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1.
China Pharmacy ; (12): 544-547, 2023.
Article in Chinese | WPRIM | ID: wpr-964762

ABSTRACT

OBJECTIVE To study the extraction and enrichment technology of chrysosplenides A (CA) and I (CI) in Tibetan medicine Chrysosplenium axillare. METHODS HPLC method was used to determine the contents of CA and CI. The orthogonal experiment was used to optimize the extraction technology of CA and CI in C. axillare using total transfer rate of CA and CI as evaluation indexes, with volume fraction of ethanol, extraction temperature, extraction times and solid-liquid ratio as factors. The validation test was also performed. The enrichment technology of CA and CI in C. axillare was optimized using D101 macroporous adsorption resin as adsorbent, total contents of CA and CI as evaluation indexes, with the volume fraction and dosage of eluent for impurities and target components. The validation test was also performed. RESULTS The optimum extraction conditions of CA and CI from C. axillare were as follows: the medicinal powder of C. axillare was extracted by ultrasound at room temperature for 45 min at one time with 8 times of 50% ethanol. Results of validation tests showed that total transfer rate of CA and CI in C. axillare was 95.43% in average (RSD=1.02%, n=3). The optimal enrichment technology was as follows: the sample solution was added into D101 macroporous adsorption resin column and stood for 1 hour; the impurities were eluted with 20% ethanol 4 BV (column volume), and CA and CI were eluted with 50% ethanol 4 BV. The results of validation tests showed that total content of CA and CI was 322.7 mg/g in average (RSD=1.05%, n=3), with average enrichment multiple of 11.61 times. CONCLUSIONS The study has successfully optimized the extraction and enrichment technology of CA and CI from C. axillare, and can provide reference for the development and utilization of CA and CI.

2.
China Journal of Chinese Materia Medica ; (24): 488-493, 2021.
Article in Chinese | WPRIM | ID: wpr-878997

ABSTRACT

On the basis of literatures and standards relating to Tibetan medicine, the varieties, origin, standards and efficacy of Saxifragaceae plant used in Tibetan medicine were summarized. According to the findings, 75 species(including varieties) in 8 genera of Saxifragaceae plants, involving 21 varieties, are used in Tibetan medicine. Among them, 9 commonly used varieties, namely Songdi, Sedi, Yajima, Aoledansaierbao, Jiansidawu, Saiguo, Katuer, Sangdi, Maoqinghong, are recorded in Chinese Pharmacopoeia, Ministry Standards for Tibetan Medicine, Tibetan Medicine Standards and other local standards, accounting for 42.9% of the total number of varieties. Tibetan names, Tibetan translation of Chinese names, as well as original plant of Tibetan medicine varieties are quite different in relevant Tibetan medicine standards and literatures, which resulted in common phenomena of synonym and homonym. The standards of most varieties only involve characters, and microscopic, physical and chemical identification, with low quality standards. Based on the results of the analysis, this paper suggests strengthening surveys on herbal textual research, resources and current utilization of Saxifragaceae plants used in Tibetan medicine, summarizing the varieties, establishing improved quality standards, and perfor-ming a comparative study on therapeutic material basis and biological activity of different original plants, in order to promote rational use of these medicinal plant resources, and ensuring the accuracy, safety, and effectiveness of clinical medication.


Subject(s)
Humans , Asian People , Drugs, Chinese Herbal , Medicine, Tibetan Traditional , Plants, Medicinal , Reference Standards , Saxifragaceae
3.
China Journal of Chinese Materia Medica ; (24): 3659-3665, 2020.
Article in Chinese | WPRIM | ID: wpr-828401

ABSTRACT

As a traditional Chinese medicinal material, Chrysosplenium is urgently needed for genetic resource investigation and protection research due to the decrease of its wild resources in recent years. After investigating the wild resources, we conducted genetic polymorphism and clustering studies of 24 species(a total of 36 samples) of Chrysosplenium using SRAP technique. The results showed that a total of 374 polymorphic bands were obtained using 18 pairs of SRAP primers to amplify these samples, on average of 20.7 bands for each primer pair. We used the biological software to analyze the population's genetic parameter and got the N_a value as 2.000 0, N_(e )value as 1.408 4, the average Nei's index as 0.263 5, and the average Shannon information index as 0.419 1. UPGMA cluster analysis showed that all the samples can be divided into three major groups at the genetic similarity coefficient of 0.70: there are 18 species(24 samples) gathered for the Ⅰ groups, 3 species or variation(7 samples) for Ⅱ groups, and 3 species(5 samples) for Ⅲ groups. The differences of these Chrysosplenium species at the molecular level are consistent with that of their geographical and ecological distribution. At the same time, we used SRAP technology to construct 36 DNA digital fingerprints of Chrysosplenium and obtained the unique molecular identification band type of each material. These results will provide effective methods and reliable basis for the identification, protection and genetic diversity analysis of the germplasm resources of Chrysosplenium, and lay a foundation for the further development and utilization of them.


Subject(s)
Cluster Analysis , DNA Fingerprinting , Genetic Markers , Genetic Variation , Phylogeny , Polymorphism, Genetic
4.
China Journal of Chinese Materia Medica ; (24): 1058-1063, 2019.
Article in Chinese | WPRIM | ID: wpr-777517

ABSTRACT

Chrysosplenium nudicaule,Tibetan name " Yajima",is recorded as an effective medicine for the treatment of liver and gallbladder diseases by Tibetan Pharmacopoeia published in the past dynasties,but its traditional efficacy has not yet been investigated by means of modern pharmacological research methods. In this paper,the protective effect of extract of C. nudicaule(ECN) on liver injury in mice was observed by using the mice model of intrahepatic cholestasis(IC) induced by α-naphthyl isothiocyanate(ANIT) and the possible mechanism by which ECN work as the therapeutic agent was discussed. The results showed that the serum levels of AST,ALT,ALP,DBIL,TBIL and TBA of the model mice were notably reduced in dose-dependent manner(P<0. 01,P<0. 05). The activity of SOD and GSH-Px in the liver homogenate of mice was increased,while the content of MDA was decreased(P<0. 01,P<0. 05).Pathological examination of liver in mice showed that ECN could improve the pathological changes of liver tissue in mice. The mRNA expression level of genes related to bile acid metabolism were detected by RT-PCR and the results suggested that ECN could significantly increase the expression of genes such as BSEP,FXR and MRP2(P<0. 01,P<0. 05),meanwhile significantly reduce the expression of CYP7 A1(P<0. 01,P<0. 05). These results confirmed the protective effect of ECN on intrahepatic cholestasis-induced liver injury in mice,and indicated that the mechanism may be related to activating FXR and its target genes,reducing bile acid synthesis and increasing bile acid excretion. This study provides a modern pharmacological basis for the clinical application of Yajima in Tibetan medicine.


Subject(s)
Animals , Mice , Cholestasis, Intrahepatic , Drug Therapy , Liver , Medicine, Tibetan Traditional , Plant Preparations , Pharmacology , Saxifragaceae , Chemistry
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