Resultados de búsqueda - "Pharmacology"

  1. Macrocyclic lactones and ectoparasites control in livestock: efficacy, drug resistance and therapeutic challenges por Lifschitz, Adrian Luis, Nava, Santiago, Miró, María Victoria, Canton, Candela, Alvarez, L., Lanusse, Carlos Edmundo

    Publicado 2024
    “…Finally, the importance of the rational use of MLs, guided by parasite epidemiology and pharmacological knowledge, is emphasized as a key strategy to preserve the antiparasitic efficacy of these still very useful molecules.…”
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  2. Northwestern Argentina: a center of genetic diversity of Lemon Verbena (Aloysia citriodora Paláu, Verbenaceae) por Di Leo Lira, Paola Maria del Rosario, Van Baren, Catalina Maria, Lopez, Simon, Molina, Ana, Heit, Cecilia I., Viturro, Carmen Ines, Perotti de Lampasona, Marina Elvira, Catalan, Cesar Atilio Nazareno, Bandoni, Arnaldo Luis

    Publicado 2019
    “…The essential‐oil and acteoside contents have been proposed as the main quality markers for their pharmacological and organoleptic features. The northwestern region of Argentina has been repeatedly proposed as the place of origin for this species. …”
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  3. Nitric oxide participates in sucrose–TOR signaling during meristem activation in Arabidopsis thaliana por Lando, Ana Paula, Terrile, María Cecilia, De Marco, María Agustina, Rodriguez, Marianela, Martínez Noël, Giselle María Astrid

    Publicado 2025
    “…With this aim, we studied a TOR-dependent process which is the reactivation of the root apical meristem (RAM) in Arabidopsis thaliana. We used pharmacological and genetic tools to evaluate the relationship between NO and TOR on the sugar induction of RAM, using SNP as NO donor, cPTIO as NO scavenger and the nitrate reductase (NR) mutant nia2. …”
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  4. Clostridium perfringens epsilon toxin induces permanent neuronal degeneration and behavioral changes por Morris, Winston Eduardo, Goldstein, Jorge, Redondo, Leandro Martí­n, Cangelosi, Adriana, Geoghegan, Patricia, Brocco, Marcela Adriana, Loidl, Fabián C., Fernandez Miyakawa, Mariano Enrique

    Publicado 2017
    “…Lesions observed in the brain after sub-lethal exposure to ETX, result in permanent behavioral changes in animals surviving ETX exposure, as observed individually in several animals and assessed in the Inclined Plane Test and the Wire Hang Test. Pharmacological studies showed that dexamethasone and reserpine but not ketamine or riluzole were able to reduce the brain lesions and the lethality of ETX. …”
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  5. Peculiarities of the Transformation of Asteraceae Family Species: The Cases of Sunflower and Lettuce por Darqui, Flavia Soledad, Radonic, Laura Mabel, Beracochea, Valeria Cecilia, Hopp, Horacio Esteban, Lopez Bilbao, Marisa Gisela

    Publicado 2021
    “…Also, it includes economically important crops, such as lettuce, sunflower, and chrysanthemum; wild flowers; herbs, and several species that produce molecules with pharmacological properties. Nevertheless, the biotechnological improvement of this family is limited to a few species and their genetic transformation was achieved later than in other plant families. …”
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  6. Plant Extracts and Phytochemicals from the Asteraceae Family with Antiviral Properties por Borgo, Jimena, Wagner, Mariel S., Laurella, Laura C., Elso, Orlando G., Selener, Mariana G., Clavin, María, Bach, Hernán Gerónimo, Catalan, César A.N., Bivona, Augusto E., Sepúlveda, Claudia S., Sülsen, Valeria P.

    Publicado 2024
    “…Asteraceae (Compositae), commonly known as the sunflower family, is one of the largest plant families in the world and includes several species with pharmacological properties. In the search for new antiviral candidates, an in vitro screening against dengue virus (DENV) was performed on a series of dichloromethane and methanolic extracts prepared from six Asteraceae species, including Acmella bellidioides, Campuloclinium macrocephalum, Grindelia pulchella, Grindelia chiloensis, Helenium radiatum, and Viguiera tuberosa, along with pure phytochemicals isolated from Asteraceae: mikanolide (1), eupatoriopicrin (2), eupahakonenin B (3), minimolide (4), estafietin (5), 2-oxo-8-deoxyligustrin (6), santhemoidin C (7), euparin (8), jaceidin (9), nepetin (10), jaceosidin (11), eryodictiol (12), eupatorin (13), and 5-demethylsinensetin (14). …”
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  7. Non-marine Animal Bioactive Peptides. Properties, Sources, and Applications por Chamorro, Verónica Celeste, Pazos, Adriana Alejandra, Báez, Jessica, Fernández-Fernández, Adriana Maite, Medrano, Alejandra

    Publicado 2024
    “…In the past years, animal peptides have increased their application in the pharmaceutical industry, due to their great versatility, varied pharmacological functions, high specificity, and low levels of toxicity as well as being natural compounds with minor or no adverse effects when compared to synthetic drugs. …”
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  8. Nitrate and nitrite absorption, recycling and retention in tissues of sheep por Villar, Maria Laura, Godwin, Ian Robert, Hegarty, Roger Stephen, Erler, Dirk V., Farid, Haneih T., Nolan, John Vivian

    Publicado 2021
    “…Dietary nitrate is of increasing interest both for the pharmacological effects of its metabolites as well as its capacity to inhibit methanogenesis in the gut. …”
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