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1.
Nat Prod Bioprospect ; 13(1): 6, 2023 Feb 15.
Article in English | MEDLINE | ID: mdl-36790599

ABSTRACT

Euodiae Fructus, referred to as "Wuzhuyu" in Chinese, has been used as local and traditional herbal medicines in many regions, especially in China, Japan and Korea, for the treatment of gastrointestinal disorders, headache, emesis, aphtha, dermatophytosis, dysentery, etc. Substantial investigations into their chemical and pharmacological properties have been performed. Recently, interest in this plant has been focused on the different structural types of alkaloids like evodiamine, rutaecarpine, dehydroevodiamine and 1-methyl-2-undecyl-4(1H)-quinolone, which exhibit a wide range of pharmacological activities in preclinical models, such as anticancer, antibacterial, anti-inflammatory, anti-cardiovascular disease, etc. This review summarizes the up-to-date and comprehensive information concerning the botany, traditional uses, phytochemistry, pharmacology of Euodiae Fructus together with the toxicology and quality control, and discusses the possible direction and scope for future research on this plant.

2.
Biomed Chromatogr ; 36(6): e5357, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35191054

ABSTRACT

Sophorae tonkinensis Radix et Rhizoma (S. tonkinensis) has been recorded as a 'poisonous' Chinese herbal medicine in Chinese Pharmacopoeia 2020. The clinical reaction reports of S. tonkinensis indicated its neurotoxicity; however, there still exists dispute about its toxic substances. At present, no report is available on the blood and brain prototype research of S. tonkinensis. Most studies focused on alkaloids and less on other compounds. Moreover, the constituents absorbed into the blood and brain have been rarely investigated so far. This study established a rapid and efficient qualitative analysis method using UPLC-Q-TOF-MSE to characterize the ingredients of S. tonkinensis and those entering into the rat's body after oral administration. A total of 91 compounds were identified in S. tonkinensis, of which 28 were confirmed by the standards. In addition, 30 and 19 prototypes were also first identified in the rat's blood and brain, respectively. It was found that most flavonoids, except alkaloids, were detected in the rat's body and distributed in the cerebrospinal fluid, suggesting that flavonoids may be one of the important toxic or effective substances of S. tonkinensis. This finding provides new clues and data for clarifying the toxicity or efficacy of this medicinal plant.


Subject(s)
Alkaloids , Drugs, Chinese Herbal , Sophora , Alkaloids/chemistry , Animals , Chromatography, High Pressure Liquid/methods , Drugs, Chinese Herbal/chemistry , Flavonoids/analysis , Rats , Rhizome/chemistry , Sophora/chemistry
3.
Zhongguo Zhong Yao Za Zhi ; 46(23): 6278-6288, 2021 Dec.
Article in Chinese | MEDLINE | ID: mdl-34951255

ABSTRACT

Ultra-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry(UPLC-Q-TOF-MS) was used to investigate the metabolites of maackiain in rats based on the prediction function of UNIFI data processing system and liver microsomal incubation in vitro. Ten metabolites of maackiain after oral absorption were reasonably deduced and characterized. It was found that the biotransformation of maackiain mainly included phase Ⅰ oxidation, dehydrogenation, phase Ⅱ sulfate conjugation, glucosylation conjugation, and glucuronic acid conjugation. Among them, the product of glucosylation conjugation, trifolirhizin, was identified by comparison with the reference for the first time. Liver microsomal incubation in vitro further confirmed the metabolites and metabolic pathways of maackiain in rats. The metabolites in the blood, urine, and feces complemented each other, which revealed the migration, metabolism, and excretion modes of maackiain in rats. This study lays a foundation for the further investigation of the metabolic mechanism of maackiain in vivo and the in-depth research on the mechanism of pharmacodynamics and toxicity.


Subject(s)
Metabolic Networks and Pathways , Animals , Chromatography, High Pressure Liquid , Chromatography, Liquid , Pterocarpans , Rats , Rats, Sprague-Dawley
4.
Nat Prod Bioprospect ; 11(1): 119-126, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33389669

ABSTRACT

Four new 3,4-secocycloartane triterpenoids, pseudolactones A-D (1-4), were isolated from the ethanol extract of the cones of Pseudol arixamabilis. Their structures were established by extensive 1D- and 2D-NMR experiments. The cones of P. arixamabilis are enriched in the ring-expanded or cleaved cycloartane triterpenoids. This work provides new insight into cycloartane triterpenoids from the cones of P. arixamabilis.

