Mechanistic Evaluation of Abutilon indicum Extract and Syringaldehyde in Ovalbumin-Induced Airway Inflammation Using Computational and Experimental Approaches

Abutilon indicum Linn. is a traditionally used medicinal herb in the treatment of inflammatory diseases. Syringaldehyde (SYD) is a major phytoconstituent of A. indicum.To compare the mast cell stabilizing and anti-asthmatic effects of hydroalcoholic extract of A. indicum (HAEAI) and SYD, and to explore the possible molecular mechanisms. Compound 48/80 (C48/80) induced mesenteric mast cells degranulation in rats was evaluated after 7 days of SYD (25 and 50 mg/kg) and HAEAI (200 and 400 mg/kg). Anti-asthmatic activity was assessed in ovalbumin (OVA)-induced allergic asthma in mice, with SYD and HAEAI administered during the challenge phase. Inflammatory cell counts in blood and bronchoalveolar lavage fluid (BALF) were quantified. BALF Th2 cytokines (IL-4 and IL-13) and serum OVA-specific IgE were measured by ELISA, and lung histopathology was performed. Network pharmacology, molecular docking, and molecular dynamics simulation were used for mechanistic evaluation. SYD and HAEAI showed a substantial effect by inhibiting C48/80-induced degranulation of mast cells (p < 0.0001). In OVA-challenged mice, both treatments decreased inflammatory cell infiltration in BALF and blood, compared with the inducer control group, which showed elevated BALF cytokine levels of IL-4 (98.50 ± 6.56 pg/mL) and IL-13 (159.91 ± 9.56 pg/mL), treatment with HAEAI and SYD significantly reduced these inflammatory markers. HAEAI decreased IL-4 levels to 84.95 ± 3.73 pg/mL at the low dose and 67.20 ± 3.02 pg/mL at the high dose, while SYD reduced IL-4 levels to 66.91 ± 3.88 pg/mL and 55.90 ± 3.32 pg/mL at the low and high doses, respectively. Similarly, HAEAI reduced IL-13 levels to 143.50 ± 6.96 pg/mL at the low dose and 91.83 ± 9.06 pg/mL at the high dose, whereas SYD lowered IL-13 levels to 118.42 ± 4.86 pg/mL and 55.69 ± 3.74 pg/mL at the low and high doses, respectively.In addition, serum OVA-specific IgE levels were markedly reduced in the treatment groups compared with the inducer control group (557.84 ± 3.39 ng/mL). HAEAI reduced IgE levels to 378.44 ± 1.94 ng/mL at the low dose and 180.90 ± 1.30 ng/mL at the high dose. SYD also lowered serum OVA-specific IgE levels to 323.56 ± 1.93 ng/mL and 222.15 ± 1.55 ng/mL at the low and high doses, respectively. These findings indicate that both HAEAI and SYD exert significant anti-allergic effects by suppressing Th2 cytokines and reducing OVA-specific IgE production. and improved lung histopathology. In silico analysis showed a multi-target effect on allergic and inflammatory signalling. Followed by docking, a favourable ligand-protein interaction was observed during simulation. SYD and HAEAI have good mast cell stabilising and antiasthmatics effect, likely mediated through suppression of Th2-induced inflammation and multi-targeting allergic signalling pathways.

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Journal
Journal of Computational Biophysics and Chemistry
Published
2026-09-04
DOI
https://doi.org/10.1142/s273741652650122x
Primary Topic
Mast cells and histamine
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article
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article

Mechanistic Evaluation of Abutilon indicum Extract and Syringaldehyde in Ovalbumin-Induced Airway Inflammation Using Computational and Experimental Approaches

B.C. Revanasiddappa, Ashwini Prabhu, Mamatha B. C., Akhil Nair et al.
Journal of Computational Biophysics and Chemistry
Mast cells and histamine
article

Mechanistic Evaluation of Abutilon indicum Extract and Syringaldehyde in Ovalbumin-Induced Airway Inflammation Using Computational and Experimental Approaches

B.C. Revanasiddappa, Ashwini Prabhu, Mamatha B. C., Akhil Nair, Pavithra Pradeep Prabhu, K. Mangala Shenoy, Wilona Loren Lobo, Suvarna Kini, Nitha Naveen Dsouza, Srikanth Jupudi, S. Vijaya Kumar
article en

Abstract

Abutilon indicum Linn. is a traditionally used medicinal herb in the treatment of inflammatory diseases. Syringaldehyde (SYD) is a major phytoconstituent of A. indicum.To compare the mast cell stabilizing and anti-asthmatic effects of hydroalcoholic extract of A. indicum (HAEAI) and SYD, and to explore the possible molecular mechanisms. Compound 48/80 (C48/80) induced mesenteric mast cells degranulation in rats was evaluated after 7 days of SYD (25 and 50 mg/kg) and HAEAI (200 and 400 mg/kg). Anti-asthmatic activity was assessed in ovalbumin (OVA)-induced allergic asthma in mice, with SYD and HAEAI administered during the challenge phase. Inflammatory cell counts in blood and bronchoalveolar lavage fluid (BALF) were quantified. BALF Th2 cytokines (IL-4 and IL-13) and serum OVA-specific IgE were measured by ELISA, and lung histopathology was performed. Network pharmacology, molecular docking, and molecular dynamics simulation were used for mechanistic evaluation. SYD and HAEAI showed a substantial effect by inhibiting C48/80-induced degranulation of mast cells (p < 0.0001). In OVA-challenged mice, both treatments decreased inflammatory cell infiltration in BALF and blood, compared with the inducer control group, which showed elevated BALF cytokine levels of IL-4 (98.50 ± 6.56 pg/mL) and IL-13 (159.91 ± 9.56 pg/mL), treatment with HAEAI and SYD significantly reduced these inflammatory markers. HAEAI decreased IL-4 levels to 84.95 ± 3.73 pg/mL at the low dose and 67.20 ± 3.02 pg/mL at the high dose, while SYD reduced IL-4 levels to 66.91 ± 3.88 pg/mL and 55.90 ± 3.32 pg/mL at the low and high doses, respectively. Similarly, HAEAI reduced IL-13 levels to 143.50 ± 6.96 pg/mL at the low dose and 91.83 ± 9.06 pg/mL at the high dose, whereas SYD lowered IL-13 levels to 118.42 ± 4.86 pg/mL and 55.69 ± 3.74 pg/mL at the low and high doses, respectively.In addition, serum OVA-specific IgE levels were markedly reduced in the treatment groups compared with the inducer control group (557.84 ± 3.39 ng/mL). HAEAI reduced IgE levels to 378.44 ± 1.94 ng/mL at the low dose and 180.90 ± 1.30 ng/mL at the high dose. SYD also lowered serum OVA-specific IgE levels to 323.56 ± 1.93 ng/mL and 222.15 ± 1.55 ng/mL at the low and high doses, respectively. These findings indicate that both HAEAI and SYD exert significant anti-allergic effects by suppressing Th2 cytokines and reducing OVA-specific IgE production. and improved lung histopathology. In silico analysis showed a multi-target effect on allergic and inflammatory signalling. Followed by docking, a favourable ligand-protein interaction was observed during simulation. SYD and HAEAI have good mast cell stabilising and antiasthmatics effect, likely mediated through suppression of Th2-induced inflammation and multi-targeting allergic signalling pathways.

Journal of Computational Biophysics and Chemistry
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Mast cells and histamine
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