An Ultra-Low Dose of ∆9-Tetrahydrocannabinol Alleviates Alzheimer’s Disease-Related Cognitive Impairments and Modulates TrkB Receptor Expression in a 5XFAD Mouse Model

An ultra-low dose of Δ9-THC improved Alzheimer’s disease-related cognitive impairment in 5xFAD mice, including animals treated after memory problems were already established. The study found improvements in learning and memory without relying on repeated high-dose THC exposure.

The researchers also found changes in TrkB receptor expression, a signaling pathway closely tied to brain plasticity, learning, memory, and neuronal survival. These changes suggest that THC’s effects may involve more than temporary symptom relief and may influence mechanisms connected to cognitive function.

The findings add to a growing body of preclinical research showing that very low doses of THC can produce different biological effects than higher doses, particularly in the aging and Alzheimer’s-disease brain. In this model, a single ultra-low dose was enough to improve cognitive performance and alter a key neurotrophic signaling pathway.

“Alzheimer’s disease (AD) is the most common form of dementia, but there is still no available treatment.

Δ9-tetrahydrocannabinol (THC) is emerging as a promising therapeutic agent.

Using THC in conventional high doses may have deleterious effects. Therefore, we propose to use an ultra-low dose of THC (ULD-THC). We previously published that a single injection of ULD-THC ameliorated cognitive functioning in several models of brain injuries as well as in naturally aging mice.

Here, 5xFAD AD model mice received a single treatment of ULD-THC (0.002 mg/kg) after disease onset and were examined in two separate experiments for cognitive functions, neurotropic, and inflammatory factors in the hippocampus.

We show that a single injection of ULD-THC alleviated cognitive impairments in 6- and 12-month-old 5xFAD mice. On the biochemical level, our results indicate an imbalance between the truncated TrkB receptor isoform and the full receptor, with AD mice showing a greater tendency to express the truncated receptor, and ULD-THC improved this imbalance. We also investigated the expression of three AD-related inflammatory markers and found an ameliorating effect of ULD-THC.

The current research demonstrates for the first time the beneficial effects of a single ultra-low dose of THC in a mouse model of AD after disease onset.”

https://pubmed.ncbi.nlm.nih.gov/36012711

“The current research demonstrates for the first time the beneficial effects of a single ultra-low dose of THC in a mouse model of AD after disease onset. As THC is a cheap, widely available substance already approved for use in other conditions, this research brings us closer to understanding its mechanisms and will possibly lead to new treatments.”

https://www.mdpi.com/1422-0067/23/16/9449/htm

Need this THC study explained? thcXplained.com

An Ultra-Low Dose of ∆9-Tetrahydrocannabinol Alleviates Alzheimer’s Disease-Related Cognitive Impairments and Modulates TrkB Receptor Expression in a 5XFAD Mouse Model

An ultra-low dose of Δ9-THC improved Alzheimer’s disease-related cognitive impairment in 5xFAD mice, including animals treated after memory problems were already established. The study found improvements in learning and memory without relying on repeated high-dose THC exposure.

The researchers also found changes in TrkB receptor expression, a signaling pathway closely tied to brain plasticity, learning, memory, and neuronal survival. These changes suggest that THC’s effects may involve more than temporary symptom relief and may influence mechanisms connected to cognitive function.

The findings add to a growing body of preclinical research showing that very low doses of THC can produce different biological effects than higher doses, particularly in the aging and Alzheimer’s-disease brain. In this model, a single ultra-low dose was enough to improve cognitive performance and alter a key neurotrophic signaling pathway.

“Alzheimer’s disease (AD) is the most common form of dementia, but there is still no available treatment.

Δ9-tetrahydrocannabinol (THC) is emerging as a promising therapeutic agent.

Using THC in conventional high doses may have deleterious effects. Therefore, we propose to use an ultra-low dose of THC (ULD-THC). We previously published that a single injection of ULD-THC ameliorated cognitive functioning in several models of brain injuries as well as in naturally aging mice.

Here, 5xFAD AD model mice received a single treatment of ULD-THC (0.002 mg/kg) after disease onset and were examined in two separate experiments for cognitive functions, neurotropic, and inflammatory factors in the hippocampus.

We show that a single injection of ULD-THC alleviated cognitive impairments in 6- and 12-month-old 5xFAD mice. On the biochemical level, our results indicate an imbalance between the truncated TrkB receptor isoform and the full receptor, with AD mice showing a greater tendency to express the truncated receptor, and ULD-THC improved this imbalance. We also investigated the expression of three AD-related inflammatory markers and found an ameliorating effect of ULD-THC.

The current research demonstrates for the first time the beneficial effects of a single ultra-low dose of THC in a mouse model of AD after disease onset.”

https://pubmed.ncbi.nlm.nih.gov/36012711/

“The current research demonstrates for the first time the beneficial effects of a single ultra-low dose of THC in a mouse model of AD after disease onset. As THC is a cheap, widely available substance already approved for use in other conditions, this research brings us closer to understanding its mechanisms and will possibly lead to new treatments.”

https://www.mdpi.com/1422-0067/23/16/9449/htm

Need this THC study explained? thcXplained.com

Disease-modifying effects of natural Δ9-tetrahydrocannabinol in endometriosis-associated pain.

In a mouse model of endometriosis, daily treatment with Δ9-THC reduced abdominal mechanical hypersensitivity and the unpleasantness associated with pain. THC also restored cognitive function in animals that had developed substantial memory deficits associated with endometriosis.

The effects went beyond pain relief. THC altered uterine innervation and, most notably, inhibited the development of endometrial cysts, suggesting a potential disease-modifying effect rather than simply masking symptoms.

These findings are important because endometriosis is a chronic condition in which pain, abnormal tissue growth, and neurological effects can all contribute to disease burden. The researchers concluded that the results support clinical investigation of THC as a potential treatment for women with endometriosis.

“Endometriosis is a chronic painful disease highly prevalent in women that is defined by growth of endometrial tissue outside the uterine cavity and lacks adequate treatment.

Medical use of cannabis derivatives is a current hot topic and it is unknown whether phytocannabinoids may modify endometriosis symptoms and development.

Here we evaluate the effects of repeated exposure to Δ9-tetrahydrocannabinol (THC) in a mouse model of surgically-induced endometriosis.

In this model, female mice develop mechanical hypersensitivity in the caudal abdomen, mild anxiety-like behavior and substantial memory deficits associated with the presence of extrauterine endometrial cysts.

Interestingly, daily treatments with THC (2 mg/kg) alleviate mechanical hypersensitivity and pain unpleasantness, modify uterine innervation and restore cognitive function without altering the anxiogenic phenotype. Strikingly, THC also inhibits the development of endometrial cysts.

These data highlight the interest of scheduled clinical trials designed to investigate possible benefits of THC for women with endometriosis.”

https://www.ncbi.nlm.nih.gov/pubmed/31931958

“These experiments suggest that THC may be a useful treatment for patients with endometriosis.”

https://elifesciences.org/articles/50356

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