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MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer

[Image: see text] Significant differences in biochemical parameters between normal and tumor tissues offer an opportunity to chemically design drug carriers which respond to these changes and deliver the drugs at the desired site. For example, overexpression of the matrix metalloproteinase-9 (MMP-9)...

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Autores principales: Kulkarni, Prajakta S., Haldar, Manas K., Nahire, Rahul R., Katti, Preeya, Ambre, Avinash H., Muhonen, Wallace W., Shabb, John B., Padi, Sathish K. R., Singh, Raushan K., Borowicz, Pawel P., Shrivastava, D. K., Katti, Kalpana S., Reindl, Katie, Guo, Bin, Mallik, Sanku
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096225/
https://www.ncbi.nlm.nih.gov/pubmed/24827725
http://dx.doi.org/10.1021/mp500108p
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author Kulkarni, Prajakta S.
Haldar, Manas K.
Nahire, Rahul R.
Katti, Preeya
Ambre, Avinash H.
Muhonen, Wallace W.
Shabb, John B.
Padi, Sathish K. R.
Singh, Raushan K.
Borowicz, Pawel P.
Shrivastava, D. K.
Katti, Kalpana S.
Reindl, Katie
Guo, Bin
Mallik, Sanku
author_facet Kulkarni, Prajakta S.
Haldar, Manas K.
Nahire, Rahul R.
Katti, Preeya
Ambre, Avinash H.
Muhonen, Wallace W.
Shabb, John B.
Padi, Sathish K. R.
Singh, Raushan K.
Borowicz, Pawel P.
Shrivastava, D. K.
Katti, Kalpana S.
Reindl, Katie
Guo, Bin
Mallik, Sanku
author_sort Kulkarni, Prajakta S.
collection PubMed
description [Image: see text] Significant differences in biochemical parameters between normal and tumor tissues offer an opportunity to chemically design drug carriers which respond to these changes and deliver the drugs at the desired site. For example, overexpression of the matrix metalloproteinase-9 (MMP-9) enzyme in the extracellular matrix of tumor tissues can act as a trigger to chemically modulate the drug delivery from the carriers. In this study, we have synthesized an MMP-9-cleavable, collagen mimetic lipopeptide which forms nanosized vesicles with the POPC, POPE-SS-PEG, and cholesteryl-hemisuccinate lipids. The lipopeptide retains the triple-helical conformation when incorporated into these nanovesicles. The PEG groups shield the substrate lipopeptides from hydrolysis by MMP-9. However, in the presence of elevated glutathione levels, the PEG groups are reductively removed, exposing the lipopeptides to MMP-9. The resultant peptide-bond cleavage disturbs the vesicles’ lipid bilayer, leading to the release of encapsulated contents. These PEGylated nanovesicles are capable of encapsulating the anticancer drug gemcitabine with 50% efficiency. They were stable in physiological conditions and in human serum. Effective drug release was demonstrated using the pancreatic ductal carcinoma cells (PANC-1 and MIAPaCa-2) in two-dimensional and three-dimensional “tumor-like” spheroid cultures. A reduction in tumor growth was observed after intravenous administration of the gemcitabine-encapsulated nanovesicles in the xenograft model of athymic, female nude mice.
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spelling pubmed-40962252015-05-14 MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer Kulkarni, Prajakta S. Haldar, Manas K. Nahire, Rahul R. Katti, Preeya Ambre, Avinash H. Muhonen, Wallace W. Shabb, John B. Padi, Sathish K. R. Singh, Raushan K. Borowicz, Pawel P. Shrivastava, D. K. Katti, Kalpana S. Reindl, Katie Guo, Bin Mallik, Sanku Mol Pharm [Image: see text] Significant differences in biochemical parameters between normal and tumor tissues offer an opportunity to chemically design drug carriers which respond to these changes and deliver the drugs at the desired site. For example, overexpression of the matrix metalloproteinase-9 (MMP-9) enzyme in the extracellular matrix of tumor tissues can act as a trigger to chemically modulate the drug delivery from the carriers. In this study, we have synthesized an MMP-9-cleavable, collagen mimetic lipopeptide which forms nanosized vesicles with the POPC, POPE-SS-PEG, and cholesteryl-hemisuccinate lipids. The lipopeptide retains the triple-helical conformation when incorporated into these nanovesicles. The PEG groups shield the substrate lipopeptides from hydrolysis by MMP-9. However, in the presence of elevated glutathione levels, the PEG groups are reductively removed, exposing the lipopeptides to MMP-9. The resultant peptide-bond cleavage disturbs the vesicles’ lipid bilayer, leading to the release of encapsulated contents. These PEGylated nanovesicles are capable of encapsulating the anticancer drug gemcitabine with 50% efficiency. They were stable in physiological conditions and in human serum. Effective drug release was demonstrated using the pancreatic ductal carcinoma cells (PANC-1 and MIAPaCa-2) in two-dimensional and three-dimensional “tumor-like” spheroid cultures. A reduction in tumor growth was observed after intravenous administration of the gemcitabine-encapsulated nanovesicles in the xenograft model of athymic, female nude mice. American Chemical Society 2014-05-14 2014-07-07 /pmc/articles/PMC4096225/ /pubmed/24827725 http://dx.doi.org/10.1021/mp500108p Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Kulkarni, Prajakta S.
Haldar, Manas K.
Nahire, Rahul R.
Katti, Preeya
Ambre, Avinash H.
Muhonen, Wallace W.
Shabb, John B.
Padi, Sathish K. R.
Singh, Raushan K.
Borowicz, Pawel P.
Shrivastava, D. K.
Katti, Kalpana S.
Reindl, Katie
Guo, Bin
Mallik, Sanku
MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title_full MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title_fullStr MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title_full_unstemmed MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title_short MMP-9 Responsive PEG Cleavable Nanovesicles for Efficient Delivery of Chemotherapeutics to Pancreatic Cancer
title_sort mmp-9 responsive peg cleavable nanovesicles for efficient delivery of chemotherapeutics to pancreatic cancer
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096225/
https://www.ncbi.nlm.nih.gov/pubmed/24827725
http://dx.doi.org/10.1021/mp500108p
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