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Doctoral Thesis
DOI
https://doi.org/10.11606/T.5.2017.tde-25082017-075846
Document
Author
Full name
Sharon Nina Admoni
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2017
Supervisor
Committee
Giannella, Maria Lucia Cardillo Correa (President)
Pavin, Elizabeth João
Queiroz, Márcia Silva
Villares, Sandra Mara Ferreira
Vivolo, Sandra Roberta Gouvea Ferreira
Title in Portuguese
O polimorfismo de um único nucleotídeo rs713041 no gene GPX4 modula a susceptibilidade à neuropatia autonômica cardiovascular em portadores de diabetes mellitus tipo 1
Keywords in Portuguese
Complicações do diabetes
Diabetes Mellitus tipo 1
Estresse oxidativo
Glutationa peroxidase
Neuropatias diabéticas
Polimorfismo de nucleotídeo único
Abstract in Portuguese
Introdução: As neuropatias periférica (NP) e autonômica cardiovascular (NAC) são complicações prevalentes do diabetes mellitus (DM). Há indícios de que seu desenvolvimento se deve não somente ao controle metabólico. Neste sentido, a busca por preditores genéticos faz-se imperativa. Diversos genes relacionados às vias bioquímicas que levam ao dano celular induzido pela hiperglicemia têm sido investigados, destacando-se os genes relacionados às vias do extresse oxidativo. O balanço entre os sistemas antioxidantes (como glutationa e tiorredoxina) e pró-oxidantes (como o NADPH-oxidase) é um importante fator na defesa celular contra o estresse oxidativo. Objetivo primário: avaliar a associação entre os polimorfismos de um único nucleotídeo (SNP) pertencentes às vias anti- e pró-oxidantes mencionadas e a NP e NAC em pacientes DM tipo 1: 718C/T na região 3' UTR (untranslated region) (rs713041) no gene da glutationa peroxidase 4 (GPX4); -129 C/T (rs1788390) no gene da glutamato cisteína ligase (GLCL); -1365 C/T (rs7211) no gene da proteína de interação com a tiorredoxina (TXNIP); -2810 A/G (rs6610650) no gene do CYBB; - 675 T/A (não registrado) no gene do CYBA. Objetivo secundário: avaliar a relação entre as diferentes complicações microvasculares entre si (neuropatia, doença renal diabética [DRD] e retinopatia diabética [RD]). Material e métodos: foram selecionados 378 pacientes com DM tipo 1 do Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo e do Hospital das Clínicas da Universidade Estadual de Campinas com mais de 10 anos de doença e controle inadequado (HbA1c >8% em algum período da vida), e examinados para NP e NAC. A genotipagem dos polimorfismos foi realizada pela técnica de reação em cadeia da polimerase em tempo real (Sistema Taqman ®). Foram avaliadas variáveis clínicas, laboratoriais do metabolismo glicêmico e lipídico e a presença de DRD e de RD. Foram avaliados 257 pacientes retrospectivamente quanto à evolução da taxa de filtração glomerular estimada (TFGe) em relação à NP e NAC. O teste de Pearson foi usado para comparar as frequências dos genótipos e a magnitude de associação foi estimada pelo cálculo do odds ratios (OR), com respectivo intervalo de confiança (IC) ajustada por regressão logística para possíveis fatores de confusão. Resultados: A presença de pelo menos um alelo T do SNP +718C/T no gene GPX4 conferiu proteção para NAC (OR=0,39; IC 95% 0,17 - 0,84; P = 0,0165). Na análise de associação entre as complicações, observou-se que: (1) na presença de NP há aumento na probabilidade de NAC (OR = 3,38; IC95% 2,01 - 5,73; P < 0,0001), de albuminúria A3 (OR = 7,17; IC95% 3,68 - 14,53; P < 0,0001) e de RD proliferativa (OR = 9,58; IC95% 5,04 - 19,09; P < 0,0001) e (2) na presença de NAC há aumento na probabilidade de NP (OR = 3,72; IC95% 2,14 - 6,53; P < 0,0001), de albuminuria A3 (OR = 9,37; IC95% 4,68 - 19,65; P < 0,0001) e de RD proliferativa (OR = 3,30; IC95% 1,81 - 6,18, P < 0,0001). No subgrupo avaliado retrospectivamente, a presença de NP e de NAC associou-se com queda de TFGe anual maior (-4,74 mL/min/ano vs. -1,22 mL/min/ano; P < 0,0001 e -3,74 mL/min/ano vs. -1,54 mL/min/ano; P = 0,04, respectivamente). Conclusões: (1) a presença do alelo T no SNP +718C/T (rs713041) no gene GPX4 confere proteção para NAC na população com DM tipo 1 estudada e (2) existe associação de risco para NP e NAC entre si e para as formas graves de DRD e RD
