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  • 1
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Unconventional reservoirs are usually complex and highly heterogeneous, such as shale, coal, and tight sandstone reservoirs. The strong physical and chemical interactions between fluids and pore surfaces lead to the inapplicability of conventional approaches for characterizing fluid flow in these low-porosity and ultralow-permeability reservoir systems. Therefore, new theories and techniques are urgently needed to characterize petrophysical properties, fluid transport, and their relationships at multiple scales for improving production efficiency from unconventional reservoirs. This book presents fundamental innovations gathered from 21 recent works on novel applications of new techniques and theories in unconventional reservoirs, covering the fields of petrophysical characterization, hydraulic fracturing, fluid transport physics, enhanced oil recovery, and geothermal energy. Clearly, the research covered in this book is helpful to understand and master the latest techniques and theories for unconventional reservoirs, which have important practical significance for the economic and effective development of unconventional oil and gas resources.
    Keywords: TA1-2040 ; T1-995 ; shale gas ; permeability ; prediction by NMR logs ; matrix–fracture interaction ; faults ; remaining oil distributions ; unconventional reservoirs ; coal deformation ; reservoir depletion ; carbonate reservoir ; nanopore ; fracturing fluid ; pseudo-potential model ; shale reservoirs ; matrix-fracture interactions ; multi-scale fracture ; succession pseudo-steady state (SPSS) method ; fluid transport physics ; integrated methods ; chelating agent ; dissolved gas ; non-equilibrium permeability ; effective stress ; fractal ; fracture network ; spontaneous imbibition ; tight oil ; porous media ; 0-1 programming ; the average flow velocity ; geothermal water ; micro-fracture ; pore types ; pore network model ; petrophysical characterization ; nitrogen adsorption ; analysis of influencing factors ; mudstone ; rheology ; velocity profile ; shale permeability ; flow resistance ; global effect ; tight sandstones ; fractal dimension ; contact angle ; temperature-resistance ; fractured well transient productivity ; reservoir classifications ; deep circulation groundwater ; viscosity ; NMR ; fractional diffusion ; lattice Boltzmann method ; multiporosity and multiscale ; fractal geometry ; imbibition front ; productivity contribution degree of multimedium ; wetting angle ; pH of formation water ; enhanced oil recovery ; isotopes ; tight sandstone ; fracture diversion ; shale ; SRV-fractured horizontal well ; low-salinity water flooding ; shale gas reservoir ; tight reservoirs ; fracture continuum method ; tight oil reservoir ; Lucaogou Formation ; hydraulic fracturing ; clean fracturing fluid ; recovery factor ; flow regimes ; local effect ; complex fracture network ; pore structure ; gas adsorption capacity ; polymer ; non-linear flow ; conformable derivative ; production simulation ; analytical model ; enhanced geothermal system ; multi-scale flow ; experimental evaluation ; extended finite element method ; fluid-solid interaction ; groundwater flow ; well-placement optimization ; thickener ; imbibition recovery ; equilibrium permeability ; slip length ; large density ratio ; clay mineral composition ; finite volume method ; volume fracturing ; influential factors ; sulfonate gemini surfactant ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
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  • 2
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: In this Special Issue, we aim to represent the vibrant state of protein structure studies at the end of 2021. Recent decades have brought significant changes to the protein structure research field. Thanks to the genome projects and advances in structure determination methods, the number of solved protein structures has increased significantly. Protein structure research is experiencing a new renaissance, and in 2020 the number of deposited structures in the PDB database reached a new record. An assortment of many new frontiers are presented in this collection. A single Special Issue cannot give a comprehensive overview of a large field such as proteins science, but we aim to give a broad overview of current research.
