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1.
Int J Mol Sci ; 25(10)2024 May 18.
Article in English | MEDLINE | ID: mdl-38791560

ABSTRACT

A new, eco-friendly process utilising the green solvent propylene carbonate (PC) has been developed to perform N-alkylation of N-, O- and/or S-containing heterocyclic compounds. PC in these reactions served as both the reagent and solvent. Importantly, no genotoxic alkyl halides were required. No auxiliary was necessary when using anhydrous PC. Product formation includes nucleophilic substitution with the concomitant loss of water and carbon dioxide. Substrates prepared, including the newly invented PROTAC drugs, are widely used.


Subject(s)
Heterocyclic Compounds , Propane , Alkylation , Heterocyclic Compounds/chemistry , Propane/chemistry , Propane/analogs & derivatives , Solvents/chemistry , Green Chemistry Technology/methods
2.
Cells ; 12(13)2023 06 23.
Article in English | MEDLINE | ID: mdl-37443733

ABSTRACT

Every cell biological textbook teaches us that the main role of the plasma membrane is to separate cells from their neighborhood to allow for a controlled composition of the intracellular space. The mostly hydrophobic nature of the cell membrane presents an impenetrable barrier for most hydrophilic molecules larger than 1 kDa. On the other hand, cell-penetrating peptides (CPPs) are capable of traversing this barrier without compromising membrane integrity, and they can do so on their own or coupled to cargos. Coupling biologically and medically relevant cargos to CPPs holds great promise of delivering membrane-impermeable drugs into cells. If the cargo is able to interact with certain cell types, uptake of the CPP-drug complex can be tailored to be cell-type-specific. Besides outlining the major membrane penetration pathways of CPPs, this review is aimed at deciphering how properties of the membrane influence the uptake mechanisms of CPPs. By summarizing an extensive body of experimental evidence, we argue that a more ordered, less flexible membrane structure, often present in the very diseases planned to be treated with CPPs, decreases their cellular uptake. These correlations are not only relevant for understanding the cellular biology of CPPs, but also for rationally improving their value in translational or clinical applications.


Subject(s)
Cell-Penetrating Peptides , Cell-Penetrating Peptides/pharmacology , Cell-Penetrating Peptides/chemistry , Biological Transport , Cell Membrane/metabolism , Hydrophobic and Hydrophilic Interactions , Lipids/analysis
3.
J Mass Spectrom ; 57(6): e4870, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35678338

ABSTRACT

Four fused nitrogen-containing ring systems were investigated by electrospray ionization-tandem mass spectrometry: Pyridazino-indoles, pyridazino-quinolines, a pyrimido-quinoline derivative and pyrimido-cinnolines. Fragmentation patterns of these compounds are discussed and compared. Several characteristic cross-ring fragments were formed mainly on the pyridazine and pyrimidine rings of the ring systems. The connected Cl, NO2 , Me, Ph and more extended heterocyclic substituents influenced the fragmentation.


Subject(s)
Nitrogen , Spectrometry, Mass, Electrospray Ionization , Nitrogen/chemistry , Spectrometry, Mass, Electrospray Ionization/methods
4.
Br J Pharmacol ; 178(18): 3667-3681, 2021 09.
Article in English | MEDLINE | ID: mdl-33908640

ABSTRACT

BACKGROUND AND PURPOSE: Cell penetrating peptides are promising tools for delivery of cargo into cells, but factors limiting or facilitating their cellular uptake are largely unknown. We set out to study the effect of the biophysical properties of the cell membrane on the uptake of penetratin, a cell penetrating peptide. EXPERIMENTAL APPROACH: Using labelling with pH-insensitive and pH-sensitive dyes, the kinetics of cellular uptake and endo-lysosomal escape of penetratin were studied by flow cytometry. KEY RESULTS: We report that escape of penetratin from acidic endo-lysosomal compartments is retarded compared with its total cellular uptake. The membrane dipole potential, known to alter transmembrane transport of charged molecules, is shown to be negatively correlated with the concentration of penetratin in the cytoplasmic compartment. Treatment of cells with therapeutically relevant concentrations of atorvastatin, an inhibitor of HMG-CoA reductase and cholesterol synthesis, significantly increased endosomal escape of penetratin in two different cell types. This effect of atorvastatin correlated with its ability to decrease the membrane dipole potential. CONCLUSION AND IMPLICATIONS: These results highlight the importance of the dipole potential in regulating cellular uptake of cell penetrating peptides and suggest a clinically relevant way of boosting this process.


