1.Analysis on Formation Mechanism of Self-precipitation in Process of Compound Decoction of Famous Classical Formula Sinitang
Meihui LI ; Xi FENG ; Xinyu LUO ; Juehan ZHOU ; Yunya HUANG ; Shuhan LI ; Yanfen CHENG ; Shu FU
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(22):145-152
ObjectiveTo explore the main mechanism of self-precipitation formed during the decoction of Sinitang(SNT), and to provide a research basis for exploring the differences in the toxic and effective components of this compound. MethodsThe average precipitation yields of SNT, Glycyrrhizae Radix et Rhizoma(GRR)-Aconiti Lateralis Radix Praeparata(ALRP) decoction(GF), ALRP-Zingiberis Rhizoma(ZR) decoction(FJ), GRR-ZR decoction(GJD), ALRP decoction(FZ), ZR decoction(GJ) and GRR decoction(GC) were determined. The four main self-precipitation samples of SNT, GF, FZ and GC were physically characterized by particle size, scanning electron microscopy(SEM), pH, total dissolved solids(TDS), conductivity, and Fourier transform infrared spectroscopy(FT-IR) analysis. The chemical compositions of SNT decoction and its different phases was identified by ultra-performance liquid chromatography-quadrupole-electrostatic field orbitrap high-resolution mass spectrometry(UPLC-Q-Exactive Orbitrap-MS) for SNT, SNT self-precipitation and SNT supernatant, and the contents of its main toxic and effective components were determined by high performance liquid chromatography(HPLC). ResultsPrecipitation yield results of the 7 samples of SNT decoction and single decoction showed that SNT had the highest self-precipitation yield. The formation of SNT self-precipitation was mainly related to the reaction between ALRP and GRR components to form complexes, and FT-IR showed that GRR had the greatest influence on the formation of self-precipitation. A total of 110 components were identified in the SNT decoction, including 100 components in the SNT self-precipitation and 106 components in the SNT supernatant. And quantitative results of the main toxic and effective components revealed that the reaction between ALRP and GRR components formed complexes, resulting in the following content hierarchy for free components:SNT decoctionsupernatantself-precipitation, these components included free liquiritin, benzoylmesaconine, benzoylaconitine, benzoylhypacoitine, liquiritigenin, aconitine, hypoaconitine, isoliquiritigenin and ammonium glycyrrhizinate. ConclusionSNT exhibits spontaneous precipitation during compound decoction, with GRR exerting the greatest influence on its formation. This suggests GRR plays a significant role in the detoxification of SNT. The differences in the self-precipitated toxic-effective components of SNT compound decoction primarily manifest as changes in component content, reflecting the characteristics of SNT "deposition in vitro and sustained release in vivo" and the importance of "administered at draught" in the clinical application of SNT.
2.Inhibitory effect of Lactobacillus reuteri on rotavirus replication in vivo and in vitro and its effect on expression of immune factors
Xiaofeng LI ; Meihui CHENG ; Yang LIU ; Changcheng LIU ; Xuejiao JIA ; Mengqi LIU ; Wei ZHAO
Journal of Jilin University(Medicine Edition) 2024;50(6):1597-1605
Objectives:To discuss the inhibitory effect of Lactobacillus reuteri on the replication of rotavirus(RV)strain SA11 in vivo and in vitro,and to clarify its effect on the expression of related immune factors.Methods:For in vitro experiments,Lactobacillus reuteri was cultured and identified,and the standard curve and growth curve were plotted to screen the optimal time and concentration for Lactobacillus reuteri cultivation.The cells were infected with Lactobacillus reuteri at the concentrations of 5×108,10×108,50×108,100×108,200×108,and 500×108 CFU·mL-1,and the surival rates of Caco-2 cells were detected by trypan blue staining method.Various concentrations of Lactobacillus reuteri were co-incubated with RV in vitro and applied to the Caco-2 cells.The cells were divided into negative control group(NC group),positive control group(PC group),and 107,108,109,and 1010 CFU·mL-1 Lactobacillus