Optimizing Donor Cellular Dissociation and Subretinal Injection Parameters for Stem Cell-Based Treatments

Author:

Scruggs Brittni A.1,Jiao Chunhua1,Cranston Cathryn M.1,Kaalberg Emily1,Wang Kai2,Russell Stephen R.1,Wiley Luke A.1,Mullins Robert F.1,Stone Edwin M.1,Tucker Budd A.1,Sohn Elliott H.1

Affiliation:

1. University of Iowa Institute for Vision Research and the Department of Ophthalmology and Visual Sciences University of Iowa, Iowa City, Iowa, USA

2. Department of Biostatistics College of Public Health, University of Iowa, Iowa City, Iowa, USA

Abstract

Abstract Subretinal delivery of stem cell-derived retinal cells as a strategy to treat retinal degenerative blindness holds great promise. Currently, two clinical trials are underway in which human fetal retinal progenitor cells (RPCs) are being delivered to patients by intravitreal or subretinal injection to preserve or restore vision, respectively. With the advent of the induced pluripotent stem cell (iPSC), and in turn three-dimensional derivation of retinal tissue, it is now possible to generate autologous RPCs for cell replacement. The purpose of this study was to evaluate the effect of commonly used cell isolation and surgical manipulation strategies on donor cell viability. iPSC-RPCs were subjected to various conditions, including different dissociation and isolation methods, injection cannula sizes, and preinjection storage temperatures and times. The effects of commonly used surgical techniques on both host and donor cell viability were evaluated in Yucatan mini-pigs (n = 61 eyes). We found a significant increase in cell viability when papain was used for RPC isolation. In addition, a significant decrease in cell viability was detected when using the 41G cannula compared with 31G and at storage times of 4 hours compared with 30 minutes. Although 96.4% of all eyes demonstrated spontaneous retinal reattachment following injection, retinal pigment epithelium (RPE) abnormalities were seen more frequently in eyes receiving injections via a 31G cannula; interestingly, eyes that received cell suspensions were relatively protected against such RPE changes. These findings indicate that optimization of donor cell isolation and delivery parameters should be considered when developing a subretinal cell replacement strategy. Stem Cells Translational Medicine  2019;8:797–809

Funder

University of Iowa Institute for Vision Research Endowment

Lidsky/Zawadzki/McGuinn/Cohen Families

Hope for Vision

VitreoRetinal Surgery Foundation

Howard F. Ruby Endowment for Human Retinal Engineering

Hope For Vision

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

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