5.
Fitoterapia ; 144: 104596, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32333960

ABSTRACT

Seven oleanane-type triterpenoid saponins, tunicosaponins B-D (1-3), F-I (4-7), along with eight known triterpenoid saponins (8-15), were isolated from the roots of Psammosilene tunicoides. The structures of compounds 1-7 were determined by comprehensive spectroscopic analysis, including 1D and 2D NMR techniques, mass spectrometry and chemical methods. Triterpene glycosides have been considered as major active constituents of P. tunicoides. This work provides a more complete insight into the saponin constituents of P. tunicoides.


Subject(s)
Caryophyllaceae/chemistry , Plant Roots/chemistry , Saponins/chemistry , Triterpenes/chemistry , China , Molecular Structure , Phytochemicals/chemistry , Phytochemicals/isolation & purification , Saponins/isolation & purification , Triterpenes/isolation & purification
6.
Nat Prod Bioprospect ; 10(1): 13-21, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31786736

ABSTRACT

Eight new triterpenoids were isolated from Ainsliaea latifolia. The structures of these compounds were elucidated by interpretation of spectroscopic data, including HRESIMS and NMR data. Compounds 4-6 are identified as rare trinorcucurbitane or tetranorcucurbitane triterpenoids. The absolute configurations of compounds 1 and 2 were confirmed by Snatzke's method. All compounds were evaluated for their inhibition against cyclooxyenase-2 (COX-2), in which compound 4 showed significant inhibitory effect against COX-2 with IC50 value of 3.98 ± 0.32 µM, comparable to that of positive control NS-398 (IC50 4.14 ± 0.28 µM).

7.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 27(3): 259-62, 2010 Jun.
Article in Chinese | MEDLINE | ID: mdl-20533261

ABSTRACT

OBJECTIVE: To identify the gene mutation for two Chinese families with autosomal dominant non-syndromic hearing impairment(NSHI). METHODS: Two NSHI pedigrees with common ancestor were identified by clinical examination and family investigation. Linkage analysis was performed for all known NSHI loci, and all exons and exon-intron boundaries of the non-muscle myosin heavy chain 14 (MYH14) gene were amplified by PCR and sequenced. RESULTS: The disease-causing gene of these 2 pedigrees was fine mapped to the DFNA4 locus on 19q13.33. A heterozygous transition of c. 359T>C (p.S120L) in MYH14 gene was identified. The mutation was detected in all patients but not in normal members in the two families. CONCLUSION: It is the first report that mutation in MYH14 gene can cause dominant non-syndromic hearing impairment in Asian population, suggesting that MYH14 gene can be a disease-causing gene of Chinese patients with hearing impairment.


Subject(s)
Hearing Loss/genetics , Myosin Heavy Chains/genetics , Myosin Type II/genetics , Female , Humans , Male , Microsatellite Repeats/genetics , Mutation , Pedigree , Polymerase Chain Reaction
8.
Yi Chuan ; 29(2): 172-6, 2007 Feb.
Article in Chinese | MEDLINE | ID: mdl-17369171

ABSTRACT

Nonsyndromic neurosensory hearing impairment (NSHI) is the most common human sensory disorder. Approximately one in a thousand children is born with prelingual hearing loss. Mutations of the GJB2 gene, which encodes Connexin 26, are the most common cause of hereditary NSHI in many ethnic populations, and are responsible for 50% of cases of autosomal recessive NSHI. In this study, we recruited a complex NSHI pedigree from Jiangsu province of China. Linkage analysis of microsatellite markers flanking all known arNSHI genes linked the causative gene in the family to the polymorphic macrosatellite marker D13S175. Direct DNA sequencing of the whole coding region of GJB2 revealed that a common homozygous mutation 235delC was responsible for most of the affected members in the NSHI family.


Subject(s)
Connexins/genetics , Hearing Loss/genetics , Adult , China , Chromosome Mapping , Connexin 26 , Family Health , Female , Humans , Male , Pedigree , Polymerase Chain Reaction
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