1.Analysis of Chemical Components of Yin-Qiao-Qing-Re Tablets by UPLC-Q-TOF-MS/MS and GC-MS
Zerong CAI ; Yumei HU ; Wenjun LIU ; Shulin WANG ; Xinyu KONG ; Yifan YANG ; Mengyu QIAN ; Li-ang CAO ; Zhenzhong WANG
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(9):1198-1212
OBJECTIVE The non-volatile and volatile chemical components in Yin-Qiao-Qing-Re Tablets were analyzed sepa-rately using ultra-performance liquid chromatography-quadrupole time-of-flight mass spectrometry(UPLC-Q-TOF-MS/MS)and Gas Chromatography Mass Spectrometry(GC-MS).METHODS The non-volatile components were analyzed using a Waters ACQUITY UPLC BEH C18 column(2.1 mm×100 mm,1.7 μm),with a mobile phase consisting of 0.1%formic acid aqueous solution(A)and acetonitrile(B)for gradient elution,a flow rate of 0.35 mL·min-1,an injection volume of 5 μL,and a column temperature of 30 ℃;the volatile components were analyzed using an Agilent SH-I-5MS column(5%Phenyl Methyl Silox,30 m×250 μm,0.25 μm);the procedure was temperature-programmed,with an injection volume of 1 μL,a split ratio of 10∶1,a flow rate of 1.0 mL·min-1,and an inlet temperature of 200 ℃.RESULTS A total of 134 non-volatile chemical components and 23 volatile components were analyzed and identified from Yin-Qiao-Qing-Re Tablets,among which 49 compounds were confirmed through comparison with reference stand-ards.The non-volatile components mainly include 27 flavonoids,21 organic acids,15 lignans,14 iridoids,12 phenylethanoid glyco-sides,11 saponins,10 alkaloids,5 terpenes,4 amino acids,3 phenylpropanoids,3 nucleosides,3 xanthones,3 phenolic glycosides,2 chromones and 1 carbohydrate.The volatile components mainly include 11 monoterpenes,5 alcohols and phenols,3 alkenes,2 ke-tones,1 ester,and 1 hydrocarbon.CONCLUSION This study rapidly identifies the chemical components of Yin-Qiao-Qing-Re Tablets,laying a preliminary foundation for research on the pharmacodynamic substances of Yin-Qiao-Qing-Re Tablets and the im-provement of quality control standards.
2.Analysis of Chemical Components of Yin-Qiao-Qing-Re Tablets by UPLC-Q-TOF-MS/MS and GC-MS
Zerong CAI ; Yumei HU ; Wenjun LIU ; Shulin WANG ; Xinyu KONG ; Yifan YANG ; Mengyu QIAN ; Li-ang CAO ; Zhenzhong WANG
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(9):1198-1212
OBJECTIVE The non-volatile and volatile chemical components in Yin-Qiao-Qing-Re Tablets were analyzed sepa-rately using ultra-performance liquid chromatography-quadrupole time-of-flight mass spectrometry(UPLC-Q-TOF-MS/MS)and Gas Chromatography Mass Spectrometry(GC-MS).METHODS The non-volatile components were analyzed using a Waters ACQUITY UPLC BEH C18 column(2.1 mm×100 mm,1.7 μm),with a mobile phase consisting of 0.1%formic acid aqueous solution(A)and acetonitrile(B)for gradient elution,a flow rate of 0.35 mL·min-1,an injection volume of 5 μL,and a column temperature of 30 ℃;the volatile components were analyzed using an Agilent SH-I-5MS column(5%Phenyl Methyl Silox,30 m×250 μm,0.25 μm);the procedure was temperature-programmed,with an injection volume of 1 μL,a split ratio of 10∶1,a flow rate of 1.0 mL·min-1,and an inlet temperature of 200 ℃.RESULTS A total of 134 non-volatile chemical components and 23 volatile components were analyzed and identified from Yin-Qiao-Qing-Re Tablets,among which 49 compounds were confirmed through comparison with reference stand-ards.The non-volatile components mainly include 27 flavonoids,21 organic acids,15 lignans,14 iridoids,12 phenylethanoid glyco-sides,11 saponins,10 alkaloids,5 terpenes,4 amino acids,3 phenylpropanoids,3 nucleosides,3 xanthones,3 phenolic glycosides,2 chromones and 1 carbohydrate.The volatile components mainly include 11 monoterpenes,5 alcohols and phenols,3 alkenes,2 ke-tones,1 ester,and 1 hydrocarbon.CONCLUSION This study rapidly identifies the chemical components of Yin-Qiao-Qing-Re Tablets,laying a preliminary foundation for research on the pharmacodynamic substances of Yin-Qiao-Qing-Re Tablets and the im-provement of quality control standards.
