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Pharmacological activities and molecular mechanisms of Pulsatilla saponins

期刊

CHINESE MEDICINE
卷 17, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s13020-022-00613-8

关键词

Pulsatilla chinensis; Saponins; Anticancer; Anti-inflammatory; Organ protection

资金

  1. Macao Science and Technology Development Fund [0024/2020/A1]
  2. 2020 Guangdong Provincial Science and Technology Innovation Strategy Special Fund (Guangdong-Hong Kong-Macau Joint Lab) [2020B1212030006]
  3. Operation Fund of State Key Laboratory of Quality Research in Chinese Medicine [SKL-QRCM(UM)-2020-2022]

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This article reviews the pharmacological activities of Pulsatilla saponins (PS) and discusses the cellular or molecular mechanisms that mediate their multiple activities, such as inducing cancer cell apoptosis, inhibiting tumor angiogenesis, and protecting organs via anti-inflammatory and antioxidant measures. It aims to provide a comprehensive analysis and summary of research progress and future prospects in this field to facilitate further study and drug discovery of PS.
Saponins are found in a variety of higher plants and display a wide range of pharmacological activities, including expectorant, anti-inflammatory, vasoprotective and antimicrobial properties. Pulsatilla chinensis (P. chinensis, Bai Tou Weng, (sic)) has been used medically in China for thousands of years for the treatment of diseases caused by bacteria, and it is rich in triterpenoid saponins. In recent decades, anemoside B4 (Pulchinenoside C) is well studied since it has been used as a quality control marker for P. chinensis. At the same time, more and more other active compounds were found in the genus of Pulsatilla. In this review, we summarize the pharmacological activities of Pulsatilla saponins (PS) and discuss the cellular or molecular mechanisms that mediate their multiple activities, such as inducing cancer cell apoptosis, inhibiting tumor angiogenesis, and protecting organs via anti-inflammatory and antioxidant measures. We aim to provide comprehensive analysis and summary of research progress and future prospects in this field to facilitate further study and drug discovery of PS.

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