Subject(s)
Cell-Penetrating Peptides , Hydroxymethylglutaryl-CoA Reductase Inhibitors , Biological Transport , Carrier Proteins/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology
5.
Front Cell Dev Biol ; 9: 647300, 2021.
Article in English | MEDLINE | ID: mdl-33912562

ABSTRACT

Although the largely positive intramembrane dipole potential (DP) may substantially influence the function of transmembrane proteins, its investigation is deeply hampered by the lack of measurement techniques suitable for high-throughput examination of living cells. Here, we describe a novel emission ratiometric flow cytometry method based on F66, a 3-hydroxiflavon derivative, and demonstrate that 6-ketocholestanol, cholesterol and 7-dehydrocholesterol, saturated stearic acid (SA) and ω-6 γ-linolenic acid (GLA) increase, while ω-3 α-linolenic acid (ALA) decreases the DP. These changes do not correlate with alterations in cell viability or membrane fluidity. Pretreatment with ALA counteracts, while SA or GLA enhances cholesterol-induced DP elevations. Furthermore, ALA (but not SA or GLA) increases endo-lysosomal escape of penetratin, a cell-penetrating peptide. In summary, we have developed a novel method to measure DP in large quantities of individual living cells and propose ALA as a physiological DP lowering agent facilitating cytoplasmic entry of penetratin.

6.
Molecules ; 26(2)2021 Jan 08.
Article in English | MEDLINE | ID: mdl-33435580

ABSTRACT

We have developed the continuous-flow synthesis of thioureas in a multicomponent reaction starting from isocyanides, amidines, or amines and sulfur. The aqueous polysulfide solution enabled the application of sulfur under homogeneous and mild conditions. The crystallized products were isolated by simple filtration after the removal of the co-solvent, and the sulfur retained in the mother liquid. Presenting a wide range of thioureas synthesized by this procedure confirms the utility of the convenient continuous-flow application of sulfur.


Subject(s)
Sulfides/chemistry , Thiourea/chemical synthesis , Water/chemistry , Molecular Structure , Oxidation-Reduction
7.
Nucleic Acids Res ; 49(D1): D1102-D1112, 2021 01 08.
Article in English | MEDLINE | ID: mdl-33125057

ABSTRACT

Peptide-drug conjugates are organic molecules composed of (i) a small drug molecule, (ii) a peptide and (iii) a linker. The drug molecule is mandatory for the biological action, however, its efficacy can be enhanced by targeted delivery, which often also reduces unwanted side effects. For site-specificity the peptide part is mainly responsible. The linker attaches chemically the drug to the peptide, but it could also be biodegradable which ensures controlled liberation of the small drug. Despite the importance of the field, there is no public comprehensive database on these species. Herein we describe ConjuPepBD, a freely available, fully annotated and manually curated database of peptide drug conjugates. ConjuPepDB contains basic information about the entries, e.g. CAS number. Furthermore, it also implies their biomedical application and the type of chemical conjugation employed. It covers more than 1600 conjugates from ∼230 publications. The web-interface is user-friendly, intuitive, and useable on several devices, e.g. phones, tablets, PCs. The webpage allows the user to search for content using numerous criteria, chemical structure and a help page is also provided. Besides giving quick insight for newcomers, ConjuPepDB is hoped to be also helpful for researchers from various related fields. The database is accessible at: https://conjupepdb.ttk.hu/.


