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1.
Sci Rep ; 14(1): 12655, 2024 06 02.
Article in English | MEDLINE | ID: mdl-38825597

ABSTRACT

Potato peel waste (PPW) is an underutilized substrate which is produced in huge amounts by food processing industries. Using PPW a feedstock for production of useful compounds can overcome the problem of waste management as well as cost-effective. In present study, potential of PPW was investigated using chemical and thermochemical treatment processes. Three independent variables i.e., PPW concentration, dilute sulphuric acid concentration and liberation time were selected to optimize the production of fermentable sugars (TS and RS) and phenolic compounds (TP). These three process variables were selected in the range of 5-15 g w/v substrate, 0.8-1.2 v/v acid conc. and 4-6 h. Whole treatment process was optimized by using box-behnken design (BBD) of response surface methodology (RSM). Highest yield of total and reducing sugars and total phenolic compounds obtained after chemical treatment was 188.00, 144.42 and 43.68 mg/gds, respectively. The maximum yield of fermentable sugars attained by acid plus steam treatment were 720.00 and 660.62 mg/gds of TS and RS, respectively w.r.t 5% substrate conc. in 0.8% acid with residence time of 6 h. Results recorded that acid assisted autoclaved treatment could be an effective process for PPW deconstruction. Characterization of substrate before and after treatment was checked by SEM and FTIR. Spectras and micrographs confirmed the topographical variations in treated substrate. The present study was aimed to utilize biowaste and to determine cost-effective conditions for degradation of PWW into value added compounds.


Subject(s)
Industrial Waste , Plant Extracts , Solanum tuberosum , Chemistry Techniques, Analytical/methods , Chemistry Techniques, Analytical/standards , Solanum tuberosum/chemistry , Plant Extracts/chemistry , Plant Extracts/isolation & purification , Industrial Waste/analysis , Food Industry , Fermentation , Sugars/analysis , Sugars/isolation & purification , Phenols/analysis , Phenols/isolation & purification , Acids/chemistry , Steam , Spectroscopy, Fourier Transform Infrared
2.
Biosensors (Basel) ; 14(4)2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38667156

ABSTRACT

Covalent organic frameworks (COFs) are porous crystals that have high designability and great potential in designing, encapsulating, and immobilizing nanozymes. COF nanozymes have also attracted extensive attention in analyte sensing and detection because of their abundant active sites, high enzyme-carrying capacity, and significantly improved stability. In this paper, we classify COF nanozymes into three types and review their characteristics and advantages. Then, the synthesis methods of these COF nanozymes are introduced, and their performances are compared in a list. Finally, the applications of COF nanozymes in environmental analysis, food analysis, medicine analysis, disease diagnosis, and treatment are reviewed. Furthermore, we also discuss the application prospects of COF nanozymes and the challenges they face.


Subject(s)
Metal-Organic Frameworks , Metal-Organic Frameworks/chemistry , Biosensing Techniques , Nanostructures , Chemistry, Analytic , Food Analysis , Chemistry Techniques, Analytical/methods
3.
Mikrochim Acta ; 191(4): 185, 2024 03 07.
Article in English | MEDLINE | ID: mdl-38451330

ABSTRACT

A dual-mode sensor was developed for detecting acetylcholinesterase (AChE) and organophosphorus pesticides (OPs) via bifunctional BSA-CeO2 nanoclusters (NCs) with oxidase-mimetic activity and fluorescence property. The dual-mode sensor has the characteristics of self-calibration and self-verification, meeting the needs of different detection conditions and provide more accurate results. The colorimetric sensor and fluorescence sensor have been successfully used for detecting AChE with limit of detection (LOD) of 0.081 mU/mL and 0.056 mU/mL, respectively, while the LOD for OPs were 0.9 ng/mL and 0.78 ng/mL, respectively. The recovery of AChE was 93.9-107.2% and of OPs was 95.8-105.0% in actual samples. A novel strategy was developed to monitor pesticide residues and detect AChE level, which will motivate future work to explore the potential applications of multifunctional nanozymes.


