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1.
Mol Divers ; 2024 May 22.
Article in English | MEDLINE | ID: mdl-38775996

ABSTRACT

To address the escalating rates of diabetes mellitus worldwide, there is a growing need for novel compounds. The demand for more affordable and efficient methods of managing diabetes is increasing due to the inevitable side effects associated with existing antidiabetic medications. In this present research, various chalcone-sulfonyl piperazine hybrid compounds (5a-k) were designed and synthesized to develop inhibitors against alpha-glucosidase and alpha-amylase. In addition, several spectroscopic methods, including FT-IR, 1H-NMR, 13C-NMR, and HRMS, were employed to confirm the exact structures of the synthesized derivatives. All synthesized compounds were evaluated for their ability to inhibit alpha-glucosidase and alpha-amylase in vitro using acarbose as the reference standard and they showed excellent to good inhibitory potentials. Compound 5k exhibited excellent inhibitory activity against alpha-glucosidase (IC50 = 0.31 ± 0.01 µM) and alpha-amylase (IC50 = 4.51 ± 1.15 µM), which is 27-fold more active against alpha-glucosidase and 7-fold more active against alpha-amylase compared to acarbose, which had IC50 values of 8.62 ± 1.66 µM for alpha-glucosidase and 30.97 ± 2.91 µM for alpha-amylase. It was discovered from the Lineweaver-Burk plot that 5k exhibited competitive inhibition against alpha-glucosidase. Furthermore, cytotoxicity screening assay results against human fibroblast HT1080 cells showed that all compounds had a good level of safety profile. To explore the binding interactions of the most potent compound (5k) with the active site of enzymes, molecular docking research was conducted, and the results obtained supported the experimental data.

2.
Bioorg Med Chem ; 86: 117292, 2023 05 15.
Article in English | MEDLINE | ID: mdl-37137270

ABSTRACT

Considering the biological significance of 1,3,4-thiadiazole/oxadiazole heterocyclic scaffolds, a novel series of 1,3,4-thiadiazole-1,3,4-oxadiazole-acetamide derivatives (7a-j) was designed and synthesized using molecular hybridization. The inhibitory effects of the target compounds on elastase were evaluated, and all of these molecules were found to be potent inhibitors compared to the standard reference oleanolic acid. Compound 7f exhibited the excellent inhibitory activity (IC50 = 0.06 ± 0.02 µM), which is 214-fold more active than oleanolic acid (IC50 = 12.84 ± 0.45 µM). Kinetic analysis was also performed on the most potent compound (7f) to determine the mode of binding with the target enzyme, and it was discovered that 7f inhibits the enzyme in a competitive manner. Furthermore, the MTT assay method was used to assess their toxicity on the viability of B16F10 melanoma cell lines, and all compounds did not display any toxic effect on the cells even at high concentrations. The molecular docking studies of all compounds also justified with their good docking score and among them, compound 7f had a good conformational state with hydrogen bond interactions within the receptor binding pocket, which is consistent with the experimental inhibition studies.


Subject(s)
Melanoma , Oleanolic Acid , Thiadiazoles , Humans , Structure-Activity Relationship , Molecular Docking Simulation , Pancreatic Elastase , Oxadiazoles/chemistry , Kinetics , Thiadiazoles/chemistry , Amides , Acetamides/pharmacology , Molecular Structure
3.
Chem Biol Drug Des ; 101(6): 1262-1272, 2023 06.
Article in English | MEDLINE | ID: mdl-36746678

ABSTRACT

A well-known key enzyme in melanogenesis and hyperpigmentation is tyrosinase. The present study introduces a novel series of thiophenyl-pyrazolylthiazole-coumarin hybrids (6a-6h) as tyrosinase inhibitors. The in-vitro tyrosinase inhibition results indicated that all compounds have strong tyrosinase inhibitory activity, particularly compound 6g (IC50  = 0.043 ± 0.006 µM), was identified as the most active compound compared to the positive control (kojic acid, IC50  = 18.521 ± 1.162 µM). Lineweaver-Burk plots were employed to analyze the kinetic mechanism, and compound 6g formed an enzyme-inhibitor complex by inhibiting tyrosinase non-competitively. Furthermore, all compounds demonstrated excellent antioxidant activity against DPPH. MTT assay was used to screen the cytotoxicity of all compounds on B16F10 melanoma cells, and they had no toxic effect on the cells. The binding affinity of compounds with tyrosinase was also investigated using molecular docking, and the ligands displayed good binding energy values. These molecules could be a promising lead for skin pigmentation and associated diseases as nontoxic pharmacological scaffolds.


Subject(s)
Agaricales , Monophenol Monooxygenase , Molecular Structure , Molecular Docking Simulation , Monophenol Monooxygenase/metabolism , Enzyme Inhibitors/pharmacology , Enzyme Inhibitors/chemistry , Coumarins/pharmacology , Structure-Activity Relationship , Melanins
4.
Bioorg Med Chem Lett ; 80: 129105, 2023 01 15.
Article in English | MEDLINE | ID: mdl-36513215