Subject(s)
Databases, Factual , Delayed-Action Preparations/chemistry , Drugs, Investigational/chemistry , Peptides/chemistry , Prescription Drugs/chemistry , Anti-Infective Agents/chemistry , Anti-Infective Agents/classification , Anti-Infective Agents/therapeutic use , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/classification , Anti-Inflammatory Agents/therapeutic use , Antineoplastic Agents/chemistry , Antineoplastic Agents/classification , Antineoplastic Agents/therapeutic use , Delayed-Action Preparations/classification , Delayed-Action Preparations/therapeutic use , Drugs, Investigational/classification , Drugs, Investigational/therapeutic use , Humans , Internet , Neuroprotective Agents/chemistry , Neuroprotective Agents/classification , Neuroprotective Agents/therapeutic use , Peptides/therapeutic use , Prescription Drugs/classification , Prescription Drugs/therapeutic use , Software
8.
Chemistry ; 27(7): 2543-2550, 2021 Feb 01.
Article in English | MEDLINE | ID: mdl-33196126

ABSTRACT

Carbonized polymer dots (CPDs), a peculiar type of carbon dots, show extremely high quantum yields, making them very attractive nanostructures for application in optics and biophotonics. The origin of the strong photoluminescence of CPDs resides in a complicated interplay of several radiative mechanisms. To understand the correlation between CPD processing and properties, the early stage formation of carbonized polymer dots has been studied. In the synthesis, citric acid monohydrate and 2-amino-2-(hydroxymethyl)propane-1,3-diol have been thermally degraded at 180 °C. The use of an oil bath instead of a more traditional hydrothermal reactor has allowed the CPD properties to be monitored at different reactions times. Transmission electron microscopy, time-resolved photoluminescence, nuclear magnetic resonance, infrared, and Raman spectroscopy have revealed the formation of polymeric species with amide and ester bonds. Quantum chemistry calculations have been employed to investigate the origin of CPD electronic transitions. At short reaction times, amorphous C-dots with 80 % quantum yield, have been obtained.

9.
Molecules ; 25(8)2020 Apr 23.
Article in English | MEDLINE | ID: mdl-32340371

ABSTRACT

A continuous-flow acetylation reaction was developed, applying cheap and safe reagent, acetonitrile as acetylation agent and alumina as catalyst. The method developed utilizes milder reagent than those used conventionally. The reaction was tested on various aromatic and aliphatic amines with good conversion. The catalyst showed excellent reusability and a scale-up was also carried out. Furthermore, a drug substance (paracetamol) was also synthesized with good conversion and yield.


Subject(s)
Acetonitriles/chemistry , Amines/chemistry , Carboxylic Acids/chemistry , Acetylation
10.
Molecules ; 24(20)2019 Oct 09.
Article in English | MEDLINE | ID: mdl-31600984

ABSTRACT

The complement system is associated with various diseases such as inflammation or auto-immune diseases. Complement-targeted drugs could provide novel therapeutic intervention against the above diseases. C1s, a serine protease, plays an important role in the CS and could be an attractive target since it blocks the system at an early stage of the complement cascade. Designing C1 inhibitors is particularly challenging since known inhibitors are restricted to a narrow bioactive chemical space in addition selectivity over other serine proteases is an important requirement. The typical architecture of a small molecule inhibitor of C1s contains an amidine (or guanidine) residue, however, the discovery of non-amidine inhibitors might have high value, particularly if novel chemotypes and/or compounds displaying improved selectivity are identified. We applied various virtual screening approaches to identify C1s focused libraries that lack the amidine/guanidine functionalities, then the in silico generated libraries were evaluated by in vitro biological assays. While 3D structure-based methods were not suitable for virtual screening of C1s inhibitors, and a 2D similarity search did not lead to novel chemotypes, pharmacophore model generation allowed us to identify two novel chemotypes with submicromolar activities. In three screening rounds we tested altogether 89 compounds and identified 20 hit compounds (<10 µM activities; overall hit rate: 22.5%). The highest activity determined was 12 nM (1,2,4-triazole), while for the newly identified chemotypes (1,3-benzoxazin-4-one and thieno[2,3-d][1,3]oxazin-4-one) it was 241 nM and 549 nM, respectively.


