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Nanoparticles in Combating Cancer: Opportunities and Limitations: A Brief Review

期刊

CURRENT MEDICINAL CHEMISTRY
卷 28, 期 2, 页码 346-359

出版社

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/0929867327666200130101605

关键词

Nanoparticles; dendrimers; liposomes; micelles; carbon nanotubes; quantum dots; cancer; nanomedicine

资金

  1. Belarusian Republican Foundation for Fundamental Research and State Committee of Science and Technology of Belarus [B18TYUB-001, B18PLShG-004, B19ARMG-002]
  2. Polish National Agency for Academic Exchange [PPI/APM/2018/1/00007/U/001]
  3. COST Action [CA17140]

向作者/读者索取更多资源

Nanomedicine is a promising alternative to traditional cancer treatment methods, but it does not completely overcome the limitations of oncology. Nanoparticles used in cancer therapy can serve as drug carriers and offer some advantages, but they do not significantly enhance the effectiveness of chemotherapeutic agents.
Nanomedicine is a good alternative to traditional methods of cancer treatment but does not solve all the limitations of oncology. Nanoparticles used in anticancer therapy can work as carriers of drugs, nucleic acids, imaging agents or they can sensitize cells to radiation. The present review focuses on the application of nanoparticles to treating cancer, as well as on its problems and limitations. Using nanoparticles as drug carriers, significant improvement in the efficiency of transport of com- pounds and their targeting directly to the tumour has been achieved; it also reduces the side effects of chemotherapeutic drugs on the body. However, nanoparticles do not significantly improve the effectiveness of the chemotherapeutic agent itself. Most nanodrugs can reduce the toxicity of chemotherapy, but do not significantly affect the effectiveness of treatment. Nanodrugs should be developed that can be effective as an anti-metastatic treatment, e.g. by enhancing the ability of nanoparticles to transport chemotherapeutic loads to sentinel lymph nodes using the immune system and developing chemotherapy in specific metastatic areas. Gene therapy, however, is the most modern method of treating cancer, the cause of cancer being tackled by altering genetic material. Other applications of nanoparticles for radiotherapy and diagnostics are discussed.

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