Rabindra Nath Acharyya, Md Abid Muktadir Risha, Novi Dwi Widya Rini, Sarita Manandhar, Sabina Shahi, Biswa Nath Bhadra, Asish Kumar Das, Katsuhiko Ariga, Shrabanti Dev, Lok Kumar Shrestha
Actinodaphne angustifolia (Lauraceae), traditionally used for treating inflammatory and allergic disorders was investigated for its anti-allergic potential using integrated in vivo and in silico approaches. Safety evaluation in accordance with OECD guidelines confirmed the non-toxic nature of the ethanolic leaf extract. In a toluene 2,4-diisocyanate (TDI)-induced allergic model, the extract reduced allergic symptoms, including sneezing, nasal scratching, and nasal scores, also normalizing elevated white blood cell counts in blood and bronchoalveolar lavage fluid. A marked reduction in serum IgE levels further indicated suppression of hypersensitivity responses, with effects comparable to cetirizine. HPLC analysis revealed a rich polyphenolic profile dominated by (-) epicatechin and rutin hydrate, while GC-MS identified 15 additional bioactive constituents. Molecular docking demonstrated strong binding affinities of these compounds toward key allergic targets, namely histamine H1 receptor, interleukin-4, and phospholipase A2, supporting their mechanistic roles in anti-allergic activity. The findings validate the ethnomedicinal relevance of A. angustifolia and highlight its potential as a source of plant-derived anti-allergic agents.