3.Optimization of the Extraction Process of Changyan Heji Ⅱ Based on UPLC-Q-TOF-MS/MS Combined with Response Surface Method and Principal Component Analysis
Shulin WANG ; Jing SHANG ; Wenjun LIU ; Zerong CAI ; Mengyu QIAN ; Xiaoxin HU ; Liang CAO ; Zhenz-hong WANG ; Wei XIAO
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(4):501-512
OBJECTIVE To establish a extraction process of Changyan Heji Ⅱ(CYHJ-Ⅱ)based on UPLC-Q-TOF-MS/MS technology combined with response surface analysis,and to optimize the extraction process.METHODS The chemical components in CYHJ-Ⅱ were qualitatively analyzed by UPLC-Q-TOF-MS/MS technology,and the chemical components with good linear relation-ship in mass spectrometry response were selected as process investigation indicators;the extraction process parameters(water addition amount,extraction time and soaking time)were investigated by Box-Behnken design;the comprehensive score was obtained by princi-pal component analysis(PCA),and the optimal process was determined by the comprehensive score combined with response surface a-nalysis.RESULTS Through qualitative analysis,110 components were inferred and identified from CYHJ-Ⅱ,including 2 organic acids,82 flavonoids,13 terpenoids,and 13 alkaloids.Based on the results of qualitative analysis,48 index components with good lin-ear relationships were derived by UPLC-Q-TOF-MS/MS combined with Masshunter mass spectrometry data analysis software.PCA was performed and the comprehensive score was calculated.Response surface analysis was performed with the comprehensive score as an indicator.The optimal extraction process obtained by combining the response surface prediction results and actual production was:soaking for 45 min,8 times the amount of solvent,2 extractions,each time for 120 min.CONCLUSION This study provides a new idea for the investigation of the extraction process of traditional Chinese medicine compound prescriptions and expands a new method for the development of traditional Chinese medicine compound prescriptions.
4.Optimization of the Extraction Process of Changyan Heji Ⅱ Based on UPLC-Q-TOF-MS/MS Combined with Response Surface Method and Principal Component Analysis
Shulin WANG ; Jing SHANG ; Wenjun LIU ; Zerong CAI ; Mengyu QIAN ; Xiaoxin HU ; Liang CAO ; Zhenz-hong WANG ; Wei XIAO
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(4):501-512
OBJECTIVE To establish a extraction process of Changyan Heji Ⅱ(CYHJ-Ⅱ)based on UPLC-Q-TOF-MS/MS technology combined with response surface analysis,and to optimize the extraction process.METHODS The chemical components in CYHJ-Ⅱ were qualitatively analyzed by UPLC-Q-TOF-MS/MS technology,and the chemical components with good linear relation-ship in mass spectrometry response were selected as process investigation indicators;the extraction process parameters(water addition amount,extraction time and soaking time)were investigated by Box-Behnken design;the comprehensive score was obtained by princi-pal component analysis(PCA),and the optimal process was determined by the comprehensive score combined with response surface a-nalysis.RESULTS Through qualitative analysis,110 components were inferred and identified from CYHJ-Ⅱ,including 2 organic acids,82 flavonoids,13 terpenoids,and 13 alkaloids.Based on the results of qualitative analysis,48 index components with good lin-ear relationships were derived by UPLC-Q-TOF-MS/MS combined with Masshunter mass spectrometry data analysis software.PCA was performed and the comprehensive score was calculated.Response surface analysis was performed with the comprehensive score as an indicator.The optimal extraction process obtained by combining the response surface prediction results and actual production was:soaking for 45 min,8 times the amount of solvent,2 extractions,each time for 120 min.CONCLUSION This study provides a new idea for the investigation of the extraction process of traditional Chinese medicine compound prescriptions and expands a new method for the development of traditional Chinese medicine compound prescriptions.
