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1.
J Ethnopharmacol ; 330: 118224, 2024 Aug 10.
Article in English | MEDLINE | ID: mdl-38642623

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: Sophorae tonkinensis Radix et Rhizoma (STR) is an extensively applied traditional Chinese medicine (TCM) in southwest China. However, its clinical application is relatively limited due to its hepatotoxicity effects. AIM OF THE STUDY: To understand the material foundation and liver injury mechanism of STR. MATERIALS AND METHODS: Chemical compositions in STR and its prototypes in mice were profiled by ultra-performance liquid chromatography coupled quadrupole-time of flight mass spectrometry (UPLC-Q/TOF MS). STR-induced liver injury (SILI) was comprehensively evaluated by STR-treated mice mode. The histopathologic and biochemical analyses were performed to evaluate liver injury levels. Subsequently, network pharmacology and multi-omics were used to analyze the potential mechanism of SILI in vivo. And the target genes were further verified by Western blot. RESULTS: A total of 152 compounds were identified or tentatively characterized in STR, including 29 alkaloids, 21 organic acids, 75 flavonoids, 1 quinone, and 26 other types. Among them, 19 components were presented in STR-medicated serum. The histopathologic and biochemical analysis revealed that hepatic injury occurred after 4 weeks of intragastric administration of STR. Network pharmacology analysis revealed that IL6, TNF, STAT3, etc. were the main core targets, and the bile secretion might play a key role in SILI. The metabolic pathways such as taurine and hypotaurine metabolism, purine metabolism, and vitamin B6 metabolism were identified in the STR exposed groups. Among them, taurine, hypotaurine, hypoxanthine, pyridoxal, and 4-pyridoxate were selected based on their high impact value and potential biological function in the process of liver injury post STR treatment. CONCLUSIONS: The mechanism and material foundation of SILI were revealed and profiled by a multi-omics strategy combined with network pharmacology and chemical profiling. Meanwhile, new insights were taken into understand the pathological mechanism of SILI.


Subject(s)
Chemical and Drug Induced Liver Injury , Drugs, Chinese Herbal , Rhizome , Animals , Chemical and Drug Induced Liver Injury/pathology , Chemical and Drug Induced Liver Injury/metabolism , Mice , Male , Drugs, Chinese Herbal/pharmacology , Sophora/chemistry , Liver/drug effects , Liver/pathology , Liver/metabolism , Metabolomics , Chromatography, High Pressure Liquid , Network Pharmacology , Multiomics , Animals, Outbred Strains
2.
Acta Pharmaceutica Sinica ; (12): 3090-3098, 2023.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-999053

ABSTRACT

Sophorae Flavescentis Radix is the dried root of Sophora flavescens Ait. and Sophorae Tonkinensis Radix et Rhizoma is the dried root and rhizome of Sophora tonkinensis Gagnep. The two drugs are both from the same genus Sophora, having similar and different compositions and efficacies, however, their differences are not fully demonstrated in current standard. In this study, the high-performance thin-layer chromatography with multi-dimensional and multi-level features combined with electric spray mass spectrometry (HPTLC-ESI-MS) was used to discover and identify the characteristic zones in extracts of Sophorae Flavescentis Radix and Sophorae Tonkinensis Radix et Rhizoma, after optimizing the preparation method of the test solution and chromatographic parameters. As a result, 17 main characteristic zones were found on HPTLC chromatograms of Sophorae Flavescentis Radix and Sophorae Tonkinensis Radix et Rhizoma, among them, besides 3 known chemicals, another 12 unknown components were identified by HPTLC-ESI-MS, they are 1 alkaloid and 11 flavonoids. The identification results were verified by the reference standards partially and nuclear magnetic resonance spectra after guided-isolation. Finally, a unified HPTLC specific identification method with different markers was established to identify Sophorae Flavescentis Radix and Sophorae Tonkinensis Radix et Rhizoma simultaneously. Thanks to abundant chemical information provided when using diverse polarity mobile phases and derivatization reagents, the HPTLC technology offers a convenient strategy for discovery, quality evaluation, and identification of target chemicals when connecting with mass spectrometry.

