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In vitro safety evaluation and anticlastogenic effect of BacoMind on human lymphocytes
Dlpanwita Dutta Deb1, Preeti Kapoor, R P Dighe
1Natural Remedies Pvt. Ltd, 19 K. M. Stone, Hosur Road, Plot No. 5B Veerasandra Indl. Area Bangalore 560100, India. dipanwita@naturalremedy.com
Objective:
BacoMind (BM) is a standardized extract of Bacopa monnieri, which belongs to the family Scrophulariaceae and is a creeping annual plant found throughout the Indian subcontinent. It has been used by Ayurvedic medicinal practitioners in India for almost 3000 years and is classified as a medharasayana, a substance which improves memory and intellect. With the widespread traditional use as well as scientific validation of Bacopa monnieri for nootropic activity, a bioactive-rich unique phytochemical composition-BacoMind was developed from B. monnieri for use as a cognition and memory enhancing agent. The present study aimed to investigate the in vitro toxicity of this formulation of BacoMind on human lymphocytes and to rule out its possible contribution to mutagenicity.
Methods:
In the present investigation the active ingredients present in BM were identified and quantified by high performance liquid chromatography (HPLC) and high performance thin-layer chromatography (HPTLC). Antioxidant and anticlastogenic properties of BM were studied in vitro with and without metabolic activation. Doses of BM were chosen on the basis of mitotic index (MI) and cytokinesis-block proliferation index (CBPI). Clastogenicity assays were performed at 31.2 microg/mL, 62.5 microg/mL, and 125 microg/mL, while the Salmonella reverse mutation assay (Ames test) was performed at doses of 61.72, 185.18, 555.55, 1666.67, and 5000.00 microg/plate.
Results:
HPLC and HPTLC analysis of BM revealed the presence of bacoside A3, bacopaside I, bacopaside II, jujubogenin isomer of bacopasaponin C, bacosine, luteolin, apigenin, bacosine, and beta-sitosterol D glucoside. BM demonstrated significant antioxidant activity. The number of chromosomal aberrations and the frequency of micronuclei induced by BM were not statistically significant up to a dose of 62.5 microg/mL. A subsequent dose of 125 microg/mL prior to metabolic activation induced mild clastogenicity, but it was found to be biologically insignificant as this effect was not seen post metabolic activation. BM also demonstrated a dose-dependent protection against the clastogens used in this study using the above tests for clastogenicity. Maximum protection was observed in presence of metabolic activation. Moreover, BM demonstrated no mutagenic effect on the tested strains, as observed in the Ames test.
Conclusion:
BM protected human lymphocytes against various clastogens. BM also exhibited high antioxidant activity which might be responsible for the observed protective effects against the clastogens since the used clastogens are known to induce their clastogenic effects via production of oxidative radicals.
Insights
BacoMind (BM), a Bacopa monnieri extract, showed significant antioxidant and anticlastogenic effects in vitro, protecting human lymphocytes without mutagenicity. This study confirms BM
Area of Science:
- Pharmacology and Toxicology
- Phytochemistry
- Genetics and Molecular Biology
Background:
- BacoMind (BM) is a standardized Bacopa monnieri extract with a long history of traditional use for cognitive enhancement.
- Bacopa monnieri is recognized for its nootropic properties, attributed to its unique phytochemical composition.
- Previous research supports the nootropic activity of Bacopa monnieri, necessitating further investigation into its safety profile.
Purpose of the Study:
- To evaluate the in vitro toxicity of BacoMind (BM) on human lymphocytes.
- To assess the potential mutagenicity of BacoMind (BM) using standard assays.
- To investigate the antioxidant and anticlastogenic properties of BacoMind (BM).
Main Methods:
- Phytochemicals in BM were identified and quantified using HPLC and HPTLC.
- In vitro antioxidant and anticlastogenic activities were assessed with and without metabolic activation.
- Clastogenicity was evaluated at specific doses, and mutagenicity was tested using the Ames assay.
Main Results:
- HPLC and HPTLC confirmed the presence of key bioactive compounds in BM.
- BM exhibited significant antioxidant activity and dose-dependent protection against clastogens.
- BM showed no statistically significant clastogenicity or mutagenicity at tested concentrations, with mild effects at higher doses being biologically insignificant post-metabolic activation.
Conclusions:
- BacoMind (BM) demonstrates protective effects on human lymphocytes against clastogens, likely due to its potent antioxidant activity.
- The study indicates that BacoMind (BM) is not mutagenic in vitro.
- These findings support the safety profile of BacoMind (BM) as a cognition-enhancing agent.
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