    Keywords: configurational entropy ; force fields ; intrinsically disordered proteins ; protein folding ; NMR ; high hydrostatic pressure ; thermodynamic stability ; α-helical bundle ; Li-Fraumeni syndrome ; hereditary breast cancer ; germline TP53 missense variants ; quantitative prediction model ; protein conformation ; protein–protein interactions ; protein–protein binding ; protein–protein complex ; coarse-grained modeling ; multiscale modeling ; UFM1 ; UBA5 ; UFC1 ; protein-protein interactions ; complex structure ; oxidative stress ; Nrf2 ; Keap1 ; nuclear magnetic resonance spectroscopy ; hydrogen/deuterium exchange ; mass spectrometry ; circular dichroism ; intrinsically disordered ; bifidobacteria ; fucosidases ; glycosyl hydrolases ; conserved domains ; human milk ; analytical ultracentrifugation ; CO2 concentrating mechanism ; diffusion-ordered NMR spectroscopy ; electrospray ionization mass spectrometry ; homotetramer ; manganese ; metalloprotein ; photosynthesis ; small-angle X-ray scattering ; C1q ; calcium binding proteins ; genetic variation ; otoconia ; otolin-1 ; OTOL1 ; site-directed mutagenesis ; thermal shift assay ; B.1.1.7 ; B.1.617.2 ; COVID-19 ; E484Q ; T478K and L452R mutation ; N501Y mutation ; spike protein ; tetrabromobisphenol A ; tetrabromobisphenol S ; erythrocyte membrane ; retardants ; erythrocytes ; protein–ligand interactions ; protein dynamics ; FK506-binding protein ; FKBP12 ; FKBP51 ; oxidative folding ; glutathionylation ; nitrosylation ; cysteine reactivity ; ribosomal exit tunnel ; transient complex ; glutathione ; phosphorylation ; transmembrane proteins ; saturation mutagenesis ; deep sequencing ; residue packing ; deep learning ; convolutional neural network ; bidirectional long-short term memory ; protein ; prediction ; contact ; distance ; alphafold ; ProSPr ; CASP ; dataset ; retrainable ; mutual synergetic folding ; solvent accessibility of peptide bonds ; inter-subunit interaction ; solvent-accessible surface area ; Shannon information entropy ; amino acid composition ; glucose ; GlcNAc ; galactose ; GalNAc ; mannose ; xylose ; fucose ; Neu5Ac ; glucuronate ; iduronate ; tetrahydropyran ; entropy ; free energy ; free energy landscape ; energy-dependent protein folding ; co-translational protein folding ; molecular chaperones ; physical model of protein folding ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TC Biochemical engineering::TCB Biotechnology
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  • 3
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This collection of articles focuses on different aspects of the study of organic conductors. Recent progress in both theoretical and experimental studies is covered in this Special Issue. Papers on a wide variety of studies are categorized into representative topics of chemistry and physics. Besides classical studies on the crystalline organic conductors, applied studies on semiconducting thin films and a number of new topics shared with inorganic materials are also discussed.
    Keywords: organic π-radical ; molecular conductor ; phthalocyanine ; three-dimensional network ; three-dimensional electronic system ; organic conductors ; bis(ethylenedithio)tetrathiafulvalene (BEDT-TTF) ; bis(ethylenediseleno)tetrathiafulvalene (BEST) ; bis(ethylenedithio)tetraselenafulvalene (BETS) ; electrical resistivity ; magnetic susceptibility ; X-ray analysis ; charge-ordered state ; quantum chemical calculations ; Madelung energy ; magnetic property ; reversible transformation ; spin ladder ; nodal line semimetal ; single-component molecular conductor ; conductivity ; DOS ; tight-binding model ; interacting electrons in one dimension ; electronic and lattice instabilities ; renormalization group method ; X-ray diffraction ; single crystal ; electron density ; molecular orbital ; single-component molecular conductors ; extended-TTF dithiolate ligands ; gold dithiolate complexes ; (BETS)2Fe1−xGaxCl4 ; π-d interaction ; NMR ; charge glass ; heat capacity ; electric current ; electric voltage ; Boson peak ; chirality ; tetrathiafulvalene ; crystal structures ; band structure calculations ; hydrogen bonding ; charge-transfer salts ; (TMTTF)2X ; deuteration ; anions ; charge transport ; tunnel junction ; MOCVD ; quantum well ; co-doping ; solar cells ; (TMTSF)8(I3)5 ; (TMTSF)5(I3)2 ; (TMTSF)4(I3)4·THF ; organic conductor ; crystal structure ; high pressure ; DFT ; MP2 ; organic superconductors ; Beechgard salts ; Maxwell-Garnett approximation ; high-Tc ; pressure effect ; Dirac electron system ; resistivity ; magnetoresistance ; synchrotron X-ray diffraction ; band calculation ; correlated electron materials ; layered organic conductor ; unconventional superconductivity ; vortex dynamics ; d-wave pairing symmetry ; superconducting gap structure ; magnetic field ; flux-flow resistivity ; charge-ordered insulator ; electric double layer transistor ; organic field-effect transistor ; π–d system ; Mott insulator ; strongly correlated electron system ; multiferroic ; dielectric ; photoconductor ; organic semiconductors ; molecular orbitals ; pyroelectricity ; temperature modulation ; molecular ferroelectrics ; radiative temperature control ; thermal diffusion model ; lithium niobate ; first-principles calculation ; density-functional theory ; charge ordering ; hybrid functional ; electronic structure ; nickel–dithiolene complex ; cycloalkane substituent ; crystalline organic charge-transfer complexes ; disordered systems ; overlap integrals ; extended Hückel approximation ; Dirac electrons ; zero-gap semiconductors ; merging of Dirac cones ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TD Industrial chemistry and manufacturing technologies::TDC Industrial chemistry and chemical engineering