3.
Molecules ; 27(24)2022 Dec 07.
Article in English | MEDLINE | ID: mdl-36557783

ABSTRACT

Sophorae tonkinensis Radix et Rhizoma (STR) is a traditional Chinese herbal medicine. STR can reduce aminotransferase activity; however, the specific mechanism remains unclear. Here, we explored the potential therapeutic effects and hepatoprotective mechanism of STR on liver damage in mice. The chemical characteristics of the extract were characterized using ultra-high-performance liquid chromatography-tandem mass spectrometry fingerprinting, and its antioxidant capacity was verified using free radical scavenging tests. Forty-eight Kunming mice were randomly assigned into six groups. The model was made after the corresponding drug was given. The results showed that the STR water extract pretreatment significantly reduced serum aminotransferase and related liver function indicators compared with that in the model group. Furthermore, the STR water extract pretreatment significantly inhibited the apoptosis of liver cells, the level of liver high-mobility group box 1 (HMGB1), and inflammatory factors in hepatic tissue compared with that in the model group, and significantly downregulated the levels of toll-like receptor 4 (TLR4), Myeloid differentiation factor 88 (MyD88), and nuclear factor kappa B (NF-κB) compared with those in the model group. Overall, the STR water extract exerted a significant protective effect on CCL4-induced acute liver injury in this study, and the accurate active ingredients of the STR water extract will be explored in the near future.


Subject(s)
Chemical and Drug Induced Liver Injury , Drugs, Chinese Herbal , Sophora , Mice , Animals , Drugs, Chinese Herbal/pharmacology , Drugs, Chinese Herbal/chemistry , Carbon Tetrachloride/toxicity , Sophora/chemistry , Liver , Transaminases , Chemical and Drug Induced Liver Injury/drug therapy , Chemical and Drug Induced Liver Injury/prevention & control
4.
Front Pharmacol ; 13: 1015008, 2022.
Article in English | MEDLINE | ID: mdl-36467100

ABSTRACT

Drug-induced liver injury (DILI) is a major challenge to the development and clinical application of drugs, especially limits the global application of Chinese herbal medicines, because the material basis and mechanisms of some Chinese herbal medicines are not well clear. In this study, a comprehensive method integrating metabolomics and systems toxicology (SysT) was used to investigate how the main substances in Sophorae Tonkinensis Radix et Rhizoma (STRER) influence the metabolic pathways and molecular mechanisms of hepatotoxicity. Through a 28-day continuous oral administration toxicity study combined with serum metabolomics analyses, the aqueous, ethanol-precipitation and dichloromethane extracts of STRER exhibited significant hepatotoxic effects. In addition, 19 differential metabolites with a time-dose-effect relationship were identified in rats. The primary bile acid biosynthesis pathway was significantly altered, which was consistent with the findings of the SysT analysis. Furthermore, through the quantification of bile acids in serum, 16 differential bile acids were identified as being significantly changed; moreover, 21 relevant targets which intersected with the hepatotoxic targets of STRER were identified. Molecular docking was used to confirm the validation of bindings between targets and corresponding compounds, and finally, six important compounds and 14 potential targets were identified to be involved in STRER-induced liver injury in relation to bile acid metabolism.

