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  • Column liquid chromatography
  • Immunocytochemistry
  • kinetics
  • pharmacokinetics
  • wheat
  • 1
    Unknown
    Rijeka : InTech
    Keywords: kinetics
    Description / Table of Contents: Chapter 1: Introductory Chapter: Kinetics from Past to Future by George Z. Kyzas and Athanasios C. Mitropoulos --- Chapter 2: Discrete Boltzmann Modeling of Compressible Flows by Aiguo Xu, Guangcai Zhang and Yudong Zhang --- Chapter 3: Collective Mode Interactions in Lorentzian Space Plasma by Nazish Rubab and Sadia Zaheer --- Chapter 4: Kinetic Theory of Creep and Long-Term Strength of Metals by Alexander Lokoshchenko and Leonid Fomin --- Chapter 5: Kinetic Equations of Active Soft Matter by Viktor Gerasimenko --- Chapter 6: Non-Linear Kinetic Analysis of Protein Assembly Based on Center Manifold Theory by Tatsuaki Tsuruyama --- Chapter 7: Plasma Kinetic Theory by Kashif Chaudhary, Auwal Mustapha Imam, Syed Zuhaib Haider Rizvi and Jalil Ali
    Pages: Online-Ressource (138 Seiten)
    ISBN: 9789535138013
    Language: English
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  • 2
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2022-06-21
    Description: The high importance of free radical chemistry for a variety of biological events, including ageing and inflammation, has attracted considerable interest in understanding the related mechanistic steps at the molecular level. Modelling the free radical chemical reactivity of biological systems is an important research area. When studying free-radical-based chemical mechanisms, biomimetic chemistry and the design of established biomimetic models come into play to perform experiments in a controlled environment, suitably designed to be a similar as possible to cellular conditions. This Special Issue provides readers with a wide overview of biomimetic radical chemistry, where molecular mechanisms have been defined and molecular libraries of products are developed to be used as traces for the discoveries of some relevant biological processes. Several subjects are presented, with five articles and five reviews written by specialists in the fields of DNA, proteins, lipids, biotechnological applications and bioinspired synthesis, with “free radicals” as the common denominator.
    Keywords: guanine ; guanyl radical ; tautomerism ; guanine radical cation ; oligonucleotides ; DNA ; G-quadruplex ; time-resolved spectroscopies ; reactive oxygen species (ROS) ; oxidation ; catalase mimics ; peroxide ; diiron-peroxo complexes ; structure/activity ; kinetic studies ; biomimetic chemistry ; cysteine ; ketone reduction ; free radicals ; pulse radiolysis ; kinetics ; DNA oxidation ; DNA hole transfer ; molecular dynamics ; quantum dynamics ; electron transfer ; charge transfer ; quantum coherence ; chemiluminescence ; reaction mechanisms ; singlet oxygen ; reactive oxygen species ; light emission ; crosslink ; dimerization ; protein oxidation ; radicals ; di-tyrosine ; di-tryptophan ; disulfides ; thiols ; aggregation ; proteomics ; mass spectrometry ; collagen ; riboflavin ; hyaluronic acid ; EPR spectroscopy ; keratoconus ; STEM ; DNA biosensor ; chemical nucleases ; DNA-drug interaction ; copper complexes ; metallodrugs ; MEP pathway ; antibiotics ; IspH ; LytB ; [4Fe-4S] cluster ; reductive dehydroxylation ; bioorganometallic intermediate ; inhibitors ; methionine ; neighboring group effect ; hydroxyl radical ; triplet state of carboxybenzophenone ; one-electron oxidants ; laser flash photolysis ; peptides ; proteins ; n/a ; bic Book Industry Communication::G Reference, information & interdisciplinary subjects::GP Research & information: general ; bic Book Industry Communication::P Mathematics & science::PN Chemistry ; bic Book Industry Communication::P Mathematics & science::PN Chemistry::PNK Inorganic chemistry
    Language: English
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  • 3
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2023-12-21
    Description: Development of strategies to assist the movement of poorly permeable molecules across biological barriers has long been the goal of drug delivery science. In the last three decades, there has been an exponential increase in advanced drug delivery systems that aim to address this issue. However, most proprietary delivery technologies that have progressed to clinical development are based on permeation enhancers (PEs) that have a history of safe use in man. This Special Issue entitled “Transmucosal Absorption Enhancers in the Drug Delivery Field” aims to present the current state-of-the-art in the application of PEs to improve drug absorption. Emphasis is placed on identification of novel permeation enhancers, mechanisms of barrier alteration, physicochemical properties of PEs that contribute to optimal enhancement action, new delivery models to assess PEs, studies assessing safety of PEs, approaches to assist translation of PEs into effective oral, nasal, ocular and vaginal dosage forms and combining PEs with other delivery strategies.
