Literature DB >> 26773599

Hydrophobic ion pairing of a minocycline/Ca(2+)/AOT complex for preparation of drug-loaded PLGA nanoparticles with improved sustained release.

Alexander Dontsios Holmkvist1, Annika Friberg2, Ulf J Nilsson3, Jens Schouenborg2.   

Abstract

Polymeric nanoparticles is an established and efficient means to achieve controlled release of drugs. Incorporation of minocycline, an antibiotic with anti-inflammatory and neuroprotective properties, into biodegradable nanoparticles may therefore provide an efficient means to combat foreign body reactions to implanted electrodes in the brain. However, minocycline is commonly associated with poor encapsulation efficiencies and/or fast release rates due to its high solubility in water. Moreover, minocycline is unstable under conditions of low and high pH, heat and exposure to light, which exacerbate the challenges of encapsulation. In this work drug loaded PLGA nanoparticles were prepared by a modified emulsification-solvent-diffusion technique and characterized for size, drug encapsulation and in vitro drug release. A novel hydrophobic ion pair complex of minocycline, Ca(2+) ions and the anionic surfactant AOT was developed to protect minocycline from degradation and prolong its release. The optimized formulation resulted in particle sizes around 220 nm with an entrapment efficiency of 43% and showed drug release over 30 days in artificial cerebrospinal fluid. The present results constitute a substantial increase in release time compared to what has hitherto been achieved for minocycline and indicate that such particles might provide useful for sustained drug delivery in the CNS.
Copyright © 2016 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  AOT (PubChem CID: 23673837); DMAB (PubChem CID: 18669); Drug release; Emulsification-solvent-diffusion method; Hydrophobic ion paring; Minocycline; Minocycline (PubChem CID: 54685925); Nanoparticles; PLGA (PubChem CID: 23111554); Poly(d,l-lactic-co-glycolic acid) (PLGA)

Mesh:

Substances:

Year:  2016        PMID: 26773599     DOI: 10.1016/j.ijpharm.2016.01.011

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  9 in total

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Journal:  Pharm Res       Date:  2017-08-14       Impact factor: 4.200

2.  Formulation of Antimicrobial Tobramycin Loaded PLGA Nanoparticles via Complexation with AOT.

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3.  Local delivery of minocycline-loaded PLGA nanoparticles from gelatin-coated neural implants attenuates acute brain tissue responses in mice.

Authors:  Alexander Dontsios Holmkvist; Johan Agorelius; Matilde Forni; Ulf J Nilsson; Cecilia Eriksson Linsmeier; Jens Schouenborg
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Journal:  Nanoscale Adv       Date:  2019-10-01

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Authors:  J Miguel Oliveira; Luisa Carvalho; Joana Silva-Correia; Sílvia Vieira; Malgorzata Majchrzak; Barbara Lukomska; Luiza Stanaszek; Paulina Strymecka; Izabela Malysz-Cymborska; Dominika Golubczyk; Lukasz Kalkowski; Rui L Reis; Miroslaw Janowski; Piotr Walczak
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Authors:  Soohyun Kim; Jennifer J Kang-Mieler; Wenqiang Liu; Zhe Wang; Glenn Yiu; Leandro B C Teixeira; William F Mieler; Sara M Thomasy
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8.  Bacillus subtilis in PVA Microparticles for Treating Open Wounds.

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9.  Laurus nobilis L. Essential Oil-Loaded PLGA as a Nanoformulation Candidate for Cancer Treatment.

Authors:  Esin Ercin; Serda Kecel-Gunduz; Bahar Gok; Tugba Aydin; Yasemin Budama-Kilinc; Murat Kartal
Journal:  Molecules       Date:  2022-03-15       Impact factor: 4.411

  9 in total

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