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Majoon-e-Boolis as a neurotherapeutic agent: cognitive and neuronal restoration in alzheimer's disease model.

Created on 24 Sep 2026

Authors

Owais Hassan Wani, Prashant Dhaka, Pinky, Shahid Shah Choudhary, Asrar Ahmad Wani, Arsheed Iqbal, Suhel Parvez, Tanveer Ali Dar

Published in

Metabolic brain disease. Volume 41. Issue 1. Aug 12, 2026. Epub Aug 12, 2026.

Abstract

Majoon-e-Boolis (MB), a traditional Unani formulation, has been used for neurological conditions; however, its molecular mechanism remains largely unexplored. The current study was designed to explore the novel mechanistic insights between antioxidant activity, anti-inflammatory effects, dopaminergic support and anti-aggregation properties of the formulation for modulating the pathogenesis of Alzheimer's Disease (AD). Behavioral deficits were studied via Novel Object Recognition, Elevated Plus Maze and Open Field Test. In addition, the study looked at the immunohistochemistry of superoxide dismutase 2, tumor necrosis factor-alpha, tyrosine hydroxylase and α-synuclein (α-Syn) against Aβ1-42-induced AD model. Additionally, histopathological alterations were also performed against the AD model. The observed findings demonstrated that MB treatment in Aβ1-42-induced AD in rat models significantly improved their cognitive impairments and alleviated anti-anxiety behaviour with enhanced locomotor activity. Moreover, MB induced significant reduction in oxidative stress and neuroinflammation with enhanced dopaminergic neuronal activity. GC-MS analysis of MB revealed the presence of bioactive phytochemicals such as thiophene, guanidinopropionic acid, 5-hydroxymethylfurfural etc. The findings underscore the potential of MB as a promising therapeutic agent in mitigating the multifaceted pathology of Aβ1-42-induced AD in a rat model by exerting its neuroprotective effects, cognition restoration and overall maintenance of neuronal architecture through a combination of antioxidant, anti-inflammatory and anti-aggregation mechanisms, making it a multifaceted therapeutic candidate for AD.

PMID:
42584743
Bibliographic data and abstract were imported from PubMed on 24 Sep 2026.

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