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Research Articles

The interaction on HSA and the antibacterial activity from four polyoxometalate hybrids based on berberine

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Pages 156-172 | Received 05 Jun 2023, Accepted 27 Jul 2023, Published online: 13 Aug 2023

References

  • Bijelic, A.; Aureliano, M.; Rompel, A. Rompel the Antibacterial Activity of Polyoxometalates: Structures, Antibiotic Effects and Future Perspectives. Chem. Commun. (Camb.) 2018, 54, 1153–1169. DOI: 10.1039/c7cc07549a.
  • Kögerler, P.; Cronin, L. Polyoxometalate Nanostructures, Superclusters, and Colloids: From Functional Clusters to Chemical Aesthetics. Angew. Chem. Int. Ed. 2005, 44, 844–846. DOI: 10.1002/anie.200462662.
  • Enderle, A. G.; Bosso, M.; Groß, R.; Heiland, M.; Bollini, M.; Culzoni, M. J.; Kirchhoff, F.; Münch, J.; Streb, C. Increased in-Vitro Anti-HIV Activity of Caffeinium-Functionalized Polyoxometalates. ChemMedChem. 2021, 16, 2727–2730. DOI: 10.1002/cmdc.202100281.
  • Enderle, A. G.; Franco-Castillo, I.; Atrián-Blasco, E.; Martín-Rapún, R.; Lizarraga, L.; Culzoni, M. J.; Bollini, M.; Fuente, J. M.; Silva, F.; Streb, C.; Mitchell, S. G. Hybrid Antimicrobial Films Containing a polyoxometalate-Ionic Liquid. ACS Appl. Polym. Mater 2022, 4, 4144–4153. DOI: 10.1021/acsapm.2c00110.
  • Zhang, Y.; Zhang, D.; Zhang, J.; Zhang, Y.; Liu, L.; Zhang, X.; Feng, Y.; Sha, J.; Zhang, Y.; Wang, C.; et al. Synthesis, Characterization and Antibacterial Properties of Two POM-Based Supramolecular Compounds with the Natural Active Ingredient: (THB)3(H5PMo12O40) and (THB)3(H3PW12O40). Inorg. Chem. Commun. 2016, 74, 6–11. DOI: 10.1016/j.inoche.2016.10.012.
  • Sharifi-Rad, A.; Mehrzad, J.; Darroudi, M.; Saberi, M. R.; Chamani, J. Oil-in-Water Nanoemulsions Comprising Berberine in Olive Oil: Biological Activities, Binding Mechanisms to Human Serum Albumin or Holo-Transferrin and Qmmd Simulations. J. Biomol. Struct. Dyn. 2021, 39, 1029–1043. DOI: 10.1080/07391102.2020.1724568.
  • Singh, M.; Bhowal, R.; Vishwakarma, R.; Chopra, D. Assessing the Impact on Aqueous Solubility of Berberine Chloride via co-Crystallization with Different Stoichiometric Ratios of Pyromellitic Dianhydride. J. Mol. Struct. 2020, 1200, 127086. DOI: 10.1016/j.molstruc.2019.127086.
  • Darban, A. R.; Behzad, S.; Asoodeh, A.; Chamani, J. Multi-Spectroscopic and Molecular Modeling Studies of Interaction between Two Different Angiotensin I Converting Enzyme Inhibitory Peptides from Gluten Hydrolysate and Human Serum Albumin. J. Biomol. Struct. Dyn. 2017, 35, 3648–3662. DOI: 10.1080/07391102.2016.1264892.
  • Khashkhashi-Moghadam, S.; Ezazi-Toroghi, S.; Kamkar-Vatanparast, M.; Jouyaeian, P.; Mokaberi, P.; Yazdyani, H.; Amiri-Tehranizadeh, Z.; Saberi, M. R.; Chamani, J. Novel Perspective into the Interaction Behavior Study of the Cyanidin with Human Serum Albumin-Holo Transferrin Complex: Spectroscopic, Calorimetric and Molecular Modeling Approaches. J. Mol. Liq. 2022, 356, 119042–120826. DOI: 10.1016/j.molliq.2022.119042.
  • Callmann, C. E.; LeGuyader, C. L. M.; Burton, S. T.; Thompson, M. P.; Hennis, R.; Barback, C.; Henriksen, N. M.; Chan, W. C.; Jaremko, M. J.; Yang, J.; et al. Antitumor Activity of 1,18-Octadecanedioic Acid-Paclitaxel Complexed with Human Serum Albumin. J. Am. Chem. Soc. 2019, 141, 11765–11769. DOI: 10.1021/jacs.9b04272.
  • Gašpareć, Z.; Komorsky-Lovrić, Š.; Lovrić, M. The Ultraviolet and Visible Absorption Spectra of Berberrubine. Can. J. Chem. 1982, 60, 970–975. DOI: 10.1139/v82-145.
  • Kragh-H1ansen, U. Molecular Aspects of Ligand Binding to Serum Albumin. Pharmacol. Rev. 1981, 33, 17–53.
  • Malek-Esfandiari, Z.; Rezvani-Noghani, A.; Sohrabi, T.; Mokaberi, P.; Amiri-Tehranizadeh, Z.; Chamani, J. Molecular Dynamics and Multi-Spectroscopic of the Interaction Behavior between Bladder Cancer Cells and Calf Thymus DNA with Rebeccamycin: Apoptosis through the down Regulation of PI3K/AKT Signaling Pathway. J. Fluoresc. 2023, 33, 1537–1557. DOI: 10.1007/s10895-023-03169-4.
