Intratumor injected gold molecular clusters for NIR-II imaging and cancer therapy

Author:

Baghdasaryan Ani1ORCID,Liu Haoran1,Ren Fuqiang1,Hsu RuSiou1,Jiang Yingying1,Wang Feifei1,Zhang Mengzhen1,Grigoryan Lilit2ORCID,Dai Hongjie1

Affiliation:

1. Department of Chemistry and Bio-X, Stanford University, Stanford, CA 94305

2. Institute for Immunity, Transplantation, and Infection, Stanford University School of Medicine, Stanford University, Stanford, CA 94305

Abstract

Surgical resections of solid tumors guided by visual inspection of tumor margins have been performed for over a century to treat cancer. Near-infrared (NIR) fluorescence labeling/imaging of tumor in the NIR-I (800 to 900 nm) range with systemically administrated fluorophore/tumor-targeting antibody conjugates have been introduced to improve tumor margin delineation, tumor removal accuracy, and patient survival. Here, we show Au 25 molecular clusters functionalized with phosphorylcholine ligands (AuPC, ~2 nm in size) as a preclinical intratumorally injectable agent for NIR-II/SWIR (1,000 to 3,000 nm) fluorescence imaging-guided tumor resection. The AuPC clusters were found to be uniformly distributed in the 4T1 murine breast cancer tumor upon intratumor (i.t.) injection. The phosphocholine coating afforded highly stealth clusters, allowing a high percentage of AuPC to fill the tumor interstitial fluid space homogeneously. Intra-operative surgical navigation guided by imaging of the NIR-II fluorescence of AuPC allowed for complete and non-excessive tumor resection. The AuPC in tumors were also employed as a photothermal therapy (PTT) agent to uniformly heat up and eradicate tumors. Further, we performed in vivo NIR-IIb (1,500 to 1,700 nm) molecular imaging of the treated tumor using a quantum dot-Annexin V (QD-P 3 -Anx V) conjugate, revealing cancer cell apoptosis following PTT. The therapeutic functionalities of AuPC clusters combined with rapid renal excretion, high biocompatibility, and safety make them promising for clinical translation.

Funder

HHS | National Institutes of Health

Publisher

Proceedings of the National Academy of Sciences

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1. Gold Nanoclusters as High Resolution NIR-II Theranostic Agents;Chemical & Biomedical Imaging;2024-06-18

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