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Micromolded honeycomb scaffold design to support the generation of a bilayered RPE and photoreceptor cell construct.


ABSTRACT: Age-related macular degeneration (AMD) causes blindness due to loss of retinal pigment epithelium (RPE) and photoreceptors (PRs), which comprise the two outermost layers of the retina. Given the small size of the macula and the importance of direct contact between RPE and PRs, the use of scaffolds for targeted reconstruction of the outer retina in later stage AMD and other macular dystrophies is particularly attractive. We developed microfabricated, honeycomb-patterned, biodegradable poly(glycerol sebacate) (PGS) scaffolds to deliver organized, adjacent layers of RPE and PRs to the subretinal space. Furthermore, an optimized process was developed to photocure PGS, shortening scaffold production time from days to minutes. The resulting scaffolds robustly supported the seeding of human pluripotent stem cell-derived RPE and PRs, either separately or as a dual cell-layered construct. These advanced, economical, and versatile scaffolds can accelerate retinal cell transplantation efforts and benefit patients with AMD and other retinal degenerative diseases.

SUBMITTER: Lee IK 

PROVIDER: S-EPMC10415596 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Micromolded honeycomb scaffold design to support the generation of a bilayered RPE and photoreceptor cell construct.

Lee In-Kyu IK   Xie Ruosen R   Luz-Madrigal Agustin A   Min Seunghwan S   Zhu Jingcheng J   Jin Jiahe J   Edwards Kimberly L KL   Phillips M Joseph MJ   Ludwig Allison L AL   Gamm David M DM   Gong Shaoqin S   Ma Zhenqiang Z  

Bioactive materials 20230731


Age-related macular degeneration (AMD) causes blindness due to loss of retinal pigment epithelium (RPE) and photoreceptors (PRs), which comprise the two outermost layers of the retina. Given the small size of the macula and the importance of direct contact between RPE and PRs, the use of scaffolds for targeted reconstruction of the outer retina in later stage AMD and other macular dystrophies is particularly attractive. We developed microfabricated, honeycomb-patterned, biodegradable poly(glycer  ...[more]

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