  • Hu, Y.; Liu, Y.; Xiao, X. Investigation of the Interaction between Berberine and Human Serum Albumin. Biomacromolecules 2009, 10, 517–521. DOI: 10.1021/bm801120k.
  • Munteanu, A. C.; Badea, M.; Olar, R.; Silvestro, L.; Mihaila, M.; Brasoveanu, L. I.; Musat, M. G.; Andries, A.; Uivarosi, V. Cytotoxicity Studies, DNA Interaction and Protein Binding of New Al (III), Ga (III) and in (III) Complexes with 5-Hydroxyflavone. Appl. Organomet. Chem. 2018, 32, 4579.
  • Molina-Bolívar, J. A.; Galisteo-González, F.; Ruiz, C. C.; Donnell, M. M.; Parra, A. Interaction between the anti-Cancer Drug Diacetyl Maslinic Acid and Bovine Serum Albumin: A Biophysical Study. J. Mol Liq. 2015, 208, 304–313. DOI: 10.1016/j.molliq.2015.04.050.
  • Zhang, G.; Keita, B.; Brochon, J.; Oliveira, P.; Nadjo, L.; Craescu, C. T.; Miron, S. Molecular Interaction and Energy Transfer between Human Serum Albumin and Polyoxometalates. J. Phys. Chem. B 2007, 111, 1809–1814. DOI: 10.1021/jp063758z.
  • Marjani, N.; Dareini, M.; Asadzade-Lotfabad, M.; Pejhan, M.; Mokaberi, P.; Amiri-Tehranizadeh, Z.; Saberi, M. R.; Chamani, J. Evaluation of the Binding Effect and Cytotoxicity Assay of 2-Ethyl-5-(4-Methylphenyl) Pyramido Pyrazole Ophthalazine Trione on Calf Thymus Dna: Spectroscopic, Calorimetric, and Molecular Dynamics Approaches. Luminescence 2022, 37, 310–322. DOI: 10.1002/bio.4173.
  • Lakowicz, J. R. Principles of Fluorescence Spectroscopy, 3rd ed., Springer: New York, USA, 2006.
  • El-Kemary, M.; Gil, M.; Douhal, A. Relaxation Dynamics of Piroxicam Structures within Human Serum Albumin Protein. J. Med. Chem. 2007, 50, 2896–2902. DOI: 10.1021/jm061421f.
  • Alarcón, E.; Aspée, A.; Abuin, E. B.; Lissi, A. Evaluation of Solute Binding to Proteins and Intra-Protein Distances from Steady State Fluorescence Measurements. J. Photochem. Photobiol. B 2012, 106, 1–17. DOI: 10.1016/j.jphotobiol.2011.11.002.
  • Dufour, C.; Dangles, O. Flavonoid-Serum Albumin Complexation: Determination of Binding Constants and Binding Sites by Fluorescence Spectroscopy. Biochim. Biophys. Acta 2005, 1721, 164–173.
  • Ross, P. D.; Subramanian, S. Thermodynamics of Protein Association Reactions: Forces Contributing to Stability. Biochemistry 1981, 20, 3096–3102. DOI: 10.1021/bi00514a017.
  • Ciotta, E.; Prosposito, P.; Pizzoferrato, R. Positive Curvature in Stern-Volmer Plot Described by a Generalized Model for Static Quenching. J. Luminesc. 2019, 206, 518–522. DOI: 10.1016/j.jlumin.2018.10.106.
  • Zhang, G.; Keita, B.; Craescu, C. T.; Miron, S.; Oliveira, P.; Nadjo, L. Polyoxometalate Binding to Human Serum Albumin: A Thermodynamic and Spectroscopic Approach. J. Phys. Chem. B 2007, 111, 11253–11259. DOI: 10.1021/jp072947u.
  • Makarska-Bialokoz, M. Interactions of Hemin with Bovine Serum Albumin and Human Hemoglobin: A Fluorescence Quenching Study. J. Spectrochim. Acta, Part A 2018, 193, 23–32. DOI: 10.1016/j.saa.2017.11.063.
  • Shi, J.; Pan, D.; Wang, X.; Liu, T.; Jiang, M.; Wang, Q. Characterizing the Binding Interaction between Antimalarial Artemether (AMT) and Bovine Serum Albumin (BSA): Spectroscopic and Molecular Docking Methods. J. Photochem. Photobiol. B 2016, 162, 14–23.
  • Bâlici, Ș.; Rusu, D.; Páll, E.; Filip, M.; Chirilă, F.; Nicula, G. Z.; Vică, M. L.; Ungur, R.; Matei, H. V.; Fiț, N. I. In Vitro Antibacterial Susceptibility of Different Pathogens to Thirty Nano-Polyoxometalates. J. Pharm. 2021, 15, 33. DOI: 10.3390/ph15010033.
  • Zhang, C.; Zhao, M.; Zou, H.; Zhang, X.; Sheng, R.; Zhang, Y.; Zhang, B.; Li, C.; Qi, Y. An Enhanced Antibacterial Nanoflowers AgPW@PDA@Nisin Constructed from Polyoxometalate and Nisin. J. Inorg. Biochem. 2020, 212, 111212. DOI: 10.1016/j.jinorgbio.2020.111212.
  • Jin, J. L.; Hua, G. Q.; Meng, Z. Antibacterial Mechanisms of Berberine and Reasons for Little Resistance of Bacteria. J. Chin. Herbal Med. 2011, 3, 27–35.
  • Chang D. N.; Li Y. D.; Chen Y. X.; Wang X. J.; Zang D. J.; Liu T. Polyoxometalate-based nanocomposites for antitumor and antibacterial applications. Nanoscale Adv., 2022, 4, 3689–3706.

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