ArticleMetabolic brain disease2026
L-theanine from Camellia sinensis (L.) attenuates 3-NP-induced Huntington's disease-like alterations by remedying behavioral patterns and modulating neurotransmitters across three distinct brain regions: evidence from in-vivo and in-silico approaches.
Article in Metabolic brain disease, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Huntington's disease (HD) is a neurological condition with limited treatment. Its hallmarks are progressive loss of neurons, chorea, cognitive, motor, and metabolic impairments. The current study uses 3-nitropropionic acid (3-NP) to cause HD-like indications in rats. L-theanine (L-TH), an active component of Camellia sinensis, has already been shown to possess anti-inflammatory and anti-oxidant effects. The impact of the isolated phytoconstituent, L-TH, on 3-NP-induced changes in three distinct brain regions was assessed in the current study. The animals received a 7-day pretreatment consisting of normal saline, extract of C. sinensis (100 and 200 mg/kg b.w., i.p.), L-TH (10 mg/kg b.w., i.p.), and standard Tetrabenazine (TBZ, 25 mg/kg, b.w., i.p.). The administration of 3-NP (10 mg/kg b.w., i.p.) to the treatment groups began on the 8th day of the protocol and continued until the 21st day. The brain homogenates underwent biochemical and neurochemical assessments. In conclusion, L-TH improved behavioral outcomes and attenuated 3-NP-induced neurochemical alterations in brain homogenates. Histopathological analysis revealed lower levels of tissue damage in the L-TH-treated group compared to the 3-NP group. Molecular docking studies further indicated favorable interactions of L-TH with the HTT protein. These findings suggest that L-TH may attenuate 3-NP-induced Huntington's disease-like alterations in rats. However, additional studies using genetic HD models and molecular mechanisms are required to confirm its therapeutic efficacy and underlying mode of action.
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