5.Exploration on the Medication Law of Zhang Binghou in Treating Diabetic Kidney Disease Based on Data Mining
Mengyu LI ; Haitao SHANG ; Shiwen ZHANG ; Wenjing ZHAO ; Zhen CAI ; Xinxin PANG ; Xiaodan YIN
Chinese Journal of Information on Traditional Chinese Medicine 2024;31(9):58-65
Objective To analyze Professor Zhang Binghou's medication experience in the treatment of diabetic kidney disease using data mining methods;To screen the core medicinal pairs and medicinal groups.Methods Prescriptions of diabetic kidney disease of Professor Zhang Binghou from the outpatient department of Beijing Hospital of Traditional Chinese Medicine Affiliated to Capital Medical University were selected from January 2014 to December 2021.TCM Inheritance Platform System 2.5,SPSS Modeler 18 and SPSS Statistics 21 software were used for association rules,clustering analysis and factor analysis to summarize the medication frequency,properties and tastes and meridians,and medicinal pairs and combinations.Results A total of 161 prescriptions were included,involving 188 kinds of Chinese materia medica,with a total frequency of 2 220 time.The kinds of Chinese materia medica with higher frequency were Rehmannize Radix et Praeparata,Testudinis Carapax et Plastrum,Astragali Radix,Rehmannine Radix,etc.The main properties were cold and warm,the main tastes were sweet and bitter,and the main meridians were kidney,liver and spleen meridians.A total of 14 drug pair association rules were obtained,with 27 commonly used drug combinations.Clustering analysis extracted 10 combinations based on the spectrum,and factor analysis extracted 14 common factors.Conclusion Professor Zhang Binghou's treatment for diabetic kidney disease takes nourishing the true yin and clearing away damp-heat as the main treatment method,and at the same time,it pays attention to tonifying kidney,consolidating essence,nourishing yin and containing yang,promoting blood circulation and removing blood stasis,etc.,which embodies Professor Zhang Binghou's unique academic thought of treating diabetic kidney disease.
6.Related factors of pleasure loss in HIV-infected people
Yunhong LI ; Lili LU ; Xueyu CHEN ; Mengyu LYU ; Xia ZHAO ; Ting YANG ; Lin CAI
Chinese Mental Health Journal 2024;38(6):542-546
Objective:To investigate the related factors of pleasure loss in patients with human immunodefi-ciency virus(HIV)/acquired immune deficiency syndrome(AIDS).Methods:Totally 237 patients with HIV/AIDS from a certain infectious disease hospital were selected and surveyed with a self-designed general information ques-tionnaire,the Temporal Pleasure Experience Scale(TEPS),Self Acceptance Scale(SAQ),Discrimination Percep-tion Scale(SIS),and Perceived Social Support Scale(PSSS).Results:The patient's TEPS score was(73.4±16.1).Stepwise linear regression analysis showed that the PSSS total scores,education level,and personal monthly income were positively correlated with the TEPS total scores(β=0.41,5.17,4.63),and age was negatively corre-lated with the TEPS total scores(β=-0.30).Conclusion:It suggests that more attention should be paid to the lack of pleasure in patients with HIV/AIDS,and the lack of pleasure is related to personal monthly income,educa-tion level,age and perceived social support.
7.Effects of heat stress on intestinal tract and cognitive function
Wenlan PAN ; Hongxia LI ; Mengyu CAI ; Yicui QU ; Qicheng ZHOU ; Wenjing SHI ; Hui SHEN
Journal of Environmental and Occupational Medicine 2023;40(11):1341-1346
Heat stress refers to a series of stress reactions such as heat balance disturbance and physiological dysfunction when the body is exposed to the thermal environment for a long time. Studies have found that heat stress can damage intestinal morphology, such as length of intestinal villi, number of goblet cells, and depth of the crypt, affecting the digestion and absorption functions. It also can increase the permeability of the intestinal barrier by damaging the tight junction of the intestinal epithelium, which in turn allows endotoxin and bacteria to enter the blood circulation from the intestinal cavity to cause a systemic inflammatory response. At the same time, heat stress can disrupt the homeostasis of intestinal microbiota, increase pathogenic bacteria, and change downstream metabolites such as short-chain fatty acids. In addition, heat stress can inhibit the occurrence of hippocampal neurons and reduce the number of neurons; decrease the density of synapses; damage important organelles of neurons; induce inflammation of the central nervous system, and then lead to cognitive dysfunction. The brain-gut axis is a two-way signal axis between the intestine and the brain. Intestinal microorganisms and the intestinal barrier can participate in central nervous system regulation, and the brain can change the intestinal homeostatic function and affect the quality of the intestinal barrier through the hypothalamic-pituitary-adrenal axis (HPA axis). The interaction plays an essential role in the body's homeostasis. Therefore, this article reviewed current understandings on the impacts of heat stress on the gut and cognitive function, aiming to provide a reference for subsequent research.

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