The enrichment technique is crucial to the comprehensive analysis of protein phosphorylation. In this work, a facile, green and efficient synthetic method was set up for quaternization of luffa sponge. The resultant luffa sponge showed strong anion-exchange characteristics and a high adsorption ability for phosphate ions. Along with the unique physical properties, e.g., tenacity and porous texture, quaternized luffa sponge was demonstrated to be a well-suited solid-phase extraction (SPE) material. The quaternized luffa sponge-based SPE method was simple, cost-effective and convenient in operation, and was successfully applied to the capture of phosphopeptides from protein digests. The enrichment approach exhibited exceptionally high selectivity, sensitivity and strong anti-interference ability. Four phosphopeptides were still detected by using the digest mixture of β-casein and bovine serum albumin with a molar ratio of 1:100. 21 phosphopeptides were identified from the tryptic digest of non-fat milk.
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http://dx.doi.org/10.3390/ijms21010101 | DOI Listing |
Am J Transl Res
December 2024
Burn Plastic Surgery, The First People's Hospital of Zunyi (The Third Affiliated Hospital of Zunyi Medical University) Zunyi 563000, Guizhou, China.
Objective: To investigate the psychological stress levels in patients with diabetic foot ulcer (DFU) and evaluate the effects of using a luffa sponge in vacuum sealing drainage (VSD) treatment.
Methods: This retrospective study analyzed the clinical data from 110 DFU patients treated with VSD at The First People's Hospital of Zunyi (The Third Affiliated Hospital of Zunyi Medical University) between September 2021 and October 2023. Patients were categorized into two groups based on psychological stress levels: an observation group (with psychological stress, n=42) and a control group (without psychological stress, n=68).
Ammonia, a major stress-inducing factor in aquaculture, contributes a significant challenge in maintaining sustainable fish production. Addressing this issue requires environmentally and economically sustainable solutions. This study explores the use of readily available and environmentally friendly porous lignocellulosic luffa sponge as a biostimulator, with a combination of three medicinal and aromatic plants(MAPs) viz.
View Article and Find Full Text PDFMacromol Rapid Commun
December 2024
Department of Mechanical and Manufacturing Engineering, University of Cyprus, 1 Panepistimiou Avenue Nicosia, Aglantzia, 2109, Cyprus.
Sound absorption plays a crucial role in addressing noise pollution that may cause harm to both human health and wildlife. To tackle this environmental issue, the implementation of natural-based sound absorbing materials attracts considerable attention in the last few years. In this study, sound absorbing, eco-friendly composites are produced by combining a 3D natural sponge namely Luffa Cylindrica (LC) with cellulose acetate (CA) microfibrous layers that are fabricated through electrospinning.
View Article and Find Full Text PDFRSC Adv
December 2024
Department of Chemical Engineering, University of Patras Patras 26500 Greece
Biochar has been prepared by pyrolysis of (the vegetable sponge produced by ) and activated by mixing the pyrolyzed powder with KOH and pyrolyzed again. Non-activated and activated biochar have both been structurally and then electrochemically characterized to record their differences and assess their suitability as bifunctional oxygen reduction and oxygen evolution reaction electrocatalysts in Zn-air batteries. Non activated biochar carries several functional groups; however, the activation procedure led to a material with mainly O and Mg groups.
View Article and Find Full Text PDFAn Acad Bras Cienc
November 2024
Universidade de Santa Cruz do Sul, Programa de Pós-graduação em Tecnologia Ambiental - PPGTA, Av. Independência, 2293, Universitário, 96815-900 Santa Cruz do Sul, RS, Brazil.
Air contamination in confined environments can lead to severe health damage. Searching for effective and sustainable technologies that might bring quality to indoor air is necessary. Heterogeneous photocatalysis has been studied for its ability to oxidize, inactivating microorganisms in the air.
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