Chronic Radiation-Induced Wounds: Pathogenesis, Current Therapeutic Strategies, and Emerging Regenerative Approaches

Radiation-induced chronic wounds remain a major clinical challenge owing to persistent non-healing and progressive tissue degeneration. Rather than simply representing delayed wound repair, they arise from a self-perpetuating pathological cascade involving DNA damage, oxidative stress, chronic inflammation, microvascular dysfunction, cellular senescence, stem cell impairment, and fibrosis. Current clinical management remains largely supportive and symptomatic, with limited efficacy and no standardized therapeutic regimens targeting the core pathological mechanisms. Emerging strategies—antioxidant, antifibrotic, senolytic, stem cell/exosome-based, and functional biomaterial approaches—show promise. This review critically summarizes recent advances in pathogenic mechanisms and mechanism-based therapeutic strategies, highlighting current translational challenges and future directions for microenvironment-oriented regenerative therapies.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-15
DOI
https://doi.org/10.3390/ijms27188221
Primary Topic
Effects of Radiation Exposure
Type
article
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Chronic Radiation-Induced Wounds: Pathogenesis, Current Therapeutic Strategies, and Emerging Regenerative Approaches

Beier Jiang, Yifei Feng, Jing Zhang, Xiaowen Xing et al.
International Journal of Molecular Sciences
Effects of Radiation Exposure
article

Chronic Radiation-Induced Wounds: Pathogenesis, Current Therapeutic Strategies, and Emerging Regenerative Approaches

Beier Jiang, Yifei Feng, Jing Zhang, Xiaowen Xing, Cuicui Han, Ying He, Jiaxu Chen, Zheng Zhou, Luyao Yu, Shangfei Gao
article en

Abstract

Radiation-induced chronic wounds remain a major clinical challenge owing to persistent non-healing and progressive tissue degeneration. Rather than simply representing delayed wound repair, they arise from a self-perpetuating pathological cascade involving DNA damage, oxidative stress, chronic inflammation, microvascular dysfunction, cellular senescence, stem cell impairment, and fibrosis. Current clinical management remains largely supportive and symptomatic, with limited efficacy and no standardized therapeutic regimens targeting the core pathological mechanisms. Emerging strategies—antioxidant, antifibrotic, senolytic, stem cell/exosome-based, and functional biomaterial approaches—show promise. This review critically summarizes recent advances in pathogenic mechanisms and mechanism-based therapeutic strategies, highlighting current translational challenges and future directions for microenvironment-oriented regenerative therapies.

International Journal of Molecular SciencesVol. 27(18)
Naval University of Engineering (CN), Shanghai Ocean University (CN)
Good health and well-being
Openalex Percentile: Top 11%
Effects of Radiation Exposure
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Chronic Radiation-Induced Wounds: Pathogenesis, Current Therapeutic Strategies, and Emerging Regenerative Approaches — Beier Jiang, Yifei Feng, et al. · International Journal of Molecular Sciences (2026) | TGRS Research Map | TGRS