Subject(s)
Complement C1s/antagonists & inhibitors , Complement C1s/chemistry , Drug Design , Drug Discovery , Models, Molecular , Drug Development , Drug Discovery/methods , Molecular Structure , Quantitative Structure-Activity Relationship , Small Molecule Libraries
11.
AAPS PharmSciTech ; 20(8): 314, 2019 Sep 16.
Article in English | MEDLINE | ID: mdl-31529175

ABSTRACT

Baicalin is a flavone glycoside extracted from Scutellaria baicalensis, a traditional Chinese herbal medicine. Numerous pharmacological effects of baicalin were reported (e.g. antioxidant, anxiolytic); nevertheless, the most important physicochemical properties influencing the pharmacokinetic behaviour and the concomitant oral bioavailability have not yet been described in a comprehensive study. The aim of this project was to characterize the acid-base, lipophilicity, biorelevant solubility and permeability properties of the drug substance and providing scientific data to support the dosage form design. Another important objective was the comparative evaluation of six various baicalin-cyclodextrin (CD) inclusion complexes along with the creation of a suitable Drug Delivery System (DDS) for this BCS IV drug. Biorelevant profiling was carried out by NMR-pH titrations, saturation shake-flask and distribution coefficients (logP) measurements, while CD inclusion studies were fulfilled by experimental methods (phase solubility, 1H/13C NMR, 2D ROESY) and computational approaches. Due to low aqueous solubility (67.03 ± 1.60 µg/ml) and low permeability (Papp = 0.037 × 10-6 cm/s), baicalin is classified as BCS IV. The γ-CD complexation significantly increased the solubility of baicalin (~ 5 times). The most promoted chemical shift change occurred in baicalin-γ-CD complex. Computational studies showed disparate binding pattern for baicalin in case of ß- and γ-CD; furthermore, the calculated complexation energy was - 162.4 kJ mol-1 for ß-CD, while it was significantly stronger for γ-CD (- 181.5 kJ mol-1). The physicochemical and structural information of baicalin and its CD complexes introduced herein can create molecular basis for a promising DDS with enhanced bioavailability containing a bioactive phytopharmacon.


Subject(s)
Antineoplastic Agents, Phytogenic/chemistry , Cyclodextrins/chemistry , Flavonoids/chemistry , Antineoplastic Agents, Phytogenic/administration & dosage , Biological Availability , Drug Delivery Systems , Flavonoids/administration & dosage , Lipids/chemistry , Magnetic Resonance Spectroscopy , Models, Molecular , Permeability , Solubility , Thermodynamics
12.
Chemistry ; 25(51): 11963-11974, 2019 Sep 12.
Article in English | MEDLINE | ID: mdl-31254368

ABSTRACT

Thermal decomposition of citric acid is one of the most common synthesis methods for fluorescent carbon dots; the reaction pathway is, however, quite complex and the details are still far from being understood. For instance, several intermediates form during the process and they also give rise to fluorescent species. In the present work, the formation of fluorescent C-dots from citric acid has been studied as a function of reaction time by coupling infrared analysis, X-ray photoelectron spectroscopy, liquid chromatography/mass spectroscopy (LC/MS) with the change of the optical properties, absorption and emission. The reaction intermediates, which have been identified at different stages, produce two main emissive species, in the green and blue, as also indicated by the decay time analysis. C-dots formed from the intermediates have also been synthesised by thermal decomposition, which gave an emission maximum around 450 nm. The citric acid C-dots in water show short temporal stability, but their functionalisation with 3-aminopropyltriethoxysilane reduces the quenching. The understanding of the citric acid thermal decomposition reaction is expected to improve the control and reproducibility of C-dots synthesis.

13.
Chem Commun (Camb) ; 55(21): 3061-3064, 2019 Mar 07.
Article in English | MEDLINE | ID: mdl-30720807

ABSTRACT

Enantiodiscriminative helix formation was observed for ß-peptide H14 helices. This observation is caused by the synperiplanar orientation of H-O atoms which is more unfavorable than those for H-H interaction. The 1,2 H-O interaction leads to the destruction of the helical structure. The introduction of a double C-C bond in the backbone rules out helix formation.


