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Marcos-Herraiz, S.

Publications and source records attributed to Marcos-Herraiz, S..

2 recordsLinked to original sources

Exploring Essential Oils and Their Bioactive Components from Mediterranean Medicinal Plants as Natural Antigiardial Agents

Lamiaceae and Asteraceae plant species have been widely used in traditional medicine to treat gastrointestinal disorders in countries of the Mediterranean basin. Other properties, such as antioxidant, anti-inflammatory, anti-bacterial, anti-parasite, and anti-virus have been described. Giardia duodenalis is the most frequent intestinal protozoon affecting young children worldwide and nitroimidazoles are the main treatment, but non-responding cases are widely reported. In this paper we tested the antigiardial activity of several Lamiaceae and Asteraceae plants. Essential oils from 22 traditional medicinal plants from Lamiaceae and Asteraceae families and its main components were tested against the parasite employing the MTT method. The composition of the essential oils was determined by a metabolomic approach (GC-MS). Transmission Electron Microscopy was used to evaluate morphological alterations. The best antigiardial activity was obtained with the genera Lavandula, Mentha, Thymus, and Satureja, while the best selective indexes were obtained with compounds {gamma}-terpinene, caryophyllene oxide, carvacrol and thymol. Synergies were observed with linalyl acetate + linalool (Lavandula EOs), linalyl acetate + {rho}-cymene or thymol, or combinations of {rho}-cymene, {gamma}-terpinene, thymol, and carvacrol (Satureja EOs). Membranolysis, enlarged periplasmic vacuoles, and loss of the cytoplasmic content were evident effects of {gamma}-terpinene on trophozoites after 1 hour. The present study provides phytotherapeutic evidence of essential oils from species of Lavandula, Mentha, Thymus, and Satureja as natural antigiardial agents, as well as some of their main components, {gamma}-terpinene, caryophyllene oxide, carvacrol and thymol.

microbiology↗

Activity of Geranium macrorrhizum extracts, essential oils and their main components against three relevant flagellated protozoa

Plant-derived natural products are structurally diverse secondary metabolites that play essential ecological roles and have long been recognized for their therapeutic potential. Geranium macrorrhizum is known to produce bioactive extracts and essential oils rich in monoterpenoids and sesquiterpenes. While various Geranium species have demonstrated antiprotozoal activity, the potential of G. macrorrhizum against protozoan parasites remains unexplored. Given the increasing resistance of protozoan pathogens to conventional treatments, there is a pressing need to identify alternative therapeutic agents from natural sources. Plant material was grown in greenhouse and aeroponic systems. Extracts were obtained via hydrodistillation and Soxhlet, and analyzed by GC-MS. In vitro assays were performed to evaluate antiparasitic activity and cytotoxicity. Morphological changes induced by germacrone were analyzed using light microscopy. The study evaluated the antiparasitic potential of essential oils, extracts, and compounds from Geranium macrorrhizum, cultivated under controlled conditions, against Giardia duodenalis, Trichomonas gallinae, and Leishmania infantum. Results showed broad-spectrum activity, particularly from non-polar extracts and EOs, suggesting that lipophilic compounds, especially germacrone, are key contributors to the observed effects. Germacrone exhibited strong activity and selective toxicity. Structural analogues of germacrone showed reduced efficacy, highlighting the importance of its specific chemical structure. Morphological analyses revealed parasite-specific responses to germacrone, contrasting with the more destructive effects of metronidazole and amphotericin B. The findings support G. macrorrhizum as a promising source of natural antiprotozoal agents and justify further investigation into its bioactive compounds and mechanisms of action.

microbiology↗