Subject(s)
Acetylcholinesterase , Chemistry Techniques, Analytical , Pesticides , Smartphone , Acetylcholinesterase/analysis , Hydrogels , Organophosphorus Compounds , Pesticides/adverse effects , Chemistry Techniques, Analytical/methods
4.
Biosci Biotechnol Biochem ; 88(6): 639-647, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38544329

ABSTRACT

Efficient extraction of natural pigments is a key focus in enhancing the utilization of by-products for applications in the food industry. In this study, an enzymatic extraction method using Pectinex Ultra SP-L, Pectinex XXL, Novoshape, and Celluclast was used to investigate natural pigment production from the pomace of aronia, a commercially important plant. The method's performance was monitored using high-performance liquid chromatography with diode-array detection by measuring total and individual anthocyanin levels. Pectinex XXL (0.5%) yielded the highest total anthocyanin extraction (2082.41 ± 85.69 mg/100 g) in the single enzyme treatment, followed by Pectinex Ultra SP-L (0.05%), Celluclast (0.01%), and Novoshape (0.1%). Combining Pectinex XXL (0.25%) with Celluclast (0.01%) increased the extraction ratio of total anthocyanins (2 323.04 ± 61.32 mg/100 g) by ∼50.7% compared with that obtained using the solvent extraction method. This study demonstrated an effective enzymatic extraction method for application in the food industry.


Subject(s)
Anthocyanins , Chemistry Techniques, Analytical , Enzymes , Food Industry , Anthocyanins/analysis , Anthocyanins/isolation & purification , Chemistry Techniques, Analytical/methods , Enzymes/metabolism , Food Coloring Agents/isolation & purification , Food Industry/methods , Photinia/chemistry , Temperature , Time
5.
Eur J Pharm Sci ; 192: 106633, 2024 Jan 01.
Article in English | MEDLINE | ID: mdl-37951317

ABSTRACT

Recently, the potentially highly carcinogenic N-nitrosamines (NAs) have become the focus of pharmaceutical regulatory authorities, the pharmaceutical industry and researchers because trace amounts have been detected in some drug products (DPs), resulting in drug supply shortages. In the absence of sufficient analytical methods for the determination of multiple regulated low-molecular-weight NAs in various DPs, a robust, selective, sensitive and accurate method based on sample preparation by solid phase extraction, followed by liquid chromatography high-resolution mass spectrometry for the simultaneous analysis of 13 regulated low-molecular-weight NAs was developed. The best results for the cleanup were obtained using Strata X-C SPE cartridge. The proposed method was successfully validated according to the USP general chapter 〈1469〉, demonstrating its excellent linearity, accuracy and precision in wide analytical ranges, adjusted to NAs acceptable intake limits. The achieved limits of quantitation correspond to 30 % or less of the acceptable intake limits. The developed analytical method was applied to 16 commercially available DPs containing one to three active pharmaceutical ingredients with different physicochemical properties. Only N-Nitrosodimethylamine was detected in DPs containing ranitidine at levels exceeding the regulatory AI limits by 37.6 - 57.4-fold. In addition, the robustness of the method was confirmed on a considerable number of DPs containing different active ingredients, demonstrating the suitability of the analytical method for routine quality control of different DPs, thus mitigate the risk to human health.


Subject(s)
Chemistry Techniques, Analytical , Nitrosamines , Pharmaceutical Preparations , Humans , Chromatography, High Pressure Liquid/methods , Chromatography, Liquid , Mass Spectrometry , Nitrosamines/analysis , Pharmaceutical Preparations/chemistry , Solid Phase Extraction/methods , Chemistry Techniques, Analytical/methods
6.
J Biol Chem ; 300(2): 105615, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38159850

ABSTRACT

Cells continuously fine-tune signaling pathway proteins to match nutrient and stress levels in their local environment by modifying intracellular proteins with O-linked N-acetylglucosamine (O-GlcNAc) sugars, an essential process for cell survival and growth. The small size of these monosaccharide modifications poses a challenge for functional determination, but the chemistry and biology communities have together created a collection of precision tools to study these dynamic sugars. This review presents the major themes by which O-GlcNAc influences signaling pathway proteins, including G-protein coupled receptors, growth factor signaling, mitogen-activated protein kinase (MAPK) pathways, lipid sensing, and cytokine signaling pathways. Along the way, we describe in detail key chemical biology tools that have been developed and applied to determine specific O-GlcNAc roles in these pathways. These tools include metabolic labeling, O-GlcNAc-enhancing RNA aptamers, fluorescent biosensors, proximity labeling tools, nanobody targeting tools, O-GlcNAc cycling inhibitors, light-activated systems, chemoenzymatic labeling, and nutrient reporter assays. An emergent feature of this signaling pathway meta-analysis is the intricate interplay between O-GlcNAc modifications across different signaling systems, underscoring the importance of O-GlcNAc in regulating cellular processes. We highlight the significance of O-GlcNAc in signaling and the role of chemical and biochemical tools in unraveling distinct glycobiological regulatory mechanisms. Collectively, our field has determined effective strategies to probe O-GlcNAc roles in biology. At the same time, this survey of what we do not yet know presents a clear roadmap for the field to use these powerful chemical tools to explore cross-pathway O-GlcNAc interactions in signaling and other major biological pathways.