Title in English
The polymorphism of a single nucleotide rs713041 in the GPX4 gene modulates the susceptibility to cardiovascular autonomic neuropathy in patients with type 1 diabetes mellitus
Keywords in English
Diabetes complications
Diabetes mellitus
Diabetic neuropathies
Oxidative stress, Glutathione peroxidase
Polymorphism single nucleotide type 1
Abstract in English
Introduction: Peripheral (PN) and cardiovascular autonomic neuropathies (CAN) are prevalent complications of diabetes mellitus (DM). There are indications that their development occurs not only secondary to metabolic control. Thus, search for genetic predictors is very important. Several genes related to the biochemical pathways that lead to cellular damage induced by hyperglycemia have been investigated, emphasizing the genes related to the pathways of oxidative stress. The balance between antioxidant systems (such as glutathione and thioredoxin) and pro-oxidants (such as NADPH oxidase) is an important factor in cell defense against oxidative stress. Primary objective: to evaluate the association between the single nucleotide polymorphisms (SNP) of the mentioned anti-and pro-oxidant pathways and NP and NAC in type 1 DM patients: 718C / T in the 3 'UTR (untranslated region) (rs713041) of the glutathione peroxidase 4 gene (GPX4); -129 C / T (rs1788390) in the glutamate cysteine ligase gene (GLCL); -1365 C / T (rs7211) in the thioredoxin interaction protein gene (TXNIP); -2810 A / G (rs6610650) in the CYBB gene; - 675 T / A (unregistered) in the CYBA gene. Secondary objective: to evaluate the relationship between different microvascular complications (neuropathy, diabetic renal disease [DRD] and diabetic retinopathy [DR]). Material and methods: 378 type 1 patients DM were selected from the Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo and from Hospital das Clínicas da Universidade Estadual de Campinas; they had more than 10 years of disease and inadequate control (HbA1c > 8% at some period of life), and were examined for NP and NAC. Polymorphism genotyping was performed by real-time polymerase chain reaction (Taqman System®). Clinical, glycemic and lipid metabolism laboratorial variables and the presence of DRD and DR were evaluated. Also 257 patients were retrospectively evaluated regarding the evolution of the estimated glomerular filtration rate (eGFR) in relation to PN and CAN. The Pearson test was used to compare the frequencies of the genotypes and the magnitude of association was estimated by the odds ratios (OR), with the respective confidence interval (CI) adjusted by logistic regression for possible confounding factors. Results: The presence of at least one T allele at the SNP + 718C / T of the GPX4 gene protected for CAN (OR = 0.39; 95% CI 0.17-0.84; P = 0.0165). In the analysis of the association between complications, it was observed that: (1) in the presence of NP, there was an increase in risk of NAC (OR = 3.38; 95% CI 2.01 - 5.73; P < 0.0001), of albuminuria A3 (OR = 7.17; 95% CI 3.68 - 14.53; P < 0.0001) and of proliferative DR (OR = 9.58; 95% CI, 5.04 - 19.09; P < 0.0001) (2) in the presence of CAN, there was an increase in risk of PN (OR = 3.72; 95% CI 2.14 - 6.53; P < 0.0001), albuminuria A3 (OR = 9.37; CI95% 4.68 - 19.65; P<0,0001) and proliferative DR (OR = 3.30; CI95% 1.81 - 6.18; P < 0,0001).) In the subgroup evaluated retrospectively, the presence of PN and CAN was associated with a greater annual decrease of eGFR (-4.74 mL / min / year vs. -1.22 mL / min / year, P < 0.0001 and - 3.74 mL / min / yr vs. -1.54 mL / min / yr, P < 0.04, respectively). Conclusions: (1) the presence of the T allele at the SNP + 718C / T (rs713041) in the GPX4 gene confers protection for the presence of CAN in the studied type 1 DM population and (2) there is a risk association for PN and CAN among themselves and for severe forms of DRD and RD
 
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Publishing Date
2017-08-25
 
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