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Design of Montelukast Nanocrystalline Suspension for Parenteral Prolonged Delivery

Authors :
Park JS
Kim MS
Joung MY
Park HJ
Ho MJ
Choi JH
Seo JH
Song WH
Choi YW
Lee S
Choi YS
Kang MJ
Source :
International Journal of Nanomedicine, Vol Volume 17, Pp 3673-3690 (2022)
Publication Year :
2022
Publisher :
Dove Medical Press, 2022.

Abstract

Jun Soo Park,1 Min Seop Kim,1 Min Yeong Joung,1 Hyun Jin Park,1 Myoung-Jin Ho,1 Jun Hyuk Choi,1 Jae Hee Seo,1 Woo Heon Song,1 Young Wook Choi,2 Sangkil Lee,3 Yong Seok Choi,1 Myung Joo Kang1 1College of Pharmacy, Dankook University, Cheonan, Republic of Korea; 2College of Pharmacy, Chung-Ang University, Seoul, Republic of Korea; 3College of Pharmacy, Keimyung University, Daegu, Republic of KoreaCorrespondence: Myung Joo Kang, College of Pharmacy, Dankook University, Dongnam-gu, Cheonan, 31116, Republic of Korea, Tel +82 41 550 1446, Fax +82 41 550 7899, Email kangmj@dankook.ac.krBackground: Montelukast (MTK), a representative leukotriene receptor antagonist, is currently being investigated as a potential candidate for treating Alzheimer’s disease. For potent and effective dosing in elderly patients, a parenteral prolonged delivery system is favored, with improved medication adherence with reduced dosage frequency.Purpose: This study aimed to design a nanocrystalline suspension (NS)-based MTK prolonged delivery system and evaluate its pharmacokinetics profile and local tolerability following subcutaneous administration.Methods: To decelerate the dissolution rate, the amorphous MTK raw material was transformed into a crystalline state using a solvent-mediated transformation method and subsequently formulated into NS using a bead-milling technique. The MTK NSs were characterized by morphology, particle size, crystallinity, and in vitro dissolution profiles. The pharmacokinetic profile and local tolerability at the injection site following subcutaneous injection of MTK suspension were evaluated in rats.Results: Microscopic and physical characterization revealed that the amorphous MTK powder was lucratively transformed into a crystalline form in acidic media (pH 4). MTK crystalline suspensions with different diameters (200 nm, 500 nm, and 3 μm) were uniformly prepared using bead-milling technology, employing polysorbate 80 as suspending agent. Prepared crystalline suspensions exhibited analogous crystallinity (melting point, 150°C) and size-dependent in vitro dissolution profiles. MTK NSs with particle sizes of 200 nm and 500 nm provided a protracted pharmacokinetic profile for up to 4 weeks in rats, with a higher maximum drug concentration in plasma than the 3 μm-sized injectable suspensions. Histopathological examination revealed that MTK NS caused chronic granulomatous inflammation at the injection site, which resolved after 4 weeks.Conclusion: The MTK parenteral NS delivery system is expected to be a valuable tool for treating Alzheimer’s disease with extended dose intervals.Graphical Abstract: Keywords: montelukast, parenteral prolonged release delivery, crystallinity, nanocrystalline suspension, bead-milling, pharmacokinetics, local tolerability

Details

Language :
English
ISSN :
11782013
Volume :
ume 17
Database :
Directory of Open Access Journals
Journal :
International Journal of Nanomedicine
Publication Type :
Academic Journal
Accession number :
edsdoj.bfeb49a75b44c8e9aad26e0a40f104b
Document Type :
article