Department of Plant Biotechnology, College of Agriculture and Food Sciences, King Faisal University, Al-Ahsa 31982, Al Hofuf, Saudi Arabia.
Department of Life Sciences, CHRIST (Deemed to be University), Bangalore, 560029, India.
Appl Microbiol Biotechnol. 2023 Jul;107(14):4459-4469. doi: 10.1007/s00253-023-12587-0. Epub 2023 Jun 2.
Diabetes is a chronic disease that affects several organs and can be treated using phytochemicals found in medicinal plants. Gymnema sylvestre (Asclepiadaceae) is one such medicinal plant rich in anti-diabetic properties. The plant is commonly known as madhunashini in Sanskrit because of its ability to cure diabetes (sugar). Gymnemic acid (GA) is a phytochemical (a triterpenoid saponin) responsible for the herb's main pharmacological activity. This secondary metabolite has a lot of potential as a phytochemical with pharmacological properties including nephroprotection, hypoglycemia, antioxidant, antimicrobial, and anti-inflammatory. Gymnema has acquired a lot of popularity in recent years due to its low side effects and high efficacy in healing diabetes, which has led to overexploitation by pharmaceutical enterprises for its biomass in the wild for the purification of gymnemic acid. Modern biotechnological techniques involving the establishment of cell and organ cultures from G. sylvestre will assist us in fulfilling the need for gymnemic acid production. The present review provides insights on the establishment of cell and organ cultures for the production of a potent antidiabetic molecule gymnemic acid. Further, the review also delves into the intricacies of the different strategies for improved production of gymnemic acid using various elicitors. There is huge potential for sustainable production of gymnemic acid which could be met by establishment of bioreactor scale production. Understanding and engineering the biosynthetic pathway could also lead to improved GA production. KEY POINTS: • Gymnemic acid is one of the potential anti-diabetic molecules from madhunashini • Cell and organ culture offers potential approach for gymnemic acid production • Elicitation strategies have improved the gymnemic acid production.
糖尿病是一种影响多个器官的慢性疾病,可以使用药用植物中的植物化学物质进行治疗。匙羹藤(萝藦科)就是这样一种药用植物,它富含抗糖尿病特性。该植物在梵语中通常被称为 madhunashini,因为它具有治疗糖尿病(糖)的能力。降血糖酸(GA)是一种植物化学物质(三萜皂苷),负责该草药的主要药理活性。这种次生代谢物具有很大的潜力,作为一种具有药理特性的植物化学物质,包括肾保护、降血糖、抗氧化、抗菌和抗炎作用。由于其在治疗糖尿病方面的低副作用和高效性,近年来,匙羹藤获得了很高的人气,这导致制药企业过度开发其野生生物量来纯化降血糖酸。涉及建立匙羹藤细胞和器官培养物的现代生物技术将有助于我们满足生产降血糖酸的需求。本综述提供了关于建立细胞和器官培养物以生产强效抗糖尿病分子降血糖酸的见解。此外,该综述还深入探讨了使用各种诱导剂提高降血糖酸产量的不同策略的复杂性。通过建立生物反应器规模生产,可持续生产降血糖酸具有巨大潜力。了解和工程生物合成途径也可能导致 GA 产量的提高。要点:• 降血糖酸是 madhunashini 中具有潜力的抗糖尿病分子之一 • 细胞和器官培养为降血糖酸生产提供了潜在方法 • 诱导策略已提高了降血糖酸的产量