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1.
Pak J Biol Sci ; 24(9): 953-970, 2021 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-34585548

RESUMO

<b>Background and Objective:</b> Nanobacteria (NB) appear to contribute to many calcifying diseases including kidney stones which represent a common problem with inadequate prevention exist. NB framing itself with a mineral coat that assists as a primary defence shield against the immune system, antibiotics. This study aims to collect and detect nanobes from different kidney stones from patients with active urolithiasis then investigated the anti-nano-bacterial activity of some antibiotics alone or in combination with extracts of irradiated herbs of certain medicinal plants which will represent a new approach to therapy for patients with kidney stones. <b>Materials and Methods:</b> Total of 32 nanobes were isolated from 54 kidney stones. Fourier Transforms Infrared Spectroscopy (FTIR) revealed that calcium and phosphate are the main components of stones. Scanning Electron Microscopy (SEM) with Energy-dispersive X-ray spectroscopy (EDX) and Transmission Electron Microscope (TEM), showed that nanobes were Gram-ve cocci with size ranged from (375:600 nm). The biofilm production ability of nanobes was estimated qualitatively and quantitatively. <b>Results:</b> The results revealed that all were strong biofilm producers. Further, the antibiotic susceptibility test indicates their resistance towards most of the tested antibiotics. Molecular identification of the strong biofilm producer isolates by ribosomal ribonucleic acid (rRNA) revealed that it is indicated by 85.37% to <i>Bartonella apis</i> strain PEB0122. <b>Conclusion:</b> The findings of the current study evidenced that combination treatment between Doxycycline (DO) and water extract of khella exhibited a significant reduction in biofilm formation ability of the strongest producers nanobes. Therefore, this treatment can play a role in enhancing public health, especially with patients who suffer from recurrent kidney stone formation.


Assuntos
Biofilmes/crescimento & desenvolvimento , Nanopartículas Calcificantes/análise , Cálculos Renais/microbiologia , Nanopartículas Calcificantes/biossíntese , Egito , Humanos
2.
Nephrology (Carlton) ; 20(1): 6-10, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25307355

RESUMO

AIM: In patients with renal failure or chronic inflammation, the accumulation of fetuin-A-containing calciprotein particles (CPP) in the extracellular fluid has been implicated in driving inflammatory pathways and extraosseous mineral deposition. We aimed to discover whether CPP are present in the peritoneal dialysis fluid effluent (PDF) of stable peritoneal dialysis (PD) patients, and if so, how these particles might be formed. METHODS: Serum and PDF were sampled from 20 stable PD patients. CPP were quantified by the reduction in fetuin-A concentration after high speed centrifugation. 8-iso-PGF2α in PDF was measured as a marker of oxidative stress. Fetuin-A and phosphate were added to commercially available dialysis fluids to assess their ability to support CPP formation ex vivo. RESULTS: We report that the major protein component of these mineral-containing nanoparticles, fetuin-A, is relatively abundant in PDF and that CPP were present in the PDF of 17/20 PD patients. PDF CPP levels were strongly correlated with 8-iso-PGF2α concentrations. In vitro experiments suggested that commonly used peritoneal dialysate fluids, irrespective of composition, could not sustain appreciable de novo CPP formation ex vivo. CONCLUSION: Fetuin-A is either actively transported or locally produced by the peritoneal membrane in PD patients. The association between fetuin-A-containing CPP and markers of oxidative stress warrants further mechanistic studies.


Assuntos
Nanopartículas Calcificantes/biossíntese , Soluções para Diálise/química , Dinoprosta/análogos & derivados , Diálise Peritoneal , alfa-2-Glicoproteína-HS/análise , Biomarcadores/análise , Dinoprosta/análise , Humanos , Projetos Piloto
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