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Total fertilization failures (TFF) are rare events of IVF by intracytoplasmic sperm injection (ICSI). When male factor is excluded, the lack of identifiable aetiological criteria raises the question of the reliable clinical management. The goal of this study was to identify molecular abnormalities in metaphase II (MII) oocytes yielding TFF. The nuclear mature MII oocytes mRNA expression profiles were compared between a 30-year-old patient who had experienced three successive TFF (egg number = 39) and control patients with fertile cohorts diagnosed with tubal or male infertility. The mRNA abundance for the 30,000 genes of the genome was evaluated by microarray and, for selected genes, by quantitative-polymerase chain reaction analysis. Transcriptional analysis of unfertilized MII oocytes revealed an altered gene expression profile associated with TFF. Meiosis, cell growth and apoptosis controlling genes were mis-expressed with important fold changes. The results reveal that, despite passing the pre-IVF morphological examination, high-grade oocytes may carry substantial molecular abnormalities at the gene expression level associated with failure of MII oocyte activation. In the absence of an identifiable defect causing TFF, this microarray approach allows improvement of clinical therapeutic management: informed counselling about alternate therapeutic solutions could be proposed.
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http://dx.doi.org/10.1016/s1472-6483(10)60404-x | DOI Listing |
Mol Genet Genomics
December 2024
Department of Medical Genetics, Faculty of Medicine, Karadeniz Technical University, Trabzon, Turkey.
Tuberous sclerosis complex (TSC) is a rare genetic disorder characterized by the formation of benign tumors in various organs, particularly in the central nervous system. We aimed to delineate the molecular profile of Turkish individuals diagnosed with TSC by analyzing the TSC1 and TSC2 genes using next-generation sequencing (NGS). Sophia Genetics' Sophia Inherited Disease Panel was used to perform NGS on 22 individuals diagnosed with TSC and to identify pathogenic variants in the TSC1 and TSC2 genes.
View Article and Find Full Text PDFClin Neurophysiol
December 2024
Department of Clinical Neurophysiology, Vall d'Hebron University Hospital, Passeig de la Vall d'Hebron, 119, 08035 Barcelona, Spain. Electronic address:
Introduction/objective: Biallelic expansion of the pentanucleotide AAGGG in the RFC1- gene is associated with cerebellar ataxia, neuropathy, and vestibular areflexia syndrome (CANVAS). This study aimed to comprehensively characterise this condition by conducting an in-depth neurophysiological examination of afflicted patients.
Methods: A retrospective analysis was conducted in 31 RFC1-positive patients.
Clin Neurol Neurosurg
December 2024
Department of Neurosciences and Mental Health, Unidade Local de Saúde de Santa Maria, Lisbon, Portugal; Faculdade de Medicina-Instituto de Medicina Molecular, Centro de Estudos Egas Moniz, Universidade de Lisboa, Lisbon, Portugal.
Objective: To present cases of ptosis in HIV-1 patients on long-term antiretroviral therapy (ART) and review the existing literature.
Methods: Five HIV-1-positive patients with slowly progressive bilateral ptosis underwent a comprehensive diagnostic evaluation, including imaging studies, neurophysiological testing, muscle biopsy, and genetic analysis. A literature review was conducted.
J Cell Mol Med
December 2024
Department of Emergency Medicine, Guangdong Provincial People's Hospital (Guangdong Academy of Medical Sciences), Southern Medical University, Guangzhou, Guangdong, China.
Aortic dissection (AD) represents a critical condition characterised by a tear in the inner lining of the aorta, leading to the leakage of blood into the layers of the aortic wall, posing a significant risk to life. However, the pathogenesis is unclear. In this study, scRNA-seq was applied to cells derived from aortas of both AD and non-AD donors (control) to unveil the cellular landscape.
View Article and Find Full Text PDFiScience
December 2024
Center for Reproductive Medicine and Obstetrics & Gynecology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, China.
Thermodynamic theory suggests that the obvious mechanical behavior caused by temperature and interlayer angle will affect the physical properties of materials, such as mechanical properties and transportation behavior, and it is different from the behavior in three-dimensional bulk materials. We observe an abnormal physical effect of bilayer graphene/hexagonal boron nitride (G/BN)-carbon nanotube (CNT) heterostructures, with a normalized out-of-plane deformation and normalized bond angle percentage to almost several times higher those of pristine G/BN heterostructures (without CNT) at 700-800 K. Our combined finite element theory and molecular dynamics simulations confirmed that the combination of CNT and interlayer angle diverted and bridged the propagating crack and provided a stable crack propagation path and crack tip opening displacement, resulting in the stress fields to be controlled around the CNT at high temperature.
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