    Keywords: R5-920 ; RM1-950 ; chitosan ; intestinal epithelial cells ; ocular delivery ; amphiphilic polymers ; cornea ; tight junction modulator ; cyclodextrin ; permeability ; gemini surfactant ; transferrin ; compound 48/80 ; epithelial permeability ; cervicovaginal tumors ; nanoparticles ; confocal laser scanning microscopy ; safety ; formulation ; salcaprozate sodium ; intestinal absorption ; FITC-dextran ; curcumin ; block copolymers ; nasal vaccination ; whole leaf ; brush border ; ocular drug delivery ; vaccine adjuvant ; nanoparticle ; nasal delivery ; efflux ; permeation enhancers ; absorption enhancers ; nose to brain delivery ; small intestine ; epithelium ; CNS disorders ; absorption modifying excipients ; insulin ; absorption enhancer ; gel ; intestinal delivery ; thermogel system ; Caco-2 ; biocompatibility studies ; absorption enhancement ; man ; PN159 ; poorly absorbed drug ; tryptophan ; tight junction ; oral macromolecule delivery ; penetration enhancer ; intestinal permeation enhancers ; nanocrystals ; simvastatin ; nanomedicine ; enterocyte ; N-dodecyl-?-D-maltoside (DDM) ; cell-penetrating peptide ; quaternization ; KLAL ; nasal ; nasal permeability ; transmucosal drug delivery ; Caco-2 cells ; mast cell activator ; penetration enhancers ; drug delivery ; nose-to-brain ; bioenhancer ; polymeric micelles ; mucoadhesion ; cell-penetrating peptide (CPP) ; simulated intestinal fluid ; vaginal delivery ; nasal formulation ; pharmacokinetic interaction ; sodium caprate ; clinical trial ; transmucosal permeation ; drug absorption enhancer ; sugar-based surfactants ; nanocapsules ; imatinib ; teriparatide ; osteoporosis ; hydrophobization ; F-actin ; combined microsphere ; transepithelial electrical resistance ; oral delivery ; ocular conditions ; metabolism ; antimicrobial peptide ; permeation enhancer ; drug administration ; antiepileptic drug ; amino acid ; in vivo studies ; sodium cholate (NaC) ; epithelial transport ; preclinical ; nose to brain transport ; pharmacokinetics ; chitosan derivatives ; ophthalmology ; tight junctions ; sheep ; cationic functionalization ; GLP-1 ; pulmonary ; and liposome ; cytochrome P450 ; claudin ; P-glycoprotein ; in situ hydrogel ; mucoadhesiveness ; PTH 1-34 ; Aloe vera ; oral peptides ; bic Book Industry Communication::M Medicine
    Language: English
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  • 4
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-03-27
    Description: As an important tool of systems biology, proteomics has enabled a deep understanding of different plant processes and functions. Complemented with genomic data, computational tools, and improved sample preparation strategies, proteomics has an unprecedented opportunity to characterize plant proteoforms in high spatial and temporal resolution. This special issue of Plant Proteomic Research 4.0 captures the recent advancements in proteomics and addresses the current challenges of plant stress response and resilience in the ever-changing climate. It contains 12 articles, including three reviews and nine original research articles. The three reviews deal with pollen phosphoproteomics, starch biosynthesis-related proteins and posttranslational modifications (PTMs) in rice developing seeds, and PTMs of waxy proteins in rice grain. The nine research articles include three related to temperature, two on water stress, two on salt stress, one on fungal pathogen, and the last one on field-grown potato apoplast proteome. The articles reflect the current frontiers of plant proteomics, focusing on themes of environmental stresses, proteoforms/PTMs, crop species, and new development in data-independent acquisition mass spectrometry. They provide readers insights into current technologies, their utility in understanding plant growth and resilience, as well as directions of proteomics in the frontiers of systems biology and synthetic biology.
