Aptamer-functionalized EGCG nanocarrier for neutrophil-targeted AKBA delivery promotes anxiety-related fracture healing

Anxiety is clinically associated with impaired fracture healing, but the underlying immunological mechanism remains unclear, and no targeted therapy is available. In a mouse model of chronic restraint stress (CRS)-induced anxiety with femoral fracture, we observed expansion of TGFβ1 + CCR5 + double-positive neutrophils in the bone marrow. These neutrophils inhibited osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) via TGFβ1 secretion, while BMSC-derived CCL5 reciprocally promoted neutrophil activation, forming a detrimental feedback that disrupted fracture repair. Mechanistically, CRS activated the NF-κB–CCR5 axis to upregulate CCR5 and sustain this neutrophil subset. We found that acetyl-11-keto-β-boswellic acid (AKBA) directly bound YAP1, relieved YAP1-mediated suppression of ubiquitin-specific peptidase 31 (USP31), and consequently inhibited NF-κB phosphorylation and CCR5 expression, reducing the pathogenic neutrophil population and restoring BMSCs' osteogenic function. In order to overcome the problems of poor solubility, low bioavailability and tissue non-selectivity of AKBA, we developed a NIMP-R14 aptamer-modified epigallocatechin gallate (EGCG)-coated nanocarrier (AKBA@E-N), which can achieve enhanced uptake and local retention of neutrophils in the acidic microenvironment of the fracture site. In vivo, AKBA@E-N significantly accelerated fracture healing compared with free AKBA. This study reveals a neutrophil-mediated mechanism linking stress to impaired bone repair and provides a targeted nanotherapeutic strategy.

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Journal
Bioactive Materials
Published
2026-09-24
DOI
https://doi.org/10.1016/j.bioactmat.2026.09.028
Primary Topic
Bone Metabolism and Diseases
Type
article
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article

Aptamer-functionalized EGCG nanocarrier for neutrophil-targeted AKBA delivery promotes anxiety-related fracture healing

Hang Xue, Zhenhe Zhang, Xudong Xie, Yunhua Zhang et al.
Bioactive Materials
Bone Metabolism and Diseases
article

Aptamer-functionalized EGCG nanocarrier for neutrophil-targeted AKBA delivery promotes anxiety-related fracture healing

Hang Xue, Zhenhe Zhang, Xudong Xie, Yunhua Zhang, Ranyang Tao, Guohui Liu, Yiqiang Hu, Jiewen Liao, Ze Lin, Fawwaz Al-Smadi, Lizhi Ouyang, Dong Yang, Wu Zhou, Xi He
article en

Abstract

Anxiety is clinically associated with impaired fracture healing, but the underlying immunological mechanism remains unclear, and no targeted therapy is available. In a mouse model of chronic restraint stress (CRS)-induced anxiety with femoral fracture, we observed expansion of TGFβ1 + CCR5 + double-positive neutrophils in the bone marrow. These neutrophils inhibited osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) via TGFβ1 secretion, while BMSC-derived CCL5 reciprocally promoted neutrophil activation, forming a detrimental feedback that disrupted fracture repair. Mechanistically, CRS activated the NF-κB–CCR5 axis to upregulate CCR5 and sustain this neutrophil subset. We found that acetyl-11-keto-β-boswellic acid (AKBA) directly bound YAP1, relieved YAP1-mediated suppression of ubiquitin-specific peptidase 31 (USP31), and consequently inhibited NF-κB phosphorylation and CCR5 expression, reducing the pathogenic neutrophil population and restoring BMSCs' osteogenic function. In order to overcome the problems of poor solubility, low bioavailability and tissue non-selectivity of AKBA, we developed a NIMP-R14 aptamer-modified epigallocatechin gallate (EGCG)-coated nanocarrier (AKBA@E-N), which can achieve enhanced uptake and local retention of neutrophils in the acidic microenvironment of the fracture site. In vivo, AKBA@E-N significantly accelerated fracture healing compared with free AKBA. This study reveals a neutrophil-mediated mechanism linking stress to impaired bone repair and provides a targeted nanotherapeutic strategy.

Bioactive MaterialsVol. 69
Renji Hospital (CN), Wuhan Union Hospital (CN), Union Hospital (CN)
No poverty
Openalex Percentile: Top 19%
Bone Metabolism and Diseases
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