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Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.

Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.

期刊: Neurotoxicity research 日期: 2026-08-28 PMID: 42663810 DOI: 10.1007/s12640-026-00826-x 浏览: 6
作者: Kowalski L, Colucci ACM, Dos Santos JB, Vuaden BW, Herlinger AL, Hallak JEC, Zuardi AW, Crippa JAS, de Lima MNM, Schröder N
L, K., ACM, C., JB, D.S., BW, V., AL, H., JEC, H., AW, Z., JAS, C., MNM, d.L., & N, S. (2026). Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.. Neurotoxicity research. https://doi.org/10.1007/s12640-026-00826-x
L K, ACM C, JB DS, BW V, AL H, JEC H, et al. Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.. Neurotoxicity research. 2026; doi: 10.1007/s12640-026-00826-x
L K, ACM C, JB DS, et al. Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.[J]. Neurotoxicity research. 2026. DOI: 10.1007/s12640-026-00826-x.
@article{l2026,
  author = {Kowalski L and Colucci ACM and Dos Santos JB and Vuaden BW and Herlinger AL and Hallak JEC and Zuardi AW and Crippa JAS and de Lima MNM and Schröder N},
  title = {Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.},
  journal = {Neurotoxicity research},
  year = {2026},
  doi = {10.1007/s12640-026-00826-x},
  note = {PMID: 42663810},
}
TY  - JOUR
AU  - Kowalski L
AU  - Colucci ACM
AU  - Dos Santos JB
AU  - Vuaden BW
AU  - Herlinger AL
AU  - Hallak JEC
AU  - Zuardi AW
AU  - Crippa JAS
AU  - de Lima MNM
AU  - Schröder N
TI  - Differential Effects of Cannabidiol and Cannabigerol on Cognition, Neuroinflammation, and Blood-Brain Barrier Integrity in a Rat Model of Iron Overload.
T2  - Neurotoxicity research
PY  - 2026
DO  - 10.1007/s12640-026-00826-x
AN  - PMID:42663810
ER  - 

摘要

Iron is an essential micronutrient for brain development, participating in mitochondrial respiration, myelination, and neurotransmitter synthesis. However, previous studies have demonstrated that excessive iron during early postnatal life induces oxidative reactions, leading to mitochondrial dysfunction and synaptic failure. These alterations compromise energy metabolism and neuronal integrity, contributing to long-lasting cognitive dysfunction and increased brain vulnerability later in life. This study evaluated the effects of cannabidiol (CBD) and cannabigerol (CBG) on behavioral, neuroinflammatory, and blood-brain barrier (BBB) outcomes in rats exposed to early-life iron overload. Male Wistar rats received iron carbonyl (30 mg/kg, intragastrically) from postnatal day 12 to 14. At three months of age, they were treated intraperitoneally with CBD, CBG (both at 10 mg/kg), or vehicle for 21 days. Cognitive performance was assessed in the open field and object recognition tasks. We examined hippocampal levels of interleukin-1 beta (IL-1β), interleukin-6 (IL-6), tumor necrosis factor alpha (TNF-α), as proinflammatory markers, and occludin, a protein known to regulate BBB permeability. Iron-exposed animals showed impaired recognition memory, with elevated TNF-α and IL-1β, while CBD reversed memory deficits and reduced IL-1β in iron-treated animals, without affecting TNF-α. CBG restored memory, decreased IL-1β in both iron-treated and controls, and increased TNF-α in controls. Also, iron overload reduced occludin expression in vehicle-treated rats which was reversed by both CBD and CBG. These findings highlight inflammation and BBB disruption as mediators of iron-induced cognitive dysfunction and show that both phytocannabinoids act through distinct but complementary mechanisms, supporting their therapeutic potential in neuroinflammation linked to iron overload.

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