    Keywords: peptide markers ; Quercus ilex ; drought tolerance ; targeted post-acquisition proteomics ; plant pathogenesis responses ; quantitative proteomics ; data-independent acquisition ; Phytophthora infestans ; waxy ; amylose ; posttranslational modification ; GBSSI ; rice ; wheat ; salt stress ; physiological characteristics ; ER proteome ; label-free quantitation ; starch biosynthesis ; proteomics ; starch functionality ; cooking and eating quality ; Mesembryanthemum crystallinum ; McHB7 ; transcription factor ; late embryogenesis abundant ; Arabidopsis ; seed germination ; metabolomics ; heat-stable proteome ; dehydrins ; LEA transcripts ; intrinsically disordered proteins ; floral thermogenesis ; Nelumbo nucifera ; DIA-based quantitative proteomics ; time series analysis ; protein-protein interaction network ; WGCNA ; mutant soybean ; flooding ; glycoprotein folding ; fermentation ; cell death ; rice endosperm ; phosphorylation ; high temperature ; sucrose and starch metabolism ; ABPP ; apoplast ; serine hydrolases ; β-glycosidases ; potato ; field-omics ; phosphoproteomics ; pollen tube ; male gametophyte ; root hair ; signal transduction ; kinase motif ; n/a ; thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
    Language: English
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  • 5
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2023-04-05
    Description: Processing and Conversion of Oil and Gas: Modeling, Control, Simulation, and Optimization describes the core of the activity of petrochemical engineers, process controller engineers, industrial engineers, energy engineers, and researchers in the oil and gas field. This reprint explores the modeling, control, simulation, and optimization of new and revamped petrochemical processes using proven software. Thus, it offers novel illustrative examples, prospective applications, and solutions to improve these processes. This reprint aims to combine theoretical principles with examples modeled by commonly used simulation software employing steady-state or dynamic process simulation. Furthermore, applying numerical methods and optimization at both the theoretical and practical levels is within the scope of this reprint.
    Keywords: jet stability ; swirl ; twist ; dominant mode ; Brassica Napus ; fatty acid methyl esters ; 2-Ethyl-2-hydroxymethyl-1,3-propanediol ; viscosity ; batch reactor ; kinetics ; self-excited oscillation pulse jet ; nozzle ; large eddy simulation ; peak velocity ; cavitation number ; coal tar ; wash oil ; nitrogen-containing compounds ; indole ; formamide equilibrium extraction ; price bubbles ; bubble length ; petroleum products ; GSADF ; Pakistan ; pipeline safety ; risk classification ; pipeline failure ; fuzzy analytic hierarchy process ; pipeline risk assessment ; shale gas pipelines ; pressure gradient ; gas–liquid two-phase flow ; flow patterns ; Generalized Additive Model ; dimensionless numbers ; discrete element method ; optimal design ; simulation analysis ; anti-corrosion pill particles ; butyl acetate ; acetic acid ; n-butanol ; esterification ; membrane reactor ; reactive distillation ; amberlyst-15 catalyst ; energy efficiency ; economic evaluation ; methyl isobutyl ketone (MIBK) ; acetone self-condensation ; selective hydrogenation ; process development ; heat integration ; economic analysis ; nano-Pd/nano-ZnCr2O4 catalyst ; dimethyl carbonate ; dimethyl oxalate ; oxidative carbonylation ; azeotropic distillation ; profitability analysis ; n/a ; bic Book Industry Communication::T Technology, engineering, agriculture::TB Technology: general issues ; bic Book Industry Communication::T Technology, engineering, agriculture::TB Technology: general issues::TBX History of engineering & technology
    Language: English
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  • 6
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Numerous efforts have been devoted to using biomass as a feedstock for the production of bio-based materials, biochemicals, and biofuels that reduce greenhouse gas emissions and dependence on conventional fossil resources. Conversion strategies for the production of platform chemicals, building blocks, fine chemicals, and biofuels include a wide range of processes such as chemical and mechanical pretreatment for improved carbohydrate production, fractionation of biomass into carbohydrates and lignin and their further conversions, microbial and enzymatic conversion of biomass into valuable products, and direct catalytic conversion of biomass or its components into chemicals and fuels. This Special Issue introduces recent innovative research results in the area of bioenergy and value-added chemicals from various feedstocks through chemical and biological catalytic processes.
