4.6 Article

Fascaplysin Derivatives Are Potent Multitarget Agents against Alzheimer's Disease: in Vitro and in Vivo Evidence

期刊

ACS CHEMICAL NEUROSCIENCE
卷 10, 期 11, 页码 4741-4756

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acschemneuro.9b00503

关键词

Alzheimer's disease; fascaplysin; acetylcholinesterase; beta-amyloid; neuroinflammation; oxidative stress

资金

  1. National Natural Science Foundation of China [81870853, 21878234, 20903058]
  2. Ningbo Sci & Tech Project for Common Wealth [2017C50042]
  3. Zhejiang Key Laboratory of Pathophysiology [201804]
  4. Open Project Program of State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science Technology [SKLFNS-KF-201806]
  5. Ningbo municipal innovation team of life science and health [2015C110026]
  6. 111 Project [D16013]
  7. Li Dak Sum Marine Biopharmaceutical Development Fund
  8. K. C. Wong Magna Fund in Ningbo University

向作者/读者索取更多资源

Alzheimer's disease (AD) is characterized by progressive neurodegeneration and impaired cognitive functions. Fascaplysin is a beta-carboline alkaloid isolated from marine sponge Fascaplysinopsis bergquist in 1988. Previous studies have shown that fascaplysin might act on acetylcholinesterase and beta-amyloid (A beta) to produce anti-AD properties. In this study, a series of fascaplysin derivatives were synthesized. The cholinesterase inhibition activities, the neuronal protective effects, and the toxicities of these compounds were evaluated in vitro. Compounds 2a and 2b, the two most powerful compounds in vitro, were further selected to evaluate their cognitive-enhancing effects in animals. Both 2a and 2b could ameliorate cognitive dysfunction induced by scopolamine or A beta oligomers without affecting locomotor functions in mice. We also found that 2a and 2b could prevent cholinergic dysfunctions, decrease pro-inflammatory cytokine expression, and inhibit A beta-induced tau hyperphosphorylation in vivo. Most importantly, pharmacodynamics studies suggested that 2b could penetrate the blood-brain barrier and be retained in the central nervous system. All these results suggested that fascaplysin derivatives are potent multitarget agents against AD and might be clinical useful for AD treatment.

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