5.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-940477

ABSTRACT

Sophorae Tonkinensis Radix et Rhizoma (STRER) is a commonly used Chinese medicine in clinical practice, which has the effects of clearing heat, removing the toxin, alleviating edema, and relieving sore throat. In recent years, the clinical reports of STRER-induced poisoning have gradually increased, with neurotoxicity and hepatotoxicity as the main characteristics of the acute attack. Timely treatment will lead to the good prognosis, but long-term or high-dose administration will cause irreversible damage. Therefore, the safety of clinical use of STRER should be highlighted. The chemical components in STRER mainly include alkaloids, flavonoids, triterpenoids, triterpenoid saponins, and polysaccharides, as well as small amounts of proteins, organic acids, and trace elements, where alkaloids both serve as the important material basis for the pharmacodynamic action and the main substances causing toxicity. The adverse events induced by STRER and its alkaloids include nerve injury, Hepatic injury, cardiovascular injury, kidney injury and reproductive injury, and gastrointestinal reaction. Quinolizidine alkaloids are the main toxic components, mainly including matrine, oxymatrine, cytisine, sophocarpine, oxysophocarpine, sophoridine, sophoramine, and lehmannine. Many studies have been carried out on the toxicity of different extracts and alkaloids of STRER in China and abroad, but there are no comprehensive and detailed reports on the toxicity mechanism of alkaloids in STRER. As a Chinese medicine, STRER is widely used. It's an urgent problem to clarify the material basis and mechanism of toxicity caused by STRER and reduce the toxicity for good clinical application. The present study reviewed the components of alkaloids, toxicity, and toxic mechanism of extracts and alkaloids in STRER to provide the basis for further development and clinical safe and effective application of STRER.

6.
Zhongguo Zhong Yao Za Zhi ; 46(7): 1763-1768, 2021 Apr.
Article in Chinese | MEDLINE | ID: mdl-33982480

ABSTRACT

To analyze the study advance of Sophorae Tonkinensis Radix et Rhizoma, this study utilized CiteSpace 5.6.R5 software to conduct bibliometrics analysis on the Chinese literatures of Sophorae Tonkinensis Radix et Rhizoma from 1990 to 2020 included in the CNKI database retrieval platform. The analysis contents involved the number of published papers, co-authors, cooperative institutions, emergence, co-occurrence and clustering of keywords. A total of 808 Chinese literatures were included in the study, of which 17 were published by SUN Rong, the author with the most published papers, and formed a research team centered on SUN Rong; the analysis of the cooperation of publishing institutions showed that the Drug Safety Evaluation Research Center, Shanghai University of Traditional Chinese Medicine was the organization with the largest number of publications, with a total of 29 articles. It also formed a scientific research coorperation institution with Shandong Academy of Traditional Chinese Medicine as the core, and formed a relatively close cooperative network relationship. The analysis of literature keywords showed that the research direction was concentrated on the traditional Chinese medicine of Sophorae Tonkinensis Radix et Rhizoma, pharmacological mechanism, and side effects, active ingredients, etc. Among them, the research on the efficacy and toxicity of the active ingredients of Sophorae Tonkinensis Radix et Rhizoma has become a hot trend.


Subject(s)
Drugs, Chinese Herbal , Sophora , China , Medicine, Chinese Traditional , Rhizome
7.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-879090

ABSTRACT

To analyze the study advance of Sophorae Tonkinensis Radix et Rhizoma, this study utilized CiteSpace 5.6.R5 software to conduct bibliometrics analysis on the Chinese literatures of Sophorae Tonkinensis Radix et Rhizoma from 1990 to 2020 included in the CNKI database retrieval platform. The analysis contents involved the number of published papers, co-authors, cooperative institutions, emergence, co-occurrence and clustering of keywords. A total of 808 Chinese literatures were included in the study, of which 17 were published by SUN Rong, the author with the most published papers, and formed a research team centered on SUN Rong; the analysis of the cooperation of publishing institutions showed that the Drug Safety Evaluation Research Center, Shanghai University of Traditional Chinese Medicine was the organization with the largest number of publications, with a total of 29 articles. It also formed a scientific research coorperation institution with Shandong Academy of Traditional Chinese Medicine as the core, and formed a relatively close cooperative network relationship. The analysis of literature keywords showed that the research direction was concentrated on the traditional Chinese medicine of Sophorae Tonkinensis Radix et Rhizoma, pharmacological mechanism, and side effects, active ingredients, etc. Among them, the research on the efficacy and toxicity of the active ingredients of Sophorae Tonkinensis Radix et Rhizoma has become a hot trend.


