Design, Synthesis, and Neuroprotective Activity of Phenoxyindole Derivatives on Antiamyloid Beta (Aβ) Aggregation, Antiacetylcholinesterase, and Antioxidant Activities

Author:

Laivut Somjate1,Moongkarndi Primchanien2,Kitphati Worawan3,Rukthong Pattarawit45ORCID,Sathirakul Korbtham6ORCID,Sripha Kittisak17ORCID

Affiliation:

1. Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Mahidol University, 447 Sri-Ayudhya Rd., Ratchathewi, Bangkok 10400, Thailand

2. Department of Microbiology, Faculty of Pharmacy, Mahidol University, 447 Sri-Ayudhya Rd., Ratchathewi, Bangkok 10400, Thailand

3. Department of Physiology, Faculty of Pharmacy, Mahidol University, 447 Sri-Ayudhya Rd., Ratchathewi, Bangkok 10400, Thailand

4. Department of Pharmaceutical Technology, Faculty of Pharmacy, Srinakharinwirot University, Nakornnayok 26120, Thailand

5. Center for Excellence in Plant and Herbal Innovation Research, Strategic Wisdom and Research Institute, Srinakharinwirot University, Nakornnayok 26120, Thailand

6. Department of Pharmacy, Faculty of Pharmacy, Mahidol University, 447 Sri-Ayudhya Rd., Ratchathewi, Bangkok 10400, Thailand

7. Unit of Compounds Library for Drug Discovery Mahidol University, 447 Sri-Ayudhya Rd., Ratchathewi, Bangkok 10400, Thailand

Abstract

In this investigation, a number of phenoxyindole derivatives were designed, synthesized, and tested for their neuroprotective ability on SK-N-SH cells against Aβ42-induced cell death and biologically specific activities involved in anti-Aβ aggregation, anti-AChE, and antioxidant effects. The proposed compounds, except compounds 9 and 10, could protect SK-N-SH cells at the IC50 of anti-Aβ aggregation with cell viability values ranging from 63.05% ± 2.70% to 87.90% ± 3.26%. Compounds 3, 5, and 8 demonstrated striking relationships between the %viability of SK-N-SH cells and IC50 values of anti-Aβ aggregation and antioxidants. No significant potency of all synthesized compounds against AChE was found. Among them, compound 5 showed the strongest anti-Aβ and antioxidant properties with IC50 values of 3.18 ± 0.87 and 28.18 ± 1.40 μM, respectively. The docking data on the monomeric Aβ peptide of compound 5 demonstrated good binding at regions involved in the aggregation process, and the structural feature made it possible to be a superior radical scavenger. The most effective neuroprotectant belonged to compound 8, with a cell viability value of 87.90% ± 3.26%. Its unique mechanisms for enhancing the protective impact may serve additional purposes since it demonstrated mild biological-specific effects. In silico prediction of CNS penetration shows strong passive penetration ability across the blood–brain barrier from blood vessels to the CNS for compound 8. In light of our findings, compounds 5 and 8 appeared as potentially intriguing lead compounds for new therapeutic approaches to Alzheimer’s disease. More in vivo testing will be revealed in due course.

Funder

Mahidol University (Basic Research Fund

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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