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May 8, 2026Small0 citations

Hierarchically Multifunctional Fiber‐optic Theranostic Probe for Cancer Photothermal‐photodynamic Synergism

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LZLi ZNLNi LanYZYongkang Zhang

Key Points

  • This research aims to develop a fiber-optic theranostic probe that integrates photothermal and photodynamic therapy for effective cancer treatment.
  • In vitro experiments tested dissolved oxygen sensing capabilities with high resolution and rapid response time.
  • In vivo studies were conducted using a murine model to assess the probe's ability to detect hypoxic conditions and inhibit tumor growth.
  • The probe effectively sensed dissolved oxygen at 0.12 mg/L resolution in vitro.
  • In vivo, the probe achieved complete inhibition of tumor growth and identified intratumoral hypoxia.

Abstract

@LA mitigates the hypoxia-induced restriction on PDT, while the PTT-PDT synergy achieves potent antitumor efficacy under mild hyperthermia, enhancing treatment safety. In vitro experiments demonstrated the probe's excellent dissolved oxygen (DO) sensing performance, featuring a high resolution of 0.12 mg/L, a rapid response time of 1 s, and efficient ROS generation. Subsequently, the probe demonstrated dual functionality in vivo within a murine model, allowing pointwise identification of intratumoral hypoxic heterogeneity through DO sensing, while achieving complete inhibition of tumor growth. This study provides a new paradigm for the functional integration and efficacy enhancement of fiber-optic theranostics for in situ oncology, holding significant potential to advance the clinical translation of fiber-mediated phototherapies.

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Cite This Study

Z et al. (2026) studied this question.

synapsesocial.com/papers/69fd7eb0bfa21ec5bbf06f4chttps://doi.org/10.1002/smll.73678
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