Hierarchical Cascade‐Activated Microneedle Patches for Photothermal and Chemotherapy

ABSTRACT Chemotherapy and photothermal therapy (PTT) are recognized as effective strategies in cancer treatment. However, the challenge remains in effectively targeting these therapeutic modalities to the tumor site to improve therapeutic effects. Here, a novel hierarchical cascade‐activated microneedle (MN) patch (MN DOX @M ICG ) for photothermal and bioorthogonal chemotherapy was developed. The MN patch was fabricated by integrating hydrogel microspheres (M ICG ) containing tetrazine‐functionalized indocyanine green (Tz‐ICG) into the MN arrays. Upon irradiation with near‐infrared light, Tz‐ICG with high photothermal conversion efficiency can elevate the temperature of MN, facilitate PTT, and trigger the release of trans ‐cyclooctene‐conjugated doxorubicin (TCO‐DOX) encapsulated in MN. Then, the gradually released Tz‐ICG from M ICG can react with TCO‐DOX via a specific inverse electron‐demand Diels‐Alder bioorthogonal reaction, thereby restoring the anticancer activity of DOX. Consequently, MN DOX @M ICG can efficiently eradicate tumor cells in vitro and significantly inhibit the growth of postsurgical melanoma by combining PTT with bioorthogonal chemotherapy. These findings highlight the practical value of such a hierarchical cascade‐activated MN patch for versatile drug delivery and biomedical applications.

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Publication Details

Journal
Smart Medicine
Published
2026-09-30
DOI
https://doi.org/10.1002/smmd.70059
Primary Topic
Advancements in Transdermal Drug Delivery
Type
article
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article

Hierarchical Cascade‐Activated Microneedle Patches for Photothermal and Chemotherapy

Gaizhen Kuang, Qingfei Zhang, Hua Jiang, Wenzhao Li et al.
Smart Medicine
Advancements in Transdermal Drug Delivery
article

Hierarchical Cascade‐Activated Microneedle Patches for Photothermal and Chemotherapy

Gaizhen Kuang, Qingfei Zhang, Hua Jiang, Wenzhao Li, Yu Wang
article en

Abstract

ABSTRACT Chemotherapy and photothermal therapy (PTT) are recognized as effective strategies in cancer treatment. However, the challenge remains in effectively targeting these therapeutic modalities to the tumor site to improve therapeutic effects. Here, a novel hierarchical cascade‐activated microneedle (MN) patch (MN DOX @M ICG ) for photothermal and bioorthogonal chemotherapy was developed. The MN patch was fabricated by integrating hydrogel microspheres (M ICG ) containing tetrazine‐functionalized indocyanine green (Tz‐ICG) into the MN arrays. Upon irradiation with near‐infrared light, Tz‐ICG with high photothermal conversion efficiency can elevate the temperature of MN, facilitate PTT, and trigger the release of trans ‐cyclooctene‐conjugated doxorubicin (TCO‐DOX) encapsulated in MN. Then, the gradually released Tz‐ICG from M ICG can react with TCO‐DOX via a specific inverse electron‐demand Diels‐Alder bioorthogonal reaction, thereby restoring the anticancer activity of DOX. Consequently, MN DOX @M ICG can efficiently eradicate tumor cells in vitro and significantly inhibit the growth of postsurgical melanoma by combining PTT with bioorthogonal chemotherapy. These findings highlight the practical value of such a hierarchical cascade‐activated MN patch for versatile drug delivery and biomedical applications.

Smart MedicineVol. 5(5)
Wenzhou Medical University (CN), First Affiliated Hospital of Wenzhou Medical University (CN), Second Affiliated Hospital of Zhejiang University (CN)
Good health and well-being
Openalex Percentile: Top 13%
Advancements in Transdermal Drug Delivery
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Hierarchical Cascade‐Activated Microneedle Patches for Photothermal and Chemotherapy — Gaizhen Kuang, Qingfei Zhang, et al. · Smart Medicine (2026) | TGRS Research Map | TGRS