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peptides
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Journal of food biochemistry
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progress in neuro-psychopharmacology & biological psychiatry
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Peptides
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Bibliographies
[1]
The Application of Isoacyl Structural Motifs in Prodrug Design and Peptide Chemistry.
[2]
Using mobile technology to engage sexual and gender minorities in clinical research.
[3]
Discovery of peptide ligands targeting a specific ubiquitin-like domain-binding site in the deubiquitinase USP11.
[4]
Potential role of natural bioactive peptides for development of cosmeceutical skin products.
[5]
Recombinant Peptide Fusion Construction for Protein-templated catalytic palladium nanoparticles.
[6]
Discovery of Kynurenines Containing Oligopeptides as Potent Opioid Receptor Agonists.
[7]
Letter to the Editor Regarding "Increasing Frailty Predicts Worse Outcomes and Increased Complications Following Angiogram-Negative Subarachnoid Hemorrhages".
[8]
Prediction of Peptide Vascularization Inhibitory Activity in Tumor Tissue as a Possible Target for Cancer Treatment
[9]
Prediction of Peptide Vascularization Inhibitory Activity in Tumor Tissue as a Possible Target for Cancer Treatment
[10]
Insights into the Natural Defenses of a Coral Reef Fish Against Gill Ectoparasites: Integrated Metabolome and Microbiome Approach
[11]
quantum dots wide absorption pattern, photo stability and greater quantum yields provides a gate way to power full applications in nano medicine and nano biotechnology
[12]
peptides and food intake
[13]
synthesis of peptide radiopharmaceuticals for the therapy and diagnosis of tumor diseases
[14]
on the origin of sequence
[15]
action of a pancreatin and an aspergillus oryzae protease on whey proteins: correlation among the methods of analysis of the enzymatic hydrolysates
[16]
biostimulant action of protein hydrolysates: unraveling their effects on plant physiology and microbiome
[17]
transmembrane peptides as sensors of the membrane physical state
[18]
antitumor peptides from marine organisms
[19]
peptides’ role in autism with emphasis on exorphins
[20]
development of the hypothalamus
[21]
exploiting protected maleimides to modify oligonucleotides, peptides and peptide nucleic acids
[22]
ChemInform Abstract: Amino Acids and Peptides. Part 40. Synthesis of Ac-Tyr-Val-Ala-Asp-MCA Using Newly Developed Acetylating Reagent.
[23]
Quantitative urinary proteomics using stable isotope labelling by peptide dimethylation in patients with prostate cancer
[24]
A Late-Stage Synthetic Approach to Lanthionine-Containing Peptides via S-Alkylation on Cyclic Sulfamidates Promoted by Molecular Sieves.
[25]
Secondary Structure of Peptides. 3. 13C NMR Cross Polarization/Magic Angle Spinning Spectroscopic Characterization of Solid Polypeptides
[26]
Understanding the influence of guest-host interactions on the conformation of short peptides in a hydrophobic cavity: a computational study.
[27]
Retro analog concept: comparative study on physico-chemical and biological properties of selected antimicrobial peptides
[28]
Alzheimer's disease against peptides products of enzymatic cleavage APP protein: Biological, pathobiological and physico-chemical properties of fibrillating peptides
[29]
MRM–MS of marker peptides and their abundance as a tool for authentication of meat species and meat cuts in single-cut meat products
[30]
Identification and antimicrobial activity evaluation of three peptides from laba garlic and the related mechanism.
[31]
Supramolecular Assembly of C <inf>3</inf> -Peptides into Helical Fibers Stabilized through Dynamic Covalent Chemistry
[32]
Glycine Substitution Effects on the Supramolecular Morphology and Rigidity of Cell-Adhesive Amphiphilic Peptides.
[33]
Tailoring the Adsorption of ACE-inhibiting Peptides by Nitrogen Functionalization of Porous Carbons.
[34]
InverPep: A database of invertebrate antimicrobial peptides.
[35]
High Fischer ratio oligopeptides determination from Antartic krill: Preparation, peptides profiles, and in vitro antioxidant activity.
[36]
Egg-yolk protein by-product as a source of ACE-inhibitory peptides obtained with using unconventional proteinase from Asian pumpkin (Cucurbita ficifolia).
