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Updated: Jan 21, 2026

Cerenkov Luminescence Imaging CLI for Cancer Therapy Monitoring
Published on: November 13, 2012
The pharmaceutical multi-activity of metallofullerenol invigorates cancer therapy
Jinxia Li1, Linlin Chen, Haoran Su
1CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, Institute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, China. zhaof@ihep.ac.cn.
Abstract:
Currently, cancer continues to afflict humanity. The direct destruction and killing of tumor cells by surgery, radiation and chemotherapy gives rise to many side effects and compromised efficacy. Encouragingly, the rapid development of nanotechnology offers attractive opportunities to revolutionize the current situation of cancer therapy. Metallofullerenol Gd@C82(OH)22, in contrast to chemotherapeutics that directly kill tumor cells, demonstrates anti-tumor behavior with high efficiency and low toxicity by modulating the tumor microenvironment. Furthermore, Gd@C82(OH)22 has been recently reported to specifically target cancer stem cells. In this review, we give a concise introduction to the development of the fullerene family and then report the anti-tumor activity of Gd@C82(OH)22 based on its unique physicochemical characteristics, followed by a comprehensive summary of the anti-tumor biological mechanisms which target different components of the tumor microenvironment as well as the biodistribution and toxicity of Gd@C82(OH)22. Finally, we describe Gd@C82(OH)22 as a "particulate medicine" to highlight its distinctions from conventional "molecular medicine", with considerable emphasis on the advantages of nanomedicine. The in-depth investigation of Gd@C82(OH)22 undoubtedly provides a constructive reference for the development of other nanomedicines, especially in the fullerene family. The application of nanotechnology in the medical field definitely provides a promising and favorable future for improving the current status of cancer therapy.
Insights
Metallofullerenol Gd@C82(OH)22 shows high efficiency and low toxicity against cancer by modulating the tumor microenvironment. This particulate medicine offers a promising nanomedicine approach for improved cancer therapy.
Area of Science:
- Nanomedicine
- Materials Science
- Oncology
Background:
- Conventional cancer therapies like chemotherapy and radiation have significant side effects and limited efficacy.
- Nanotechnology presents novel opportunities for advanced cancer treatment strategies.
- Metallofullerenols are emerging as a promising class of therapeutic agents.
Purpose of the Study:
- To review the anti-tumor activity of metallofullerenol Gd@C82(OH)22.
- To elucidate the biological mechanisms underlying its anti-tumor effects.
- To highlight its potential as a particulate medicine in cancer therapy.
Main Methods:
- Review of existing literature on Gd@C82(OH)22.
- Analysis of physicochemical properties influencing anti-tumor activity.
- Summary of studies on tumor microenvironment modulation and cancer stem cell targeting.
- Evaluation of biodistribution and toxicity data.
Main Results:
- Gd@C82(OH)22 exhibits potent anti-tumor activity with low toxicity.
- It effectively targets cancer stem cells and modulates the tumor microenvironment.
- Its unique physicochemical properties contribute to its therapeutic efficacy.
- Gd@C82(OH)22 functions as a particulate medicine, distinct from molecular therapies.
Conclusions:
- Gd@C82(OH)22 represents a significant advancement in nanomedicine for cancer treatment.
- Its mechanism of action, targeting the tumor microenvironment, offers a novel therapeutic strategy.
- Further investigation into Gd@C82(OH)22 and related fullerene nanomedicines holds promise for future cancer therapies.
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