Lesions of the dorsal columns of the spinal cord in adult macaque monkeys lead to the loss of hand inputs and large-scale expansion of the face inputs in the hand region of the somatosensory cortex. Inputs from alternate spinal pathways do not reactivate the deafferented regions of area 3b. Here, we determined how transections of the dorsal columns done within a few days after birth affect the developing somatosensory cortex.
View Article and Find Full Text PDFDeep learning is a promising strategy for modeling cis-regulatory elements. However, models trained on genomic sequences often fail to explain why the same transcription factor can activate or repress transcription in different contexts. To address this limitation, we developed an active learning approach to train models that distinguish between enhancers and silencers composed of binding sites for the photoreceptor transcription factor cone-rod homeobox (CRX).
View Article and Find Full Text PDFBackground: Commissioning for health services has been implemented as one approach to improve the quality and access to healthcare for First Nations, regional and remote populations. This review systematically scoped the literature for studies that described or evaluated the governance, funding, implementation and outcomes from health service commissioning targeting these groups in Canada, Australia, Aotearoa/New Zealand and the United States (CANZUS nations).
Methods: Seventeen databases were searched for relevant peer reviewed and grey literature studies published in English from 2010 to 2023.
Background: Breast cancer (BC) survivorship presents significant health disparities, particularly affecting Black women, who experience a 40% higher BC death rate compared to White women. These disparities are exacerbated by comorbidities, which contribute to poorer overall health outcomes. Additionally, Black BC survivors often face psychosocial challenges, including increased stress and lower well-being, which can lead to adverse physical health effects.
View Article and Find Full Text PDFDelivering ribonucleoproteins (RNPs) for in vivo genome editing is safer than using viruses encoding for Cas9 and its respective guide RNA. However, transient RNP activity does not typically lead to optimal editing outcomes. Here we show that the efficiency of delivering RNPs can be enhanced by cell-penetrating peptides (covalently fused to the protein or as excipients) and that lipid nanoparticles (LNPs) encapsulating RNPs can be optimized for enhanced RNP stability, delivery efficiency and editing potency.
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