Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mannose-Decorated Solid-Lipid Nanoparticles for Alveolar Macrophage Targeted Delivery of Rifampicin

View through CrossRef
Alveolar macrophages play a vital role in a variety of lung diseases, including tuberculosis. Thus, alveolar macrophage targeted anti-tubercular drug delivery through nanocarriers could improve its therapeutic response against tuberculosis. The current study aimed at exploring the efficacy of glyceryl monostearate (GMS)-based solid-lipid nanoparticles (SLNs) and their mannose functionalized forms on the alveolar macrophage targeting ability of an anti-tubercular model drug, rifampicin (Rif). Rif-loaded SLNs were accomplished by the solvent diffusion method. These carriers with unimodal particle size distribution (~170 nm) were further surface-modified with mannose via Schiff-base reaction, leading to slight enhancement of particle diameter and a decline of drug loading capacity. The encapsulated Rif, which was molecularly dispersed within the matrices as indicated by their XRD patterns, was eluted in a sustained manner with an initial burst release effect. The uptake efficiency of mannose-modified SLNs was remarkably higher than that of corresponding native forms on murine macrophage Raw 264.7 cells and human lung adenocarcinoma A549 cells. Eventually, the mannose-modified SLNs showed a greater cytotoxicity on Raw 264.7 and A549 cells relative to their unmodified forms. Overall, our study demonstrated that mannose modification of SLNs had an influence on their uptake by alveolar macrophages, which could provide guidance for the future development of alveolar macrophage targeted nanoformulations.
Title: Mannose-Decorated Solid-Lipid Nanoparticles for Alveolar Macrophage Targeted Delivery of Rifampicin
Description:
Alveolar macrophages play a vital role in a variety of lung diseases, including tuberculosis.
Thus, alveolar macrophage targeted anti-tubercular drug delivery through nanocarriers could improve its therapeutic response against tuberculosis.
The current study aimed at exploring the efficacy of glyceryl monostearate (GMS)-based solid-lipid nanoparticles (SLNs) and their mannose functionalized forms on the alveolar macrophage targeting ability of an anti-tubercular model drug, rifampicin (Rif).
Rif-loaded SLNs were accomplished by the solvent diffusion method.
These carriers with unimodal particle size distribution (~170 nm) were further surface-modified with mannose via Schiff-base reaction, leading to slight enhancement of particle diameter and a decline of drug loading capacity.
The encapsulated Rif, which was molecularly dispersed within the matrices as indicated by their XRD patterns, was eluted in a sustained manner with an initial burst release effect.
The uptake efficiency of mannose-modified SLNs was remarkably higher than that of corresponding native forms on murine macrophage Raw 264.
7 cells and human lung adenocarcinoma A549 cells.
Eventually, the mannose-modified SLNs showed a greater cytotoxicity on Raw 264.
7 and A549 cells relative to their unmodified forms.
Overall, our study demonstrated that mannose modification of SLNs had an influence on their uptake by alveolar macrophages, which could provide guidance for the future development of alveolar macrophage targeted nanoformulations.

Related Results

Confirmation of silent mutations in the rpoB gene locus of <i>M. tuberculosis </i>isolates using pyrosequencing and phenotypic DST
Confirmation of silent mutations in the rpoB gene locus of <i>M. tuberculosis </i>isolates using pyrosequencing and phenotypic DST
More than 95% cases of rifampicin resistance in M.tuberculosis strains can be attributed to mutations in 81-bp hotspot region of rpoB gene locus called Rifampicin Resistance Determ...
Preparation and evaluation of biodegradable rifampicin microparticles using supercritical fluid technique for pulmonary delivery
Preparation and evaluation of biodegradable rifampicin microparticles using supercritical fluid technique for pulmonary delivery
It is of interest to apply a supercritical fluid technology for production of inhalable biodegradable microparticles of rifampicin. The polyhydroxy acids[poly(DL-lactide-co-glvcoli...
D-mannose alleviates chronic periodontitis in rats by regulating the functions of neutrophils
D-mannose alleviates chronic periodontitis in rats by regulating the functions of neutrophils
Abstract Background Periodontitis is a chronic inflammatory disease without effective treatment. Nowadays, the critical role of neutrophils in periodontitis is getting bet...
Population Pharmacokinetics of Rifampicin on Pulmonary Tuberculosis Patients
Population Pharmacokinetics of Rifampicin on Pulmonary Tuberculosis Patients
Abstract: This study aimed to establish a reasonable population pharmacokinetic model for rifampicin taken orally by patients with pulmonary tuberculosis, estimate pharmacokinetic ...
Photochemotherapeutic Strategy against Acanthamoeba Infections
Photochemotherapeutic Strategy against Acanthamoeba Infections
ABSTRACT Acanthamoeba is a protist pathogen that can cause serious human infections, including blinding keratitis and a granulomatous amoebic enc...
D-mannose suppresses macrophage IL-1β production
D-mannose suppresses macrophage IL-1β production
AbstractD-mannose is a monosaccharide approximately a hundred times less abundant than glucose in human blood. Previous studies demonstrated that supraphysiological levels of D-man...
Abstract 1530: Alveolar macrophage depletion decreases lung cytokines and decreases mouse lung tumor growth.
Abstract 1530: Alveolar macrophage depletion decreases lung cytokines and decreases mouse lung tumor growth.
Abstract While anti-inflammatory therapies are being evaluated in lung cancer, the role of specific immune effector cells and their products in lung carcinogenesis i...

Back to Top