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Merck

Single cell RNA-seq of human cornea organoids identifies cell fates of a developing immature cornea.

PNAS nexus (2023-01-31)
George Maiti, Maithê Rocha Monteiro de Barros, Nan Hu, Igor Dolgalev, Mona Roshan, James W Foster, Aristotelis Tsirigos, Karl J Wahlin, Shukti Chakravarti
RESUMEN

The cornea is a protective and refractive barrier in the eye crucial for vision. Understanding the human cornea in health, disease, and cell-based treatments can be greatly advanced with cornea organoids developed in culture from induced pluripotent stem cells. While a limited number of studies have investigated the single-cell transcriptomic composition of the human cornea, its organoids have not been examined similarly. Here, we elucidated the transcriptomic cell fate map of 4-month-old human cornea organoids and human donor corneas. The organoids harbor cell clusters that resemble cells of the corneal epithelium, stroma, and endothelium, with subpopulations that capture signatures of early developmental states. Unlike the adult cornea where the largest cell population is stromal, the organoids contain large proportions of epithelial and endothelial-like cells. These corneal organoids offer a 3D model to study corneal diseases and integrated responses of different cell types.

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Accutase® solution, sterile-filtered, suitable for cell culture
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Colagenasa de tipo I, The collagenase type I (from Clostridium histolyticum) is a crude collagenase preparation that can be used for the isolation of primary cells or for tissue dissociation by enzymatic means.
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(−)-Blebbistatin, solid, synthetic
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Smoothened Agonist, SAG, A cell-permeable Smoothened Agonist, SAG, CAS 364590-63-6, modulates the coupling of Smo with its downstream effector by interacting with the Smo heptahelical domain (KD = 59 nM).