[37]
Hybridization and antibiotic synergism as a tool for reducing the cytotoxicity of antimicrobial peptides
[38]
Biofilm infections between Scylla and Charybdis: interplay of host antimicrobial peptides and antibiotics
[39]
Peptide consensus sequence determination for the enhancement of the antimicrobial activity and selectivity of antimicrobial peptides
[40]
Peptide-Protein Interaction Studies of Antimicrobial Peptides Targeting Middle East Respiratory Syndrome Coronavirus Spike Protein: An In Silico Approach
[41]
Hybridization and antibiotic synergism as a tool for reducing the cytotoxicity of antimicrobial peptides
[42]
Biofilm infections between Scylla and Charybdis: interplay of host antimicrobial peptides and antibiotics
[43]
Peptide consensus sequence determination for the enhancement of the antimicrobial activity and selectivity of antimicrobial peptides
[44]
Relationship between enzyme, peptides, amino acids, ion composition, and bitterness of the hydrolysates of Alaska pollock frame.
[45]
Administração oral de peptídios e proteínas: I. Estratégias gerais para aumento da biodisponibilidade oral Oral delivery system for peptides and proteins: I. Approaches to improve oral bioavailability
[46]
Hydrolysis of Methionine- and Histidine-Containing Peptides Promoted by Dinuclear Platinum(II) Complexes with Benzodiazines as Bridging Ligands: Influence of Ligand Structure on the Catalytic Ability of Platinum(II) Complexes
[47]
-Canonical Monte Carlo Sampling for Modeling the Linkage between Charge Regulation and Conformational Equilibria of Peptides.
[48]
Design of α-helical antimicrobial peptides with a high selectivity index.
[49]
The Utilization of Cell-Penetrating Peptides in the Intracellular Delivery of Viral Nanoparticles.
[50]
Analysis of hydrophobic and hydrophilic moments of short penetrating peptides for enhancing mitochondrial localization: prediction and validation.
[51]
Versatility of cell-penetrating peptides for intracellular delivery of siRNA.
[52]
Design and biological characterization of novel cell-penetrating peptides preferentially targeting cell nuclei and subnuclear regions.
[53]
Strategies for transitioning macrocyclic peptides to cell-permeable drug leads.
[54]
Modifications of natural peptides for nanoparticle and drug design.
[55]
When cationic cell-penetrating peptides meet hydrocarbons to enhance in-cell cargo delivery.
[56]
Cellular delivery of noncovalently-associated macromolecules by cell-penetrating peptides.
[57]
Bioinspired peptides as versatile nucleic acid delivery platforms.
[58]
The Utilization of Cell-Penetrating Peptides in the Intracellular Delivery of Viral Nanoparticles
[59]
Recent advances in the use of cell-penetrating peptides for medical and biological applications.
[60]
Increased Akt signaling in the fat body of Anopheles stephensi extends lifespan and increases lifetime fecundity through modulation of insulin-like peptides.
[61]
Examination of pain threshold and neuropeptides in patients with acute suicide risk
[62]
Correction to: Gene delivery into the plant mitochondria via organelle-specific peptides (Plant Biotechnology Reports, (2019), 13, 1, (11-23), 10.1007/s11816-018-0502-y)
[63]
Discovery and Study of Novel Antihypertensive Peptides Derived from Seeds.
[64]
Identification of Antimicrobial Peptides from the Microalgae <i>Tetraselmis suecica</i> (Kylin) Butcher and Bactericidal Activity Improvement
[65]
Anti-inflammatory effect and cellular uptake mechanism of peptides from common bean (Phaseolus vulga L.) milk and yogurts in caco-2 mono-A nd caco-2/EA.hy926 co-culture models
[66]
Short amylin receptor antagonist peptides improve memory deficits in Alzheimer’s disease mouse model
[67]
Additional band broadening of peptides in the first size-exclusion chromatographic dimension of an automated stop-flow two-dimensional high performance liquid chromatography.
[68]
Proteomic genotyping of fingermark donors with genetically variant peptides.
[69]
Discovery of HB-EGF binding peptides and their functional characterization in ovarian cancer cell lines
[70]
Ti<sup>4+</sup>-immobilized multilayer polysaccharide coated magnetic nanoparticles for highly selective enrichment of phosphopeptides
[71]
Layer-by-layer assembly of multilayer polysaccharide coated magnetic nanoparticles for the selective enrichment of glycopeptides
[72]
Comparative Structure-Activity Analysis of the Antimicrobial Activity, Cytotoxicity, and Mechanism of Action of the Fungal Cyclohexadepsipeptides Enniatins and Beauvericin.
