Literature DB >> 30132129

Evaluation of Anti-Tumor Efficacy of Vorinostat Encapsulated Self-Assembled Polymeric Micelles in Solid Tumors.

Sri Vishnu Kiran Rompicharla1, Prakruti Trivedi1, Preeti Kumari1, Omkara Swami Muddineti1, Sowmya Theegalapalli1, Balaram Ghosh1, Swati Biswas2.   

Abstract

Vorinostat (VOR), a potent HDAC inhibitor, suffers from low solubility and poor absorption, which hinders its successful application in therapy, especially in the treatment of solid tumors. In this study, an effort to improve the physicochemical characteristics of VOR was made by encapsulating it in PEG-PLGA copolymeric micelles. VOR-loaded PEG-PLGA micelles (VOR-PEG-PLGA) were produced by thin-film hydration and physicochemically characterized. The PEG-PLGA micelles had an average size of 124.06 ± 2.6 nm, polydispersity index of 0.27 ± 0.1, and entrapment efficiency of 90 ± 2.1%. Micelles were characterized by TEM, DSC, and drug release studies. The drug release occurred in a sustained manner up to 72 h from PEG-PLGA micelles. In the in vitro cell-based studies using human breast cancer (MDA MB 231) and murine melanoma (B16F10) cell lines, VOR-PEG-PLGA micelles exhibited superior cellular internalization, enhanced cytotoxic activity, and greater apoptosis compared to free drug. Percent cell killing of 54.9% for VOR-PEG-PLGA-treated cells was observed after 24 h compared to 36% for free VOR in MDA MB 231 cell line. Further, significant tumor suppression was witnessed in B16F10 tumor-bearing mice treated with VOR-PEG-PLGA micelles with a 1.78-fold reduction in tumor volume compared to free VOR-treated animals. Overall, the VOR-PEG-PLGA micelles improved the biopharmaceutical properties of VOR, which resulted in enhanced anti-tumor efficacy. Therefore, the newly developed nano-formulation of VOR could be considered as an effective treatment option in solid tumors.

Entities:  

Keywords:  anticancer; drug delivery; in vivo efficacy; polymeric micelles; vorinostat

Mesh:

Substances:

Year:  2018        PMID: 30132129     DOI: 10.1208/s12249-018-1149-2

Source DB:  PubMed          Journal:  AAPS PharmSciTech        ISSN: 1530-9932            Impact factor:   3.246


  2 in total

Review 1.  Drug Delivery with Polymeric Nanocarriers-Cellular Uptake Mechanisms.

Authors:  Levi Collin Nelemans; Leonid Gurevich
Journal:  Materials (Basel)       Date:  2020-01-13       Impact factor: 3.623

2.  Antitumor and antiangiogenic activity of the novel chimeric inhibitor animacroxam in testicular germ cell cancer.

Authors:  Gustav Steinemann; Alexandra Dittmer; Jacob Schmidt; David Josuttis; Michael Fähling; Bernhard Biersack; Nicola Beindorff; Eva Jolante Koziolek; Rainer Schobert; Winfried Brenner; Thomas Müller; Bianca Nitzsche; Michael Höpfner
Journal:  Mol Oncol       Date:  2019-10-22       Impact factor: 6.603

  2 in total

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