processed products. RESULTS :There were 16 common peaks in the fingerprints of 15 batches of P. notoginseng , and the similarities were 0.911-1.000;there were 25 common peaks in the fingerprints of processed products ,and the similaritieswere 0.862-1.000. They had 12 identical common peaks ,and wang668@sina.com three of them were ident ified as sanchinoside R 1,ginsenoside Rg1 and ginsenoside Rb 1. Results of cluster analysi s showed that when the distance was 10,15 batches of P. notoginseng could be clustered into two categories ,SW1-SW5 into one category ,SH1-SH5 and SQ 1-SQ5 into one category ,ZW1-ZW5,ZH1-ZH5 and ZQ1-ZQ5 of 15 batches of processed products could be clustered into one category. When the distance was 5,15 batches of P. notoginseng could be clustered into three categories ,SW1-SW5 into one category ,SH2-SH5 and SQ 2 into one category ,SQ1, SQ3-SQ5 and SH 1 into one category. Fifteen batches of processed products could be clustered into two categories ,ZW1-ZW5 into one category ,ZH1-ZH5 and ZQ 1-ZQ5 into one category. The results of principal component analysis showed that the cumulative variance contribution rate of the first two principal components was 80.104% . The results of orthogonal partial least squares-discriminant analysis showed that the VIP values of the five peaks were greater than 1,which were peak H ,peak G ,peak J,peak F (ginsenoside Rg 1)and peak I. The similarity of IR fingerprints of 15 batches of P. notoginseng and its processed products were 0.889 7-1.000 0 and 0.972 8-1.000 0;the common peak rates were 80%-100%,and the variation peak rates were 0-17.65% and 0-18.75%,respectively. By comparing the wave numbers of absorption peaks ,it was found that there were differences between P. notoginseng at 3 440 and 1 450 cm-1 and processed products at 1 530 and 575 cm-1. CONCLUSIONS :Established HPLC fingerprint and IR fingerprint have good similarity ,and could effectively distinguish P. notoginseng and its processed products. P. notoginseng and its processed products from different habitats have high common peak rate and low variation rate ,and their chemical components are different ;peak H ,peak G ,peak J ,ginsenoside Rg 1 and peak I are differential marker components causing the quality difference between P. notoginseng and processed products.