Publications by authors named "Monica Diez Fairen"

Article Synopsis
  • The study investigates the relationship between body mass index (BMI) and Parkinson's disease (PD) using a method called Mendelian randomization to determine if higher genetically predicted BMI is linked to a lower incidence of PD.
  • Researchers analyzed genetic data from large groups of individuals, including over 800,000 for BMI and nearly 29,000 for PD, focusing on factors like age, disease duration, and gender to examine the associations.
  • Results indicated an inverse relationship between genetically predicted BMI and PD, particularly among younger participants and women, suggesting that lower BMI may be associated with a higher risk of developing Parkinson's disease.
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  • Multiple system atrophy (MSA) is a neurodegenerative disease that leads to symptoms like parkinsonism and ataxia, but its genetic causes are not well understood and treatment options are limited to supportive care.
  • A comprehensive study involving the whole genome sequencing of nearly 900 MSA patients and over 7,000 controls discovered four key genetic risk factors associated with the disease.
  • The research identified potential susceptibility genes and provided insights into how genetic variations influence gene expression in brain cells, offering a valuable resource for further studies on similar diseases.
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  • - Microglial dysfunction is linked to Alzheimer's disease (AD), with a focus on a variant affecting the SIRPβ1 receptor that regulates the clearance of amyloid-β (Aβ).
  • - The study found that a specific insertion in the SIRPβ1 gene alters protein function, increasing the risk of AD and affecting cognitive decline rates in patients with mild cognitive impairment.
  • - Results suggest that this SIRPβ1 variant could influence microglial responses to Aβ and may serve as a potential target for treatment strategies that involve the TREM2-TYROBP pathway.
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Parkinson's disease (PD) is a progressive neurological disorder caused by both genetic and environmental factors. An association has been described between KTN1 genetic variants and changes in its expression in the putamen and substantia nigra brain regions and an increased risk for PD. Here, we examine the link between PD susceptibility and KTN1 using individual-level genotyping data and summary statistics from the most recent genome-wide association studies (GWAS) for PD risk and age at onset from the International Parkinson's Disease Genomics Consortium (IPDGC), as well as whole-genome sequencing data from the Accelerating Medicines Partnership Parkinson's disease (AMP-PD) initiative.

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Background: Insulin-like growth factor 1 (IGF-1) seems to be involved in the neural circuits associated with social cognition and brain structure.

Objectives: To investigate the association of IGF-1 levels with social cognition and brain structure in Huntington's disease (HD).

Methods: We evaluated social cognition using the Ekman test in 22 HD patients and 19 matched controls.

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  • Epidemiological studies have shown mixed results regarding the link between Parkinson's disease (PD) and various cancers, primarily due to methodological challenges.
  • This research aimed to explore the genetic correlation between PD and different cancers using data from large genome-wide association studies (GWASs) involving thousands of participants, particularly those of European ancestry.
  • Findings revealed a positive genetic correlation between PD and melanoma as well as prostate cancer, while showing inverse associations between PD and ovarian cancer, indicating complex genetic interactions between these diseases.
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  • mLOY (mosaic loss of chromosome Y) is linked to aging and has associations with Alzheimer's disease (AD), but its influence can be misinterpreted due to age factors in studies.
  • Using Mendelian randomization, researchers created a polygenic risk score (mloy-PRS) that accounts for age, revealing a significant increase in mLOY risk that is independent of age.
  • Results indicate that higher genetic risk for mLOY correlates with quicker AD progression in men with mild cognitive impairment, while showing no impact on women, and suggesting mLOY plays a role in the development of AD.
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  • - This study investigates the genetic factors influencing the age at onset (AAO) of Parkinson's disease (PD), aiming to address the inconsistencies in previous research and validate findings through a meta-analysis of diverse populations.
  • - The meta-analysis combined data from the COURAGE-PD Consortium, which included over 8,500 patients primarily of European origin, and the International Parkinson Disease Genomics Consortium, reaching a total of nearly 26,000 participants.
  • - The research confirmed a known genetic variant associated with PD AAO and discovered two genome-wide significant signals on chromosome 4, contributing new insights into the genetic basis of the disease's onset.
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  • Two contrasting studies previously examined the link between the HLA-DRB1 gene and smoking concerning Parkinson's disease (PD), leading to varying conclusions.
  • This research aimed to replicate those findings by analyzing genetic data from over 12,000 PD cases and nearly 9,500 controls, focusing on specific genetic variants related to smoking.
  • The results indicated that a specific variant in the HLA-DRB1 gene (valine at position 11) was significantly associated with PD, revealing an inverse relationship between smoking initiation and PD only in individuals lacking this variant, which invites further investigation into the underlying mechanisms.
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Background: Huntington's disease (HD) is a neurodegenerative disorder characterized by cognitive, motor, and neuropsychiatric manifestations. Oxytocin is a neuropeptide studied for its role as a neuromodulator regulating multiple behaviors linked to social cognition. Genetic variation of oxytocin receptor (OXTR) might interact in the etiology and development of several impaired social behaviors.