Subject(s)
China , Drugs, Chinese Herbal , Medicine, Chinese Traditional , Rhizome , Sophora
8.
Zhongguo Zhong Yao Za Zhi ; 45(22): 5525-5529, 2020 Nov.
Article in Chinese | MEDLINE | ID: mdl-33350215

ABSTRACT

Three phenylpropanoid glycosides were purified by extensive chromatographic techniques including column chromatography over microporous resin, MCI, diol, sephadex LH-20, reverse phase C_(18) from water-extracts of Sophorae Tonkinensis Radix et Rhizoma. Their planar structures were elucidated by combination of various spectroscopic method, such as IR, UV, MS, and NMR. The absolute configuration of aglycone was determined by quantum chemical calculations. Their structures were elucidated as(8R)-3-(4-hydroxyphenyl)-1-propanol-2-O-ß-D-glucopyranoside(1), kalopanaxin D(2),(E)-4-hydroxycinnamyl alcohol 4-O-[2'-O-ß-D-apiofuranosyl(1″→2')]-ß-D-glucopyranoside(3). Compound 1 was undescribed previously. Compounds 2 and 3 were firstly isolated from Sophora genus.


Subject(s)
Drugs, Chinese Herbal , Sophora , Ethanol , Glycosides , Rhizome
9.
Zhongguo Zhong Yao Za Zhi ; 45(7): 1664-1669, 2020 Apr.
Article in Chinese | MEDLINE | ID: mdl-32489047

ABSTRACT

The traditional Chinese medicine(TCM) quality constant herbal slices evaluation method was applied to evaluate the grade of Sophorae Tonkinensis Radix et Rhizoma based on the combination of traditional character identification and modern scientific and technological methods. The TCM quality constant evaluation method was used to determine the appearance and index content of medicinal slices, calculate the quality constant and percentile quality constant of Sophorae Tonkinensis Radix et Rhizoma from different sources, and discuss their classification. The quality constants of 15 batches of Sophorae Tonkinensis Radix et Rhizoma slices were between 0.004 and 0.063. The slices with the percentage quality constant ≥80% were classified as the first grade; those with the percentage quality constant ≥50% and <80% were classified as the second grade; and those with the percentage quality constant <50% were classified as the third grade. Then the slices with the quality constant ≥0.050 were classified as the first grade; those with the quality constant ≥0.032 and <0.050 were classified as the second grade; and those with the quality constant <0.032 were classified as the third grade. According to the results, the 15 batches of Sophorae Tonkinensis Radix et Rhizoma slices were divided into 1 batch of the first grade, 4 batches of the second grade, and 10 batches of the third grade. The quality constant evaluation method established is scientific, objective, simple and feasible. The application of the method in Sophorae Tonkinensis Radix et Rhizoma slices has reasonable results, which is helpful to promote the classification of Sophorae Tonkinensis Radix et Rhizoma and promotes the high-quality application of Sophorae Tonkinensis Radix et Rhizoma.


Subject(s)
Drugs, Chinese Herbal , Rhizome , Medicine, Chinese Traditional , Sophora
10.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-878789

ABSTRACT

Three phenylpropanoid glycosides were purified by extensive chromatographic techniques including column chromatography over microporous resin, MCI, diol, sephadex LH-20, reverse phase C_(18) from water-extracts of Sophorae Tonkinensis Radix et Rhizoma. Their planar structures were elucidated by combination of various spectroscopic method, such as IR, UV, MS, and NMR. The absolute configuration of aglycone was determined by quantum chemical calculations. Their structures were elucidated as(8R)-3-(4-hydroxyphenyl)-1-propanol-2-O-β-D-glucopyranoside(1), kalopanaxin D(2),(E)-4-hydroxycinnamyl alcohol 4-O-[2'-O-β-D-apiofuranosyl(1″→2')]-β-D-glucopyranoside(3). Compound 1 was undescribed previously. Compounds 2 and 3 were firstly isolated from Sophora genus.


