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.
Introduction:
Ibuprofen is one of the nonsteroidal anti-inflammatory drugs that have been shown to selectively lower pathogenic amyloid beta-peptide (Aβ)42 without impairing overall γ-secretase activity in vitro. This γ-secretase modulator (GSM) activity has been hypothesized to contribute to the reduction in risk of developing Alzheimer's disease in chronic users of nonsteroidal anti-inflammatory drugs. However, it is unclear whether ibuprofen, within therapeutic dosing range, demonstrates GSM activity in humans. In this study, we evaluated the effects of ibuprofen and a second-generation GSM, GSM-1, on Aβ levels in cerebrospinal fluid and plasma of young nonhuman primates and humans.
Methods:
Five to seven conscious cynomolgus monkeys (Macaca fascicularis) were nontreated or treated with 30 mg/kg GSM-1 or 50 or 100 mg/kg ibuprofen and the plasma and cerebrospinal fluid were sampled at -8, 0 (baseline or right before treatment), 2, 4, 6, 8, 12, and 24 h postdosing. In addition, sixteen healthy human subjects were randomly assigned to receive either placebo or 800 mg ibuprofen given by intravenous administration and plasma were collected at 0 (before drug infusion), 0.5, 1, 2, 4, 6, 8, 10, and 24 h after dosing.
Results:
A single dose of GSM-1 (30 mg/kg) decreased the ratio of Aβ42 to Aβ40 to 60% in plasma and the ratio of Aβ42 to total Aβ to 65% in cerebrospinal fluid from baseline to postdosing in monkeys. However, no significant changes were detected following ibuprofen treatment at 100 mg/kg. Consistent with the results from nonhuman primates, ibuprofen did not alter plasma Aβ levels in human volunteers after a single 800 mg dose.
Conclusions:
GSM-1 exerted potent lowering of the ratio of Aβ42 to Aβ40 in nonhuman primates but the hypothesized GSM activity of ibuprofen could not be demonstrated in nonhuman primates and humans after acute dosing.
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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