Subject(s)
Acetylglucosamine , Chemistry Techniques, Analytical , Signal Transduction , Acetylglucosamine/analysis , Acetylglucosamine/metabolism , Chemistry Techniques, Analytical/methods , Receptors, G-Protein-Coupled/metabolism , Biochemistry/methods , Biotechnology/methods
7.
Sensors (Basel) ; 23(13)2023 Jun 24.
Article in English | MEDLINE | ID: mdl-37447704

ABSTRACT

Microfluidic technology is a powerful tool to enable the rapid, accurate, and on-site analysis of forensically relevant evidence on a crime scene. This review paper provides a summary on the application of this technology in various forensic investigation fields spanning from forensic serology and human identification to discriminating and analyzing diverse classes of drugs and explosives. Each aspect is further explained by providing a short summary on general forensic workflow and investigations for body fluid identification as well as through the analysis of drugs and explosives. Microfluidic technology, including fabrication methodologies, materials, and working modules, are touched upon. Finally, the current shortcomings on the implementation of the microfluidic technology in the forensic field are discussed along with the future perspectives.


Subject(s)
Forensic Sciences , Microfluidics , Humans , Explosive Agents/analysis , Forensic Sciences/instrumentation , Forensic Sciences/methods , Microfluidics/methods , Microfluidics/trends , Chemistry Techniques, Analytical , DNA/analysis , Illicit Drugs/analysis , Animals
10.
J Vet Diagn Invest ; 35(5): 470-483, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37313802

ABSTRACT

Anticoagulant rodenticides (ARs) are used to control rodent populations. Poisoning of non-target species can occur by accidental consumption of commercial formulations used for rodent control. A robust method for determining ARs in animal tissues is important for animal postmortem diagnostic and forensic purposes. We evaluated an ultra-performance liquid chromatography coupled with mass spectrometry (UPLC-MS) method to quantify 8 ARs (brodifacoum, bromadiolone, chlorophacinone, coumachlor, dicoumarol, difethialone, diphacinone, warfarin) in a wide range of animal (bovine, canine, chicken, equine, porcine) liver samples, including incurred samples. We further evaluated UPLC-MS in 2 interlaboratory comparison (ILC) studies; one an ILC exercise (ICE), the other a proficiency test (PT). The limits of detection of UPLC-MS were 0.3-3.1 ng/g, and the limits of quantification were 0.8-9.4 ng/g. The recoveries obtained using UPLC-MS were 90-115%, and relative SDs were 1.2-13% for each of the 8 ARs for the 50, 500, and 2,000 ng/g spiked liver samples. The overall accuracy from the laboratories participating in the 2 ILC studies (4 and 11 laboratories for ICE and PT studies, respectively) were 86-118%, with relative repeatability SDs of 3.7-11%, relative reproducibility SDs of 7.8-31.2%, and Horwitz ratio values of 0.5-1.5. Via the ILC studies, we verified the accuracy of UPLC-MS for AR analysis in liver matrices and demonstrated that ILC can be utilized to evaluate performance characteristics of analytical methods.


Subject(s)
Anticoagulants , Chemistry Techniques, Analytical , Coumarins , Indans , Rodenticides , Animals , Chemistry Techniques, Analytical/methods , Chemistry Techniques, Analytical/standards , Chemistry Techniques, Analytical/veterinary , Rodenticides/analysis , Anticoagulants/analysis , Liver/chemistry , Liquid Chromatography-Mass Spectrometry , Indans/analysis , Coumarins/analysis , Limit of Detection , Reproducibility of Results
11.
Biotechnol J ; 18(9): e2300143, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37222181

ABSTRACT

A paper microfluidic device capable of conducting enzyme-linked assays is presented: a microfluidic enzyme-linked paper analytical device (µEL-PAD). The system exploits a wash-free sandwich coupling to form beads/analyte/enzyme complexes, which are subsequently added to the vertical flow device composed of wax-printed paper, waxed nitrocellulose membrane and absorbent/barrier layers. The nitrocellulose retains the bead complexes without disrupting the flow, enabling for an efficient washing step. The entrapped complexes then interact with the chromogenic substrate stored on the detection paper, generating a color change on it, quantified with an open-source smartphone software. This is a universal paper-based technology suitable for high-sensitivity quantification of many analytes, such as proteins or nucleic acids, with different enzyme-linked formats. Here, the potential of the µEL-PAD is demonstrated to detect DNA from Staphylococcus epidermidis. After generation of isothermally amplified genomic DNA from bacteria, Biotin/FITC-labeled products were analyzed with the µEL-PAD, exploiting streptavidin-coated beads and antiFITC-horseradish peroxidase. The µEL-PAD achieved a limit of detection (LOD) and quantification <10 genome copies/µL, these being at least 70- and 1000-fold lower, respectively, than a traditional lateral flow assay (LFA) exploiting immobilized streptavidin and antiFITC-gold nanoparticles. It is envisaged that the device will be a good option for low-cost, simple, quantitative, and sensitive paper-based point-of-care testing.


