Review explores how aging brain cells may shape cannabis responses across life

A glial perspective on the neuropsychiatric effects of cannabis in adolescence and aging.

International review of psychiatry (Abingdon, England) • • Review • Highly Relevant
🤖

AI Summary

This review asks how age-related changes in brain support cells may shape responses to cannabis during adolescence and aging. It synthesizes existing evidence rather than reporting a new experiment, and the abstract does not specify a particular species, sample size, or cannabis exposure. The authors focus on microglia and astrocytes, cells involved in brain development and maintenance whose functions change across the lifespan. The abstract reports no quantitative results.

The review describes adolescent cannabis use as associated with later psychiatric and neurocognitive outcomes, while responses in older adults appear more variable and may include adverse or potentially beneficial effects. It discusses evidence implicating glial mechanisms in cannabinoid effects, including preclinical studies of adolescent exposure and emerging evidence concerning the aging brain. As a review, it summarizes proposed mechanisms; the abstract alone cannot establish that glial changes cause these outcomes or determine the effects of cannabis for individuals. This is an abstract-based summary, not a review of the full text.

💡 Key Findings

1
The review examines how age-related changes in microglia and astrocytes may shape brain responses to cannabis in adolescence and aging.
High
95%
2
Adolescent cannabis use is described as associated with later psychiatric and neurocognitive outcomes; the abstract does not establish causation.
High
90%
3
Responses to cannabis in older adults are described as variable, with possible adverse as well as potentially beneficial effects.
High
90%
4
The abstract cites preclinical evidence implicating glia in effects of adolescent cannabinoid exposure and emerging evidence that age-related glial changes may influence responses in the aging brain.
High
85%

📄 Original Abstract

Cannabis use is increasing across a broad range of ages as legal access and social acceptance continue to expand. Its neurobiological effects, however, are unlikely to be uniform across the lifespan. Adolescent cannabis use is associated with later psychiatric and neurocognitive outcomes, whereas responses in older adults appear more variable and may include both adverse and potentially beneficial effects. Increasing evidence indicates that microglia and astrocytes contribute to cannabinoid effects on brain function. Importantly, the functional states of these glial cells change substantially with age. During development, microglia and astrocytes participate in circuit maturation and neural homeostasis, whereas aging is accompanied by marked changes in their homeostatic, inflammatory, and metabolic functions. Preclinical studies increasingly implicate glial mechanisms in the effects of adolescent cannabinoid exposure, while emerging evidence suggests that age-related glial changes may also influence cannabinoid responses in the aging brain. In this review, we discuss how age-related changes in microglial and astrocytic function may shape brain responses to cannabis in adolescence and aging.

Explore More Research

Stay informed about the latest cannabis science.

Your stash, decoded.