    Keywords: biomass ; xylan ; lignin ; cellulose ; pretreatment ; solid superacid catalyst ; sulfated tin(IV) oxide ; α-pinene partial coupling ; renewable high-density fuel ; biofuel ; biorefinery ; sugar-decomposed ; enzymatic hydrolysis ; waste biomass ; kinetics ; biomass pre-treatment ; green diesel ; renewable diesel ; Ni catalyst ; hydrodeoxygenation ; Cu-promotion effect ; catalysts ; solvents ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 7
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Adsorption is a well-established operation used for water decontamination and the remediation of industrial effluents. It is also recognized as a key technology for recovering substances of economic interest or those at risk of scarcity. The new sustainability paradigm of the circular economy and the current context of promoting the efficient use of natural resources, water and energy have been motivating the search for eco-friendly adsorbents for water and wastewater treatment and resource recovery. This Special Issue compiles 21 papers (17 research articles and 4 reviews), addressing the removal of heavy metals, toxic metalloids, precious metals and organics from aqueous solution, using a wide variety of adsorbents derived from natural and waste materials.
    Keywords: activated carbon ; modification ; surfactant ; adsorption ; methylene blue ; ions effect ; anionic dye ; cetyltrimethylammonium bromide ; sepiolite ; two-step modification ; electroplating sludge ; hydrothermal process ; heavy metal ; electroplating wastewater ; upcycling ; biochar ; thiourea ; cadmium pollution ; adsorption characteristics ; water treatment ; manganese ; iron ; banana peel ; pre-treatment ; phosphoric acid ; human hair ; kinetics ; isotherms ; biosorption ; algae ; bacteria ; biosorbent ; pharmaceutical waste ; complex nickel-aluminum-zirconium hydroxide ; arsenic ion ; different fractions ; Hg2+ ; characterization ; adsorption mechanism ; bisphenol A ; equilibrium ; heavy metals ; K-type zeolite ; fly ash ; lead ; immobilization ; Pb2+ removal ; sorption ; precipitation ; waste recycling ; removal mechanisms ; solid-to-water ratio ; microcystin ; separation ; water quality ; cyanobacteria ; algal bloom ; phenols ; polycyclic aromatic hydrocarbons ; wastewater ; precious metals ; hydrometallurgical processing ; selectivity ; pine bark ; olive mill wastewater ; carbon nanotubes ; polydimethilsiloxane ; waste treatment ; phenolic compounds ; resources recovery ; dyes removal ; wastewater treatment ; agrowaste biomass ; diclofenac removal ; advanced oxidation treatments ; low-cost sorbents ; nano zerovalent iron ; granular activated carbon ; organoselenium ; water ; treatment ; cadmium ; cellulose nanofibrils ; iron nanoparticles ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TQ Environmental science, engineering and technology
    Language: English
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  • 8
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2023-04-05
    Description: Model-informed precision dosing (MIPD) is an advanced quantitative approach focusing on individualized treatment optimization. MIPD integrates mathematical models of drugs and diseases combined with individual patient characteristics (e.g., genotype, anthropometric factors, and organ function). MIPD has been highlighted as a useful tool for drug dosage selection in both the drug development process and clinical practice and it is a rapidly growing discipline that is supported by the main drug regulatory agencies. Despite the potential benefits of this methodology toward personalized medicine, its application is still limited. The Special Issue presented here includes several PKPD and PBPK models focused on improving the current state of art regarding the PK behaviour of different drugs with the aim of improving the efficacy/safety balance of these treatments and their clinical outcome; the Special Issue is intended to be of particular interest for clinical pharmacologists, pharmacometricians, and specific clinicians who routinely use the considered drugs.
