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Titlebook: Ocular Regeneration; Methods and Protocol Jeffrey M. Gross Book 2025 The Editor(s) (if applicable) and The Author(s), under exclusive licen

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Xin Fan,Phillip A. Harding,Morgan V. DiLeos, including job training programs. It present original research on the educational and economic well-being of youth from low-income families who participated in government sponsored job training programs in the late 1970 and early 1980s....The book seeks a middle ground between general and technica
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Lens Regeneration: The Application of iSyTE and In Silico Approaches to Evaluate Gene Expression in taract/lens defects models, which in turn can be used to evaluate expression of key lens-relevant genes in lens organoids by transcriptomics (e.g., RNA-sequencing (RNA-seq), microarrays, etc.) or other downstream methods (e.g., RT-qPCR, etc.).
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Nuclei Isolation from Ocular Tissues of the Embryonic Chicken for Single-Nucleus Profilingultiple QC points and demonstrate proof-of-principle using two commercially available kits. Finally, we demonstrate that existing in silico genotyping methods can be adopted to computationally derive biological replicates from a single pool of chicken nuclei, greatly reducing the cost of biological
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Experimental Framework for Assessing Mouse Retinal Regeneration Through Single-Cell RNA-Sequencingt cells throughout the organism’s lifespan, highlighting potential therapeutic avenues for stimulation of retinal regeneration in humans. Here, we describe how the application of single-cell RNA-sequencing (scRNA-seq) has enhanced our understanding of Müller glial cell-derived retinal regeneration,
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Isolation and Characterization of Extracellular Vesicles to Activate Retina Regenerationion and regeneration raising the possibility that delivery of EVs could be a viable treatment for visual disorders. Here, we provide protocols to isolate EVs for use in retina regeneration experiments.
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Retinal Explant Culture from Mouse, Human, and Nonhuman Primates and Its Applications in Vision Rese include combining live imaging and multiwell retinal explant culture for high-throughput drug screening systems in rodent and human retinal explants to identify new drugs against retinal degeneration.
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Generation of Induced-Primary Retinal Pigment Epithelium from Human Retinal Organoidse outcome is a pure population of cells expressing mature RPE signatures and organized in a characteristic cobblestone monolayer featuring robust ultrastructural polarization. These RPE monolayers also exhibit the functional hallmarks of bona fide mature RPE cells, providing a suitable system to mim
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