Subject(s)
Oligopeptides/chemical synthesis , Hydrogen Bonding , Models, Molecular , Oligopeptides/chemistry , Protein Conformation, alpha-Helical , Protein Conformation, beta-Strand , Protein Folding
14.
RSC Adv ; 9(65): 37818-37824, 2019 Nov 19.
Article in English | MEDLINE | ID: mdl-35541805

ABSTRACT

The Suzuki-Miyaura reaction is one of the most used transformations in drug research. Thus making this reaction more sustainable is of considerable current interest. Here we show that propylene carbonate (PC) can be used as a solvent for the Suzuki-Miyaura reaction. PC is one of the greenest solvents since it is synthesized under green conditions by the use of carbon dioxide in the air. All reactions proceeded well and good or excellent yields were observed for the biaryl products. Nonetheless in the case of pyridazinones, 2-hydroxypropyl- chain containing side-products were observed. Importantly, this fact allowed the isolation of several novel compounds which were generated under prominently green conditions.

15.
Beilstein J Org Chem ; 14: 318-324, 2018.
Article in English | MEDLINE | ID: mdl-29507637

ABSTRACT

The syntheses of various pyrimidinones as potentially bioactive products by means of the highly controlled continuous-flow retro-Diels-Alder reaction of condensed pyrimidinone derivatives are presented. Noteworthy, the use of this approach allowed us to rapidly screen a selection of conditions and quickly confirm the viability of preparing the desired pyrimidinones in short reaction times. Yields typically higher than those published earlier using conventional batch or microwave processes were achieved.

16.
ChemistryOpen ; 6(4): 492-496, 2017 08.
Article in English | MEDLINE | ID: mdl-28794942

ABSTRACT

Homochirality, an interesting phenomenon of life, is mainly an unresolved problem and was thought to be a property of living matter. Herein, we show that artificial ß-peptides have the tendency toward homochiral diastereoselective chain elongation. Chain-length-dependent stereochemical discrimination was investigated in the synthesis of foldamers with various side chains and secondary structures. It was found that there is a strong tendency toward the synthesis of homochiral oligomers. The size of the side chain drastically influenced the selectivity of the stereodiscriminative chain-elongation reaction. It is noteworthy that water as the co-solvent increases the selectivity. Such behavior is a novel fundamental biomimetic property of foldamers with a potential of future industrial application.

17.
Amino Acids ; 49(9): 1441-1455, 2017 09.
Article in English | MEDLINE | ID: mdl-28634827

ABSTRACT

Peptide-based drug research has received high attention in the field of medicinal chemistry over the past decade. For drug design, to improve proteolytic stability, it is desirable to include unnatural building blocks, such as conformationally restricted ß-amino acid moieties, into the peptide sequence. Accordingly, the synthesis and incorporation of such conformationally rigid systems into novel type of peptides has gained large interest. Our research group has designed highly efficient methods for the construction of potential antimicrobial peptides. Moreover, a number of synthetic approaches have been developed for the synthesis of various pharmacologically interesting cyclic ß-amino acid derivatives as monomers with multiple stereogenic centers.


Subject(s)
Amino Acids, Cyclic/chemistry , Antimicrobial Cationic Peptides/chemical synthesis , Drug Design , Peptides/chemical synthesis , Peptidomimetics/chemical synthesis , Amino Acid Sequence , Chemistry, Pharmaceutical , Combinatorial Chemistry Techniques , Humans , Protein Structure, Secondary
18.
J Neurol Sci ; 376: 63-70, 2017 May 15.
Article in English | MEDLINE | ID: mdl-28431630

