đŸ‘€ Guadalupe LĂłpez-RodrĂ­guez

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2
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Also published as: MĂłnica LĂłpez-RodrĂ­guez
articles
Laura López-Valverde, María E Våzquez-Mosquera, Cristóbal Colón-Mejeras +13 more · 2024 · Translational research : the journal of laboratory and clinical medicine · Elsevier · added 2026-04-24
Fabry disease (FD) is a X-linked rare lysosomal storage disorder caused by deficient α-galactosidase A (α-GalA) activity. Early diagnosis and the prediction of disease course are complicated by the cl Show more
Fabry disease (FD) is a X-linked rare lysosomal storage disorder caused by deficient α-galactosidase A (α-GalA) activity. Early diagnosis and the prediction of disease course are complicated by the clinical heterogeneity of FD, as well as by the frequently inconclusive biochemical and genetic test results that do not correlate with clinical course. We sought to identify potential biomarkers of FD to better understand the underlying pathophysiology and clinical phenotypes. We compared the plasma proteomes of 50 FD patients and 50 matched healthy controls using DDA and SWATH-MS. The >30 proteins that were differentially expressed between the 2 groups included proteins implicated in processes such as inflammation, heme and haemoglobin metabolism, oxidative stress, coagulation, complement cascade, glucose and lipid metabolism, and glycocalyx formation. Stratification by sex revealed that certain proteins were differentially expressed in a sex-dependent manner. Apolipoprotein A-IV was upregulated in FD patients with complications, especially those with chronic kidney disease, and apolipoprotein C-III and fetuin-A were identified as possible markers of FD with left ventricular hypertrophy. All these proteins had a greater capacity to identify the presence of complications in FD patients than lyso-GB3, with apolipoprotein A-IV standing out as being more sensitive and effective in differentiating the presence and absence of chronic kidney disease in FD patients than renal markers such as creatinine, glomerular filtration rate and microalbuminuria. Identification of these potential biomarkers can help further our understanding of the pathophysiological processes that underlie the heterogeneous clinical manifestations associated with FD. Show less
no PDF DOI: 10.1016/j.trsl.2024.02.006
APOA4
Guadalupe López-Rodríguez, Alin Estrada-Neria, Teodoro Suårez-Diéguez +3 more · 2020 · Gene · Elsevier · added 2026-04-24
Mexico is experiencing an epidemic of childhood obesity and overweight, the factors that determine type 2 diabetes and cardiovascular diseases. Even though variants in genes such as MC4R, LEP, LEPR, a Show more
Mexico is experiencing an epidemic of childhood obesity and overweight, the factors that determine type 2 diabetes and cardiovascular diseases. Even though variants in genes such as MC4R, LEP, LEPR, and FTO have been associated with the risk of obesity, in Mexico the level of miscegenation is heterogeneous, so this risk must be measured as genetic ancestry. This study aimed at evaluating the association between common SNPs in FTO and MC4R genes in Mexican children with Amerindian, mestizo and predominance European ancestry. Anthropometric data and fasting blood samples were collected from 718 unrelated Mexican school children aged 4-13 years old. Variants in the FTO, MC4R, LEP, LEPR genes and 15 ancestry informative markers (AIMs), were genotyped using allelic discrimination assays. High triglycerides and low cholesterol HDL were the most frequent metabolic alterations. The prevalence of minor allele frequency of polymorphism rs8050136, rs9939609, and rs3751812 in the FTO gene; and rs17782313 of MC4R gene were found to be significantly higher among Mexican children with a predominance of European ancestry (EA) compared to native Mexican children (Amerindian predominance), X Risk variants in the FTO and MC4R genes had a higher frequency in children with EA compared with Amerindian predominance children, showing that miscegenation is associated with the frequency of obesity-related genotypes. Show less
no PDF DOI: 10.1016/j.gene.2020.144840
MC4R