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1.
Clin. biomed. res ; 41(3): 205-211, 20210000. tab, graf
Article in English | LILACS | ID: biblio-1343958

ABSTRACT

Introduction: Renal cell carcinoma (RCC) is one of the most prevalent kidney tumors. Inflammation is believed to be a key factor in its progression and spread since inflammatory markers are generally associated with poor prognosis in RCC patients. Cytokines are cell communication molecules involved in both healthy and pathological processes, including tumor growth and progression. Recent findings suggest that cytokine level measurements could be used for cancer monitoring and prognosis. Methods: This study characterized and compared the levels of different cytokines associated with the classical Th1, Th2, and Th17 immune responses in plasma samples from RCC patients (n = 25) and healthy controls (n = 29). Cytokine levels (IL-2, IL-4, IL-6, IL-10, TNF-α, IFN-γ, and IL-17A) were evaluated by flow cytometry using a BD Cytometric Bead Array (CBA) kit. Results: No statistical differences in systemic IL-2, IL-4, IL-10, IL-17A, TNF, and INF-γ levels were observed between RCC patients and controls (p > 0.05). However, higher systemic IL-6 levels were observed in RCC patients (p = 0.0034). Conclusions: This study highlights the importance of assessing the impact of IL-6 on RCC pathogenesis and its potential role as a biomarker of disease progression. (AU)


Subject(s)
Humans , Male , Female , Adult , Middle Aged , Carcinoma, Renal Cell , Interleukin-6 , Interleukin-10 , Cytokinins/analysis , Inflammation
2.
Rev. bras. plantas med ; 16(2,supl.1): 350-355, 2014. tab
Article in Portuguese | LILACS | ID: lil-719464

ABSTRACT

A micropropagação é uma técnica muitas vezes indicada para a multiplicação em larga escala de plantas com propriedades medicinais. Dentre elas, destaca-se a hortelã-pimenta (Mentha x Piperita L.), cujo óleo essencial é utilizado no tratamento de transtornos digestivos e respiratórios. Para otimizar o protocolo de micropropagação dessa espécie são necessários estudos, principalmente quanto à suplementação do meio de cultura para garantir a produção massal in vitro e posterior extração do óleo essencial. Nesse contexto, objetivou-se avaliar o efeito de concentrações e combinações de reguladores de crescimento vegetal na morfogênese in vitro de hortelã-pimenta. Segmentos nodais provenientes de plântulas estabelecidas in vitro foram utilizados como fonte de explante e inoculados em meio de cultura MS suplementado com 0; 2,0 e 4,0 mg L-1 de BAP (6-benzilaminopurina), 0; 0,5 e 1,5 mg L-1 de ANA (ácido naftaleno-acético) e 0; 0,5 e 1,0 mg L-1 de GA3 (ácido giberélico). O delineamento experimental adotado foi inteiramente casualizado, com os tratamentos distribuídos em esquema fatorial 3x3x3 com oito repetições. Concluiu-se que o BAP favoreceu a sobrevivência de segmentos nodais de M. x Piperita inoculados in vitro e, quando combinado ao GA3, promoveu a brotação dos explantes. Essas características, no entanto, não foram estimuladas pela adição de ANA ao meio de cultura. Conclui-se que após a multiplicação dos brotos in vitro estes devem ser transferidos para meio sem reguladores para seu desenvolvimento. Apesar dos efeitos benéficos do BAP na organogênese de M. x Piperita, elevadas concentrações deste regulador de crescimento vegetal promoveram a formação de calos.


Micropropagation is a technique used for the large-scale production of medicinal plants. Among them, peppermint (Mentha x piperita L.) may be mentioned because of the pharmacological importance of its essential oil, which is used on the treatment of digestive and respiratory disorders. Studies are needed in order to optimize the micropropagation protocol of this species, especially concerning the culture medium, to ensure the in vitro mass clonal production and to enable the future extraction of the plant essential oil. Therefore, this work aimed to evaluate the effects of concentrations and combinations of different plant growth regulators on the in vitro morphogenesis of peppermint. Nodal segments from plantlets already established in vitro were used as explants and inoculated on MS medium supplemented with 0, 2.0 and 4.0 mg L-1 of BAP (6-benzylaminopurine), 0, 0.5 and 1.5 mg L-1 of NAA (naphthalene acetic acid) and 0; 0.5 and 1.0 mg L-1 of GA3 (gibberellic acid). The experiment was in a completely randomized design, set up as a 3x3x3 factorial design with eight replicates. We concluded that BAP increases the survival rate of in vitro inoculated nodal segments of M. x piperita. In addition, its combination with GA3 stimulates explants shooting. Those aspects, however, are not promoted by the addition of NAA into the culture medium. Also, the results indicate that, after in vitro multiplication, peppermint shoots must be transferred to another medium without plant growth regulators for shoot elongation. High concentrations of BAP promote calli induction, despite having beneficial effects on the organogenesis of M. piperita.


Subject(s)
In Vitro Techniques/instrumentation , Mentha piperita/growth & development , Tissue Culture Techniques/methods , Cytokinins/analysis , Gibberellins/adverse effects
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