TY - JOUR
T1 - On-Site Visualized Periodontitis Screening via Dual-Signal H2S Probe
AU - Ma, Wenqiang
AU - Ding, Rui
AU - Wang, Siyuan
AU - Wang, Zengrong
AU - Xu, Letian
AU - Zhou, Kun
AU - Ma, Jinlu
AU - He, Gang
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025
Y1 - 2025
N2 - Periodontitis is a destructive disease that causes irreversible damage to periodontal supporting tissues, posing a serious threat to patients' oral health. Given the insidious nature of periodontal tissue destruction, early diagnosis of periodontitis is crucial. Salivary hydrogen sulfide (H2S) has been identified as a potential biomarker for periodontitis monitoring. However, existing detection methods struggle to precisely locate the source of H2S release within the oral cavity, making it difficult to accurately identify affected areas and significantly hindering early diagnosis and treatment of periodontitis. This study reports a visual aggregation-induced emission (AIE) fluorescent probe (TTN), which exhibits high sensitivity and rapid responsiveness to H2S, along with dual-signal response capabilities in color and fluorescence. Based on this probe, a highly reliable and practical TTN film sensor capable of efficiently monitoring H2S is developed. The film can be used for real-time diagnosis of periodontitis, allowing precise identification of diseased tooth areas through visible color and fluorescence changes. Additionally, the film demonstrates efficient reactive oxygen species (ROS) generation, inhibiting the growth of periodontitis-causing bacteria and showcasing therapeutic potential. This integrated diagnostic and therapeutic design not only provides a novel approach for monitoring H2S as a biomarker but also opens new avenues for precise diagnosis and treatment of periodontitis.
AB - Periodontitis is a destructive disease that causes irreversible damage to periodontal supporting tissues, posing a serious threat to patients' oral health. Given the insidious nature of periodontal tissue destruction, early diagnosis of periodontitis is crucial. Salivary hydrogen sulfide (H2S) has been identified as a potential biomarker for periodontitis monitoring. However, existing detection methods struggle to precisely locate the source of H2S release within the oral cavity, making it difficult to accurately identify affected areas and significantly hindering early diagnosis and treatment of periodontitis. This study reports a visual aggregation-induced emission (AIE) fluorescent probe (TTN), which exhibits high sensitivity and rapid responsiveness to H2S, along with dual-signal response capabilities in color and fluorescence. Based on this probe, a highly reliable and practical TTN film sensor capable of efficiently monitoring H2S is developed. The film can be used for real-time diagnosis of periodontitis, allowing precise identification of diseased tooth areas through visible color and fluorescence changes. Additionally, the film demonstrates efficient reactive oxygen species (ROS) generation, inhibiting the growth of periodontitis-causing bacteria and showcasing therapeutic potential. This integrated diagnostic and therapeutic design not only provides a novel approach for monitoring H2S as a biomarker but also opens new avenues for precise diagnosis and treatment of periodontitis.
KW - HS detection
KW - aggregation-induced emission
KW - dual-signal response
KW - film fluorescent sensor
KW - periodontitis diagnosis
UR - https://www.scopus.com/pages/publications/105017859546
U2 - 10.1002/adhm.202502710
DO - 10.1002/adhm.202502710
M3 - 文章
C2 - 40996238
AN - SCOPUS:105017859546
SN - 2192-2640
JO - Advanced Healthcare Materials
JF - Advanced Healthcare Materials
ER -