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Updated: Aug 24, 2026

Electric Cell-Substrate Sensing for Real-Time Evaluation of Metal-Organic Framework Toxicological Profiles
Published on: May 26, 2023
Facile synthesis of amorphous coordinated metal-drug frameworks for cancer immunotherapy
Ruoyu Cheng1,2,3, Zehua Liu3, Gang Zhao1
1Department of Orthopaedics, Shanghai Key Laboratory for Prevention and Treatment of Bone and Joint Diseases, Shanghai Institute of Traumatology and Orthopaedics, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, 197 Ruijin 2nd Road, Shanghai, 200025, China.
Abstract:
Phosphoinositide kinase containing FYVE-type zinc finger (PIKfyve) inhibitors show potential immunomodulatory activity but suffer from poor tumor targeting and formulation challenges. Herein, we screened a series of PIKfyve inhibitors and engineered selected PIKfyve inhibitor into amorphous metal-drug frameworks (aMDFs) through coordination chemistry between pyridine/imidazole moieties and tailored metal nodes verified by theoretical simulations and nuclear magnetic resonance spectroscopy. The resulting aMDFs showed enhanced stability and processability, enabling efficient encapsulation into solid lipid NPs (HF@SLN). In both orthotopic and subcutaneous murine pancreatic cancer models, HF@SLN demonstrated superior tumor growth inhibition over free PIKfyve inhibitors. HF@SLN treatment was associated with increased transcription factor EB (TFEB) expression, accompanied by enhanced cytotoxic T cell infiltration and improved antitumor immune responses in both murine and human pancreatic tumor samples. This study demonstrates the feasibility of employing carrier-free aMDFs for the formulation and delivery of pyridine- and imidazole-containing therapeutics.