Subject(s)
Chemistry Techniques, Analytical , Microfluidics , Paper , Microfluidics/instrumentation , Collodion/chemistry , Chromogenic Compounds/chemistry , Mobile Applications , Proteins/analysis , Nucleic Acids/analysis , Limit of Detection , Chemistry Techniques, Analytical/instrumentation , Chemistry Techniques, Analytical/methods
13.
Chemosphere ; 323: 138285, 2023 May.
Article in English | MEDLINE | ID: mdl-36868424

ABSTRACT

Anion exchange resin is responsible for removing harmful anionic contaminants in drinking water treatment, but it may become a significant source of precursors for disinfection byproducts (DBPs) by shedding material during application without proper pretreatment. Batch contact experiments were performed to investigate the dissolution of magnetic anion exchange resins and their contribution to organics and DBPs. Dissolved organic carbon (DOC) and dissolved organic nitrogen (DON) released from the resin were highly correlated with the dissolution conditions (contact time and pH), in which 0.7 mg/L DOC and 0.18 mg/L DON were distributed at exposure time of 2 h and pH 7. The formation potential of four DBPs in the shedding fraction was also revealed that trichloromethane (TCM), dichloroacetonitrile (DCAN), nitrosodimethylamine (NDMA), and dichloroacetamide (DCAcAm) concentrations could reach 21.4, 5.1, 12.1 µg/L, and 69.6 ng/L, respectively. Furthermore, the hydrophobic DOC that preferred to detach from the resin mainly originated from the residues of crosslinkers (divinylbenzene) and porogenic agents (straight-chain alkanes) detected by LC-OCD and GC-MS. Nevertheless, pre-cleaning inhibited the leaching of the resin, among which acid-base and ethanol treatments significantly lowered the concentration of leached organics, and formation potential of DBPs (TCM, DCAN, and DCAcAm) below 5 µg/L and NDMA dropped to 10 ng/L.


Subject(s)
Anion Exchange Resins , Chemistry Techniques, Analytical , Water Purification , Anion Exchange Resins/chemistry , Water Purification/instrumentation , Dissolved Organic Matter/analysis , Dissolved Organic Matter/chemistry , Chloroform/analysis , Chloroform/chemistry , Dimethylnitrosamine/analysis , Dimethylnitrosamine/chemistry , Hydrogen-Ion Concentration , Microscopy, Electron, Scanning , Chemistry Techniques, Analytical/instrumentation , Chemistry Techniques, Analytical/methods
14.
Anal Chem ; 95(1): 1-2, 2023 01 10.
Article in English | MEDLINE | ID: mdl-36625103
15.
Environ Res ; 216(Pt 4): 114812, 2023 01 01.
Article in English | MEDLINE | ID: mdl-36395862

ABSTRACT

Water quality parameters (WQP) are the most intuitive indicators of the environmental quality of water body. Due to the complexity and variability of the chemical environment of water body, simple and rapid detection of multiple parameters of water quality becomes a difficult task. In this paper, spectral images (named SPIs) and deep learning (DL) techniques were combined to construct an intelligent method for WQP detection. A novel spectroscopic instrument was used to obtain SPIs, which were converted into feature images of water chemistry and then combined with deep convolutional neural networks (CNNs) to train models and predict WQP. The results showed that the method of combining SPIs and DL has high accuracy and stability, and good prediction results with average relative error of each parameter (anions and cations, TOC, TP, TN, NO3--N, NH3-N) at 1.3%, coefficient of determination (R2) of 0.996, root mean square error (RMSE) of 0.1, residual prediction deviation (RPD) of 16.2, and mean absolute error (MAE) of 0.067. The method can achieve rapid and accurate detection of high-dimensional water quality multi-parameters, and has the advantages of simple pre-processing and low cost. It can be applied not only to the intelligent detection of environmental waters, but also has the potential to be applied in chemical, biological and medical fields.


