711 results match your criteria: "Institute for Comprehensive Medical Science[Affiliation]"

Glutamine Supplementation as a Novel Metabolic Therapeutic Strategy for LIG3-Dependent Chronic Intestinal Pseudo-Obstruction.

Gastroenterology

January 2025

Department of Medical and Surgical Sciences (DIMEC), University of Bologna, Bologna, Italy; Istituto di Ricovero e Cura a Carattere Scientifico, Azienda Ospedaliero-Universitaria di Bologna, Bologna, Italy.

Article Synopsis
  • Researchers discovered a recessive syndrome linked to mutations in the DNA ligase 3 (LIG3) gene that causes chronic intestinal pseudo-obstruction and other neurological issues due to impaired mitochondrial DNA maintenance and energy production.
  • They performed whole transcriptome analysis on patient fibroblasts, finding deregulated genes related to mitochondrial function and extracellular matrix development, and tested l-glutamine supplementation to address energy impairments.
  • Treatment with l-glutamine significantly improved the symptoms of patients with LIG3 mutations, highlighting its potential as a targeted therapy for mitochondrial dysfunction related to this condition.*
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Although dietary behaviors are affected by neuropsychiatric disorders, various environmental conditions can have strong effects as well. We found that mice under multiple stresses, including social isolation, intermittent high-fat diet, and physical restraint, developed feeding behavior patterns characterized by a deviated bait approach (fixated feeding). All the tested stressors affected dopamine release at the nucleus accumbens (NAcc) shell and dopamine normalization reversed the feeding defects.

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Inhibiting proBDNF to mature BDNF conversion leads to ASD-like phenotypes in vivo.

Mol Psychiatry

November 2024

Advanced Innovation Center for Human Brain Protection, Capital Medical University, 100070, Beijing, China.

Autism Spectrum Disorders (ASD) comprise a range of early age-onset neurodevelopment disorders with genetic heterogeneity. Most ASD related genes are involved in synaptic function, which is regulated by mature brain-derived neurotrophic factor (mBDNF) and its precursor proBDNF in a diametrically opposite manner: proBDNF inhibits while mBDNF potentiates synapses. Here we generated a knock-in mouse line (BDNF) in which the conversion of proBDNF to mBDNF is attenuated.

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Brain-enriched guanylate kinase-associated protein (BEGAIN) is highly enriched in the post-synaptic density (PSD) fraction and was identified in our previous study as a protein associated with neuropathic pain in the spinal dorsal horn. PSD protein complexes containing N-methyl-D-aspartate receptors are known to be involved in neuropathic pain. Since these PSD proteins also participate in learning and memory, BEGAIN is also expected to play a crucial role in this behavior.

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Kabuki syndrome (KS) is characterized by growth impairment, psychomotor delay, congenital heart disease, and distinctive facial features. KMT2D and KDM6A have been identified as the causative genes of KS. Craniosynostosis (CS) has been reported in individuals with KS; however, its prevalence and clinical implications remain unclear.

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Salt stress of soybean is a serious problem because it reduces plant growth and seed yield. To investigate the salt-tolerant mechanism of soybean, a plant-derived smoke (PDS) solution was used. Three-day-old soybeans were subjected to PDS solution under 100 mM NaCl for 2 days, resulting in PDS solution improving soybean root growth, even under salt stress.

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Article Synopsis
  • * The study examines mitochondrial function's role in embryo development, showing that euploid embryos increased and mosaic embryos decreased during culture, alongside a lower number of mitochondrial DNA mutations in euploid embryos.
  • * Findings indicate that aneuploidy might reduce in embryos after implantation, and assessing mtDNA mutations could be a new strategy for selecting viable mosaic embryos for transfer.
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Introduction: Indoxyl sulfate (IS) is a protein-bound uremic toxin that causes uremic sarcopenia. IS has poor dialysis clearance; however, the addition of a binding competitor improves its removal efficiency.

Methods: Dialysis experiments were performed using N-acetyl-l-tryptophan (L-NAT) instead of l-tryptophan (Trp) using pooled sera obtained from dialysis patients.

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Increased levels of nectin-4 as a serological marker for pre-eclampsia.

