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1.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 321-338, 2021.
Artículo en Inglés | WPRIM | ID: wpr-881074

RESUMEN

Cephalotaxus is the only genus of Cephalotaxaceae family, and its natural resources are declining due to habitat fragmentation, excessive exploitation and destruction. In many areas of China, folk herbal doctors traditionally use Cephalotaxus plants to treat innominate swollen poison, many of which are cancer. Not only among Han people, but also among minority ethnic groups, Cephalotaxus is used to treat various diseases, e.g., cough, internal bleeding and cancer in Miao medicine, bruises, rheumatism and pain in Yao medicine, and ascariasis, hookworm disease, scrofula in She medicine, etc. Medicinal values of some Cephalotaxus species and compounds are acknowledged officially. However, there is a lack of comprehensive review summarizing the ethnomedicinal knowledge of Cephalotaxus, relevant medicinal phytometabolites and their bioactivities. The research progresses in ethnopharmacology, chemodiversity, and bioactivities of Cephalotaxus medicinal plants are reviewed and commented here. Knowledge gaps are pinpointed and future research directions are suggested. Classic medicinal books, folk medicine books, herbal manuals and ethnomedicinal publications were reviewed for the genus Cephalotaxus (Sanjianshan in Chinese). The relevant data about ethnobotany, phytochemistry, and pharmacology were collected as comprehensively as possible from online databases including Scopus, NCBI PubMed, Bing Scholar, and China National Knowledge Infrastructure (CNKI). "Cephalotaxus", and the respective species name were used as keywords in database search. The obtained articles of the past six decades were collated and analyzed. Four Cephalotaxus species are listed in the official medicinal book in China. They are used as ethnomedicines by many ethnic groups such as Miao, Yao, Dong, She and Han. Inspirations are obtained from traditional applications, and Cephalotaxus phytometabolites are developed into anticancer reagents. Cephalotaxine-type alkaloids, homoerythrina-type alkaloids and homoharringtonine (HHT) are abundant in Cephalotaxus, e.g., C. lanceolata, C. fortunei var. alpina, C. griffithii, and C. hainanensis, etc. New methods of alkaloid analysis and purification are continuously developed and applied. Diterpenoids, sesquiterpenoids, flavonoids, lignans, phenolics, and other components are also identified and isolated in various Cephalotaxus species. Alkaloids such as HHT, terpenoids and other compounds have anticancer activities against multiple types of human cancer. Cephalotaxus extracts and compounds showed anti-inflammatory and antioxidant activities, immunomodulatory activity, antimicrobial activity and nematotoxicity, antihyperglycemic effect, and bone effect, etc. Drug metabolism and pharmacokinetic studies of Cephalotaxus are increasing. We should continue to collect and sort out folk medicinal knowledge of Cephalotaxus and associated organisms, so as to obtain new enlightenment to translate traditional tips into great therapeutic drugs. Transcriptomics, genomics, metabolomics and proteomics studies can contribute massive information for bioactivity and phytochemistry of Cephalotaxus medicinal plants. We should continue to strengthen the application of state-of-the-art technologies in more Cephalotaxus species and for more useful compounds and pharmacological activities.

2.
Chinese Traditional and Herbal Drugs ; (24): 5645-5652, 2019.
Artículo en Chino | WPRIM | ID: wpr-850653

RESUMEN

Marine natural products (MNPs) are the source of modern marine drugs, but they have the characteristics of strong guiding function and weak druggability. How to quickly and efficiently discover new bioactive MNPs and optimize their druggability is an important idea for the research and development of innovative marine drugs. This article has made some discussions and suggestions on this emphasis from the origin and characteristics of MNPs, marine microorganisms with specific productivity for MNPs and the strategies of microbial MNPs with high yields and diverse structures, as well as the structural modification for medicinal use of MNPs.

3.
Acta Pharmaceutica Sinica B ; (6): 146-158, 2017.
Artículo en Inglés | WPRIM | ID: wpr-256770

RESUMEN

The Ranunculaceae genus(order Ranunculales), comprising more than 150 species, mostly herbs, has long been used in folk medicine and worldwide ethnomedicine. Various medicinal compounds have been found inplants, especially triterpenoid saponins, some of which have shown anti-cancer activities. Somecompounds and extracts display immunomodulatory, anti-inflammatory, antioxidant, and antimicrobial activities. More than 50 species have ethnopharmacological uses, which provide clues for modern drug discovery.compounds exert anticancer and other bioactivitiesmultiple pathways. However, a comprehensive review of themedicinal resources is lacking. We here summarize the ethnomedical knowledge and recent progress on the chemical and pharmacological diversity ofmedicinal plants, as well as the emerging molecular mechanisms and functions of these medicinal compounds. The phylogenetic relationships ofspecies were reconstructed based on nuclear ITS and chloroplast markers. The molecular phylogeny is largely congruent with the morphology-based classification. Commonly used medicinal herbs are distributed in each subgenus and section, and chemical and biological studies of more unexplored taxa are warranted. Gene expression profiling and relevant "omics" platforms could reveal differential effects of phytometabolites. Genomics, transcriptomics, proteomics, and metabolomics should be highlighted in deciphering novel therapeutic mechanisms and utilities ofphytometabolites.

4.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 507-520, 2015.
Artículo en Inglés | WPRIM | ID: wpr-812516

RESUMEN

This paper reports a pharmacophylogenetic study of a medicinal plant family, Ranunculaceae, investigating the correlations between their phylogeny, chemical constituents, and pharmaceutical properties. Phytochemical, ethnopharmacological, and pharmacological data were integrated in the context of the systematics and molecular phylogeny of the Ranunculaceae. The chemical components of this family included several representative metabolic groups: benzylisoquinoline alkaloids, ranunculin, triterpenoid saponin, and diterpene alkaloids, among others. Ranunculin and magnoflorine were found to coexist in some genera. The pharmacophylogenetic analysis, integrated with therapeutic information, agreed with the taxonomy proposed previously, in which the family Ranunculaceae was divided into five sub-families: Ranunculoideae, Thalictroideae, Coptidoideae, Hydrastidoideae, and Glaucidioideae. It was plausible to organize the sub-family Ranunculoideae into ten tribes. The chemical constituents and therapeutic efficacy of each taxonomic group were reviewed, revealing the underlying connections between phylogeny, chemical diversity, and clinical use, which should facilitate the conservation and sustainable utilization of the pharmaceutical resources derived from the Ranunculaceae.


Asunto(s)
Humanos , Alcaloides , Usos Terapéuticos , Aporfinas , Usos Terapéuticos , Biodiversidad , Furanos , Metilglicósidos , Filogenia , Fitoterapia , Extractos Vegetales , Química , Usos Terapéuticos , Plantas Medicinales , Química , Ranunculaceae , Química , Saponinas , Usos Terapéuticos , Terpenos , Usos Terapéuticos
5.
Mem. Inst. Oswaldo Cruz ; 86(supl.2): 5-8, 1991. ilus
Artículo en Inglés | LILACS | ID: lil-623930

RESUMEN

In contrast to China where vegatation is predominantly herbaceous, vegetation in Brazil is commonly arboreous. This fact may explain why Chinese drugs are usually acetate derived, while actual and potential natural therapeutic agents from Brazil are mostly shikimate derived. Only relatively few compounds isolated from Brazilian plants have been submitted to adequate pharmacological testing .


Asunto(s)
Plantas Medicinales/clasificación , Plantas Medicinales/metabolismo , Productos Biológicos/síntesis química , Productos Biológicos/química , Terpenos , Brasil , Lignanos , Ecología
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