ABSTRACT

Previously, we have shown that the N-methyl d-aspartate (NMDA)-receptor antagonist kynurenic acid (KYNA) and its analogue KYNA1 do not bind directly to mu, kappa and delta opioid receptors in vitro. On the other hand, chronic administration of KYNA and KYNA1 resulted in region (cortex vs striatum) and opioid receptor-type specific alterations in G-protein activation of mouse brain homogenates. Here we describe for the first time the acute effect of KYNA and KYNA1 on opioid receptor function with the possible involvement of the NMDA receptor. The acute 30minute in vivo KYNA1 and KYNA treatments altered opioid receptor G-protein signaling or ligand potency depending on the opioid receptor type and brain region (rat cortex vs striatum) using [35S]GTPγS binding assays. Pretreatment with the NMDA receptor antagonist MK-801 impaired or reversed the effects of KYNA1 and KYNA. These results suggest an NMDA receptor mediated effect. After acute 30minute treatment HPLC measurements revealed a similar KYNA1 and a higher KYNA plasma concentration compared to cerebrospinal fluid concentrations. Finally, KYNA, KYNA1 and MK-801 showed comparable results in opioid receptor G-protein activity and ligand potency with acute in vivo treatments when they were administered in vitro for 30min on isolated cortex and striatum slices. We previously demonstrated that KYNA1 and KYNA acutely altered opioid receptor function in vivo and in vitro through the NMDA receptor depending on the opioid receptor type and brain region. This study may lead to a new, indirect approach to influence opioid receptor signaling.


Subject(s)
Cerebral Cortex/metabolism , Corpus Striatum/metabolism , Kynurenic Acid/analogs & derivatives , Kynurenic Acid/metabolism , Receptors, N-Methyl-D-Aspartate/metabolism , Receptors, Opioid/metabolism , Animals , Cell Membrane/drug effects , Cell Membrane/metabolism , Central Nervous System Agents/pharmacology , Cerebral Cortex/drug effects , Chromatography, High Pressure Liquid , Corpus Striatum/drug effects , Dizocilpine Maleate/pharmacology , GTP-Binding Proteins/metabolism , Guanosine 5'-O-(3-Thiotriphosphate)/metabolism , Kynurenic Acid/pharmacology , Male , Rats, Sprague-Dawley , Receptors, Opioid/agonists , Tissue Culture Techniques
19.
Protein Sci ; 26(2): 198-207, 2017 02.
Article in English | MEDLINE | ID: mdl-27750369

ABSTRACT

Small zinc finger (ZnF) motifs are promising molecular scaffolds for protein design owing to their structural robustness and versatility. Moreover, their characterization provides important insights into protein folding in general. ZnF motifs usually possess an exceptional specificity and high affinity towards Zn(II) ion to drive folding. While the Zn(II) ion is canonically coordinated by two cysteine and two histidine residues, many other coordination spheres also exist in small ZnFs, all having four amino acid ligands. Here we used high-resolution mass spectrometry to study metal ion binding specificity and primary coordination sphere robustness of a designed zinc finger, named MM1. Based on the results, MM1 possesses high specificity for zinc with sub-micromolar binding affinity. Surprisingly, MM1 retains metal ion binding affinity even in the presence of selective alanine mutations of the primary zinc coordinating amino acid residues.


Subject(s)
Models, Molecular , Protein Folding , Zinc Fingers , Zinc/chemistry , Amino Acid Substitution , Mass Spectrometry , Mutation, Missense
20.
Chem Rec ; 16(3): 1018-33, 2016 06.
Article in English | MEDLINE | ID: mdl-26997251

ABSTRACT

There is a great need for effective transformations and a broad range of novel chemical entities. Continuous-flow (CF) approaches are of considerable current interest: highly efficient and selective reactions can be performed in CF reactors. The reaction setup of CF reactors offers a wide variety of possible points where versatility can be introduced. This article presents a number of selective and highly efficient gas-liquid-solid and liquid-solid reactions involving a range of reagents and immobilized catalysts. Enantioselective transformations through catalytic hydrogenation and organocatalytic reactions are included, and isotopically labelled compounds and pharmaceutically relevant 1,2,3-triazoles are synthesized in CF reactors. Importantly, the catalyst bed can be changed to a solid-phase peptide synthesis resin, with which peptide synthesis can be performed with the utilization of only 1.5 equivalents of the amino acid.


Subject(s)
Triazoles/chemistry , Alkaloids/chemical synthesis , Alkaloids/chemistry , Catalysis , Heterocyclic Compounds/chemical synthesis , Heterocyclic Compounds/chemistry , Hydrogenation , Solid-Phase Synthesis Techniques , Stereoisomerism , Triazoles/chemical synthesis
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