Mesenchymal Stromal Cells Uptake and Release Paclitaxel without Reducing its Anticancer Activity
- 作者: Parati E.1, Alessandri G.1, Bagnati R.1, Pessina A.1, Mariotti M.1, Colognato R.1, Rimoldi M.1, Rizzetto M.1, Sisto F.1, Cocce V.1, Bonomi A.1
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- 期: 卷 15, 编号 3 (2015)
- 页面: 400-405
- 栏目: Oncology
- URL: https://kld-journal.fedlab.ru/1871-5206/article/view/695217
- DOI: https://doi.org/10.2174/1871520614666140618113441
- ID: 695217
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To improve the drug delivery efficiency on target cells, many strategies have been developed including Mesenchymal Stromal Cells (MSCs) approaches. In a previous study, we found that bone-marrow-derived MSCs (BM-MSCs) were able to incorporate and release the anti-tumor and anti-angiogenic drug, Paclitaxel (PTX). In this study, we evaluated the stability of PTX in standard cell culture conditions by analyzing the metabolites produced by MSCs after their incorporation of the drug. We are able to show that MSCs do not release either 3-OH-PTX or 6-OH-PTX metabolites (having a lower anticancer activity) but release an active PTX molecule together with the isomer 7-Epitaxol, is known to maintain the whole biological activity. This confirms that the simple procedure of MSCs priming with a drug (without any genetic cell manipulation), in our case PTX, does not modify the activity of the molecule and provides a new biological-device to carry and deliver PTX in tumor sites, by contributing to improve drug efficacy and target selectivity in cancer therapy.
作者简介
Eugenio Parati
,
Email: info@benthamscience.net
Giulio Alessandri
,
Email: info@benthamscience.net
Renzo Bagnati
,
Email: info@benthamscience.net
Augusto Pessina
,
Email: info@benthamscience.net
Massimo Mariotti
,
Email: info@benthamscience.net
Renato Colognato
,
Email: info@benthamscience.net
Marco Rimoldi
,
Email: info@benthamscience.net
Manuela Rizzetto
,
Email: info@benthamscience.net
Francesca Sisto
,
Email: info@benthamscience.net
Valentina Cocce
,
Email: info@benthamscience.net
Arianna Bonomi
,
Email: info@benthamscience.net
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