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Journal ArticleDOI

Lipid Nanocarrier-Mediated Drug Delivery System to Enhance the Oral Bioavailability of Rifabutin

Pradip Nirbhavane, +3 more
- 01 Apr 2017 - 
- Vol. 18, Iss: 3, pp 829-837
TLDR
The intent of using lipid nanocarriers is primarily to enhance the oral bioavailability of rifabutin and eventually decrease the dose and dosing frequency for successful management of MAC infection.
Abstract
Rifabutin (RFB) is prescribed for the treatment of tuberculosis infections as well as Mycobacterium avium complex (MAC) infection in immunocompromised individuals and HIV patients. With a view to develop a sustained release oral solid lipid nanoformulation (SLN), RFB was encapsulated in glyceryl monostearate (GMS) nanoparticles. The rifabutin solid lipid nanoparticles (RFB-SLNs), prepared by the solvent diffusion evaporation method, had a size of 345 ± 17.96 nm and PDI of 0.321 ± 0.09. The stability of RFB-SLNs was investigated in simulated gastric fluid (SGF) pH 2.0, simulated intestinal fluid (SIF) pH 6.8 and physiological buffer (PBS) pH 7.4. The gastric medium did not affect the SLNs and were found to be stable, while a sustained release was observed in SIF up to 48 h and in PBS up to 7 days. The pharmacokinetic profile of a single oral administration of RFB-SLNs in mice showed maintenance of therapeutic drug concentrations in plasma for 4 days and in the tissues (lungs, liver and spleen) for 7 days. Oral administration of free RFB showed clearance from plasma within 24 h. The relative bioavailability of RFB from SLNs was five fold higher as compared to administration with free RFB. The intent of using lipid nanocarriers is primarily to enhance the oral bioavailability of rifabutin and eventually decrease the dose and dosing frequency for successful management of MAC infection.

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Citations
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Journal ArticleDOI

Incorporation of Antibiotics into Solid Lipid Nanoparticles: A Promising Approach to Reduce Antibiotic Resistance Emergence.

TL;DR: In this paper, the main antimicrobial resistance mechanisms and relevant solid lipid nanoparticle characteristics are presented to later discuss the potential of these nanoparticles to improve current antibiotic treatment characteristics and overcome antimicrobial resistant mechanisms.
Journal ArticleDOI

In Vivo Fate of Biomimetic Mixed Micelles as Nanocarriers for Bioavailability Enhancement of Lipid–Drug Conjugates

TL;DR: It is concluded that biomimetic MMs might be taken up by enterocytes and be digested there to release the prototype drug, which is further transported to the circulation, and only a limited amount of integral MMs could be absorbed into the circulation.
Journal ArticleDOI

Recent Advances in Oral Nano-Antibiotics for Bacterial Infection Therapy.

TL;DR: Published studies are explored to provide a comprehensive understanding of the recent progress in the area of orally deliverable nano-antibiotic formulations to demonstrate the potential for the improvement and optimization of currently available antibiotic therapies.
Journal ArticleDOI

Preclinical Explorative Assessment of Celecoxib-Based Biocompatible Lipidic Nanocarriers for the Management of CFA-Induced Rheumatoid Arthritis in Wistar Rats

TL;DR: The current study can provide a suitable alternative for the development of an effective topical formulation of CXB in lipid nanocarriers and revealed superiority of the developed SLN gel vis-à-vis the conventional gel.
References
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Journal ArticleDOI

Biodegradable nanoparticles for drug and gene delivery to cells and tissue

TL;DR: Based on the above mechanism, various potential applications of nanoparticles for delivery of therapeutic agents to the cells and tissue are discussed.
Journal ArticleDOI

Solid lipid nanoparticles (SLN) for controlled drug delivery – Drug release and release mechanism

TL;DR: The principle suitability of SLN as a prolonged release formulation for lipophilic drugs is demonstrated and tetracaine and prednisolone loaded SLN showed a distinctly prolonged release over a monitored period of 5 weeks.
Journal ArticleDOI

Enhancement of gastrointestinal absorption of quercetin by solid lipid nanoparticles.

TL;DR: Evidence is provided that SLNs are valuable as an oral delivery carrier to enhance the absorption of a poorly water soluble drug, quercetin.
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