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Natural products and their derivatives have played a dominant role in the development of therapeutic agents. Traditionally, most of the natural products developed for the effective treatment of different diseases have been sourced from plants. Natural product discovery has seen a shift of focus towards microorganisms due to the chemical diversity of bioactive products they synthesize. Myxobacteria produce a large variety of novel chemical entities with diverse structures and varied bioactivities. In the last few decades, secondary metabolites from different genera of myxobacteria have been recognized as harbouring potent anticancer activity. Several analogs of these anticancer compounds have been prepared to address the limitations such as, poor solubility, high toxicity and low production yield, in order to obtain the compounds in higher quantities with better pharmacological properties and target selectivity. For example, a semi-synthetic derivative of epothilone obtained from a strain of myxobacterium has been approved for clinical use against taxane-resistant breast cancer. The anticancer compounds from myxobacteria target microtubules, the cytoskeleton, vacuolar ATPase, methionine aminopeptidase, exportin, the proteasome or translation elongation factor to exert anticancer activity. The focus of this review is on the promising anticancer compounds produced by myxobacteria, their targets and their mechanisms of action in cancer cells.
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http://dx.doi.org/10.2174/0118715206384510250625004749 | DOI Listing |
Med Oncol
September 2025
Department of Pharmacognosy, Faculty of Pharmacy, Mansoura University, Mansoura, 35516, Egypt.
Gynecological cancer, encompassing cancers such as endometrial and cervical cancer, is a growing concern worldwide, with a rising incidence and significant impact on women's health. Pterostilbene (PT), a natural compound, has shown promising therapeutic potential in gynecological cancer treatment. This review aims to summarize the current state of knowledge on PT's effects in gynecological cancer, focusing on its molecular mechanisms, preclinical studies, and clinical trials.
View Article and Find Full Text PDFMol Divers
September 2025
Department of Chemistry, College of Science, King Khalid University, P.O. Box 9004, 61413, Abha, Saudi Arabia.
The catalytic asymmetric Mannich reaction is a multicomponent reaction which affords β-amino carbonyl compounds by utilizing an aldehyde, a primary or secondary amine/ammonia, and a ketone. β-amino carbonyl scaffolds are crucial intermediates for the synthesis of naturally occurring bioactive compounds and their derivatives. The synthesized natural compounds exhibit a broad spectrum of biological activities including anti-fungal, anti-cancer, anti-bacterial, anti-HIV, anti-oxidant, and anti-inflammatory activities.
View Article and Find Full Text PDFDrug Des Devel Ther
September 2025
Mardin Artuklu University, Kızıltepe Faculty of Agricultural Sciences and Technologies, Department of Field Crops, Mardin, Artuklu, 47200, Türkiye.
Objective: This study was conducted to determine and compare the antioxidant, cytotoxic, and antimicrobial effects of spindle leaves of L. () (oleaster) leaves.
Methods: Total phenolic content was measured using the Folin-Ciocalteu method, phenolic compound analysis by liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS) and antimicrobial effect by the minimum inhibition concentration (MIC) method.
Drug Des Devel Ther
September 2025
Department of Cardiology, Qidong People's Hospital/Qidong Liver Cancer Institute/Affiliated Qidong Hospital of Nantong University, Qidong, Jiangsu, 226200, People's Republic of China.
Cancer therapy-induced cardiotoxicity (CTIC) is a serious and increasingly recognized cause of death and disability among cancer survivors. It frequently necessitates the withdrawal or dose reduction of effective anticancer drugs, limiting therapeutic options and affecting patient outcomes. While CTIC poses a major health risk, the precise cellular and molecular mechanisms responsible for this toxicity remain elusive, which complicates the development of preventive and therapeutic strategies.
View Article and Find Full Text PDFFood Res Int
November 2025
Department of Food Sciences, Laboratoire de Transformation Alimentaire et Procédés ÉlectroMembranaires (LTAPEM, Laboratory of Food Processing and ElectroMembrane Processes), The Quebec Network for Research on Protein Function, Engineering, and Applications (PROTEO), Institute of Nutrition and Fun
Duckweed, a rapidly growing aquatic plant, is gaining significant attention as a sustainable protein source. However, fully unlocking its potential requires a comprehensive evaluation, from its nutrient composition to its applications in both food and nutraceutical products. This review provides a holistic approach, beginning with the factors influencing duckweed's nutrient composition, including growth conditions and environmental variables.
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