Peptide-Mediated Anticancer Drug Delivery

An ideal drug delivery system should contain an appropriate therapeutic agent and biocompatible carrier. In this study, we investigated the ability of the all-complementary self-assembling peptide AC8 in stabilizing the anticancer compound and determined the in-vitro therapeutic efficacy of the pept...

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Main Author: Sadatmousavi, Parisa
Language:en
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10012/4577
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-45772013-10-04T04:09:08ZSadatmousavi, Parisa2009-08-21T20:02:12Z2009-08-21T20:02:12Z2009-08-21T20:02:12Z2009-08-13http://hdl.handle.net/10012/4577An ideal drug delivery system should contain an appropriate therapeutic agent and biocompatible carrier. In this study, we investigated the ability of the all-complementary self-assembling peptide AC8 in stabilizing the anticancer compound and determined the in-vitro therapeutic efficacy of the peptide-mediated anticancer drug delivery. The all-complementary peptide AC8 was designed based on the amino acid pairing principle (AAP), which contains hydrogen bonding, electrostatic, and hydrophobic interaction amino acid pairs. AAP interactions make the peptide capable of self-assembling into β-sheet structure in solution in a concentration dependent manner. Peptide solution concentration is a key parameter in controlling the nanoscale assembling of the peptide. The critical assembly concentration (CAC) of the peptide was found ~ 0.01 mg/ml by several techniques. The all-complementary peptide AC8 was found to be able to stabilize neutral state of hydrophobic anticancer compound ellipticine in aqueous solution. The formation of peptide-ellipticine complex was monitored by fluorescence spectroscopy at different mass ratios of peptide-to-ellipticine. The anticancer activity of the complexes with neutral state of ellipticine was found to show great anticancer activity against two cancer cells lines, A-549 and MCF-7. This peptide-mediated anticancer delivery system showed the induction of apoptosis on cancer cells in vitro by flow Cytometry.enAll-complimentary self-assembling peptidehydrophobic anticancer drugdrug encapsulationcritical assembly concentrationCytotoxicityApoptosis inductionPeptide-Mediated Anticancer Drug DeliveryThesis or DissertationChemical EngineeringMaster of Applied ScienceChemical Engineering
collection NDLTD
language en
sources NDLTD
topic All-complimentary self-assembling peptide
hydrophobic anticancer drug
drug encapsulation
critical assembly concentration
Cytotoxicity
Apoptosis induction
Chemical Engineering
spellingShingle All-complimentary self-assembling peptide
hydrophobic anticancer drug
drug encapsulation
critical assembly concentration
Cytotoxicity
Apoptosis induction
Chemical Engineering
Sadatmousavi, Parisa
Peptide-Mediated Anticancer Drug Delivery
description An ideal drug delivery system should contain an appropriate therapeutic agent and biocompatible carrier. In this study, we investigated the ability of the all-complementary self-assembling peptide AC8 in stabilizing the anticancer compound and determined the in-vitro therapeutic efficacy of the peptide-mediated anticancer drug delivery. The all-complementary peptide AC8 was designed based on the amino acid pairing principle (AAP), which contains hydrogen bonding, electrostatic, and hydrophobic interaction amino acid pairs. AAP interactions make the peptide capable of self-assembling into β-sheet structure in solution in a concentration dependent manner. Peptide solution concentration is a key parameter in controlling the nanoscale assembling of the peptide. The critical assembly concentration (CAC) of the peptide was found ~ 0.01 mg/ml by several techniques. The all-complementary peptide AC8 was found to be able to stabilize neutral state of hydrophobic anticancer compound ellipticine in aqueous solution. The formation of peptide-ellipticine complex was monitored by fluorescence spectroscopy at different mass ratios of peptide-to-ellipticine. The anticancer activity of the complexes with neutral state of ellipticine was found to show great anticancer activity against two cancer cells lines, A-549 and MCF-7. This peptide-mediated anticancer delivery system showed the induction of apoptosis on cancer cells in vitro by flow Cytometry.
author Sadatmousavi, Parisa
author_facet Sadatmousavi, Parisa
author_sort Sadatmousavi, Parisa
title Peptide-Mediated Anticancer Drug Delivery
title_short Peptide-Mediated Anticancer Drug Delivery
title_full Peptide-Mediated Anticancer Drug Delivery
title_fullStr Peptide-Mediated Anticancer Drug Delivery
title_full_unstemmed Peptide-Mediated Anticancer Drug Delivery
title_sort peptide-mediated anticancer drug delivery
publishDate 2009
url http://hdl.handle.net/10012/4577
work_keys_str_mv AT sadatmousaviparisa peptidemediatedanticancerdrugdelivery
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