ABSTRACT

The molecular hybridization of thiazole and pyrazoline heterocyclic structures with diverse activities appears to be an interesting strategy for developing new anticancer compounds. This study presents the synthesis of eleven new thiazolyl-pyrazoline derivatives (7a-k) and the evaluation of their in-vitro anti-proliferative activities against human lung carcinoma (A549) and human melanoma cancer (A375) cell lines through MTT assay. In comparison to the positive reference drug erlotinib (IC50 = 34.16 µM in A549 and IC50 = 25.85 µM in A375), four compounds (7e, 7h, 7j, and 7k) were identified as the most active against both cell lines (especially compound 7k with IC50 = 20.28 µM in A549 and 16.08 µM in A375). Additionally, these potent compounds were selected to be investigated for their anti-metastasis and anti-inflammatory properties via inhibition of the expression of matrix metalloproteinase 2, 9 (MMP-2, 9) and cyclooxygenase 2 (COX-2). In A549 cells, upon exposure to compounds 7e and 7j, COX-2 expression is decreased, whereas compounds 7e, 7j, and 7k reduced COX-2 expression in A375 cell lines. Molecular docking studies were carried out to show the possible interactions of synthesized compounds with the predicted active site of the COX-2 protein. The results revealed that compounds 7e and 7j can bind well to the active site of COX-2 protein. Collectively, compounds 7e, 7j, and 7k are all promising candidates for further research towards the development of novel anticancer agents.


Subject(s)
Antineoplastic Agents , Matrix Metalloproteinase 2 , Humans , Molecular Docking Simulation , Structure-Activity Relationship , Matrix Metalloproteinase 2/metabolism , Cyclooxygenase 2/metabolism , Drug Screening Assays, Antitumor , Antineoplastic Agents/chemistry , Molecular Structure , Cell Proliferation , Cell Line, Tumor
5.
Int J Mol Sci ; 23(21)2022 Oct 31.
Article in English | MEDLINE | ID: mdl-36362051

ABSTRACT

To develop new alkaline phosphatase inhibitors (ALP), a series of pyrazolo-oxothiazolidine derivatives were synthesized and biologically assessed, and the results showed that all of the synthesized compounds significantly inhibited ALP. Specifically, compound 7g displayed the strongest inhibitory activity (IC50 = 0.045 ± 0.004 µM), which is 116-fold more active than monopotassium phosphate (IC50 = 5.242 ± 0.472 µM) as a standard reference. The most potent compound among the series (7g) was checked for its mode of binding with the enzyme and shown as non-competitively binding with the target enzyme. The antioxidant activity of these compounds was examined to investigate the radical scavenging effect. Moreover, the MTT assay method was performed to evaluate their toxic effects on the viability of MG-63 human osteosarcoma cells, and all compounds have no toxic effect on the cells at 4 µM. Computational research was also conducted to examine the binding affinity of the ligands with alkaline phosphatase, and the results revealed that all compounds showed good binding energy values within the active site of the target. Therefore, these novel pyrazolo-oxothiazolidine derivatives might be employed as promising pharmacophores for potent and selective alkaline phosphatase inhibitors.


Subject(s)
Alkaline Phosphatase , Enzyme Inhibitors , Humans , Alkaline Phosphatase/antagonists & inhibitors , Alkaline Phosphatase/metabolism , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/pharmacology , Kinetics , Molecular Docking Simulation , Molecular Structure , Structure-Activity Relationship , Pyrazoles/chemistry , Pyrazoles/pharmacology , Thiazoles/chemistry , Thiazoles/pharmacology
6.
Chem Biodivers ; 19(9): e202200399, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35977918

ABSTRACT

Some bioactive derivatives of indeno[1,2-c]pyrazolones were synthesized through the reaction of phenylhydrazine, different aldehydes and indan-1,2,3-trione at room temperature in acetonitrile. Analytical and spectroscopic studies have confirmed the structural characteristics of the synthesized compounds. In addition, the target compounds were screened for the in-vitro antiproliferative properties against the B16F10 melanoma cancer cell lines by the standard MTT assay. The effect on inflammatory marker cyclooxygenase 2 and matrix metalloproteinase 2, 9 was also checked to determine the anti-inflammatory and anti-cell migratory properties of these compounds. The final compounds were also tested for their tyrosinase inhibitory activity. Among all compounds, screened for anticancer activity, three compounds 4e, 4f and 4h reduced the cell proliferation significantly comparable to that of the positive standard drug erlotinib (IC50 =418.9±1.54 µM) with IC50 values ranging from 20.72-29.35 µM. The compounds 4c-4h decreased the COX-2 expression whereas the MMP 2, 9 expressions were significantly reduced by 4a, 4b and 4h. This was confirmed by molecular docking studies, as 4e, 4f and 4h displayed good interactions with the active site of BRAF protein. The compounds 4b, 4f and 4h exhibited moderate tyrosinase inhibition effect as compared to α-MSH. Collectively, compound 4h can be considered as a candidate for further optimization in the development of anticancer therapies based on the results of biological investigations in this study.


Subject(s)
Antineoplastic Agents , Pyrazolones , Acetonitriles/pharmacology , Aldehydes/pharmacology , Anti-Inflammatory Agents/pharmacology , Antineoplastic Agents/chemistry , Cell Proliferation , Cyclooxygenase 2/metabolism , Drug Screening Assays, Antitumor , Erlotinib Hydrochloride/pharmacology , Indans/pharmacology , Matrix Metalloproteinase 2/metabolism , Matrix Metalloproteinase 2/pharmacology , Molecular Docking Simulation , Molecular Structure , Monophenol Monooxygenase/metabolism , Phenylhydrazines/pharmacology , Proto-Oncogene Proteins B-raf/metabolism , Proto-Oncogene Proteins B-raf/pharmacology , Pyrazolones/pharmacology , Structure-Activity Relationship , alpha-MSH/pharmacology
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