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Deciphering the correct mechanisms governing certain phenomena in polyelectrolyte (PE) brush grafted systems, revealed through atomistic simulations, is an extremely challenging problem. In a recent study, our all-atom molecular dynamics (MD) simulations revealed a nonlinearly large electroosmotic (EOS) flow (in the presence of an applied electric field) in nanochannels grafted with PMETAC [poly(2-(methacryloyloxy)ethyl trimethylammonium chloride] brushes. Given the lack of any formal procedure that would have directed us to identify the correct factors responsible for such an occurrence, we needed to devote several months to unraveling the involved mechanisms. In this letter, we propose a linear discriminant analysis (LDA)-based machine learning (ML) approach to address this gap. At first, we obtained data on certain basic features from the all-atom MD data. These basic features represent the number of atoms of a certain species around one atom of another (or the same) species. We obtain such data on basic features for a reference case (case of an EOS flow in PMETAC-brush-grafted nanochannels with a smaller electric field) and a perturbed case (case of an EOS flow in PMETAC-brush-grafted nanochannels with a larger electric field) in bins into which the nanochannel half height has been divided. These data sets are high-dimensional data sets to which the LDA is applied. This leads to the projection of the data (between the reference and the perturbed states) in a highly separated form on a 1D line. From such LDA calculations, we can identify the relative importance of the different basic features in ensuring this separation of the data (between the reference and the perturbed states) on the 1D line. The relative importance of the different basic features is quantified as "importance scores" for the different features, which, in turn, tell us what to study and where to study. Such knowledge enables us to rapidly identify the key factors responsible for the nonlinearly large EOS transport in PMETAC-brush-grafted nanochannels.
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http://dx.doi.org/10.1021/acs.jpcb.5c01072 | DOI Listing |
Anal Chem
September 2025
Institute of Biological Chemistry, Faculty of Chemistry, University of Vienna, Währinger Str. 38, 1090 Vienna, Austria.
The discovery of solute precursors of crystalline materials, such as biominerals, recently challenged the classical nucleation theory (CNT). One emerging method for investigating these early-stage intermediates in solution is dissolution dynamic nuclear polarization (dDNP)-enhanced nuclear magnetic resonance (NMR) spectroscopy. Recent applications of dDNP to calcium carbonate (CaC) and calcium phosphate (CaP) mineralization have demonstrated the feasibility of identifying and tracing very early-stage prenucleation clusters (PNCs).
View Article and Find Full Text PDFLab Chip
September 2025
Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, USA.
Traumatic brain injuries (TBIs) are a risk factor for Alzheimer's disease (AD), and share several important pathological features including the development of neurofibrillary tangles (NFT) of tau protein. While this association is well established, the underlying pathogenesis is poorly defined and current treatment options remain limited, necessitating novel methods and approaches. In response we developed "TBI-on-a-chip", an trauma model utilizing murine cortical networks on microelectrode arrays (MEAs), capable of reproducing clinically relevant impact injuries while providing simultaneous morphological and electrophysiological readout.
View Article and Find Full Text PDFJ Neurosci
September 2025
College of Life Sciences, Zhejiang University, Hangzhou 310058, P.R. China
Nonsense-mediated mRNA decay (NMD) is a conserved RNA surveillance mechanism that degrades transcripts with premature termination codons (PTCs) and finetunes gene expression by targeting RNA transcripts with other NMD inducing features. This study demonstrates that conditional knockout of , a key NMD component, in oligodendrocyte lineage cells disrupts the degradation of PTC-containing transcripts, including aberrant variants of the RNA-binding protein The loss of SMG5 in both sexes of mice impaired oligodendrocyte differentiation, reduced myelin gene expression, and led to thinner myelin sheaths and compromised motor function in mice. Mechanistically, HNRNPL was shown to regulate the alternative splicing of myelin-associated genes and , and promote oligodendrocyte differentiation.
View Article and Find Full Text PDFExp Eye Res
September 2025
School of Basic Medicine, Qingdao University, Qingdao, Shandong Province, 266071, China; Department of Ophthalmology, Qingdao Eighth People's Hospital, Qingdao, Shandong Province, 266121, China; Institute of Stem Cell Regeneration Medicine, School of Basic Medicine, Qingdao University, Qingdao, Shan
Mitochondria play a crucial role in energy production and are intimately associated with ocular function. Mitochondrial dysfunction can trigger oxidative stress and inflammation, adversely affecting key ocular structures such as the lacrimal gland, lens, retina, and trabecular meshwork. This dysfunction may compromise the barrier properties of the trabecular meshwork, impeding aqueous humour outflow, elevating intraocular pressure, and resulting in optic nerve damage and primary open-angle glaucoma.
View Article and Find Full Text PDFBiochim Biophys Acta Rev Cancer
September 2025
School of Applied Sciences, Suresh Gyan Vihar University, Jaipur 302017, Rajasthan, India. Electronic address:
Cancer has been one of the primary causes of mortality for the last three decades across the globe, with contemporary treatment modalities often falling short due to limitations viz. drug resistance, toxicity, and the inability to target molecular mechanisms of tumor progression. Among various intracellular mediators implicated in cancer progression, heparanase, a heparan sulfate degrading enzyme, has been pivotal by facilitating tumor invasion, angiogenesis, and metastasis.
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