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Biomedical features and therapeutic potential of rosmarinic acid

期刊

ARCHIVES OF PHARMACAL RESEARCH
卷 45, 期 4, 页码 205-228

出版社

PHARMACEUTICAL SOC KOREA
DOI: 10.1007/s12272-022-01378-2

关键词

Rosmarinic acid; Bioactive phenolic compounds; Natural products; Drug discovery; Anti-cancer therapy

资金

  1. Ministry of Education
  2. King Abdulaziz University, DSR, Jeddah, Saudi Arabia
  3. Council of Scientific and Industrial Research [09/466(0238)/2019-EMRI]
  4. [IFPRP: 350-130-1442]

向作者/读者索取更多资源

Rosmarinic acid (RA), a bioactive phenolic compound commonly found in plants, has been shown to have multiple therapeutic benefits and potential clinical applications in various human diseases, including cancer, diabetes, and neurodegenerative disorders. Additionally, its high antioxidant capacity makes it a potential nutraceutical compound in the food industry.
For decades, the use of secondary metabolites of various herbs has been an attractive strategy in combating human diseases. Rosmarinic acid (RA) is a bioactive phenolic compound commonly found in plants of Lamiaceae and Boraginaceae families. RA is biosynthesized using amino acids tyrosine and phenylalanine via enzyme-catalyzed reactions. However, the chemical synthesis of RA involves an esterification reaction between caffeic acid and 3,4-dihydroxy phenyl lactic acid contributing two phenolic rings to the structure of RA. Several studies have ascertained multiple therapeutic benefits of RA in various diseases, including cancer, diabetes, inflammatory disorders, neurodegenerative disorders, and liver diseases. Many previous scientific papers indicate that RA can be used as an anti-plasmodic, anti-viral and anti-bacterial drug. In addition, due to its high anti-oxidant capacity, this natural polyphenol has recently gained attention for its possible application as a nutraceutical compound in the food industry. Here we provide state-of-the-art, flexible therapeutic potential and biomedical features of RA, its implications and multiple uses. Along with various valuable applications in safeguarding human health, this review further summarizes the therapeutic advantages of RA in various human diseases, including cancer, diabetes, neurodegenerative diseases. Furthermore, the challenges associated with the clinical applicability of RA have also been discussed.

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