Harnessing hydrogel technology for advanced periodontitis therapy: A multifunctional approach to oral health restoration

Periodontitis is a bacterially driven inflammatory disease that can lead to tooth mobility and tooth loss. Conventional non-surgical therapy, antibiotics, and surgery may be limited by residual subgingival biofilms, antimicrobial resistance, and variable clinical outcomes. This review synthesizes recent studies of hydrogel-based systems for local periodontal therapy, focusing on stimuli-responsive release mechanisms, cargo-loading approaches, and regenerative outcomes in relevant animal models. Across these studies, hydrogels function as localized delivery matrices that can prolong retention at periodontal defects, regulate therapeutic exposure, and support tissue repair. We further evaluate translational considerations, including degradation behavior, long-term in vivo stability, and immunocompatibility. These findings position hydrogels as adaptable platforms for more precise periodontitis management and identify priorities for preclinical optimization before clinical translation.

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Publication Details

Journal
iScience
Published
2026-10-07
DOI
https://doi.org/10.1016/j.isci.2026.117156
Primary Topic
Oral microbiology and periodontitis research
Type
article
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article

Harnessing hydrogel technology for advanced periodontitis therapy: A multifunctional approach to oral health restoration

Liyuan Liu, Zhenjiang Zhang, Na Li, Xueting Wang et al.
iScience
Oral microbiology and periodontitis research
article

Harnessing hydrogel technology for advanced periodontitis therapy: A multifunctional approach to oral health restoration

Liyuan Liu, Zhenjiang Zhang, Na Li, Xueting Wang, Xudong Deng, Yanxia Miao, Shaoqiang Wang, Xiaoqing Zhuo, Maoshan Wang, Yuqi Zhou, Hongguang Zhu, Minmin Zhu
article en

Abstract

Periodontitis is a bacterially driven inflammatory disease that can lead to tooth mobility and tooth loss. Conventional non-surgical therapy, antibiotics, and surgery may be limited by residual subgingival biofilms, antimicrobial resistance, and variable clinical outcomes. This review synthesizes recent studies of hydrogel-based systems for local periodontal therapy, focusing on stimuli-responsive release mechanisms, cargo-loading approaches, and regenerative outcomes in relevant animal models. Across these studies, hydrogels function as localized delivery matrices that can prolong retention at periodontal defects, regulate therapeutic exposure, and support tissue repair. We further evaluate translational considerations, including degradation behavior, long-term in vivo stability, and immunocompatibility. These findings position hydrogels as adaptable platforms for more precise periodontitis management and identify priorities for preclinical optimization before clinical translation.

iScienceVol. 29(11)
Weifang Medical University (CN), Northwestern Polytechnical University (CN), Weifang People's Hospital (CN)
Openalex Percentile: Top 9%
Oral microbiology and periodontitis research
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Harnessing hydrogel technology for advanced periodontitis therapy: A multifunctional approach to oral health restoration — Liyuan Liu, Zhenjiang Zhang, et al. · iScience (2026) | TGRS Research Map | TGRS