reuteri groups.Immunofluorescence focus method was used to detect the viral titers in the Caco-2 cells after treated with Lactobacillus reuteri and real-time fluorescence quantitative PCR(RT-qPCR)method was used to detect the copy numbers of RV VP6 gene in the Caco-2 cells after treated with various concentrations of Lactobacillus reuteri.In in vivo experiments,25 litters of SPF suckling mice were divided into control group,RV group(infected with SA11 strain),Ab-NC group(treated with antibiotic to deplete gut microbiota),Ab-RV group(depleting gut microbiota and then infected with SA11 strain),and Ab-Lac-RV group(depleting gut microbiota,treated with Lactobacillus reuteri,and then infected with SA11 strain).The fecal samples were collected on days 2,4,6,8,and 10 gavage,colon tissue sample were collected on day 4 of and RT-qPCR method was used to detect the copy numbers of RV VP6 gene in feces and the mRNA expression levels of interleukin(IL)-1β,IL-8,IL-10,interferon-γ(IFN-γ),and tumor necrosis factor-α(TNF-α)in colon tissue of the suckling mice in vartious groups.Results:The Lactobacillus reuteri grew well,with round,smooth,and milky white convex colonies and neat edges.After Gram staining,the bacteria appeared purple,irregular,and square-shaped rods.16SrDNA sequencing showed 99%sequence homology,indicating successful activation of Lactobacillus reuteri.The number of live Lactobacillus reuteri was linearly related to the absorbance(A)value,and the standard curve for regression analysis was Y=0.437 5X+0.000 6,R2=0.999 4.During the 0-2 h cultivation period,the bacteria were at the logarithmic growth phase with slow growth;from 2-14 h,the bacteria grew rapidly and stabilized at 14-16 h,reaching the growth rate peak at 16 h,after which they entered the decline phase.Infection with Lactobacillus reuteri at concentrations of 5×108,10×108,50×108,100×108,and 200×108 CFU·mL-1 resulted in the survival rates of Caco-2 cells were all>90%,so these concentrations were selected for the further experiments.Compared with PC group,the copy numbers of RV VP6 gene in the Caco-2 cells in 5×108,10×108,50×108,100×108,and 200×108 CFU·mL-1 Lactobacillus reuteri groups were significantly decreased(P<0.01).Compared with PC group,the viral titers in the Caco-2 cells in 107,108,109,and 1010 CFU·mL-1 Lactobacillus reuteri groups were significantly decreased(P<0.01).Compared with control group,the numbers of gut microbiota colonies in Ab-NC,Ab-RV,and Ab-Lac-RV groups were significantly decreased,indicating successful depletion of gut microbiota in the suckling mice.On days 2 and 4 after gavage,the RV VP6 gene copy number in the feces in Ab-RV group was significantly lower than that in RV group(P<0.05).On days 4,6,8,and 10 after gavage,the RV VP6 gene copy number in the feces in Ab-Lac-RV group was significantly lower than that in Ab-RV group(P<0.05).Compared with control group,the expression levels of IL-1β,IL-10,IFN-γ,and TNF-α mRNA in colon tissue in Ab-RV and Ab-Lac-RV groups were significantly increased(P<0.05 or P<0.01),while the expression level of IL-8 mRNA was significantly decreased(P<0.05),and the expression level of IL-10 mRNA in colon tissue in Ab-LAC-RV group was significantly increased(P<0.01).Conclusion:Lactobacillus reuteri may inhibit the RV replication by upregulating the expressions of IL-1β,IL-10,IFN-γ,and TNF-α mRNA and downregulating the expression of IL-8 mRNA.
3.The research and application of microRNA in human cardiovascular disease and forensic science
Jiajia XUE ; Yabiao GAO ; Zhiqi CHENG ; Meihui TIAN ; Ying XIAO ; Yuqing JIA ; Zhipeng CAO ; Baoli ZHU
Chinese Journal of Forensic Medicine 2017;32(5):488-491
MicroRNA (miRNA or miR) is a class of highly conserved endogenous non-coding RNA of 21~25nt, which is widely existed in organisms. Currently, miRNA has been proven to be associated with cardiovascular diseases in clinical research, but it has not been reported in the field of forensic medicine. This paper highlights recent findings about miRNA and its application in cardiovascular diseases, and the application aspect of miRNA in sudden cardiac death in forensic science.
