AI Chat Paper
Note: Please note that the following content is generated by AMiner AI. SciOpen does not take any responsibility related to this content.
{{lang === 'zh_CN' ? '文章概述' : 'Summary'}}
{{lang === 'en_US' ? '中' : 'Eng'}}
Chat more with AI
PDF (4.2 MB)
Collect
Submit Manuscript AI Chat Paper
Show Outline
Outline
Show full outline
Hide outline
Outline
Show full outline
Hide outline
Research Article | Open Access

TAK1 activates PANoptosis through the NF-κB signalling pathway to delay diabetic wound healing

Xiaoxiang Wang1,2,3, Sitong Zhou4, Yixun Zhang1,2Xuewei Zhang1,2 Shuilan Wu1,2Yan Huang5Julin Xie3( )Kun Xiong6( )Ronghua Yang1,2 ( )
Department of Burn and Plastic Surgery, Guangzhou First People’s Hospital, No. 1 Panfu Road, Yuexiu District, Guangzhou, Guangdong Province, 510180, China
The Second Affiliated Hospital, School of Medicine, South China University of Technology, No. 1 Panfu Road, Yuexiu District, Guangzhou, Guangdong Province, 510180, China
Department of Burn Surgery, The First Affiliated Hospital of Sun Yat-Sen University, No. 58, Zhongshan 2nd Road, Yuexiu District, Guangzhou City, Guangdong Province, 510080, China
Department of Dermatology, The First People’s Hospital of Foshan, No. 81, Lingnan Avenue North, Chancheng District, Foshan City, Guangdong Province, 528000, China
Department of Burn Surgery, The First People’s Hospital of Foshan, No. 81, Lingnan Avenue North, Chancheng District, Foshan City, Guangdong Province, 528000, China
Department of Human Anatomy and Neurobiology, School of Basic Medical Science, Central South University, No. 172, Tongzipo Road, Changsha City, Hunan Province, 410013, China

These authors contributed to the work equally.

Show Author Information

Highlights

• This study provides novel evidence supporting the presence of PANoptosis in the context of diabetic wounds.

• The core regulatory molecule of PANoptosis, TAK1, is highly expressed in a high-glucose environment, exacerbating cell death and hindering diabetic wound healing.

• TAK1 activates NF-κB signalling, leading to cell death in wounds, exacerbating the inflammatory response, and significantly delaying the wound healing process.

Abstract

Background

PANoptosis is a comprehensive form of cell death regulation that involves the interplay of pyroptosis, apoptosis, and necrosis. As a key regulator of PANoptosis, TAK1 plays a crucial role in multiple cell death pathways. However, its specific mechanism in the process of diabetic wound (DW) healing remains unclear. This study aimed to explore the role of TAK1 in regulating PANoptosis and its impact on DW healing.

Methods

We used immunofluorescence, TUNEL staining, and EthD-Ⅲ staining to analyse the relationship between TAK1 activity and PANoptosis. RNA sequencing was used to investigate the regulatory role of TAK1 and the NF-κB pathway under high-glucose conditions. Additionally, molecular docking and coimmunoprecipitation experiments were performed to verify the interaction between TAK1 and p65. Finally, a mouse model was used to study the effects of TAK1 knockdown on wound healing.

Results

Our findings revealed that PANoptosis is significantly present in DW, with markedly upregulated TAK1 expression under high-glucose conditions. The inhibition of TAK1 expression significantly reduced cell death and promoted cell proliferation and migration. Mechanistically, TAK1 interacts with p65 through the NF-κB pathway, activating downstream signals that exacerbate cell damage in a high-glucose environment. TAK1 knockdown significantly suppressed PANoptosis, promoted microvascular and collagen formation, reduced inflammation, and further accelerated wound healing.

Conclusion

TAK1 regulates PANoptosis by activating the NF-κB signalling pathway, thereby playing a crucial role in DW healing. Inhibiting TAK1 may represent a potential strategy to improve wound healing, with significant potential for clinical application.

Graphical Abstract

References

【1】
【1】
 
 
Burns & Trauma
Article number: tkag001

{{item.num}}

Comments on this article

Go to comment

< Back to all reports

Review Status: {{reviewData.commendedNum}} Commended , {{reviewData.revisionRequiredNum}} Revision Required , {{reviewData.notCommendedNum}} Not Commended Under Peer Review

Review Comment

Close
Close
Cite this article:
Wang X, Zhou S, Zhang Y, et al. TAK1 activates PANoptosis through the NF-κB signalling pathway to delay diabetic wound healing. Burns & Trauma, 2026, 14(1): tkag001. https://doi.org/10.1093/burnst/tkag001

135

Views

0

Downloads

3

Crossref

3

Web of Science

4

Scopus

Received: 21 September 2025
Accepted: 03 January 2026
Published: 06 January 2026
© The Author(s) 2026. Published by Oxford University Press.

This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact reprints@oup.com for reprints and translation rights for reprints. All other permissions can be obtained through our RightsLink service via the Permissions link on the article page on our site—for further information please contact journals.permissions@oup.com.