Background and Aim: Amikacin, as an aminoglycoside antibiotic, is prescribed against a broad spectrum of bacteria. Limiting the use of this medicine includes the risk of microbial resistance, toxicity and short half-life in the body. One strategy to overcome the problem is the use of nanotechnology which can help to development of medicine delivery systems. This study was done in 2015 to assess the ability of mesoporous silica nanoparticles in improving the traditional formulation of amikacin. Materials and Methods: SBA-15 was synthesized using hydrothermal method. The kinetics of medicine release from carriers, was investigated at 37 °C. The antimicrobial activity of formulations was conducted by disk diffusion method and broth dilution t...
Three porous matrices based on poly(lactic acid) are proposed herein for the controlled release of a...
The aim of this study was to fabricate novel microparticles (MPs) for efficient and long-term delive...
Development of a novel drug delivery system to provide sustainable and controlled release of a tradi...
This study aimed to develop synergistic therapies to treat superbug infections through the encapsula...
Solmaz Ghaffari1, Jaleh Varshosaz1, Afrooz Saadat2, Fatemeh Atyabi21Department of Pharmaceutics, Fac...
Amikacin is a very effective aminoglycoside antibiotic but according to its high toxicity, the use o...
Abstract Background: Nanotechnology offers a great chance to treat drug-resistant microbial infecti...
Rafael R Castillo,1 María Vallet-Regí1– 3 1Dpto. Química en Ciencias Farmacéuticas, Facultad de Farm...
Purpose: Amikacin, a water-soluble aminoglycoside antibiotic used to treat gram-negative bacillary i...
The ability of bacteria to form biofilms hinders any conventional treatment for chronic infections a...
Introduction: Antibiotic resistance is a growing concern in health care. Methicillin-resistant Staph...
Introduction: Antibiotic resistance is a growing concern in health care. Methicillin-resistant Staph...
Over the past several decades, mesoporous silica nanoparticles (MSNs) have attracted a tremendous de...
<p>The present study established indometacin (IMC) delivery system with chiral mesoporous silica nan...
Background: Due to the increase in the strains of antibiotic-resistant bacteria, it is necessary to ...
Three porous matrices based on poly(lactic acid) are proposed herein for the controlled release of a...
The aim of this study was to fabricate novel microparticles (MPs) for efficient and long-term delive...
Development of a novel drug delivery system to provide sustainable and controlled release of a tradi...
This study aimed to develop synergistic therapies to treat superbug infections through the encapsula...
Solmaz Ghaffari1, Jaleh Varshosaz1, Afrooz Saadat2, Fatemeh Atyabi21Department of Pharmaceutics, Fac...
Amikacin is a very effective aminoglycoside antibiotic but according to its high toxicity, the use o...
Abstract Background: Nanotechnology offers a great chance to treat drug-resistant microbial infecti...
Rafael R Castillo,1 María Vallet-Regí1– 3 1Dpto. Química en Ciencias Farmacéuticas, Facultad de Farm...
Purpose: Amikacin, a water-soluble aminoglycoside antibiotic used to treat gram-negative bacillary i...
The ability of bacteria to form biofilms hinders any conventional treatment for chronic infections a...
Introduction: Antibiotic resistance is a growing concern in health care. Methicillin-resistant Staph...
Introduction: Antibiotic resistance is a growing concern in health care. Methicillin-resistant Staph...
Over the past several decades, mesoporous silica nanoparticles (MSNs) have attracted a tremendous de...
<p>The present study established indometacin (IMC) delivery system with chiral mesoporous silica nan...
Background: Due to the increase in the strains of antibiotic-resistant bacteria, it is necessary to ...
Three porous matrices based on poly(lactic acid) are proposed herein for the controlled release of a...
The aim of this study was to fabricate novel microparticles (MPs) for efficient and long-term delive...
Development of a novel drug delivery system to provide sustainable and controlled release of a tradi...