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  • 4
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    KIT Scientific Publishing | KIT Scientific Publishing
    Publication Date: 2024-04-11
    Description: This work offers three solutions tailored to specific applications to overcome NMR challenges in the micro-domain. As the first sub-topic of this work, different potential electrode designs, compatible with NMR technique, are suggested and experimentally evaluated. As the second focus point, this work tackles multinuclear detection challenges. In parallel, a low-cost, broadband insert is discussed to enhance the sensitivity of standard NMR coils when a small sample volume is available.
    Keywords: Broadband ; NMR sensor ; Micro-coil ; MEMS ; MRI ; NMR ; Kernresonanzspektroskopie ; Magnet-Resonanz-Tomographie ; Mikrospule ; Sensor ; Breitband ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials
    Language: English
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  • 5
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Renewable energy and clean storage technologies are at the forefront of the world’s fight against climate change, including the UN-led move towards a carbon-neutral society. Because these complex technologies require more ‘critical’ metals and elements than fossil fuel-based technologies, the demands for raw materials in their manufacturing are skyrocketing and are projected to continue to increase into the foreseeable future.With ore grades on a steep decline, huge amounts of low-grade ores will have to be mined and processed to satisfy the world’s current and future demands for ‘critical’ metals and elements. Expansion of mining and mineral processing operations would mean more mining-related wastes—tailings, waste rocks and acid mine drainage (AMD)—notorious for their devastating and long-term destructive impacts on the environment. This Special Issue explored repurposing/reprocessing of tailings and AMD treatment cost reduction as promising alternatives to manage mine wastes more sustainably. It also includes articles on the critical roles of redox conditions and galvanic interactions on mine waste stability, hydrogeochemical controls on waste rock weathering, and climate change impacts on AMD formation in closed mines.
    Keywords: acid mine drainage ; life cycle simulation ; global warming ; earth system model ; RCP2.6 ; RCP8.5 ; copper recovery ; microbial fuel cell ; electricity generation ; microbial community ; secondary materials ; management ; absorption ; precipitation ; mine waste ; drainage ; water quality ; geochemistry ; hydrogeology ; modelling ; contamination ; batch experiments ; lead ; zinc ; immobilization ; remediation ; Kabwe ; Zambia ; abandoned mine ; groundwater flow analysis ; backfilling ; copper slag reprocessing tailings ; geopolymer ; microstructure ; NMR ; iron hydroxide ; iron oxyhydroxide ; nickel ore ; fly ash ; concrete aggregate ; calcite ; goethite ; hematite ; magnetite ; quartz ; scheelite ; fluorite ; depressant ; ferrous sulfate ; selective flotation ; mine water treatment ; milk of lime ; sodium sulfide ; sodium hydroxide ; arsenic-containing tailings ; copper mine tailings ; magnetic susceptibility ; sampling ; metals ; phytoremediation ; heavy metals ; mine tailings ; endemic species ; native species ; alkaline flotation wastewater ; waste rock ; mining waste material ; coal gangue ; red mud ; prevention ; dynamic leaching ; laterite ; alkali-activated ; alumino-silicates ; I-optimal ; response surface methodology ; optimization ; Acidithiobacillus ; biomining ; comparative genomics ; gold processing effluents ; Fe-Al bimetallic particles ; electrochemical reduction ; Cu-sulfide ore ; Nussir ; Ulveryggen ; Røros VMS deposit ; leaching tests ; submarine weathering conditions ; on-land weathering conditions ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 6
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This Issue focuses on processes related to the research of natural products dereived from plants (Bauhinia forficata, Placolobium vietnamense, Tamarix chinensis, Peperomia obtusifolia, Cymbidium ensifolium, Dendrobium delacourii, Turnera subulata, Eruca sativa, Miconia chamissois and Persea americana) and microorganisms (Streptomyces tricolor, Lacticaseibacillus rhamnosus, Gonatophragmium triuniae, Penicillium bissettii and P. glabrum) as well as spectroscopic data from a significant number of natural products, 13C-NMR data from 504 pentacyclic triterpenoids isolated from plants of the Celastraceae family and UV, IR, 1H and 13C-NMR data of the 192 chromones.