Fujita Med J

August 2023

Division of Molecular Genetics, Institute for Comprehensive Medical Science, Fujita Health University, Toyoake, Aichi, Japan.

Article Synopsis
  • Nectin-4, a cell adhesion molecule, is found to be overexpressed in various cancers and may serve as both a disease marker and therapeutic target.
  • In a study, maternal serum levels of Nectin-4 were significantly higher in women with pre-eclampsia compared to those with normal pregnancies, while no increase was seen in cases of unexplained fetal growth retardation.
  • The findings suggest that Nectin-4 could be a promising new biomarker for diagnosing and predicting severe pre-eclampsia.
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Rho kinase inhibitors ameliorate cognitive impairment in a male mouse model of methamphetamine-induced schizophrenia.

Pharmacol Res

August 2023

Department of Neuropsychopharmacology and Hospital Pharmacy, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan; Japanese Drug Organization of Appropriate Use and Research, Nagoya, Aichi, Japan. Electronic address:

Article Synopsis
  • - Schizophrenia (SCZ) is a serious mental disorder with symptoms that include hallucinations, emotional withdrawal, and cognitive issues; while current antipsychotic treatments help with some symptoms, they don't effectively address cognitive deficits or negative symptoms and can cause bad side effects.
  • - This study explored how Rho kinase inhibitors, like fasudil, impact cognitive impairment in a mouse model of SCZ induced by methamphetamine (METH); the results showed these inhibitors improved visual discrimination tasks affected by METH.
  • - The research found that METH enhances Rho kinase activity in specific brain regions, contributing to cognitive problems, and that using Rho kinase inhibitors can potentially mitigate these impairments through pathways in the cortico-stri
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Article Synopsis
  • Glucagon, secreted by pancreatic α-cells, is crucial for amino acid metabolism in the liver, and its absence leads to increased amino acid levels and changes in muscle fiber type in mice.
  • The study analyzed muscle tissues from GCGKO mice (lacking glucagon action) and found muscle hypertrophy and a shift from type IIA to type IIB fibers, indicating changes in muscle composition.
  • Results suggest that reduced glucagon action raises certain amino acid concentrations in muscle, leading to increased muscle weight and changes similar to those seen in high-protein diets.
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Tubulin Polyglutamylation by TTLL1 and TTLL7 Regulate Glutamate Concentration in the Mice Brain.

Biomolecules

May 2023

Department of Cellular and Molecular Anatomy, Hamamatsu University School of Medicine, 1-20-1 Handayama, Higashi-ku, Hamamatsu, Shizuoka 431-3192, Japan.

Article Synopsis
  • Glutamate is a key neurotransmitter present in over 90% of excitatory synapses in the human brain, but its metabolic pathways are complex and not completely understood.
  • The study focuses on two proteins, TTLL1 and TTLL7, responsible for tubulin polyglutamylation in the brain, which is linked to maintaining neuronal polarity.
  • Researchers created knockout mice for these proteins and discovered abnormal behaviors linked to increased glutamate levels in their brains, indicating that tubulin polyglutamylation may regulate glutamate and other amino acids in neurons.
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Background: Circulating microRNAs (miRNAs, miR) have been considered as biomarkers reflecting the underlying pathophysiology in atrial fibrillation (AF). Nevertheless, miRNA expression in the peripheral blood samples might not reflect a cardiac phenomenon since most miRNAs are expressed in numerous organs. This study aimed to identify the cardiac-specific circulating miRNAs as biomarkers for AF.

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Objective: Xq chromosome duplication with complex rearrangements is generally acknowledged to be associated with neurodevelopmental disorders, such as Pelizaeus-Merzbacher disease (PMD) and MECP2 duplication syndrome. For couples who required a PGT-M (pre-implantation genetic testing for monogenic disease) for these disorders, junction-specific PCR is useful to directly detect pathogenic variants. Therefore, pre-clinical workup for PGT-M requires the identification of the junction of duplicated segments in PMD and MECP2 duplication syndrome, which is generally difficult.

