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Computational and Experimental Assessments of Magnolol as a Neuroprotective Agent and Utilization of UiO-66(Zr) as Its Drug Delivery System.
Santos, Joshua; Quimque, Mark Tristan; Liman, Rhenz Alfred; Agbay, Jay Carl; Macabeo, Allan Patrick G; Corpuz, Mary Jho-Anne; Wang, Yun-Ming; Lu, Tsai-Te; Lin, Chia-Her; Villaflores, Oliver B.
Afiliación
  • Santos J; The Graduate School, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Quimque MT; Phytochemistry Laboratory, Research Center for the Natural and Applied Sciences, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Liman RA; The Graduate School, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Agbay JC; Laboratory of Organic Reactivity, Discovery, and Synthesis (LORDS), Research Center for Natural and Applied Sciences, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Macabeo APG; Department of Chemistry, College of Science and Mathematics, Mindanao State University-Iligan Institute of Technology, Tibanga, 9200 Iligan City, Philippines.
  • Corpuz MJ; The Graduate School, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Wang YM; Phytochemistry Laboratory, Research Center for the Natural and Applied Sciences, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
  • Lu TT; Department of Chemistry, College of Science and Mathematics, Mindanao State University-Iligan Institute of Technology, Tibanga, 9200 Iligan City, Philippines.
  • Lin CH; Philippine Science High School-Central Mindanao Campus, 9217 Balo-i, Lanao del Norte, Philippines.
  • Villaflores OB; Laboratory of Organic Reactivity, Discovery, and Synthesis (LORDS), Research Center for Natural and Applied Sciences, University of Santo Tomas, España Blvd., 1015 Manila, Philippines.
ACS Omega ; 6(38): 24382-24396, 2021 Sep 28.
Article en En | MEDLINE | ID: mdl-34604621
ABSTRACT
The phenolic natural product magnolol exhibits neuroprotective properties through ß-amyloid toxicity in PC-12 cells and ameliorative effects against cognitive deficits in a TgCRND8 transgenic mice model. Its bioavailability and blood-brain barrier crossing ability have been significantly improved using the metal-organic framework (MOF) UiO-66(Zr) as a drug delivery system (DDS). To investigate the neuroprotective effects of the Zr-based DDS, magnolol and magnolol-loaded-UiO-66(Zr) (Mag@UiO-66(Zr)) were evaluated for inhibitory activity against ß-secretase and AlCl3-induced neurotoxicity. Due to the moderate inhibition observed for magnolol in vitro, in silico binding studies were explored against ß-secretase along with 11 enzymes known to affect Alzheimer's disease (AD). Favorable binding energies against CDK2, CKD5, MARK, and phosphodiesterase 3B (PDE3B) and dynamically stable complexes were noted through molecular docking and molecular dynamic simulation experiments, respectively. The magnolol-loaded DDS UiO-66(Zr) also showed enhanced neuroprotective activity against two pathological indices, namely, neutrophil infiltration and apoptotic neurons, in addition to damage reversal compared to magnolol. Thus, MOFs are promising drug delivery platforms for poorly bioavailable drugs.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Aspecto: Implementation_research Idioma: En Revista: ACS Omega Año: 2021 Tipo del documento: Article País de afiliación: Filipinas

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Aspecto: Implementation_research Idioma: En Revista: ACS Omega Año: 2021 Tipo del documento: Article País de afiliación: Filipinas
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