    Keywords: chromone glycosides ; chemical structure ; activity ; benzo-γ-pyrone ; 13C-NMR data ; antimicrobial ; penicillium ; metabolite ; fungi ; natural products ; Gonatophragmium triuniae ; pigments ; bioactivity ; dyeing ; chemical characterization ; biosynthesis ; macrolides ; peptides ; polyketides ; secondary metabolites ; Streptomyces ; structure elucidation ; terpenoids ; Celastraceae ; triterpenes ; quinonemethide ; 13C-NMR ; plant ; natural compounds ; chromatography ; anti-inflammatory ; Miconia chamissois Naudin ; seasonality ; standardized extract ; Cerrado ; Dendrobium delacourii ; Orchidaceae ; α-glucosidase ; anti-adipogenic ; densifloral B ; phoyunnanin E ; phoyunnanin C ; glucosinolate ; glucosylated flavonols ; rocket ; validation ; NMR ; UHPLC/ESI/QTOF ; hyperuricaemia ; avocado biomass ; Alzheimer’s disease ; neuroprotective effect ; avocado seed ; avocado peel ; paper spray mass spectrometry ; Lacticaseibacillus rhamnosus ; yak yoghurt ; antibacterial activity ; purification ; bacteriocin ; Cymbidium ensifolium ; dihydrophenanthrene ; dihydrophenanthrenequinone ; anticancer ; Streptomyces tricolor ; siderophore ; iron-deficiency-induced anemia ; Piperaceae ; Peperomia obtusifolia ; isolation ; cytotoxicity ; antibacterial ; Tamarix chinensis Lour. ; flavonoid substituted polysaccharides ; structural characterization ; anticomplement activity ; quercetin ; Placolobium vietnamense ; placovinones A–D ; benzil and isoflavone derivatives ; NO production inhibition ; “pata-de-vaca” ; phytochemical profile ; bioactive compounds ; antioxidant capacity ; α-amylase inhibition ; SPME technique ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TC Biochemical engineering::TCB Biotechnology
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  • 7
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: "Functional Nanomaterials for Healthcare" is a collection showcasing cutting-edge research in advanced nanomaterials for healthcare applications. As healthcare evolves through science and innovation, these articles provide the latest insights into nanomaterial applications. Researchers have tailored nanomaterials for improved diagnostics, medical imaging, precise drug delivery, tissue engineering, and groundbreaking theranostics. This compilation, written by experts, explores advanced nanomaterial synthesis, functionalization, characterization, and diverse medical uses. Dive into this significant contribution to the field, offering a comprehensive overview of the latest innovations in healthcare nanomaterials for researchers, students, and healthcare professionals.
