Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery

Keon-Hyoung Song,1 Sang-Bum Kim,2 Chang-Koo Shim,2 Suk-Jae Chung,2 Dae-Duk Kim,2 Sang-Ki Rhee,1 Guang J Choi,1 Chul-Hyun Kim,3 Kiyoung Kim4 1Department of Pharmaceutical Engineering, Soonchunhyang University, Asan, Republic of Korea; 2College of Pharmacy and Research Institute of Pharmaceutical Sc...

Full description

Bibliographic Details
Main Authors: Song KH, Kim SB, Shim CK, Chung SJ, Kim DD, Rhee SK, Choi GJ, Kim CH, Kim K
Format: Article
Language:English
Published: Dove Medical Press 2015-03-01
Series:Drug Design, Development and Therapy
Online Access:http://www.dovepress.com/paracellular-permeation-enhancing-effect-of-at1002-c-terminal-amidatio-peer-reviewed-article-DDDT
id doaj-2d0a716111a843208673e34ffd451458
record_format Article
spelling doaj-2d0a716111a843208673e34ffd4514582020-11-24T22:23:52ZengDove Medical PressDrug Design, Development and Therapy1177-88812015-03-012015default1815182321058Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal deliverySong KHKim SBShim CKChung SJKim DDRhee SKChoi GJKim CHKim K Keon-Hyoung Song,1 Sang-Bum Kim,2 Chang-Koo Shim,2 Suk-Jae Chung,2 Dae-Duk Kim,2 Sang-Ki Rhee,1 Guang J Choi,1 Chul-Hyun Kim,3 Kiyoung Kim4 1Department of Pharmaceutical Engineering, Soonchunhyang University, Asan, Republic of Korea; 2College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul, Republic of Korea; 3Department of Sports Medicine, 4Department of Medical Biotechnology, Soonchunhyang University, Asan, Republic of Korea Background: The identification of permeation enhancers has gained interest in the development of drug delivery systems. A six-mer peptide, H-FCIGRL-OH (AT1002), is a tight junction modulator with promising permeation-enhancing activity. AT1002 enhances the transport of molecular weight markers or agents with low bioavailability with no cytotoxicity. However, AT1002 is not stable in neutral pH or after incubation under physiological conditions, which is necessary to fully uncover its permeation-enhancing effect. Thus, we increased the stability or mitigated the instability of AT1002 by modifying its terminal amino acids and evaluated its subsequent biological activity.Methods: C-terminal-amidated (FCIGRL-NH2, Pep1) and N-terminal-acetylated (Ac-FCIGRL, Pep2) peptides were analyzed by liquid chromatography–mass spectrometry. We further assessed cytotoxicity on cell monolayers, as well as the permeation-enhancing activity following nasal administration of the paracellular marker mannitol.Results: Pep1 was nontoxic to cell monolayers and showed a relatively low decrease in peak area compared to AT1002. In addition, administration of mannitol with Pep1 resulted in significant increases in the area under the plasma concentration–time curve and peak plasma concentration at 3.63-fold and 2.68-fold, respectively, compared to mannitol alone. In contrast, no increase in mannitol concentration was shown with mannitol/AT1002 or mannitol/Pep2 compared to the control. Thus, Pep1 increased the stability or possibly reduced the instability of AT1002, which resulted in an increased permeation-enhancing effect of AT1002.Conclusion: These results suggest the potential usefulness of C-terminal-amidated AT1002 in enhancing nasal drug delivery, which may lead to the development of a practical drug delivery technology for drugs with low bioavailability. Keywords: N-terminal acetylation, stability, permeation enhancerhttp://www.dovepress.com/paracellular-permeation-enhancing-effect-of-at1002-c-terminal-amidatio-peer-reviewed-article-DDDT
collection DOAJ
language English
format Article
sources DOAJ
author Song KH
Kim SB
Shim CK
Chung SJ
Kim DD
Rhee SK
Choi GJ
Kim CH
Kim K
spellingShingle Song KH
Kim SB
Shim CK
Chung SJ
Kim DD
Rhee SK
Choi GJ
Kim CH
Kim K
Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
Drug Design, Development and Therapy
author_facet Song KH
Kim SB
Shim CK
Chung SJ
Kim DD
Rhee SK
Choi GJ
Kim CH
Kim K
author_sort Song KH
title Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
title_short Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
title_full Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
title_fullStr Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
title_full_unstemmed Paracellular permeation-enhancing effect of AT1002 C-terminal amidation in nasal delivery
title_sort paracellular permeation-enhancing effect of at1002 c-terminal amidation in nasal delivery
publisher Dove Medical Press
series Drug Design, Development and Therapy
issn 1177-8881
publishDate 2015-03-01
description Keon-Hyoung Song,1 Sang-Bum Kim,2 Chang-Koo Shim,2 Suk-Jae Chung,2 Dae-Duk Kim,2 Sang-Ki Rhee,1 Guang J Choi,1 Chul-Hyun Kim,3 Kiyoung Kim4 1Department of Pharmaceutical Engineering, Soonchunhyang University, Asan, Republic of Korea; 2College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul, Republic of Korea; 3Department of Sports Medicine, 4Department of Medical Biotechnology, Soonchunhyang University, Asan, Republic of Korea Background: The identification of permeation enhancers has gained interest in the development of drug delivery systems. A six-mer peptide, H-FCIGRL-OH (AT1002), is a tight junction modulator with promising permeation-enhancing activity. AT1002 enhances the transport of molecular weight markers or agents with low bioavailability with no cytotoxicity. However, AT1002 is not stable in neutral pH or after incubation under physiological conditions, which is necessary to fully uncover its permeation-enhancing effect. Thus, we increased the stability or mitigated the instability of AT1002 by modifying its terminal amino acids and evaluated its subsequent biological activity.Methods: C-terminal-amidated (FCIGRL-NH2, Pep1) and N-terminal-acetylated (Ac-FCIGRL, Pep2) peptides were analyzed by liquid chromatography–mass spectrometry. We further assessed cytotoxicity on cell monolayers, as well as the permeation-enhancing activity following nasal administration of the paracellular marker mannitol.Results: Pep1 was nontoxic to cell monolayers and showed a relatively low decrease in peak area compared to AT1002. In addition, administration of mannitol with Pep1 resulted in significant increases in the area under the plasma concentration–time curve and peak plasma concentration at 3.63-fold and 2.68-fold, respectively, compared to mannitol alone. In contrast, no increase in mannitol concentration was shown with mannitol/AT1002 or mannitol/Pep2 compared to the control. Thus, Pep1 increased the stability or possibly reduced the instability of AT1002, which resulted in an increased permeation-enhancing effect of AT1002.Conclusion: These results suggest the potential usefulness of C-terminal-amidated AT1002 in enhancing nasal drug delivery, which may lead to the development of a practical drug delivery technology for drugs with low bioavailability. Keywords: N-terminal acetylation, stability, permeation enhancer
url http://www.dovepress.com/paracellular-permeation-enhancing-effect-of-at1002-c-terminal-amidatio-peer-reviewed-article-DDDT
work_keys_str_mv AT songkh paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT kimsb paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT shimck paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT chungsj paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT kimdd paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT rheesk paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT choigj paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT kimch paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
AT kimk paracellularpermeationenhancingeffectofat1002cterminalamidationinnasaldelivery
_version_ 1725763478881304576