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◆ Experimental & molecular medicine2026-09-11

TRANsCre-DIONE transdifferentiates scar-forming reactive astrocytes into functional motor neurons.

Heeyoung An, Hye-Lan Lee, Doo-Wan Cho, Jinpyo Hong, Hye Yeong Lee, Jung Moo Lee, SunYeong Choi, In-Young Hwang, Junsung Woo, Jaekwang Lee, MinGu Park, Young-Su Yang, Su-Cheol Han, Yoon Ha, C Justin Lee

原始摘要(英文原文)· Original abstract
In spinal cord injury (SCI), the scar-forming reactive astrocytes with upregulated glial fibrillary acidic protein (GFAP) proliferate aberrantly near the injury site, representing a potential cellular source for transdifferentiation into neurons to replenish dead neurons. However, the conventional use of GFAP promoter to target reactive astrocytes has two inherent problems: inadvertent conversion of normal astrocytes and low efficiency due to progressive weakening of promoter activity during transdifferentiation. Here, we present TRANsCre-DIONE, a dual-promoter split-Cre system combining GFAP and Lcn2 regulatory elements with Cre-dependent Neurog2 expression under the EF1α promoter, enabling selective targeting of scar-forming reactive astrocytes. This approach achieved 87% conversion efficiency and 96% specificity in vivo. After SCI, TRANsCre-DIONE caused transdifferentiation into Isl1-positive and ChAT-positive motor neurons, reduced astrogliosis, enhanced regeneration in surrounding cells, and a significant motor recovery. These findings suggest that TRANsCre-DIONE enables efficient and selective astrocyte-to-neuron conversion and represents a promising strategy for SCI repair.
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TRANsCre-DIONE transdifferentiates scar-forming reactive astrocytes into functional motor neurons. — 科研速览 Science Skim