Polycarbonate-Based Copolymer Micelles as Biodegradable Carriers of Anticancer Podophyllotoxin or Juniper Extracts

Author:

Kalinova Radostina G.1ORCID,Dimitrov Ivaylo V.1ORCID,Ivanova Diana I.2ORCID,Ilieva Yana E.3ORCID,Tashev Alexander N.4ORCID,Zaharieva Maya M.3ORCID,Angelov George2,Najdenski Hristo M.3ORCID

Affiliation:

1. Institute of Polymers, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria

2. Institute of Chemical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria

3. The Stephan Angeloff Institute of Microbiology, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria

4. Department of Dendrology, University of Forestry, 1797 Sofia, Bulgaria

Abstract

Podophyllotoxin (PPT) is used in the industrial production of efficient anticancer, antiviral and other drugs. Sinopodophyllum hexandrum or Podophyllum peltatum are natural sources of PPT, but at present they are considered as endangered species. Their PPT content is variable, depending on the growing conditions. Searching for new sources of PPT, some representatives of the genus Juniperus were found to exhibit efficient PPT biosynthesis. However, PPT is highly toxic and poorly soluble in water compound, which limits its clinical applications. In this connection, amphiphilic polymer micelles are considered to be suitable PPT carriers, aimed at increase in water solubility and decrease in toxicity. The present research deals with the evaluation of MPEG–polycarbonate block copolymer micelles loaded with PPT or juniper extracts. The active component-loaded polymer nanocarriers were characterized by dynamic and electrophoretic light scattering, as well as by transmission electron microscopy. The active component loading efficiency and loading capacity were also determined. Highly efficient antiproliferative activity of the loaded micelles was determined in a panel of cancer cell lines. The obtained amphiphilic nanocarriers, loaded with PPT-containing bioactive components, have application in future in vivo preclinical trials of their pharmacokinetics and pharmacodynamics as potential therapeutical agents in the prospective nanomedicine.

Publisher

MDPI AG

Reference33 articles.

1. Satyannarayana, B. (2022). Current Research of Nanotechnology in Science and Engineering, Bhumi Publishing. [1st ed.]. Available online: https://www.bhumipublishing.com/books/.

2. The ‘right’ size in nanobiotechnology;Whitesides;Nat. Biotechnol.,2003

3. Garcia-Oliveira, P., Otero, P., Pereira, A.G., Chamorro, F., Carpena, M., Echave, J., Fraga-Corral, M., Simal-Gandara, J., and Prieto, M.A. (2021). Status and challenges of plant-anticancer compounds in cancer treatment. Pharmaceuticals, 14.

4. Effective Cancer Management: Inimitable Role of Phytochemical Based Nano-Formulations;Upaganlawar;Curr. Drug Metab.,2022

5. Nano-Phytoconstituents and its recent advancement in Anticancer efficacy;Harikrishnan;Res. J. Pharm. Technol.,2023

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