    Keywords: mitochondrial targeting ; gold nanoparticles ; cancer chemotherapy ; drug delivery ; betulinic acid ; laminin receptor ; zinc oxide nanoparticles ; organic surface deposit ; cytotoxicity assay ; photocatalytic activity ; ROS generation ; toxicity mechanism ; MDA-MB-231 ; HT-29 ; ebselen ; cerium ; ERK1/2 ; STAT-6 ; IL-4 ; STAT-1 ; antimicrobial activity ; carbon nanotubes ; human SP-D ; cancer cells ; apoptosis ; immunotherapy ; Alhydrogel® ; silica nanoparticles ; Bet v 1 ; BM4 ; SiO2 ; allergen ; structural integrity ; alum ; nanoparticles ; antimicrobial resistance ; bacteria ; resistance mechanism ; hyaluronic acid ; adipic acid dihydrazide ; silver nanoparticles ; polymer molecular weight ; antimicrobial ; SARS-CoV-2 ; protein nanoparticles ; vaccines ; nanovaccine ; nanomedicine ; protein-based nanotechnology ; graphene oxide ; biopolymer blends ; biomineralization ; ectopic bone formation ; osteoinduction ; ex vivo analysis ; nanotechnology ; cosmetic ; chitosan ; essential oils ; preservative agents ; metal-organic framework ; cardiovascular diseases ; graphene ; G+ ; PLA ; Grafylon ; scaffold ; neuronal differentiation ; stem cells ; 3D printing ; regenerative medicine ; Curcumin ; Paclitaxel ; triple-negative breast cancer cell lines (4T1 and MDA MB 231) ; metastasis ; capsaicin ; human ; pruritogens ; desensitization ; itch ; polymers ; compartments ; biomedical ; mesoporous silica nanoparticles ; MSN ; porous materials ; functionalisation ; NMR ; HR-MAS NMR ; surface ; COVID-19 ; cationic surfactants ; virucidal activity ; quaternary ammonium compounds ; disinfectants ; nanoprophylaxis ; viral inhibition ; human papillomavirus ; HPV ; pseudovirus ; viral infection inhibition ; nanocomplex formation ; photodynamic therapy ; photosensitizer ; upconversion nanoparticles ; graphene quantum dots ; reactive oxygen species ; green synthesis ; carbon nanomaterials ; biomass ; sustainability ; nanomaterials ; machine learning ; antioxidant ; biopolymers ; therapeutic substances ; incorporation ; biocompatibility ; healthcare ; biomedical applications ; surface characterization ; quantum yield ; label-free detection ; zinc oxide nanostructure ; surface functionalization ; mesoporous polydopamine ; ferric ions ; doxorubicin (DOX) ; hyaluronic acid target modification ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TC Biochemical engineering::TCB Biotechnology
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  • 8
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-09
    Description: This book focuses on the design of polymeric delivery systems for biomedical and nanomedicine applications as well as on understanding how such biomaterials interact in the physiological environment. The reader will find an encompassing view on the state-of-the-art of polymeric carriers, showing how current research deals with new stimuli-responsive systems for cancer therapies and biomedical challenges, namely overcoming the skin barrier. The published papers cover topics ranging from novel production methods and insights on hybrid polymers to applications as diverse as nanoparticles, hydrogels and microneedles for antifungal skin therapy, peptide and siRNA delivery, enhanced skin absorption of bioactive molecules, and anticancer therapy. The book comprises one review paper and nine research papers.
    Keywords: osteoarthritis ; monosodium iodoacetate ; p47phox ; PLGA nanoparticles ; reactive oxygen species ; full factorial design ; optimization ; metronidazole ; nanocomposites ; sodium alginate ; chitosan ; PLGA ; hybrid polymers ; chitosan-PLGA polymer ; NMR ; DSC ; FT-IR ; covalent drug conjugation ; therapeutic nanodevice ; polymeric nanoparticles ; cancer therapy ; controlled drug delivery ; redox responsive PEG-block-PLA ; nanocarriers ; disulfide bond ; controlled release ; retinol ; nanosponge ; hydrogel ; Box–Behnken design ; pharmacokinetic ; terbinafine hydrogel ; niacinamide ; polyethene glycol (PEG) 400 ; solvent ; dermal delivery ; finite dose ; porcine skin ; dissolving microneedles ; multiple sclerosis ; PLP ; transdermal delivery ; tyrosol ; nanoparticles ; Design of Experiment (DoE) ; β cyclodextrin ; DNA binding ; glyconanoparticles ; immunotherapy ; infectious diseases ; mannose receptors ; nutraceuticals ; n/a ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
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  • 9
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: The metabolomics approach, defined as the study of all endogenously-produced low-molecular-weight compounds, appeared as a promising strategy to define new cancer biomarkers. Information obtained from metabolomic data can help to highlight disrupted cellular pathways and, consequently, contribute to the development of new-targeted therapies and the optimization of therapeutics. Therefore, metabolomic research may be more clinically translatable than other omics approaches, since metabolites are closely related to the phenotype and the metabolome is sensitive to many factors. Metabolomics seems promising to identify key metabolic pathways characterizing features of pathological and physiological states. Thus, knowing that tumor metabolism markedly differs from the metabolism of normal cells, the use of metabolomics is ideally suited for biomarker research. Some works have already focused on the application of metabolomic approaches to different cancers, namely lung, breast and liver, using urine, exhaled breath and blood. In this Special Issue we contribute to a more complete understanding of cancer disease using metabolomics approaches.