Subject(s)
Drugs, Chinese Herbal , Ethanol , Glycosides , Rhizome , Sophora
11.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-872872

ABSTRACT

Objective:To investigate that the effect of ethanol extracts from Sophorae Tonkinensis Radix et Rhizoma on the expression of transforming growth factor-β1 (TGF-β1)and Smad3 in the hypertrophic scars of rabbit ears and elucidate its mechanism to improve hypertrophic scars. Method:The model of hypertrophic ear scar model was established by damaging the inner skin of ears in New Zealand white rabbits.The 49 rabbits were randomly divided into control group, model group, low, medium and high-dose ethanol extracts groups from Sophorae Tonkinensis Radix et Rhizoma (0.4,1.0,2.0 g·kg-1), asiaticoside ointment group(5 mg·kg-1) and compound heparin sodium allantoin gel group(20 mg·kg-1), 7 rabbits per group. Except control group, the different drug about 0.5 mL had been applied the hypertrophic scar of rabbit ears once a day. After 42 days, the tissues of hypertrophic scar were obtained. Hematoxylin-eosin(HE)staining was used to observe the pathological changes of rabbit ear scar tissue and determine the scar hyperplasia index. The expression of TGF-β1 and Smad3 in scar tissue of rabbit ears were detected by immunohistochemistry, Western blot and reverse transcription PCR(RT-PCR). Result:Compared with control group, the pathological changes of the ear scars in the model group showed obvious hyperplasia and higher hyperplasia index (P<0.01). Meanwhile, the expressions of TGF-β1 and Smad3 in scar tissue of rabbit ears were significantly increased (P<0.01). Compared with model group, the pathological structures of the ear scar tissue were significantly improved and the hyperplasia index of ear scar tissue was clearly reduced in medium and high-dose groups of ethanol extracts from Sophorae Tonkinensis Radix et Rhizoma(P<0.05,P<0.01). The protein and mRNA expression of TGF-β1 and Smad3 in scar tissue were also decreased in different group of ethanol extracts from Sophorae Tonkinensis Radix et Rhizoma compared with the model group (P<0.05,P<0.01). Conclusions:Ethanol extracts from Sophorae Tonkinensis Radix et Rhizoma may play a curative role in inhibiting hypertrophic scars by reducing the expression of TGF-β1 and Smad3 in scar tissue and inhibiting the TGF-β1/Smads signal transduction pathway. These provides the experimental basis for the clinical application of Sophorae Tonkinensis Radix et Rhizoma in the treatment of hypertrophic scars.

12.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-851742

ABSTRACT

Sophorae Tonkinensis Radix et Rhizoma is known as the important drug for treating sore throat and is widely used in clinic. Because of the coexisting of its efficacy and poison, Sophorae Tonkinensis Radix et Rhizoma often leads to a series of safety problems in the clinical application process. In this study, we attempt to analyze the ultimate cause of the toxicity of Sophorae Tonkinensis Radix et Rhizoma by reviewing nearly 20 years of literature, discuss the substance of its efficacy/toxicity from the point of view of chemical composition, and put forward exploratory thinking on its clinical rational application.

13.
Zhongguo Zhong Yao Za Zhi ; 42(13): 2439-2442, 2017 Jul.
Article in Chinese | MEDLINE | ID: mdl-28840680

ABSTRACT

Sophorae Tonkinensis Radix et Rhizoma, which has been commonly used in clinic, shows activities in antitumor, antivirus, antibacteria, analgesia, anti-inflammation, anti-liver injury, anti-oxidation and immune enhancement, but can cause liver toxicity, neurotoxicity, gastrointestinal toxicity and respiratory toxicity. Its pharmacological effect and toxicity are related to extraction process, dosage and administration time. Therefore, exploration of appropriate extraction process, toxicity-effect dosage range, toxic substance basis provides guarantee for attenuation and safe clinical medication.


Subject(s)
Drugs, Chinese Herbal/pharmacology , Rhizome/chemistry , Sophora/chemistry , Drugs, Chinese Herbal/toxicity , Humans , Sophora/toxicity
14.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-258498

ABSTRACT

Sophorae Tonkinensis Radix et Rhizoma, which has been commonly used in clinic, shows activities in antitumor, antivirus, antibacteria, analgesia, anti-inflammation, anti-liver injury, anti-oxidation and immune enhancement, but can cause liver toxicity, neurotoxicity, gastrointestinal toxicity and respiratory toxicity. Its pharmacological effect and toxicity are related to extraction process, dosage and administration time. Therefore, exploration of appropriate extraction process, toxicity-effect dosage range, toxic substance basis provides guarantee for attenuation and safe clinical medication.

