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October 12, 2025Advanced Functional Materials3 citationsOpen Access

Fluorescent Nanodiamonds Based Theranostic Platform for pH‐Sensitive Drug Delivery and Quantum Sensing

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KWKaiqi WuSFSiyu FanYZYue Zhang

Key Points

  • The multifunctional nanodiamond platform allows precise drug delivery to triple negative breast cancer cells, enhancing therapeutic impact.
  • At a concentration of 10 µg mL −1, the diamond-DZX complex significantly altered mitochondrial reactive oxygen species, indicating drug efficacy.
  • Synthesis of nanodiamond particles equips them with pH-sensitive properties, allowing controlled release of the cancer drug Diazoxide (DZX).
  • Combining drug delivery with quantum sensing methods opens new avenues for research in targeted therapies and redox biology.

Abstract

Abstract Breast cancer is the most common cancer in women worldwide. Triple negative breast cancer (TNBC) is particularly problematic due to the poor prognosis and limited treatment options. Here, nanodiamond particles are synthesized for delivering the cancer drug Diazoxide (DZX) to TNBC cells. The multifunctional nanodiamond (ND) platform integrates pH‐sensitive drug release and advanced quantum sensing capabilities, enabling precise drug delivery and monitoring of intracellular redox dynamics. Due to the nitrogen‐vacancy (NV) centers in the diamond particles, they can be imaged. Further, quantum sensing is demonstrated specifically at the location where the drug is released. After 24 h of treatment at 10 µg mL −1 diamond‐DZX complex (equivalent to 2.75 µM DZX), diamond relaxometry reveals a decreased radical load in the endo/lysosomal regions, while MitoSOX fluorescence indicates elevated mitochondrial ROS (O 2 − ) levels, suggesting the activation of intracellular redox homeostasis. By combining controlled drug delivery with advanced quantum sensing, this work provides novel insights into DZX's mechanism of action, particularly its role in modulating mitochondrial ROS and cellular redox balance. This multifunctional nanoplatform demonstrates significant potential for advancing targeted cancer therapy and redox biology research.

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/68ebabe3155248a327effc8dhttps://doi.org/10.1002/adfm.202514294
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Diazoxide affects mitochondrial bioenergetics by the opening of mKATP channel on submicromolar scale2020 · 15 citations
  2. 2“Two in one”: Simultaneous functionalization and DOX loading for fabrication of nanodiamond-based pH responsive drug delivery system2019 · 34 citations
  3. 3Multimodal Nanodiamond Drug Delivery Carriers for Selective Targeting, Imaging, and Enhanced Chemotherapeutic Efficacy2011 · 249 citations
  4. 4Nanometre-scale thermometry in a living cell2013 · 1,989 citations
  5. 5ANTENNA, a Multi-Rank, Multi-Layered Recommender System for Inferring Reliable Drug-Gene-Disease Associations: Repurposing Diazoxide as a Targeted Anti-Cancer Therapy2018 · 31 citations