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1.
Materials (Basel) ; 13(21)2020 Oct 27.
Artigo em Inglês | MEDLINE | ID: mdl-33120990

RESUMO

From their discovery, antibiotics have significantly improved clinical treatments of infections, thus leading to diminishing morbidity and mortality in critical care patients, as well as surgical, transplant and other types of medical procedures. In contemporary medicine, a significant debate regarding the development of multi-drug resistance involves all types of pathogens, especially in acute care hospitals due to suboptimal or inappropriate therapy. The possibility of nanotechnology using nanoparticles as matrices to encapsulate a lot of active molecules should increase drug efficacy, limit adverse effects and be an alternative helping to combat antibiotic resistance. The major aim of this study was to obtain and to analyze physico-chemical features of chitosan used as a drug-delivery system in order to stop the antibiotic resistance of different pathogens. It is well known that World Health Organization stated that multidrug resistance is one of the most important health threats worldwide. In last few years, nano-medicine emerged as an improved therapy to combat antibiotic-resistant infections agents. This work relies on enhancement of the antimicrobial efficiency of ceftriaxone against gram(+) and gram(-) bacteria by antibiotic encapsulation into chitosan nanoparticles. Physicochemical features of ceftriaxone-loaded polymer nanoparticles were investigated by particle size distribution and zeta potential, Fourier-transform infrared spectroscopy (FTIR), Thermal Gravimetric Analysis (TG/TGA), Scanning Electron Microscopy (SEM) characteristics techniques. The obtained results revealed an average particle size of 250 nm and a zeta potential value of 38.5 mV. The release profile indicates an incipient drug deliverance of almost 15%, after 2 h of approximately 83%, followed by a slowed drug release up to 24 h. Characteristics peaks of chitosan were confirmed by FTIR spectra indicating a similar structure in the case of ceftriaxone-loaded chitosan nanoparticles. A good encapsulation of the antibiotic into chitosan nanoparticles was also provided by thermo-gravimetric analysis. Morphological characteristics shown by SEM micrographs exhibit spherical nanoparticles of 30-250 nm in size with agglomerated architectures. Chitosan, a natural polymer which is used to load different drugs, provides sustained and prolonged release of antibiotics at a specific target by possessing antimicrobial activity against gram(+) and gram(-) bacteria. In this research, ceftriaxone-loaded chitosan nanoparticles were investigated as a carrier in antibiotic delivery.

2.
Arch Med Sci ; 16(1): 162-166, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32051720

RESUMO

INTRODUCTION: In the context of the global tuberculosis (TB) burden, children represent 10% of all cases, with high incidence rates still reported by many regions worldwide. The study aim was to determine whether there is a correlation between TB clinical diagnosis and low birth weight in children at various ages. MATERIAL AND METHODS: The study was conducted between 2010 and 2014, on a group of 1783 pediatric patients and a subgroup of 137 pediatric patients with low birth weight (LBW). Data were collected from patients' records and hospital statistical reports then processed using MS Excel 2010 and SPSS v.22. RESULTS: The subgroup of LBW patients accounted for 7.68% of all recorded cases. Girls were predominant (total M: F = 0.95; LBW group M: F = 0.91, p < 0.05), most from an urban area (total U: R = 1.29; LBW subgroup U: R = 1.36, p < 0.05). 22.59% of LBW subgroup children were infants aged of 0-12 months. The youngest age at TB diagnosis was 1 month and the lowest weight was 700 g. ANOVA regression for LBW and age at TB diagnosis, showed a multiple R value of 0.0256, p = 0.7659 (F = 0.7659, 95% CI). CONCLUSIONS: The correlation between clinical diagnosis of tuberculosis in children at various ages and their low birth weight was positive but was not statistically significant. However, this research hypothesis should be tested in further studies on larger population groups, due to the current public health context of "End TB", promoted worldwide.

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