Progress in cancer drug delivery based on AS1411 oriented nanomaterials

Author:

Tong Xin,Ga Lu,Ai JunORCID,Wang Yong

Abstract

AbstractTargeted cancer therapy has become one of the most important medical methods because of the spreading and metastatic nature of cancer. Based on the introduction of AS1411 and its four-chain structure, this paper reviews the research progress in cancer detection and drug delivery systems by modifying AS1411 aptamers based on graphene, mesoporous silica, silver and gold. The application of AS1411 in cancer treatment and drug delivery and the use of AS1411 as a targeting agent for the detection of cancer markers such as nucleoli were summarized from three aspects of active targeting, passive targeting and targeted nucleic acid apharmers. Although AS1411 has been withdrawn from clinical trials, the research surrounding its structural optimization is still very popular. Further progress has been made in the modification of nanoparticles loaded with TCM extracts by AS1411. Graphical Abstract

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering

Reference264 articles.

1. Kordasht HK, Hasanzadeh M. Aptamer based recognition of cancer cells: recent progress and challenges in bioanalysis. Talanta. 2020;220: 121436.

2. Tan YY, et al. Perspectives and advancements in the design of nanomaterials for targeted cancer theranostics. Chem Biol Interact. 2020;329: 109221.

3. Mittal S, et al. Biosensors for breast cancer diagnosis: a review of bioreceptors, biotransducers and signal amplification strategies. Biosens Bioelectron. 2017;88:217–31.

4. Mishra V, Kesharwani P. Dendrimer technologies for brain tumor. Drug Discov Today. 2016;21(5):766–78.

5. Rata DM, et al. Topical formulations containing aptamer-functionalized nanocapsules loaded with 5-fluorouracil—an innovative concept for the skin cancer therapy. Mater Sci Eng C Mater Biol Appl. 2021;119: 111591.

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