Iodinated gadolinium-gold nanomaterial as a multimodal contrast agent for cartilage tissue imaging

Author:

Lu Cheng-Hsiu123ORCID,Lian Wei-Shiung1234ORCID,Wu Re-Wen35ORCID,Lin Yu-Han234ORCID,Su Chia-Hao6789ORCID,Chen Chuan-Lin9ORCID,Tai Ming-Hong10,Chen Yu-Shan1234,Wang Shao-Yu1234,Chen Chao-Cheng11ORCID,Wang Feng-Sheng1234ORCID

Affiliation:

1. Core Laboratory for Phenomics & Diagnostics, Kaohsiung Chang Gung Memorial Hospital 1 , Kaohsiung 833, Taiwan

2. Department of Medical Research, Kaohsiung Chang Gung Memorial Hospital 2 , Kaohsiung 833, Taiwan

3. Department of Medicine, Graduate Institute of Clinical Medical Sciences, Chang Gung University College of Medicine 3 , Kaohsiung 833, Taiwan

4. Center for Mitochondrial Research and Medicine, Kaohsiung Chang Gung Memorial Hospital 4 , Kaohsiung 833, Taiwan

5. Department of Orthopedic Surgery, Kaohsiung Chang Gung Memorial Hospital 5 , Kaohsiung 833, Taiwan

6. Department of Radiation Oncology, Kaohsiung Chang Gung Memorial Hospital 6 , Kaohsiung 833, Taiwan

7. Center for General Education, Chang Gung University 7 , Taoyuan 333, Taiwan

8. Institute for Radiological Research, Chang Gung University 8 , Taoyuan 333, Taiwan

9. Department of Biomedical Imaging and Radiological Sciences, National Yang Ming Chiao Tung University 9 , Taipei 112, Taiwan

10. Institute of Biomedical Sciences, National Sun Yat-sen University 10 , Kaohsiung 804, Taiwan

11. Department of Molecular Oncology, BC Cancer Research Institute 11 , Vancouver, British Columbia V5Z1L3, Canada

Abstract

Cartilage damage, a common cause of osteoarthritis, requires medical imaging for accurate diagnosis of pathological changes. However, current instruments can acquire limited imaging information due to sensitivity and resolution issues. Therefore, multimodal imaging is considered an alternative strategy to provide valuable images and analyzes from different perspectives. Among all biomaterials, gold nanomaterials not only exhibit outstanding benefits as drug carriers, in vitro diagnostics, and radiosensitizers, but are also widely used as contrast agents, particularly for tumors. However, their potential for imaging cartilage damage is rarely discussed. In this study, we developed a versatile iodinated gadolinium-gold nanomaterial, AuNC@BSA-Gd-I, and its radiolabeled derivative, AuNC@BSA-Gd-131I, for cartilage detection. With its small size, negative charge, and multimodal capacities, the probe can penetrate damaged cartilage and be detected or visualized by computed tomography, MRI, IVIS, and gamma counter. Additionally, the multimodal imaging potential of AuNC@BSA-Gd-I was compared to current multifunctional gold nanomaterials containing similar components, including anionic AuNC@BSA, AuNC@BSA-I, and AuNC@BSA-Gd as well as cationic AuNC@CBSA. Due to their high atomic numbers and fluorescent emission, AuNC@BSA nanomaterials could provide fundamental multifunctionality for imaging. By further modifying AuNC@BSA with additional imaging materials, their application could be extended to various types of medical imaging instruments. Nonetheless, our findings showed that each of the current nanomaterials exhibited excellent abilities for imaging cartilage with their predominant imaging modalities, but their versatility was not comparable to that of AuNC@BSA-Gd-I. Thus, AuNC@BSA-Gd-I could be served as a valuable tool in multimodal imaging strategies for cartilage assessment.

Funder

National Health Research Institutes

National Science and Technology Council

Chang Gung Memorial Hospital

Publisher

AIP Publishing

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