Immunotherapeutic Vitamin E Nanoemulsion Synergies the Antiproliferative Activity of Paclitaxel in Breast Cancer Cells via Modulating Th1 and Th2 Immune Response

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dc.contributor.author Pawar, V K
dc.contributor.author Panchal, S B
dc.contributor.author Singh, Yuvraj
dc.contributor.author Meher, J G
dc.contributor.author Sharma, Komal
dc.contributor.author Singh, Pankaj
dc.contributor.author Bora, H K
dc.contributor.author Singh, Akhilesh
dc.contributor.author Datta, Dipak
dc.contributor.author Chourasia, M K
dc.date.accessioned 2015-05-27T04:45:27Z
dc.date.available 2015-05-27T04:45:27Z
dc.date.issued 2014
dc.identifier.citation Journal of Controlled Release, 2014,196, 295-306. en
dc.identifier.uri http://hdl.handle.net/123456789/1526
dc.description.abstract Paclitaxel (PTX) is used as first line treatment for metastatic breast cancer but the relief comes at a heavy cost in terms of accompanying adverse effects. The pharmaceutical credentials of PTX are further dampened by the intrinsically low aqueous solubility. In order to sideline such insidious tendencies, PTX was incorporated in a vitamin E nanoemulsion using high pressure homogenization. The encapsulation efficiency of PTX in nanoemulsion was 97.81±2.7 % and a sustained drug release profile was obtained. PTX loaded nanoemulsion exhibited higher cytotoxicity in breast cancer cell line (MCF-7) when compared to free PTX and marketed formulation (Taxol). Cell cycle arrest study depicted that MCF-7 cells treated with PTX loaded nanoemulsion showed high arrest in G2-M phase. Moreover blank nanoemulsion induced additional apoptosis in breast cancer cells through G1-S arrest by disrupting mitochondrial membrane potential. Cytokine estimation study in macrophages showed that both PTX loaded nanoemulsion and blank nanoemulsion enhanced secretion of IL-12 and downregulated secretion of IL-4 and IL-10. Results suggest that inclusion of vitamin E in nanoemulsion opened myriad of complementary molecular effects which not only magnified the principle antiproliferative activity of PTX but also independently showcased potential in restoring the proactive nature of the breast cancer slackened chronic immune response. The list of plausible advantages of PTX nanoemulsification was further substantiated by acceptable haemolytic potential, reduced in-vivo toxicity and conveniently modified pharmacokinetic profile in which the AUC and MRT were extended considerably. Overall, there were strong evidences that developed formulation can serve as a viable alternative to currently available PTX options. en
dc.format.extent 1253505 bytes
dc.format.mimetype application/pdf
dc.language.iso en en
dc.relation.ispartofseries CSIR-CDRI Communication No. 8824 en
dc.subject Apoptosis en
dc.subject Cell cycle arrest en
dc.subject Taxol en
dc.subject Cytotoxicity en
dc.subject Cytokine en
dc.title Immunotherapeutic Vitamin E Nanoemulsion Synergies the Antiproliferative Activity of Paclitaxel in Breast Cancer Cells via Modulating Th1 and Th2 Immune Response en
dc.type Article en


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