15.
Zhongguo Zhong Yao Za Zhi ; 41(24): 4628-4634, 2016 Dec.
Article in Chinese | MEDLINE | ID: mdl-28936848

ABSTRACT

In this study, an HPLC method was developed for simultaneous determination of seven alkaloids (cytosine, oxymatrine, N-oxysophocarpine, N-methylcytisine, sophoranol, matrine, and sophocarpine) and three flavonoids (trifolirhizin, fermononetin, and maackiain) from different samples of Sophorae Tonkinensis Radix et Rhizoma. Samples were analyzed on a Welch XtimateTM C18 column (4. 6 mm× 250 mm, 5 µm) eluted with the mobile phase of acetonitrile (A) and 0.01 mol•L⁻¹ ammonium acetate solution (pH 8.0) (B) in a linear gradient mode as follows: 0-20 min,4%-14% A;20-30 min,14%-25% A;30-45 min,25%-40% A;45-65 min,40%-55% A;65-75 min,55% A. The flow rate of the mobile phase, the column temperature, and the PDA detector wavelength were set at 1.0 mL•min⁻¹, 30 ℃, and 225 nm, respectively. For the method validation, these ten compounds showed good separation and satisfactory linearity (r≥0.999 7) within the concentration ranges tested. The mean recoveries were in the range of 98.60% to 102.6% with the RSD (n=6) between 0.60% and 3.7%. This method was proved to be simple, accurate and repeatable. The quantitative results showed that there were significant differences in the contents of seven alkaloids and three flavonoids among the different samples. This result revealed that the quality of Sophorae Tonkinensis Radix et Rhizoma varied widely. This method could be used for the simultaneous determination of the multi-ingredients from Sophorae Tonkinensis Radix et Rhizoma, which might provide scientific evidences to evaluate/control the quality of Sophorae Tonkinensis Radix et Rhizoma, comprehensively.


Subject(s)
Alkaloids/analysis , Drugs, Chinese Herbal/chemistry , Flavonoids/analysis , Sophora/chemistry , Chromatography, High Pressure Liquid
16.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-231010

ABSTRACT

In this study, an HPLC method was developed for simultaneous determination of seven alkaloids (cytosine, oxymatrine, N-oxysophocarpine, N-methylcytisine, sophoranol, matrine, and sophocarpine) and three flavonoids (trifolirhizin, fermononetin, and maackiain) from different samples of Sophorae Tonkinensis Radix et Rhizoma. Samples were analyzed on a Welch XtimateTM C₁₈ column (4. 6 mm× 250 mm, 5 μm) eluted with the mobile phase of acetonitrile (A) and 0.01 mol•L⁻¹ ammonium acetate solution (pH 8.0) (B) in a linear gradient mode as follows: 0-20 min,4%-14% A;20-30 min,14%-25% A;30-45 min,25%-40% A;45-65 min,40%-55% A;65-75 min,55% A. The flow rate of the mobile phase, the column temperature, and the PDA detector wavelength were set at 1.0 mL•min⁻¹, 30 ℃, and 225 nm, respectively. For the method validation, these ten compounds showed good separation and satisfactory linearity (r≥0.999 7) within the concentration ranges tested. The mean recoveries were in the range of 98.60% to 102.6% with the RSD (n=6) between 0.60% and 3.7%. This method was proved to be simple, accurate and repeatable. The quantitative results showed that there were significant differences in the contents of seven alkaloids and three flavonoids among the different samples. This result revealed that the quality of Sophorae Tonkinensis Radix et Rhizoma varied widely. This method could be used for the simultaneous determination of the multi-ingredients from Sophorae Tonkinensis Radix et Rhizoma, which might provide scientific evidences to evaluate/control the quality of Sophorae Tonkinensis Radix et Rhizoma, comprehensively.

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