    Keywords: model-informed precision dosing (MIPD) ; efficacy PKPD indexes ; pharmacokinetics ; pharmacodynamics ; PKPD modeling and simulation ; dosing algorithms ; nomograms ; bic Book Industry Communication::M Medicine ; bic Book Industry Communication::K Economics, finance, business & management::KN Industry & industrial studies::KND Manufacturing industries::KNDP Pharmaceutical industries
    Language: English
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  • 9
    Publication Date: 2024-04-05
    Description: The onset of flowering is an important step during the lifetime of a flowering plant. During the past two decades, there has been enormous progress in our understanding of how internal and external (environmental) cues control the transition to reproductive growth in plants. Many flowering time regulators have been identified from the model plant Arabidopsis thaliana. Most of them are assembled in regulatory pathways, which converge to central integrators which trigger the transition of the vegetative into an inflorescence meristem. For crop cultivation, the time of flowering is of upmost importance, because it determines yield. Phenotypic variation for this trait is largely controlled by genes, which were often modified during domestication or crop improvement. Understanding the genetic basis of flowering time regulation offers new opportunities for selection in plant breeding and for genome editing and genetic modification of crop species.
    Keywords: QH426-470 ; QK1-989 ; Q1-390 ; crop plants ; Phenological development ; Arabidopsis ; floral transition ; Prunus ; barley ; wheat ; rice ; Tomato ; BEET ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences::PSA Life sciences: general issues::PSAK Genetics (non-medical)
    Language: English
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  • 10
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-03-28
    Description: It is widely believed that a large proportion of greenhouse gas emissions originated anthropogenically from the use of fossil fuels with additional contributions coming from manufactured materials, deforestation, soil erosion, and agriculture (including livestock). The global society actively supports measures to create a flexible and low-carbon energy economy to attenuate climate change and its devastating environmental consequences. In this Special Issue, the recent advancements in the next-generation thermochemical conversion processes for solid fuels and renewable energies (e.g., the operational flexibility of co-combustion of biomass and lignite, integrated solar combined cycle power plants, and advanced gasification systems such as the sorption-enhanced gasification and the chemical looping gasification) were shown.
    Keywords: hydrochar ; hydrothermal carbonization ; biogas upgrading ; CO2 capture ; pressure swing adsorption ; gasification ; kinetic model ; conversion model ; reaction model ; low-rank coal ; tar absorption ; process simulation ; validation study ; sensitivity analyses ; lignite ; lignite gasification ; fluidized-bed gasifier ; olivine ; solar cooling ; solar cooling system ; TRNSYS ; absorption chiller ; performance and analysis ; solar energy ; chemical looping ; biomass gasification ; process control ; CO2 absorption ; experimental study ; energy analysis ; exergy analysis ; CSP ; PTC ; ISCC ; power plant ; CFB combustion ; operational flexibility ; load transients ; fluctuating electricity generation ; renewables ; one-dimensional SEG model ; dual fluidized bed ; sorbent deactivation ; hydrodynamics ; kinetics ; fuel feeding rate ; biomass ; thermochemical conversion technologies ; combustion ; carbon capture and storage/utilization ; solar-driven air-conditioning ; integrated solar combined cycle ; energy and exergy analyses ; thermodynamic modeling ; dynamic process simulation ; thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
    Language: English
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