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Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization

We have previously reported cyclic cell-penetrating peptides [WR](5) and [WR](4) as molecular transporters. To optimize further the utility of our developed peptides for targeted therapy in cancer cells using the redox condition, we designed a new generation of peptides and evaluated their cytotoxic...

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Autores principales: Mohammed, Eman H. M., Mandal, Dindyal, Mozaffari, Saghar, Abdel-Hamied Zahran, Magdy, Mostafa Osman, Amany, Kumar Tiwari, Rakesh, Parang, Keykavous
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321319/
https://www.ncbi.nlm.nih.gov/pubmed/32498339
http://dx.doi.org/10.3390/molecules25112581
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author Mohammed, Eman H. M.
Mandal, Dindyal
Mozaffari, Saghar
Abdel-Hamied Zahran, Magdy
Mostafa Osman, Amany
Kumar Tiwari, Rakesh
Parang, Keykavous
author_facet Mohammed, Eman H. M.
Mandal, Dindyal
Mozaffari, Saghar
Abdel-Hamied Zahran, Magdy
Mostafa Osman, Amany
Kumar Tiwari, Rakesh
Parang, Keykavous
author_sort Mohammed, Eman H. M.
collection PubMed
description We have previously reported cyclic cell-penetrating peptides [WR](5) and [WR](4) as molecular transporters. To optimize further the utility of our developed peptides for targeted therapy in cancer cells using the redox condition, we designed a new generation of peptides and evaluated their cytotoxicity as well as uptake behavior against different cancer cell lines. Thus, cyclic [C(WR)(x)C] and linear counterparts (C(WR)(x)C), where x = 4–5, were synthesized using Fmoc/tBu solid-phase peptide synthesis, purified, and characterized. The compounds did not show any significant cytotoxicity (at 25 µM) against ovarian (SK-OV-3), leukemia (CCRF-CEM), gastric adenocarcinoma (CRL-1739), breast carcinoma (MDA-MB-231), and normal kidney (LLCPK) cells after 24 and 72 h incubation. Both cyclic [C(WR)(5)C] and linear (C(WR)(5)C) demonstrated comparable molecular transporter properties versus [WR](5) in the delivery of a phosphopeptide (F′-GpYEEI) in CCRF-CEM cells. The uptake of F′-GpYEEI in the presence of 1,4-dithiothreitol (DTT) as the reducing agent was significantly improved in case of l(C(WR)(5)C), while it was not changed by [C(WR)(5)C]. Fluorescence microscopy also demonstrated a significant uptake of F′-GpYEEI in the presence of l(C(WR)(5)C). Cyclic [C(WR)(5)C] improved the uptake of the fluorescent-labeled anti-HIV drugs F′-d4T, F′-3TC, and F′-FTC by 3.0–4.9-fold. These data indicate that both [C(WR)(5)C] and linear (C(WR)(5)C) peptides can act as molecular transporters.
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spelling pubmed-73213192020-06-29 Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization Mohammed, Eman H. M. Mandal, Dindyal Mozaffari, Saghar Abdel-Hamied Zahran, Magdy Mostafa Osman, Amany Kumar Tiwari, Rakesh Parang, Keykavous Molecules Article We have previously reported cyclic cell-penetrating peptides [WR](5) and [WR](4) as molecular transporters. To optimize further the utility of our developed peptides for targeted therapy in cancer cells using the redox condition, we designed a new generation of peptides and evaluated their cytotoxicity as well as uptake behavior against different cancer cell lines. Thus, cyclic [C(WR)(x)C] and linear counterparts (C(WR)(x)C), where x = 4–5, were synthesized using Fmoc/tBu solid-phase peptide synthesis, purified, and characterized. The compounds did not show any significant cytotoxicity (at 25 µM) against ovarian (SK-OV-3), leukemia (CCRF-CEM), gastric adenocarcinoma (CRL-1739), breast carcinoma (MDA-MB-231), and normal kidney (LLCPK) cells after 24 and 72 h incubation. Both cyclic [C(WR)(5)C] and linear (C(WR)(5)C) demonstrated comparable molecular transporter properties versus [WR](5) in the delivery of a phosphopeptide (F′-GpYEEI) in CCRF-CEM cells. The uptake of F′-GpYEEI in the presence of 1,4-dithiothreitol (DTT) as the reducing agent was significantly improved in case of l(C(WR)(5)C), while it was not changed by [C(WR)(5)C]. Fluorescence microscopy also demonstrated a significant uptake of F′-GpYEEI in the presence of l(C(WR)(5)C). Cyclic [C(WR)(5)C] improved the uptake of the fluorescent-labeled anti-HIV drugs F′-d4T, F′-3TC, and F′-FTC by 3.0–4.9-fold. These data indicate that both [C(WR)(5)C] and linear (C(WR)(5)C) peptides can act as molecular transporters. MDPI 2020-06-02 /pmc/articles/PMC7321319/ /pubmed/32498339 http://dx.doi.org/10.3390/molecules25112581 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mohammed, Eman H. M.
Mandal, Dindyal
Mozaffari, Saghar
Abdel-Hamied Zahran, Magdy
Mostafa Osman, Amany
Kumar Tiwari, Rakesh
Parang, Keykavous
Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title_full Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title_fullStr Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title_full_unstemmed Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title_short Comparative Molecular Transporter Properties of Cyclic Peptides Containing Tryptophan and Arginine Residues Formed through Disulfide Cyclization
title_sort comparative molecular transporter properties of cyclic peptides containing tryptophan and arginine residues formed through disulfide cyclization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321319/
https://www.ncbi.nlm.nih.gov/pubmed/32498339
http://dx.doi.org/10.3390/molecules25112581
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