    Keywords: QH301-705.5 ; QD415-436 ; Q1-390 ; cell transporters ; pharmacodynamics ; cell growth ; in vitro study ; metabolomic signatures ; endometabolome ; lung cancer ; metabolomics ; chemometric methods ; bladder cancer ; mTOR ; metabolite profiling ; metabolic pathways ; hepatocellular carcinoma ; glutamate ; senescence MCF7 ; breath analysis ; bio actives ; biomarker ; gas chromatography–mass spectrometry (GC–MS) ; GC-MS ; lung ; omics ; nutraceuticals ; glutaminase ; metabolism ; acylcarnitines ; Erwinaze ; Kidrolase ; glutathione ; targeted metabolomics ; apoptosis ; SLC1A5 ; essential amino acids ; cancer progression ; ASCT2 ; HR MAS ; alanine ; analytical platforms ; volatile organic compound ; glutaminolysis ; isotope tracing analysis ; asparaginase ; vitamin E ; breast cancer ; prognosis ; early diagnosis ; tocotrienols ; NMR ; prostate cancer ; in vitro ; cancer ; MDA-MB-231 ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
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  • 10
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: This book is a printed edition of the Special Issue Looking Forward to the Future of Heparin: New Sources, Developments and Applications that was published in Molecules
    Keywords: QD1-999 ; Q1-390 ; alginate ; n/a ; edema ; Heparin Red ; solid lipid nanoparticles ; Fe3O4·DA-BSA/HA ; dermatan sulfate ; sulfated alginate ; porcine heparin ; theranostics ; low-molecular-weight heparin ; Arixtra® ; biomaterials ; hepcidin ; ovarian cancer ; iron oxide nanoparticles ; heparin-induced thrombocytopenia ; bone morphogenetic protein (BMP) ; hyaluronic acid (HA) ; crude heparin ; platelets ; resistance ; sclerostin ; LMWH ; gremlin ; low molecular weight heparin (LMWH) ; low molecular weight glycosaminoglycans ; human plasma ; single crystal X-ray structure ; iron homeostasis ; noggin ; super paramagnetic iron oxide nanoparticles (SPION) ; manufacturing methods ; paclitaxel (PTX) ; brain injury ; bovine heparin ; inflammation ; qNMR ; antithrombin ; reference standard ; quantitative NMR ; enoxaparin ; danaparoid sodium ; NMR ; GDNF ; orthogonal multi-analytical methods ; ternary complex ; heparan sulphate ; serglycin ; bovine serum albumin (BSA) ; HSQC ; recombinant expression ; heparin ; heparin oligosaccharides ; functional assay ; BMP antagonists ; intestinal lymphatic absorption ; size exclusion chromatography ; heparin coating ; diagnosis ; bioreactor ; anemia ; proteoglycan ; heparin process ; PCA ; chemometric ; fluorescent probe ; pharmacopeia ; affinity chromatography ; component quantitative analysis ; Fondaparinux sodium ; perylene diimide dyes ; thrombin inhibition ; extended physicochemical characterization ; cisplatin ; glycosaminoglycans ; TGF-? ; chondroitin sulfate ; dalteparin ; sequence and compositional investigations ; molecular weight ; magnetic resonance imaging (MRI) ; industrial ; LC-MS ; iduronic acid conformation ; heparan sulfate ; growth and differentiation factor (GDF) ; assay ; subarachnoid hemorrhage ; thema EDItEUR::P Mathematics and Science::PN Chemistry
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