Plants of the genus, known for their rich phytochemical profiles, are used in traditional Chinese, Korean, Japanese, and Indian medicine to treat various ailments, including inflammation, hypertension, diabetes, hyperlipidemia, and cancer. Due to the limited natural availability of these plants, there is a growing interest in utilizing in vitro culture techniques to produce their bioactive compounds sustainably. In this study, the effects are compared of Murashige and Skoog (MS), Woody Plant medium (WP), Gamborg B5 (B5), and Schenk and Hildebrandt (SH) basal media on growth, biomass accumulation, and polyphenolic compound production in shoot cultures of and . The composition of the culture medium significantly influenced the growth and metabolic profiles of both species. exhibited the highest proliferation potential on WP and SH media, while was similar on WP, SH, and B5 media (multiplication factor of about 20). Dry weight accumulation was highest in grown on SH medium (0.292 g/culture), while achieved a comparable biomass on SH and WP media (0.240 g/culture and 0.228 g/culture, respectively). The chemical analysis showed similar secondary metabolite profiles between the two species with phenylethanoids such as acteoside being the predominant bioactive compounds in hydromethanolic extracts. WP medium was the most favorable for polyphenol accumulation in (64.5 mg/g DW), while the SH medium yielded the highest total polyphenol content in (36.6 mg/g DW). In this study, the importance is underscored of basal medium selection in optimizing the in vitro production of bioactive polyphenolic compounds in species, providing a foundation for the sustainable and scalable production of these pharmacologically significant metabolites.
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http://dx.doi.org/10.3390/molecules29245983 | DOI Listing |
Dokl Biochem Biophys
January 2025
Ryazan State Medical University, Ryazan, Russian Federation.
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BMC Pharmacol Toxicol
January 2025
Physiology Research Center, Institute of Neuropharmacology, Kerman University of Medical Sciences, Jehad Blvd, Ebn Sina Avenue, Kerman, 76198-13159, Iran.
Movento an insecticide containing spirotetramat, has been shown to cause severe toxicity in humans and rats. Due to the widespread use of the Movento in agriculture, and since the cardiac effects of this toxin have not been investigated in any study so far, in this study, for the first time, the effect of movento on the structure and function of the heart in rats was investigated. 24 adults' male Wistar rats randomly divided to 4 experimental groups: 1- control (CTL), 2- Movento (M) 3- M + Basal media (BM) 4- M + Conditioned medium (CM).
View Article and Find Full Text PDFBMC Neurosci
January 2025
National Brain Research Centre, Manesar, Gurugram, 122052, Haryana, India.
Delta-opioid receptors (δ-ORs) are known to be involved in associative learning and modulating motivational states. We wanted to study if they were also involved in naturally-occurring reinforcement learning behaviors such as vocal learning, using the zebra finch model system. Zebra finches learn to vocalize early in development and song learning in males is affected by factors such as the social environment and internal reward, both of which are modulated by endogenous opioids.
View Article and Find Full Text PDFBMC Microbiol
January 2025
Liver and Gastrointestinal Diseases Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Background: Microbial cholesterol oxidase (ChoX) has wide clinical and industrial applications; therefore, many efforts are being made to identify promising sources. This study aimed to isolate a novel ChoX-producing bacterial strain from whey samples.
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Sci Rep
January 2025
Laboratory of Hormonal Carcinogenesis, IBYME-CONICET, Ciudad Autónoma de Buenos Aires (CABA), V. Obligado 2490, C1428ADN, Buenos Aires, Argentina.
Breast cancer (BC) patient-derived xenografts (PDX) are relevant models for precision medicine. However, there are no collections derived from South American BC patients. Since ethnicity significantly impacts clinical outcomes, it is necessary to develop PDX models from different lineages.
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