Structural investigations of new tridentate-phenylacetohydrazide Schiff base metal chelates: X-ray diffraction, Hirshfeld surface analyses, DFT, antibacterial and molecular docking studies

被引:16
|
作者
Elantabli, Fatma M. [1 ]
Mohamed, Rania G. [1 ]
El-Medani, Samir M. [1 ]
Haukka, Matti [2 ]
Ramadan, Ramadan M. [3 ]
Afifi, Manal A. [1 ]
机构
[1] El Fayoum Univ, Fac Sci, Dept Chem, Al Fayyum, Egypt
[2] Univ Jyvaskyla, Dept Chem, Jyvaskyla, Finland
[3] Ain Shams Univ, Fac Sci, Chem Dept, Cairo, Egypt
关键词
Schiff base complexes; Single-crystal X-ray studies; Hirshfeld surface analyses; DFT computation; Antibacterial exploration; Molecular docking; ANTIMICROBIAL ACTIVITY; CRYSTAL-STRUCTURE; DNA-BINDING; COMPLEXES; ANTIOXIDANT;
D O I
10.1016/j.molstruc.2023.137230
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The coordination complexes of a tridentate-phenylacetohydrazide Schiff base (2-hydroxybenzylidene-2-phenylacetohydrazide, HL) with metal ions, namely, iron(II), zinc(II), palladium (II), silver(I) and cadmium(II), were synthesized and investigated using various analytical and spectroscopic techniques. A single-crystal X-ray diffraction analysis was performed on the silver derivative. The HL ligand and Ag complex were also characterized via Hirshfeld surface analyses. Both X-ray and Hirshfeld surface analysis revealed intriguing structure and geometric characteristics, as well as remarkably intramolecular and intermolecular hydrogen bonding. All metal ions, with the exception of palladium one, bonded to two molecules of ligand without deprotonation of the hydroxyl moieties. In addition, 1H NMR studies of the diamagnetic complexes and X-ray analysis of the silver complex revealed the presence of the unprotonated OH. DFT-B3LYP calculations were used to determine the energy-minimized molecular geometric arrangements of the Pd(II), Ag(I), and Cd(II) derivatives. Quantum global reactivities of the complexes were also computed. Antibacterial and molecular docking studies of complexes were carried out to examine the potential applications of derivatives as therapeutic reagents. The Ag(I) complex showed the highest antibacterial inhibition towards the tested bacteria with zone diameter = 21.7, 21.0, 19.3 and 15.7 mm. Molecular docking analysis revealed that the complexes have high binding affinities against the selected receptors (PDB: 1BNA and 5AEP) and demonstrated different DNA binding potencies.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Synthesis, X-Ray Diffraction, Spectroscopic Characterization, Hirshfeld Surface Analysis, Molecular Docking Studies, and DFT Calculation of New Pyrazolone Derivatives
    Elmachkouri, Younesse Ait
    Sert, Yusuf
    Irrou, Ezaddine
    Anouar, El Hassane
    Ouachtak, Hassan
    Mague, Joel T.
    Sebbar, Nada Kheira
    Essassi, El Mokhtar
    Taha, Mohamed Labd
    POLYCYCLIC AROMATIC COMPOUNDS, 2024, 44 (04) : 2598 - 2619
  • [2] Structure elucidation {single X-ray crystal diffraction studies, Hirshfeld surface analysis, DFT} and antibacterial studies of sulfonamide functionalized Schiff base copper (II) and zinc (II) complexes
    Shehnaz
    Siddiqui, Waseeq Ahmad
    Raza, Muhammad Asam
    Ashraf, Adnan
    Ashfaq, Muhammad
    Tahir, Muhammad Nawaz
    Niaz, Shanawer
    JOURNAL OF MOLECULAR STRUCTURE, 2024, 1295
  • [3] Complementary hydrogen bonding in a new tridentate Schiff base ligand: X-ray, DFT and solution NMR studies
    Munro, OQ
    Strydom, SD
    Grimmer, CD
    NEW JOURNAL OF CHEMISTRY, 2004, 28 (01) : 34 - 42
  • [4] Synthesis, X-ray diffraction, DFT, and molecular docking studies of isonicotinohydrazide derivative
    Fatima, Aysha
    Siddiqui, Nazia
    Khanum, Ghazala
    Haq, Nazrul
    Butcher, Ray J.
    Srivastava, Sanjay Kumar
    Javed, Saleem
    ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-INTERNATIONAL JOURNAL OF RESEARCH IN PHYSICAL CHEMISTRY & CHEMICAL PHYSICS, 2024, 238 (01): : 187 - 207
  • [5] Tridentate imidazole-based Schiff base metal complexes: molecular docking, structural and biological studies
    Reshma, R.
    Selwin Joseyphus, R.
    Arish, D.
    Reshmi Jaya, R. Jaya
    Johnson, J.
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2022, 40 (18): : 8602 - 8614
  • [6] Synthesis, structural investigations, DFT, molecular docking and antifungal studies of transition metal complexes with benzothiazole based Schiff base ligands
    Mohapatra, Ranjan K.
    Sarangi, Ashish K.
    Azam, Mohammad
    El-ajaily, Marei M.
    Kudrat-E-Zahan, Md
    Patjoshi, Suyanbhu B.
    Dash, Dhruba C.
    JOURNAL OF MOLECULAR STRUCTURE, 2019, 1179 : 65 - 75
  • [7] Structure elucidation {single X-ray crystal diffraction studies, Hirshfeld surface analysis, DFT} and antibacterial studies of 1,2-benzothiazine metal complexes
    Ali, Umar Sharif
    Siddiqui, Waseeq Ahmad
    Ashraf, Adnan
    Raza, Muhammad Asam
    Batoo, Khalid Mujasam
    Imran, Muhammad
    Shirsath, Sagar E.
    Ashfaq, Muhammad
    Tahir, Muhammad Nawaz
    Niaz, Shanawer
    JOURNAL OF MOLECULAR STRUCTURE, 2024, 1306
  • [8] Synthesis, structural studies, Hirshfeld surface analysis, and molecular docking studies of a thiophene-based Schiff base compound
    Kansiz, Sevgi
    Azam, Mohammad
    Basili, Taskin
    Meral, Seher
    Aktas, Feyzi Alkim
    Yesilbag, Semanur
    Min, Kim
    Agar, Aysen Alaman
    Dege, Necmi
    JOURNAL OF MOLECULAR STRUCTURE, 2022, 1265
  • [9] New transition metal complexes of 1-phenyl-2-((quinolin-2-ylmethylene)amino)ethan-1-ol Schiff base: Spectroscopic, X-ray, DFT, Hirshfeld surface analysis, biological, and molecular docking studies
    Elantabli, Fatma M.
    El-Medani, Samir M.
    Kozakiewicz-Piekarz, Anna
    Ramadan, Ramadan M.
    APPLIED ORGANOMETALLIC CHEMISTRY, 2022, 36 (08)
  • [10] Comprehensive studies of spiropyrrolidines towards spectroscopic characterization, X-ray diffraction, Hirshfeld surface and DFT computations
    Asad, Mohammad
    Arshad, Muhammad Nadeem
    Mahmood, Ayyaz
    Nazreen, Syed
    Alam, Mohammad Mahboob
    Asiri, Abdullah M.
    Al-Amry, Khalid A.
    Marwani, Hadi M.
    Sobahi, Tariq R.
    Musthafa, T. N. Mohammed
    JOURNAL OF MOLECULAR STRUCTURE, 2023, 1278