Bispecific antibody engineered extracellular vesicles redirect T cells to prevent postoperative epidural fibrosis

S Shanwei Ye Q Qian Xu Y Yong Xu H Hui Lu Z Zhenfeng Liu J Jianfeng Guo Y Yichuan Li W Wei Wang J Jun Ran X Xiaohua Zhu D Dongling Zhu W Wei Wu Z Zechuan Yang S Shiqi Gu F Feng Li L Lugui Qiu E Ellen Puré V Vijay G. Bhoj L Liang Huang (Research Center for Analytical Science, College of Chemistry) W Wei Xiong Z Zheng Zhang

Abstract

Abstract Epidural fibrosis (EF) is a frequent and debilitating complication that impairs recovery following spinal surgery, yet effective targeted therapies are lacking. Here we observe enrichment of FAP⁺ fibroblasts at surgical sites in patients after laminectomy. To therapeutically target this subset, we develop bispecific antibody–decorated extracellular vesicles (BsAb EVs), which redirect endogenous T cells to eliminate FAP⁺ fibroblasts in situ. In a preclinical model, BsAb EVs selectively eliminate pathogenic fibroblasts, reduce fibrotic collagen accumulation, and prevent the development of postoperative epidural fibrosis without detectable systemic toxicity under the tested conditions. Single-cell RNA sequencing reveals that FAP⁺ fibroblasts represent a transcriptionally distinct subset from α-SMA⁺ myofibroblasts, characterized by enhanced extracellular matrix remodeling and TGF-β production. Together, these findings highlight a critical stromal subset in EF pathogenesis and position BsAb EVs as a promising immunotherapeutic strategy for targeting pathogenic stromal cells in fibrotic and tissue-remodeling disorders.

Article Details

Volume / Issue Vol. 1, Issue 1
Published June 27, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

S

Shanwei Ye

Q

Qian Xu

Y

Yong Xu

H

Hui Lu

Z

Zhenfeng Liu

J

Jianfeng Guo

Y

Yichuan Li

W

Wei Wang

J

Jun Ran

X

Xiaohua Zhu

D

Dongling Zhu

W

Wei Wu

Z

Zechuan Yang

S

Shiqi Gu

F

Feng Li

L

Lugui Qiu

E

Ellen Puré

V

Vijay G. Bhoj

L

Liang Huang

Research Center for Analytical Science, College of Chemistry

W

Wei Xiong

Z

Zheng Zhang