Subject(s)
Chemistry Techniques, Analytical , Environmental Monitoring , Water Quality , Neural Networks, Computer , Spectrum Analysis , Environmental Monitoring/methods , Chemistry Techniques, Analytical/methods
16.
SAR QSAR Environ Res ; 33(10): 793-804, 2022 Oct.
Article in English | MEDLINE | ID: mdl-36369710

ABSTRACT

The accuracy and performance of (Q)SAR models depend significantly on the data used for training. Datasets prepared on the basis of publicly available databases contain structures belonging to different chemical classes and have a highly imbalanced actives/inactives ratio. Currently, hundreds of structural descriptors are used in (Q)SAR studies. The abundance of structural descriptors gives rise to the problem of the constructed (Q)SAR models stability. The methods frequently used for the selection of a small fraction of the 'best' descriptors usually do not have sufficient mathematical justification. We propose a new approach to a self-consistent classifier for SAR analysis in order to overcome these problems. Logistic (SCLC) and extreme (SCEC) extensions of self-consistent regression (SCR) were implemented to enhance the classification capabilities of SCR. The approach was applied to classification models' development for inhibiting activity endpoints in HIV-1-related data and toxicity endpoints with subsequent fivefold cross-validation to estimate the models' performance. Comparison of the proposed SCLC and SCEC models with those developed using the original SCR and support vector machine demonstrated the comparable accuracy. Advantages in feature selection using our approach provide more generalizable (Q)SAR models. In particular, the crucial factors responsible for the observed value are determined unambiguously.


Subject(s)
Chemistry Techniques, Analytical , Models, Theoretical , Quantitative Structure-Activity Relationship , Support Vector Machine
17.
Org Lett ; 24(38): 6940-6944, 2022 09 30.
Article in English | MEDLINE | ID: mdl-36129217

ABSTRACT

An efficacious method for building fluorovinyl spiro-[imidazole-indene] and α-amino-ß-naphthalenone skeletons synchronously has been shown to consist of Rh(III)-catalyzed C-H functionalization between 2H-imidazoles and difluoromethylene alkynes. This protocol demonstrates a practical and straightforward route for installing fluorine elements in the envisioned position of heterocyclic compounds.


Subject(s)
Chemistry Techniques, Analytical , Indenes , Rhodium , Alkynes , Catalysis , Fluorine/chemistry , Imidazoles/chemistry , Indenes/chemical synthesis , Molecular Structure , Rhodium/chemistry
19.
Proc Natl Acad Sci U S A ; 119(36): e2120538119, 2022 09 06.
Article in English | MEDLINE | ID: mdl-36037347

ABSTRACT

Viscous streaming refers to the rectified, steady flows that emerge when a liquid oscillates around an immersed microfeature. Relevant to microfluidics, the resulting local, strong inertial effects allow manipulation of fluid and particles effectively, within short time scales and compact footprints. Nonetheless, practically, viscous streaming has been stymied by a narrow set of achievable flow topologies, limiting scope and application. Here, by moving away from classically employed microfeatures of uniform curvature, we experimentally show how multicurvature designs, computationally obtained, give rise, instead, to rich flow repertoires. The potential utility of these flows is then illustrated in compact, robust, and tunable devices for enhanced manipulation, filtering, and separation of both synthetic and biological particles. Overall, our mixed computational/experimental approach expands the scope of viscous streaming application, with opportunities in manufacturing, environment, health, and medicine, from particle self-assembly to microplastics removal.


Subject(s)
Computer Simulation , Microfluidics , Chemistry Techniques, Analytical , Viscosity
20.
Toxins (Basel) ; 14(8)2022 08 11.
Article in English | MEDLINE | ID: mdl-36006212

ABSTRACT

Microcystins (MCs) are cyclic heptapeptidic toxins produced by many cyanobacteria. Microcystins can be accumulated in various matrices in two forms: a free cellular fraction and a covalently protein-bound form. To detect and quantify the concentration of microcystins, a panel of techniques on various matrices (water, sediments, and animal tissues) is available. The analysis of MCs can concern the free or the total (free plus covalently bound) fractions. Free-form analyses of MCs are the most common and easiest to detect, whereas total-form analyses are much less frequent and more complex to achieve. The objective of this review is to summarize the different methods of extraction and analysis that have been developed for total forms. Four extraction methods were identified: MMPB (2-methyl-3-methoxy-4-phenylbutyric acid) method, deconjugation at basic pH, ozonolysis, and laser irradiation desorption. The study of the bibliography on the methods of extraction and analysis of the total forms of MCs showed that the reference method for the subject remains the MMPB method even if alternative methods and, in particular, deconjugation at basic pH, showed results encouraging the continuation of the methodological development on different matrices and on naturally-contaminated samples.


Subject(s)
Chemistry Techniques, Analytical , Cyanobacteria , Microcystins/analysis , Microcystins/isolation & purification , Animals , Water
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