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Transplanted human cones incorporate into the retina and function in a murine cone degeneration model
Sylvia J. Gasparini, Karen Tessmer, Miriam Reh, Stephanie Wieneke, Madalena Carido, Manuela Völkner, Oliver Borsch, Anka Swiersy, Marta Zuzic, Olivier Goureau, Thomas Kurth, Volker Busskamp, Günther Zeck, Mike O. Karl, Marius Ader
Sylvia J. Gasparini, Karen Tessmer, Miriam Reh, Stephanie Wieneke, Madalena Carido, Manuela Völkner, Oliver Borsch, Anka Swiersy, Marta Zuzic, Olivier Goureau, Thomas Kurth, Volker Busskamp, Günther Zeck, Mike O. Karl, Marius Ader
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Research Article

Transplanted human cones incorporate into the retina and function in a murine cone degeneration model

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Abstract

Once human photoreceptors die, they do not regenerate, thus, photoreceptor transplantation has emerged as a potential treatment approach for blinding diseases. Improvements in transplant organization, donor cell maturation, and synaptic connectivity to the host will be critical in advancing this technology for use in clinical practice. Unlike the unstructured grafts of prior cell-suspension transplantations into end-stage degeneration models, we describe the extensive incorporation of induced pluripotent stem cell (iPSC) retinal organoid–derived human photoreceptors into mice with cone dysfunction. This incorporative phenotype was validated in both cone-only as well as pan-photoreceptor transplantations. Rather than forming a glial barrier, Müller cells extended throughout the graft, even forming a series of adherens junctions between mouse and human cells, reminiscent of an outer limiting membrane. Donor-host interaction appeared to promote polarization as well as the development of morphological features critical for light detection, namely the formation of inner and well-stacked outer segments oriented toward the retinal pigment epithelium. Putative synapse formation and graft function were evident at both structural and electrophysiological levels. Overall, these results show that human photoreceptors interacted readily with a partially degenerated retina. Moreover, incorporation into the host retina appeared to be beneficial to graft maturation, polarization, and function.

Authors

Sylvia J. Gasparini, Karen Tessmer, Miriam Reh, Stephanie Wieneke, Madalena Carido, Manuela Völkner, Oliver Borsch, Anka Swiersy, Marta Zuzic, Olivier Goureau, Thomas Kurth, Volker Busskamp, Günther Zeck, Mike O. Karl, Marius Ader

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Figure 10

Increased RGC activity after Crx-mCherry+ photoreceptor transplantation.

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Increased RGC activity after Crx-mCherry+ photoreceptor transplantation....
Receptive fields for ON and OFF RGCs detected following photopic stimulation in (A) nontransplant-containing control regions and (C) retinal areas containing Crx-mCherry grafts. (B) No photopic response was detected after addition of L-AP4 in nontransplant-containing retina. (D) OFF RGC cone pathway responses remained following photopic stimulation and addition of L-AP4 in retinal areas containing Crx-mCherry grafts. (E) Example receptive fields and temporal spike-triggered average (STA) for the 2 cells labeled with a yellow asterisk and a yellow circle in C, showing both ON and OFF responses. (F) Example receptive fields and temporal STA for the 2 cells labeled with white asterisk and a white circle in D, where only OFF responses remained. Percentage of light-responsive (G) ON RGCs and (H) OFF RGCs detected under mesopic, photopic, and photopic stimulation with the addition of L-AP4. Response of 5 different RGCs during full-field photopic ON-OFF flicker stimulation (I) before (ON, OFF, and ON-OFF RGC responses) and (J) with L-AP4 treatment (OFF RGC responses only). The bin width is 20 ms, and a total of 120 stimulus repetitions were performed. Scale bars: 200 μm. Original magnification, ×0.8 (inset in D).

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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