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Updated: May 12, 2026

Multi-timescale Microscopy Methods for the Characterization of Fluorescently-labeled Microbubbles for Ultrasound-Triggered Drug Release
Published on: June 12, 2021
Sequential drug release from dual-responsive scaffold with ultrasound-enhanced efficacy for infectious oral ulcer
Siyi Li1,2,3, Xiang Zhang1,2,3, Shunan Wang1,2,3
1Stomatological Hospital of Chongqing Medical University, Chongqing 401147, China.
Abstract:
Oral aphthous ulcers are among the most prevalent mucosal disorders, with infectious oral ulcers severely compromising patients' quality of life. This study introduces a dual-responsive (ultrasound- and pH-sensitive) hydrogel-microsphere scaffold for their precise, staged management. The scaffold, composed of a pH-sensitive chitosan hydrogel and ultrasound-responsive sodium alginate microspheres, demonstrated injectability, biocompatibility and sequential drug release. Specifically, ultrasound enhanced drug release and tissue penetration, improving therapeutic efficacy. The pH-responsive mechanism enabled targeted release of lidocaine (LID) and curcumin (CUR) at inflamed sites, which is expected to provide local anesthesia while promoting epithelial regeneration. Mechanistically, ultrasound stimulation activated PI3K-Akt and ECM-receptor interaction pathways, which were associated with enhanced cell migration, proliferation and drug responsiveness. These effects not only enhanced the therapeutic efficacy but also established a microenvironment favorable for tissue repair. Our platform integrates multimodal functionalities, including rapid release of the analgesic drug LID, followed by the sustained effects of CUR. Crucially, ultrasound facilitates this release process and enhances the therapeutic efficacy. This comprehensive approach modulates the local wound microenvironment, thereby creating favorable conditions for accelerating tissue repair. This work expands new avenues for stimulus-responsive drug delivery systems in the treatment of oral diseases and holds potential for clinical translation.
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