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Mutations in transport and Golgi organization 2 homolog () have recently been described as a cause of an autosomal recessive syndrome characterized by episodes of metabolic crisis associated with rhabdomyolysis, cardiac arrhythmias, and neurodegeneration. Herein, we report a case of a one-and-a-half-year-old Japanese girl, born to nonconsanguineous parents, who presented with metabolic crisis characterized by hypoglycemia with hypoketonemia, rhabdomyolysis, lactic acidosis, and prolonged corrected QT interval (QTc) at the age of 6 months. Acylcarnitine analysis during the episode of crisis showed prominent elevation of C14:1, suggesting very-long-chain acyl-CoA dehydrogenase (VLCAD) deficiency.

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Women who are undergoing preimplantation genetic testing for aneuploidy (PGT-A) often wish to know how many eggs will be required to optimize the chances of a live birth. However, no precise data on this can yet be provided during genetic counseling for this procedure. On the basis of PGT-A data from related studies and current databases, we have estimated that the number of zygotes required for a 50% chance of a live birth is 8 at age 40 but increases markedly to 21 at age 43.

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The skeletal muscle myosin heavy chain (MyHC) is a fundamental component of the sarcomere structure and muscle contraction. Two of the three adult fast MyHCs, MyHC-IIx and MyHC-IIb, are encoded by Myh1 and Myh4, respectively. However, skeletal muscle disorders have not yet been linked to these genes in humans.

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Osteosarcoma is a malignant tumor that produces neoplastic bone or osteoid osteoma. In human multicentric osteosarcoma (HMOS), a unique variant of human osteosarcoma (HOS), multiple bone lesions occur simultaneously or asynchronously before lung metastasis. HMOS is associated with an extremely poor prognosis, and effective treatment options are lacking.

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Fukuyama congenital muscular dystrophy (FCMD) is an autosomal recessive disorder caused by fukutin (FKTN) gene mutations. FCMD is the second most common form of childhood muscular dystrophy in Japan, and the most patients possess a homozygous retrotransposal SINE-VNTR-Alu insertion in the 3'-untranslated region of FKTN. A deep-intronic variant (DIV) was previously identified as the second most prevalent loss-of-function mutation in Japanese patients with FCMD.

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Maple syrup urine disease (MSUD) is a rare autosomal recessive inherited disorder of branched-chain amino acid metabolism caused by mutations in , , and that encode the E1α, E1β, and E2 subunits of the branched-chain α-ketoacid dehydrogenase (BCKD) complex. Various MSUD-causing variants have been described; however, no structural rearrangements in have been reported to cause the classic MSUD phenotype. Here, we describe the classic patient with MSUD with compound heterozygous pathogenic variants in : a missense variant (NM_000709.

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A circulating subset of iNKT cells mediates antitumor and antiviral immunity.

Sci Immunol

October 2022

Laboratory of Immune Regulation, Department of Virus Research, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan.

Invariant natural killer T (iNKT) cells are a group of innate-like T lymphocytes that recognize lipid antigens. They are supposed to be tissue resident and important for systemic and local immune regulation. To investigate the heterogeneity of iNKT cells, we recharacterized iNKT cells in the thymus and peripheral tissues.

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Primary cilia are antenna-like organelles that regulate growth and development via extracellular signals. However, the molecular mechanisms underlying cilia dynamics, particularly those regulating their disassembly, are not well understood. Here, we show that leucine-rich repeat kinase 1 (LRRK1) plays a role in regulating cilia disassembly.

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Flooding impairs wheat growth and considerably affects yield productivity worldwide. On the other hand, irradiation with millimeter waves enhanced the growth of chickpea and soybean under flooding stress. In the current work, millimeter-wave irradiation notably enhanced wheat growth, even under flooding stress.

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Deficiency of , a gene related to intellectual disability, causes impaired neuronal development and a mild behavioural phenotype.

Brain Commun

August 2022

Department of Molecular Oncology, Institute of Development, Aging and Cancer (IDAC), Tohoku University, Sendai, Miyagi 980-8575, Japan.

is a gene associated with intellectual disability, which was originally identified as being involved in the maintenance of kinetochore-microtubule attachment. To explore the neuronal defects caused by deficiency, we established mice that lack . Mice that are homozygous knockout for were slightly smaller than wild-type mice and died soon after birth on pure C57BL/6J background.

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