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1.
J Physiol Pharmacol ; 71(1)2020 02.
Artículo en Inglés | MEDLINE | ID: mdl-32554849

RESUMEN

Endometriosis, the presence of ectopic endometrium, has an unclear etiology and is commonly associated with endocrine, genetic, and immunological imbalance. This study determined whether immunomodulation by the RESAN vaccine could alter the potentially pathogenic gene expression profiles in the cells of the eutopic endometrium in an animal model of endometriosis. Preventing these changes could inhibit the early development of the illness and support the success of surgical treatment. Wistar rats were divided into three groups: prophylaxis (vaccinated before ectopic endometrium implantation, n = 23), therapeutic (vaccinated at the time of the ectopic excision, n = 23) and control (n = 10). During the first laparotomy, autotransplantation of the endometrium to the peritoneum was performed in the prophylaxis and therapeutic groups. The second laparotomy was carried out three months later in all groups to examine endometriotic foci and adhesions. Suspected endometriosis foci were removed. Three months later, the third laparotomy was performed in all animals, followed by suspected foci excision. Fragments of the eutopic endometrium were collected from all animals during the first and third laparotomies. All samples were analysed by real-time PCR to assess the expression of Bcl2, Bax, Bax/Bcl2 ratio, Mki67, and Tert genes. Endometrial foci were found in abdominal peritoneum at the second laparotomy in 1 animal in the prophylaxis group, compared to 16 animals in the therapeutic group. The prophylaxis group showed a high expression of Bax while the therapeutic group showed high expression of Bax, Tert and Mki67 genes. Additional analysis revealed that throughout the six months of the experiment, the expression of the Bax, Tert, and Mki67 genes decreased significantly in the prophylaxis group, Mki67 gene expression decreased in the therapeutic group, and Tert, Mki67, and Bcl2 gene expression decreased in the control group. The results indicate that immunomodulation affects the balance between apoptosis and proliferation in the eutopic endometrium and may prevent the onset and recurrence of endometriosis.


Asunto(s)
Vacunas contra el Cáncer/administración & dosificación , Endometriosis/inmunología , Endometriosis/prevención & control , Inmunomodulación/efectos de los fármacos , Animales , Apoptosis/efectos de los fármacos , Apoptosis/fisiología , Pollos , Endometriosis/metabolismo , Endometrio/efectos de los fármacos , Endometrio/inmunología , Endometrio/metabolismo , Femenino , Inmunomodulación/fisiología , Ratas , Ratas Wistar
2.
Rev. bras. plantas med ; Rev. bras. plantas med;14(4): 692-699, 2012. graf, tab
Artículo en Inglés | LILACS | ID: lil-664023

RESUMEN

This study evaluated the effects of inoculation with the arbuscular mycorrhizal fungi Glomus mosseae, Glomus intraradices A4 and Glomus intraradices B1 and two phosphorus levels (10 and 40 mg kg-1) on root colonization, plant growth, nutrient uptake and essential oil content in Mentha piperita L. The experiment was carried out in a greenhouse, in 4x2 factorial arrangement, in completely randomized design. At sixty days after transplanting, the mycorrhizal plants had significantly higher fresh matter, dry matter and leaf area compared to non-mycorrhizal plants. The inoculation increased P, K and Ca levels in the shoot which were higher under 40 mg P kg-1 of soil. Plants grown with 40 mg P kg-1 soil increased the essential oil yield per plant by about 40-50% compared to those cultivated with 10 mg P kg-1, regardless of the mycorrhizal treatment. Among the studied fungal species, inoculation with G. intraradices A4 and a high level of P significantly increased plant growth and essential oil yield, compared to the other studied mycorrhizal fungal species. In conclusion, inoculation of arbuscular mycorrhizal fungi into peppermint plants is a feasible alternative to increase the essential oil production and reduce the use of fertilizers required to obtain economic production of peppermint under phosphorus-deficient soil condition.


Este estudo avaliou os efeitos da inoculação de fungos micorrízicos arbusculares Glomus mosseae, Glomus intraradices A4 e Glomus intraradices B1 e duas doses de fósforo (10 e 40 mg kg-1) sobre a colonização radicular, crescimento, absorção de nutrientes e óleos essenciais em Mentha piperita L. O estudo foi conduzido em casa de vegetação no delineamento inteiramente casualizado em esquema fatorial 4x2. Sessenta dias após o transplantio, as plantas micorrizadas apresentaram massa fresca, massa seca, e área foliar significativamente maior em comparação as não-micorrizadas. A inoculação aumentou o teor de P, K e Ca na parte aérea sendo superiores em 40 mg P kg-1 de solo. As plantas cultivadas com 40 mg P kg-1 de solo aumentaram a produção de óleo essencial por planta cerca de 40-50% em relação às cultivadas com 10 mg de P kg-1, independentemente da micorrização. Dentre as espécies fúngicas estudadas, a inoculação com G. Intraradices A4 e com um elevado nível de P, aumentou significativamente o crescimento e rendimento de óleos essenciais em comparação com outras espécies de fungos micorrízicos estudados. Em conclusão, a inoculação dos fungos micorrízicos arbusculares em plantas de hortelã é uma alternativa viável para aumentar a produção de óleos essenciais e reduzir o uso de fertilizantes necessários para a produção econômica de hortelã-pimenta com deficiência de fósforo no solo.


Asunto(s)
Aceites Volátiles/análisis , Mentha piperita/clasificación , Hongos/aislamiento & purificación
4.
J Plant Growth Regul ; 18(2): 59-64, 1999 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-10552133

RESUMEN

In this work we present evidence that the drought stress syndrome in the flag leaves and ears of wheat plants, provoked by the production of ethylene (shortening the grain filling period and lowering the grain weight) is reversed by the application of a free radical scavenger, sodium benzoate or the ethylene synthesis inhibitor, aminoethoxyvinylglycine. Rehydration by watering also attenuated the detrimental effect of the water deficit. Consequently, the grain filling period was longer, the grain weight increased, and the total protein content was higher than that in plants watered regularly.

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