Thermoelectric‐Feedback Nanocomposite Hydrogel for Temperature‐Synchronized Monitoring and Regulation in Accurate Photothermal Therapy

Author:

Xu Hongtao1234,Huang Gang5,Cheng Han1234,Li Fangjie6,Zhang Zhiyuan1234,Huang Xiaojuan1234,Huang Hailong5,Zheng Chongyang1234ORCID

Affiliation:

1. Department of Oral and Maxillofacial‐Head & Neck Oncology Shanghai Ninth People's Hospital Shanghai Jiao Tong University School of Medicine Shanghai 200011 P. R. China

2. College of Stomatology Shanghai Jiao Tong University & National Center for Stomatology Shanghai 200011 P. R. China

3. National Clinical Research Center for Oral Diseases & Shanghai Key Laboratory of Stomatology Shanghai 200011 P. R. China

4. Shanghai Research Institute of Stomatology & Research Unit of Oral and Maxillofacial Regenerative Medicine Chinese Academy of Medical Sciences Shanghai 200011 P. R. China

5. Department of Molten Salt Chemistry and Engineering Shanghai Institute of Applied Physics Chinese Academy of Sciences Shanghai 201800 P. R. China

6. Department of Oral and Maxillofacial Surgery The First Affiliated Hospital of Huzhou University Huzhou 313000 P. R. China

Abstract

AbstractPhotothermal therapy (PTT) is a promising approach for tumor ablation and cancer treatment. However, controlling the therapeutic temperature during treatment remains challenging, and imprecise thermal regulation can harm adjacent healthy tissues, reduce therapeutic accuracy, and promote the thermotolerance of cellular phenotypes, potentially leading to tumor invasion and recurrence. Although existing methods provide basic temperature control by adjusting irradiation power and photothermal agent dosing, they lack real‐time temperature monitoring and feedback control capabilities, underscoring the urgent need for more integrated and precise PTT systems. In this context, an innovative photothermoelectric (PTE) cobalt‐infused chitosan (CS) nanocomposite hydrogel (PTE‐Co@CS) is developed for precise temperature‐regulated PTT, exhibiting desirable mechanical properties and exceptional biocompatibility. Enhanced by embedded nanoparticles, PTE‐Co@CS demonstrates superior photothermal conversion efficiency compared with existing methods, while also featuring thermoelectric responsiveness and increased sensitivity to photostimuli. Its advantageous PTE response characteristics ensure a linear correlation between temperature shifts and resistance changes (e.g., R2 = 0.99919 at 0.5 W cm⁻2), enabling synchronized qualitative and quantitative control of PTT temperature through electrical signal monitoring. This allows for real‐time monitoring and regulation during PTT, effectively addressing the issue of uncontrollable temperatures and improving therapeutic efficacy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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