[73]
Design, Synthesis, and Evaluation of Amphiphilic Cyclic and Linear Peptides Composed of Hydrophobic and Positively-Charged Amino Acids as Antibacterial Agents
[74]
A Tunable Nanoplatform of Nanogold Functionalised with Angiogenin Peptides for Anti-Angiogenic Therapy of Brain Tumours.
[75]
Design and Biological Evaluation of m-Xylene Thioether-stapled Short Helical Peptides Targeting the HIV-1 gp41 Hexameric Coiled-Coil Fusion Complex.
[76]
Expression profile of genes encoding allatoregulatory neuropeptides in females of the spider Parasteatoda tepidariorum (Araneae, Theridiidae).
[77]
Identification and Evaluation of Clinical Substrates of Organic Anion Transporting Polypeptides 1B1 and 1B3.
[78]
Metagenome Driven Discovery of Nonribosomal Peptides.
[79]
Erratum: Chemically-modified peptides targeting the PDZ domain of GIPC as a therapeutic approach for cancer (ACS Chemical Biology (2012) 7: 4 (770-779) DOI: 10.1021/cb200536r)
[80]
Salivary Levels of Antimicrobial Peptides in Chronic Periodontitis Patients with Type 2 Diabetes.
[81]
Investigations into mild electric foot shock stress-induced cognitive enhancement: possible role of angiotensin neuropeptides
[82]
Potential role of natural bioactive peptides for development of cosmeceutical skin products.
[83]
Antioxidant, anticancer and ACE-inhibitory activities of bioactive peptides from wheat germ protein hydrolysates
[84]
Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance.
[85]
Enzymatic Glycosylation of Triazole-Linked GlcNAc/Glc-Peptides: Synthesis, Stability and Anti-HIV Activity of Triazole-Linked HIV-1 gp41 Glycopeptide C34 Analogues
[86]
Peptides from chicken processing by-product inhibit DPP-IV and promote cellular glucose uptake: potential ingredients for T2D management.
[87]
Hybrid lipids, peptides, and lymphocytes: New era in type 1 diabetes research
[88]
Self-Assembly and Enzyme Responsiveness of Amphiphilic Linear-Dendritic Block Copolymers Based on Poly(-vinylpyrrolidone) and Dendritic Phenylalanyl-lysine Dipeptides.
[89]
Identification and molecular mechanism of antithrombotic peptides from oyster proteins released in simulated gastro-intestinal digestion.
[90]
Comparison of freeze vacuum drying and conventional drying methods in matrix-assisted laser desorption/ionization mass spectrometry analyses of peptides
[91]
Simultaneous quantification of the degree of hydrolysis, protein conversion rate and mean molar weight of peptides released in the course of enzymatic proteolysis
[92]
Identification, structure-activity relationship and in silico molecular docking analyses of five novel angiotensin I-converting enzyme (ACE)-inhibitory peptides from stone fish (Actinopyga lecanora) hydrolysates.
[93]
Antifungal Activities of Lipopeptides to Two Strains Possessing Different Tebuconazole Sensitivity.
[94]
Modern Approaches in the Identification and Quantification of Immunogenic Peptides in Cereals by LC-MS/MS.
[95]
Therapeutic administration of Tregitope-Human Albumin Fusion with Insulin Peptides to promote Antigen-Specific Adaptive Tolerance Induction.
[96]
Toward insights on determining factors for high activity in antimicrobial peptides via machine learning.
[97]
Design of short peptides to block BTLA/HVEM interactions for promoting anticancer T-cell responses.
[98]
Claudin-2 binding peptides, VPDSM and DSMKF, down-regulate claudin-2 expression and anticancer resistance in human lung adenocarcinoma A549 cells.
[99]
Purification of WAP domain-containing antimicrobial peptides from green tiger shrimp Peaneaus semisulcatus.
[100]
Marine antimicrobial peptides: Nature provides templates for the design of novel compounds against pathogenic bacteria
[101]
Antitumor and antimicrobial activity of some cyclic tetrapeptides and tripeptides derived from marine bacteria