Adv Sci (Weinh). 2026 Sep 16.doi: 10.1002/advs.77598.

TH/TRs-COL11A2 Axis Mediates Loss of a Differentiated Astrocyte State in Hypogyrified Brains.

Ying Zhang 1,2, Xiao Wang 3, Hongyan Ma 1,2,4, Pengcheng Lyu 1,2, Shuangjie Tian 1,2,4, Ruojun Zong 1,2,4, Jiani Chen 5, Gang Ren 1,2,4, Yongjiang Yang 1,2,4, Zichen Yang 1,2,4, Guosong Qin 1,2, Naishi Li 6, Yanfang Wang 3, Jianwei Jiao 1,2,4, Jianguo Zhao 1,2,4

Affiliations

  • 1 Key Laboratory of Organ Regeneration and Reconstruction, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
  • 2 Beijing Institute for Stem Cell and Regenerative Medicine, Beijing, China.
  • 3 State Key Laboratory of Animal Biotech Breeding, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing, China.
  • 4 University of Chinese Academy of Sciences, Beijing, China.
  • 5 Department of Animal Genetics, Breeding and Reproduction, College of Animal Science, South China Agricultural University, Guangzhou, China.
  • 6 Department of Endocrinology, Key Laboratory of Endocrinology of National Health Commission, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

Abstract

Congenital hypothyroidism (CH) is a prevalent endocrine disorder associated with cerebral hypogyrification in neonates and young children, yet the vulnerable cell types and underlying molecular mechanisms remain elusive. Using a gyrencephalic CH pig model, we observed cerebral atrophy and cortical hypogyrification, mirroring key neuropathological features of CH patients. Histological analyses revealed that glial cells were more prominently affected than cortical neurons, with reduced differentiated astrocytic features in the cortex and subcortical white matter, together with oligodendrocyte-lineage and myelination defects in the subcortical white matter. Single-cell RNA sequencing showed that astrocytes displayed the most pronounced transcriptional response to CH, identifying them as a major TH-responsive cell type under CH conditions. Notably, a COL11A2-enriched differentiated astrocyte state, Astro-2, was virtually absent in CH brains. COL11A2 was further validated as a target of the TH/TH-receptors (TRs) axis, and its dysregulation impaired astrocyte differentiation and morphological maturation in mice, pigs, and humans. Our findings suggest an association between endocrine regulation of astrocyte development and cerebral gyrification, and uncover a COL11A2-mediated mechanism by which TH deficiency disrupts astrocyte differentiation, providing potential insights into CH-associated cortical malformations.

Keywords: Thyroid hormone; Pig; Congenital Hypothyroidism; Astrocyte Differentiation; Col11a2; Cerebral Gyrification

https://doi.org/10.1002/advs.77598

0
0
My Cart
Your cart is emptyReturn to Shop