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1.
China Journal of Chinese Materia Medica ; (24): 1558-1566, 2022.
Article in Chinese | WPRIM | ID: wpr-928084

ABSTRACT

Utilizing metabolomics technology, this study explored the change of fecal endogenous metabolites in Walker-256 rats with malignant ascites after the administration with Kansui Radix(KR) stir-fried with vinegar(VKR), sought the potential biomarkers in feces which were related to the treatment of malignant ascites by VKR and revealed the biological mechanism of water-expelling effect of VKR. Ultra-fast liquid chromatography-quadrupole-time-of-flight mass spectrometry(UFLC-Q-TOF-MS) was employed to detect the feces of rats in all groups. Principle component analysis(PCA) and partial least squares discriminant analysis(PLS-DA) were conducted to achieve pattern recognition. Combining t-test and variable importance in the projection(VIP) enabled the screening of potential biomarkers for the malignant ascites. Metabolic pathway analysis was accomplished with MetaboAnalyst. Correlation analysis was finally conducted integrating the sequencing data of gut microbiota to elucidate the mechanism underlying the water-expelling effect of VKR. The results showed that both KR and VKR could restore the abnormal metabolism of model rats to some extent, with VKR being inferior to KR in the regulation. Eleven potential biomarkers were identified to be correlated with the malignant ascites and five metabolic pathways were then enriched. Four kinds of gut microbiota were significantly related to the potential biomarkers. The water-expelling effect of VKR may be associated with the regulation of phenylalanine metabolism, biosynthesis of phenylalanine, tyrosine and tryptophan, tryptophan metabolism, glycerophospholipid metabolism, and glycosylphosphatidylinositol(GPI)-anchor biosynthesis. This study can provide a scientific basis for comprehensive understandings of the interaction between gut microbiota and host which has relation to the water-expelling effect of VKR and guide the reasonable clinical application of VKR.


Subject(s)
Animals , Rats , Acetic Acid , Ascites/metabolism , Euphorbia , Feces , Metabolomics
2.
China Journal of Chinese Materia Medica ; (24): 1253-1261, 2022.
Article in Chinese | WPRIM | ID: wpr-928050

ABSTRACT

This study aims to explore the effects of chemical ingredient groups B and C in Kansui Radix stir-fried with vinegar on the diversity of gut microbiota in the rat model of malignant ascites, identify the key differential microbial taxa, and reveal the biological mechanism of water-expelling effect of the two chemical ingredient groups. The rat model of malignant ascites induced by Walker-256 cells was established, and phenolphthalein was used as the positive drug. The rats were orally administrated with corresponding agents for consecutive 7 days. On day 6, fresh feces samples were collected from the rats, and 16 S rDNA high-throughput sequencing and GC-MS were employed to determine the composition of gut microbiota and the content of short-chain fatty acids, respectively. On day 7, serum and intestinal tissue samples were collected for the determination of related indicators. Compared with the control group, the model group showed decreased feces volume and urine volume(P<0.01), increased volume of ascites and levels of Na~+, K~+, and Cl~- in urine(P<0.01), down-regulated mRNA and protein levels of intestinal AQP8(P<0.01), lowered abundance of beneficial Lactobacillus(P<0.01) while risen abundance of potential pathogenic Lachnospiraceae and Anaeroplasma(P<0.01), and reduced content of short-chain fatty acids(P<0.01). Compared with the model group, administration with chemical ingredient groups B and C alleviated all the above indicators(P<0.01). In conclusion, chemical ingredient groups B and C in Kansui Radix stir-fried with vinegar could alleviate the disordered gut microbiota in rats with malignant ascites to expel water through increasing the abundance of beneficial Lactobacillus and reducing the abundance of harmful Lachnospiraceae and Anaeroplasma. This study can provide a reference for the reasonable clinical application of Kansui Radix stir-fried with vinegar.


Subject(s)
Animals , Rats , Acetic Acid/chemistry , Ascites/drug therapy , Euphorbia/chemistry , Gastrointestinal Microbiome , Plant Roots/chemistry
3.
China Journal of Chinese Materia Medica ; (24): 3218-3225, 2016.
Article in Chinese | WPRIM | ID: wpr-307174

ABSTRACT

This article summarizes the research progress in recent years on interactions between Chinese medicines and gut microbiota based on the physiological functions of gut microbiota, including imbalance impacts of toxic/irritating Chinese medicines on gut microbiota, prognosis effects of Chinese medicines on gut microbiota imbalance, metabolism effects of gut microbiota on Chinese medicine components, and co-metabolism effects between gut microbiota and host. We would think and prospect the specific biological effects of Chinese medicines, gut microbiota structures and the relations between endogenous metabolites from "gut microbiota and host co-metabolism". All of these aim to investigate biological mechanisms and effective components of Chinese medicines based on gut microbiota and offer a new strategy for promoting safe and effective application of Chinese medicines.

4.
China Journal of Chinese Materia Medica ; (24): 4603-4607, 2014.
Article in Chinese | WPRIM | ID: wpr-305375

ABSTRACT

In order to discriminate the crude and sweated Dipsaci Radix correctly and rapidly, the crude and sweated Dipsaci Radix were scanned by the NIR spectrometer, and an identifying model was developed by near infrared spectroscopy combined with principal component-Mahalanobis distance pattern recognition method. The pretreated spectra data of 129 crude samples and 86 sweated ones were analyzed through principal component analysis (PCA). The identifying model was developed by choosing the spectrum for 9 881.46-4 119.20 cm(-1) and "SNV + spectrum + S-G" to the original spectral preprocessing with 14 principal components, and then was verified by prediction set, identifying with 100% accuracy. The rapid identification model of the crude and sweated Dipsaci Radix by NIR is feasible and efficient, and could be used as an assistant means for identifying the crude and sweated Dipsaci Radix.


Subject(s)
Chemistry, Pharmaceutical , Methods , Dipsacaceae , Chemistry , Plant Roots , Chemistry , Principal Component Analysis , Methods , Quality Control , Spectroscopy, Near-Infrared , Methods
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