Interneuronal communication mediated by gap junctions has been proposed to have an important role in brain development and in the genesis of epilepsy. Indirect evidence for the existence and function of gap junctions has been obtained by studying dye-coupling, the transfer of the low-molecular-weight fluorescent dye Lucifer yellow (LY), among neurons. In the present study, the incidence of dye-coupling was assessed at different stages of human postnatal brain development. Pathological neocortical tissue was obtained from children from 3 to 172 months of age suffering from pediatric epilepsy and undergoing surgery to alleviate intractable seizures. Tissue samples were classified into least and most abnormal according to a number of diagnostic measures to ascertain if the incidence of dye-coupling could be related to the degree of epileptogenicity of the sample. Regardless of the degree of abnormality, a significant developmental decrease in the incidence of dye-coupling was observed. In children 3-16 months, dye-coupling occurred in 38% of single intracellular injections of LY. From 32 to 83 months, the frequency of dye-coupling decreased to 13%. Finally, from 93 to 172 months, dye-coupling was observed in only 4% of injections. The frequency of dye-coupling between the least and most abnormal samples was not significantly different, although the frequency of dye-coupling was higher in the least abnormal samples from the youngest group (3-16 months). These findings underscore the role of gap junctions during brain development. However, they do not provide support, at least in vitro, for the hypothesis that gap junctions have an important role underlying epilepsy.
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http://dx.doi.org/10.1093/cercor/3.2.95 | DOI Listing |
Pharmaceutics
January 2025
Department of Pharmacology, School of Medicine, University of Mostar, 88000 Mostar, Bosnia and Herzegovina.
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Micromachines (Basel)
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Power Solutions Group, Onsemi, Scottsdale, AZ 85250, USA.
Trench MOS Barrier Schottky (TMBS) rectifiers offer superior static and dynamic electrical characteristics when compared with planar Schottky rectifiers for a given active die size. The unique structure of TMBS devices allows for efficient manipulation of the electric field, enabling higher doping concentrations in the drift region and thus achieving a lower forward voltage drop (VF) and reduced leakage current (IR) while maintaining high breakdown voltage (BV). While the use of trenches to push electric fields away from the mesa surface is a widely employed concept for vertical power devices, a significant gap exists in the analytical modeling of this effect, with most prior studies relying heavily on computationally intensive numerical simulations.
View Article and Find Full Text PDFACS Nano
January 2025
School of Pharmaceutical Sciences, Guangdong Provincial Key Laboratory of Chiral Molecule and Drug Discovery, Sun Yat-Sen University, University Town, Guangzhou 510006, China.
Mitochondrial transplantation is a significant therapeutic approach for addressing mitochondrial dysfunction in patients with spinal cord injury (SCI), yet it is limited by rapid mitochondrial deactivation and low transfer efficiency. Here, high-quality mitochondria microfactories (HQ-Mitofactories) were constructed by anchoring Prussian blue nanoenzymes onto mesenchymal stem cells for effective mitochondrial transplantation to treat paralysis from SCI. Notably, the results demonstrated that HQ-Mitofactories could continuously produce vitality-boosting mitochondria with highly interconnected and elongated network structures under oxidative stress by scavenging excessive ROS.
View Article and Find Full Text PDFNeurotherapeutics
January 2025
Departamento de Medicina Intensiva, Facultad de Medicina, Pontificia Universidad Católica de Chile, Chile. Electronic address:
Acute brain injuries (ABIs) encompass a broad spectrum of primary injuries such as ischemia, hypoxia, trauma, and hemorrhage that converge into secondary injury where some mechanisms show common determinants. In this regard, astroglial connexin and pannexin channels have been shown to play an important role. These channels are transmembrane proteins sharing similar topology and form gateways between adjacent cells named gap junctions (GJs) and pores into unopposed membranes named hemichannels (HCs).
View Article and Find Full Text PDFStem Cells
January 2025
Department of Orthopaedic Surgery, Kobe University Graduate School of Medicine, 7-5-1 Kusunoki-cho, Chuo-ku, Kobe city, Hyogo 650-0017, Japan.
Aims: Bone marrow mononuclear cells (BM-MNCs) are a rich source of hematopoietic stem cells that have been widely used in experimental therapies for patients with various diseases, including fractures.Activation of angiogenesis is believed to be one of the major modes of action of BM-MNCs; however, the essential mechanism by which BM-MNCs activate angiogenesis remains elusive. This study aimed to demonstrate that BM-MNCs promote bone healing by enhancing angiogenesis through direct cell-to-cell interactions via gap junctions, in addition to a previously reported method.
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