Modulation of Aβ42 in vivo by γ-secretase modulator in primates and humans

I-Fang Ling1, Todd E Golde2, Douglas R Galasko1

  • 1Department of Neurosciences, University of California, La Jolla, San Diego, CA USA.

Abstract

Insights

Ibuprofen did not show gamma-secretase modulator (GSM) activity in humans or nonhuman primates, failing to alter amyloid beta levels. A novel GSM, GSM-1, effectively reduced amyloid beta ratios in primates, suggesting potential for Alzheimer's disease research.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Biochemistry

Background:

  • Nonsteroidal anti-inflammatory drugs (NSAIDs), like ibuprofen, are known to lower amyloid beta-peptide (Aβ)42 in vitro.
  • This activity, termed gamma-secretase modulator (GSM) activity, is hypothesized to reduce Alzheimer's disease risk.
  • However, ibuprofen's GSM activity in humans at therapeutic doses remains unconfirmed.

Purpose of the Study:

  • To investigate the in vivo GSM activity of ibuprofen in nonhuman primates and humans.
  • To evaluate the effects of ibuprofen and a novel GSM (GSM-1) on amyloid beta (Aβ) levels in cerebrospinal fluid and plasma.

Main Methods:

  • Cynomolgus monkeys were treated with GSM-1 or ibuprofen; plasma and cerebrospinal fluid were collected over 24 hours.
  • Healthy human subjects received either placebo or intravenous ibuprofen (800 mg); plasma was collected over 24 hours.

Main Results:

  • GSM-1 significantly decreased Aβ42 ratios in both plasma and cerebrospinal fluid in monkeys.
  • Ibuprofen treatment did not significantly alter Aβ levels in either nonhuman primates or human volunteers.
  • Acute dosing of ibuprofen did not demonstrate hypothesized GSM activity.

Conclusions:

  • GSM-1 demonstrated potent Aβ42-lowering effects in nonhuman primates.
  • The hypothesized gamma-secretase modulator activity of ibuprofen was not observed in nonhuman primates or humans following acute administration.

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