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Characterization of the genetic landscape of Alzheimer's disease (AD) and related dementias (ADD) provides a unique opportunity for a better understanding of the associated pathophysiological processes. We performed a two-stage genome-wide association study totaling 111,326 clinically diagnosed/'proxy' AD cases and 677,663 controls. We found 75 risk loci, of which 42 were new at the time of analysis.

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Several studies have shown an association between some variants in the vitamin D receptor (VDR) and the GC vitamin D binding protein (GC) genes with the risk for Parkinson's disease or other neurological disorders. VDR rs2228570 has shown an association with essential tremor (ET) in a previous study. The aim of this study is to look for the association between several common variants in these genes and the risk for ET.

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Increased brain and serum zinc levels in patients with idiopathic restless legs syndrome (idiopathic RLS or iRLS) were described when compared with controls, suggesting a possible role of zinc in the pathogenesis of this disease. However, serum magnesium, calcium, manganese, iron, and copper levels of RLS patients were similar to controls, suggesting a specific impairment of zinc-dependent metabolism in RLS. The aim of this study is to assess the serum concentrations of trace elements involved in oxidative stress or causing peripheral nerve toxicity in a large series of patients with iRLS and controls.

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  • Previous studies suggested that dairy intake may increase the risk of Parkinson's disease (PD), especially in men, but the nature of this relationship was unclear.
  • This research used genetic data to investigate the link between dairy consumption and PD through a method called Mendelian randomization, involving nearly 10,000 patients and 8,000 controls.
  • The results indicated that genetically predicted higher dairy intake is associated with an increased risk of PD, particularly in men, providing evidence for a possible causal relationship.
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Importance: Essential tremor (ET) is one of the most common movement disorders, affecting 5% of the general population older than 65 years. Common variants are thought to contribute toward susceptibility to ET, but no variants have been robustly identified.

Objective: To identify common genetic factors associated with risk of ET.

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Emerging studies have suggested several chromosomal regions as potential host genetic factors involved in the susceptibility to SARS-CoV-2 infection and disease outcome. We nested a COVID-19 genome-wide association study using the GR@ACE/DEGESCO study, searching for susceptibility factors associated with COVID-19 disease. To this end, we compared 221 COVID-19 confirmed cases with 17,035 individuals in whom the COVID-19 disease status was unknown.

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Article Synopsis
  • The study investigates how lifestyle factors like smoking, alcohol, and coffee consumption relate to Parkinson's disease (PD), using a genetic approach to avoid potential biases in causation.* -
  • Findings indicate that smoking is significantly associated with a lower risk of developing PD, while no such associations were found for alcohol or coffee consumption, though there is a suggestion that genetic vulnerability to PD might increase alcohol drinking.* -
  • The research concludes that the protective effect of smoking on PD is likely genuine and not influenced by reverse causation or other biases; however, the data on alcohol and coffee remains inconclusive due to limited power.*
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In recent decades, genetic research has nominated promising pathways and biological insights contributing to the etiological landscape of parkinsonism-related dystonias and atypical parkinsonism-related syndromes. Several disease-causing mutations and genetic risk factors have been unraveled, providing a deeper molecular understanding of the complex genetic architecture underlying these conditions. These disorders are difficult to accurately diagnose and categorize, thus making genetics research challenging.

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Genetic discoveries of Alzheimer's disease are the drivers of our understanding, and together with polygenetic risk stratification can contribute towards planning of feasible and efficient preventive and curative clinical trials. We first perform a large genetic association study by merging all available case-control datasets and by-proxy study results (discovery n = 409,435 and validation size n = 58,190). Here, we add six variants associated with Alzheimer's disease risk (near APP, CHRNE, PRKD3/NDUFAF7, PLCG2 and two exonic variants in the SHARPIN gene).

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Because nitric oxide and endothelial dysfunction could play a role in the pathogenesis of idiopathic restless legs syndrome (RLS), as was suggested by some preliminary data, we investigated the possible association between the rs2070744 variants in the or gene (chromosome 7q36.1) and the risk for RLS in a Caucasian Spanish population. We assessed the frequencies of single nucleotide polymorphisms (SNPs) rs2070744, rs1799983, and rs79467411 genotypes and allelic variants in 273 patients with idiopathic RLS and 325 healthy controls using a -based qPCR assay.

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Article Synopsis
  • The genetic foundations of Lewy body dementia (LBD) remain unclear, prompting researchers to conduct whole-genome sequencing on both LBD patients and healthy individuals.
  • They discovered five distinct risk loci through genome-wide association analysis and identified mutations in the GBA gene as a significant factor.
  • The study suggests that LBD shares genetic risk factors and biological pathways with Alzheimer's and Parkinson's diseases, enhancing our understanding of this complex neurodegenerative disorder.
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Parkinson's disease (PD) is a complex neurodegenerative disease with a strong genetic component. To date, several genes have been associated with monogenic forms of the disease, but these only explain a small fraction of the observed familial aggregation in PD. Recently, a heterozygous loss-of-function variant in LIN28A was associated with PD pathogenesis in the Asian population.

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Introduction: Essential tremor (ET) is one of the most common movement disorders. Despite its high prevalence and heritability, its genetic etiology remains elusive with only a few susceptibility genes identified and poorly replicated. Our aim was to find novel candidate genes involved in ET predisposition through whole exome sequencing.

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