4.The effects of premature atrial contractions on hemodynamics with coronary heart disease and hypertension without basic cardiovascular disease
Yuanfang GUO ; Bo YANG ; Shaoyong CHENG ; Meihui LI ; Zhuoqing WANG ; Congchun HUANG ; Junhua WANG ; Jianchang WANG
Chongqing Medicine 2015;(28):3930-3932
Objective To explore the effects of premature atrial contractions on hemodynamics combined with coronary heart disease and hypertension .Methods According to the advance rate ,62 patients with premature atrial contractions were invided into 3 groups :< 20% group(n= 18) ,20% - 40% group(n= 20) and > 40% group(n= 24) .All of the patients were performed imped‐ance cardiography .The hemodynamics indexes at different times were compared ,and the variation rates in hemodynamics of the three groups combined with basic diseases were analyzed .Results Stroke volume(SV) ,stroke index(SI) ,aortic compliance(AC) , stroke work(SW) ,stroke work index(SWI) ,and heather index(HI) were smallest when premature atrial contractions ,which were middle when the first sinus beats before premature atrial contractions ,and largest when the first sinus beats after premature atrial contractions(P< 0 .05) .The variation rates in hemodynamics were smallest in < 20% group ,which were middle in 20% - 40%group ,and largest in > 40% group(P< 0 .05) .The percentage of patients with basic heart diseases was lowest in < 20% group , which was middle in 20% - 40% group ,and highest in > 40% group(P< 0 .05) .Conclusion The advance rate is relatively large in patients with basic cardiovascular disease .Premature atrial contractions has certain effects on hemodynamics ,and the effects are positively correlated with advance rate .
5.Murine typhus in Xishuangbanna Prefecture, Yunnan Province,China
Hailin ZHANG ; Meihui SU ; Na YAO ; Qiang YU ; Yuzhen ZHANG ; Weihong YANG ; Xueqin CHENG ; Yun FENG ; Dujuan YANG ; Miao SONG ; Heming BAI ; Long MA ; Zhijian NIE ; Shaoqiu CHEN ; Yi QIN ; Shanmei SHI ; Xiaoli YIN ; Lijuan ZHANG
Chinese Journal of Zoonoses 2014;(12):1272-1280
ABSTRACT:In recent years ,there has been high prevalence of murine typhus in Yunnan Province ,People's Republic of China .A large outbreak of murine typhus occurred in Xishuangbanna Prefecture ,Yunnan Province in 2010 .However ,not all cases were confirmed by laboratory assays ;therefore ,field epidemiologic and laboratory investigations of murine typhus in Xishuangbanna Prefecture were conducted in 2011 .Blood samples were collected from clinical diagnostic cases at the acute and convalescence stages of murine typhus in Xishuangbanna Prefecture ,Yunnan Province ,from June to September of 2011 ,and blood and spleen samples were collected from mice sharing the same habitats as the patients .Immunofluorescence assays were used to test for the presence of IgM and IgG antibodies against Rickettsia typhi in sera from patients and mice .Real‐time PCR was used to detect the groEL gene of R .typhi in blood clots from patients at the acute stage and in spleen tissue from mice .A total of 1 157 clinically diagnosed murine typhus cases occurred in Xishuangbanna Prefecture ,Yunnan Province in 2011 ,with an incidence of 102 .10/100 000 .Of these cases ,80 were investigated by laboratory assays and 74 of 80 patients were confirmed to have murine typhus .The coincidence rate between the clinical diagnosis and laboratory detection was 92 .50% .The positivi‐ty rate for IgG antibodies against R .typhi was 14 .0% (14/100) for Rattus f lavipectus ,while the rate by PCR was 9 .0%(9/100) .That laboratory diagnoses confirmed that the severity of the murine typhus outbreak in Xishuangbanna cannot be ig‐nored .The distribution of host animals transmitting R .typhi underscores this conclusion .

Result Analysis
Print
Save
E-mail