| Literature DB >> 35799934 |
Ramkishore Matsa1, Parameshwar Makam2,3, Guneswar Sethi4, Ahammed Ameen Thottasseri1, Aswani Raj Kizhakkandiyil1, Krishna Ramadas4, Vignesh Mariappan5, Agieshkumar Balakrishna Pillai5, Tharanikkarasu Kannan1.
Abstract
An array of pyridine appended 2-hydrazinylthiazole derivatives has been synthesized to discover novel chemotherapeutic agents for Mycobacterium tuberculosis (Mtb). The drug-likeness of pyridine appended 2-hydrazinylthiazole derivatives was validated using the Lipinski and Veber rules. The designed thiazole molecules have been synthesized through Hantzsch thiazole methodologies. The in vitro antimycobacterial studies have been conducted using Luciferase reporter phage (LRP) assay. Out of thirty pyridine appended 2-hydrazinylthiazole derivatives, the compounds 2b, 3b, 5b, and 8b have exhibited good antimycobacterial activity against Mtb, an H37Rv strain with the minimum inhibitory concentration in the range of 6.40-7.14 μM. In addition, in vitro cytotoxicity of active molecules has been observed against Human Embryonic Kidney Cell lines (HEK293t) using MTT assay. The compounds 3b and 8b are nontoxic and their cell viability is 87% and 96.71% respectively. The in silico analyses of the pyridine appended 2-hydrazinylthiazole derivatives have been studied to find the mode of binding of the active compounds with KasA protein of Mtb. The active compounds showed a strong binding score (-5.27 to -6.23 kcal mol-1). This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35799934 PMCID: PMC9215125 DOI: 10.1039/d2ra02163c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Design of pyridine appended 2-hydrazinylthiazole by molecular hybridization approach considering the potent antitubercular drugs/agents with (a) hydrazone, (b) 2-aminothiazole and (c) 2-pyridyl derivatives found in the literature, (d) the structure of molecularly hybridized derivatives of pyridine appended 2-hydrazinylthiazoles synthesized in the present investigation.
Physico-chemicala, in vitro and in silico properties of pyridine appended 2-hydrazinylthiazolesb
| Structure and code | Lipinski rule | Veber rule | No. of violations |
|
| ||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
|
| log | HAs | HDs | RBs | TPSA | MIC against | Cytotoxicity% against HEK 293t at 6.5 μM | Glide score (kcal mol−1) | No. of H-bond (interacting residue with distance) | ||
|
| 232.31 | 2.04 | 4 | 1 | 3 | 50.17 | 0 | 430.46 | NA | −5.804 | 1 (Thr 315, 2.80 Å) |
|
| 280.36 | 2.81 | 4 | 1 | 4 | 50.17 | 0 | 7.13 | 38.23 | −6.233 | 1 (Thr 315, 2.94 Å) |
|
| 294.38 | 3.26 | 4 | 1 | 4 | 50.17 | 0 | 6.79 | 87.47 | −5.277 | 1 (Val 278, 3.19 Å) |
|
| 330.42 | 3.97 | 4 | 1 | 4 | 50.17 | 0 | 75.66 | NA | −5.015 | 1 (Thr 315, 2.81 Å) |
|
| 298.35 | 2.93 | 4 | 1 | 4 | 50.17 | 0 | 6.70 | 41.58 | −6.095 | 2 (Thr 315, 3.29 Å and 2.93 Å) |
|
| 298.35 | 2.95 | 4 | 1 | 4 | 50.17 | 0 | 83.79 | NA | −6.165 | 1 (Thr 315, 2.93 Å) |
|
| 298.35 | 2.98 | 4 | 1 | 4 | 50.17 | 0 | 83.79 | NA | −6.186 | 1 (Thr 315, 2.93 Å) |
|
| 312.37 | 3.42 | 4 | 1 | 4 | 50.17 | 0 | 6.40 | 92.17 | −5.482 | 1 (Thr 315, 2.90 Å) |
|
| 348.35 | 3.68 | 4 | 1 | 5 | 50.17 | 0 | 71.77 | NA | −5.016 | 2 (Thr 315, 3.25 Å, 2.86 Å) |
|
| 348.35 | 3.71 | 4 | 1 | 5 | 50.17 | 0 | 71.77 | NA | −5.039 | 2 (Thr 315, 3.26 Å, 2.86 Å) |
|
| 314.80 | 3.44 | 4 | 1 | 4 | 50.17 | 0 | 79.42 | NA | −5.932 | 2 (Thr 315, 3.30 Å, 2.81 Å) |
|
| 314.80 | 3.47 | 4 | 1 | 4 | 50.17 | 0 | 317.66 | NA | −6.111 | 2 (Thr 315, 3.34 Å, 2.95 Å) |
|
| 314.80 | 3.49 | 4 | 1 | 4 | 50.17 | 0 | 79.42 | NA | −5.708 | 2 (Thr 315, 3.28 Å, 2.86 Å) |
|
| 349.25 | 4.10 | 4 | 1 | 4 | 50.17 | 0 | 286.33 | NA | −5.932 | 4 (Thr 315, 3.22 Å, 2.87 Å) (Arg 214, 3.15 Å, 3.25 Å) |
|
| 359.25 | 3.60 | 4 | 1 | 4 | 50.17 | 0 | 278.36 | NA | −5.621 | 1 (Thr 315, 2.80 Å) |
|
| 359.25 | 3.62 | 4 | 1 | 4 | 50.17 | 0 | 278.36 | NA | −6.008 | 2 (Thr 315, 3.22 Å, 2.92 Å) |
|
| 294.38 | 3.26 | 4 | 1 | 4 | 50.17 | 0 | 339.70 | NA | −5.035 | 1 (Thr 315, 2.88 Å) |
|
| 296.36 | 2.75 | 5 | 2 | 4 | 70.40 | 0 | 337.43 | NA | −5.707 | 4 (Thr 315, 3.23 Å, 2.86 Å) (Arg 214, 3.25 Å, 3.19 Å) |
|
| 296.36 | 2.31 | 5 | 2 | 4 | 70.40 | 0 | 337.43 | NA | −5.056 | 2 (Thr 315, 3.21 Å, 2.93 Å) |
|
| 296.36 | 2.33 | 5 | 2 | 4 | 70.40 | 0 | 84.36 | NA | −4.685 | 1 (Thr 315, 3.00 Å) |
|
| 310.38 | 2.87 | 5 | 1 | 5 | 59.41 | 0 | 80.55 | NA | −4.949 | 1 (Thr 315, 2.78 Å) |
|
| 340.41 | 2.46 | 6 | 1 | 6 | 68.64 | 0 | 293.76 | NA | −5.019 | 2 (Thr 315, 3.30 Å, 2.84 Å) |
|
| 370.43 | 2.44 | 7 | 1 | 7 | 77.88 | 0 | 269.96 | NA | −4.937 | 2 (Thr 315, 3.22 Å, 2.86 Å) |
|
| 326.38 | 2.15 | 6 | 2 | 5 | 79.64 | 0 | 306.39 | NA | −5.001 | 2 (Thr 315, 3.21 Å, 2.92 Å) |
|
| 340.41 | 2.53 | 6 | 2 | 6 | 79.64 | 0 | 73.44 | NA | −4.985 | 1 (Thr 315, 2.95 Å) |
|
| 325.35 | 2.75 | 7 | 1 | 5 | 96.00 | 0 | 307.36 | NA | −4.517 | 1 (Met 213, 3.07 Å) |
|
| 325.35 | 2.77 | 7 | 1 | 5 | 96.00 | 0 | >307.36 | NA | −4.87 | — |
|
| 323.43 | 2.91 | 5 | 1 | 5 | 53.41 | 0 | 309.19 | NA | −4.609 | 2 (Thr 315, 3.22 Å, 2.91 Å) |
|
| 281.34 | 1.64 | 5 | 1 | 4 | 63.07 | 0 | 355.44 | NA | −6.013 | 2 (Thr 315, 3.29 Å, 2.89 Å) |
|
| 295.37 | 2.02 | 5 | 1 | 4 | 63.07 | 0 | 338.56 | NA | −5.640 | 1 (Thr 315, 2.80 Å) |
| Rifampicin | — | — | — | — | — | — | — | 2.4 | NA | NA | NA |
| Isoniazid | — | — | — | — | — | — | — | NA | NA | −5.830 | 1 (Thr 315, 2.89 Å) |
Calculated from molinspiration online server (https://www.molinspiration.com/cgi-bin/properties).
NA = not analysed.
Fig. 2Boiled egg diagram of pyridine appended 2-hydrazinylthiazoles.
Scheme 1Synthesis of pyridine appended 2-hydrazinylthiazole derivatives.
Fig. 3Single crystal X-ray diffraction results of 29b. (a) The ORTEP diagram (b) H-bonding interactions (c) double helical shape packing diagram in the crystal lattice.
Fig. 4Correlation between antitubercular activity and substitution on the imine group of pyridine appended 2-hydrazinylthiazoles.
Fig. 5Correlation between log P values of pyridine appended 2-hydrazinylthiazoles and their antitubercular activity.
Fig. 6Cytotoxicity of pyridine appended 2-hydrazinylthiazole derivatives against human embryonic kidney cell lines.
Fig. 7Interaction diagrams of active pyridine appended 2-hydrazinylthiazole derivatives with KasA protein of Mtb.