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Protection against radiation clastogenecity in mouse bone marrow by Phyllanthus niruri
Indu Thakur1, P Uma Devi, Papiya Bigoniya
1Department of Research, Jawaharlal Nehru Cancer Hospital and Research Centre, Idgah Hills, Bhopal 462002, India.
The alcoholic extract of P. niruri (PnA1) demonstrated significant radioprotective effects against gamma radiation by reducing chromosomal aberrations. This effect is likely due to its potent antioxidant and free radical scavenging properties, exceeding those of the aqueous extract (PnAq).
Area of Science:
- Pharmacology and Toxicology
- Natural Product Chemistry
- Radiation Biology
Background:
- Gamma radiation exposure induces chromosomal aberrations, posing significant health risks.
- Phyllanthus niruri (P. niruri) extracts are traditionally used for medicinal purposes.
- Understanding the radioprotective potential of natural compounds is crucial for developing therapeutic strategies.
Purpose of the Study:
- To evaluate the in vivo radioprotective effects of aqueous (PnAq) and alcoholic (PnA1) extracts of P. niruri against gamma radiation-induced chromosomal aberrations.
- To assess the in vitro antioxidant activity, including free radical scavenging, pro-oxidant, and iron chelating abilities of the extracts.
- To correlate phytochemical composition with observed biological activities.
Main Methods:
- In vitro antioxidant assays: Hydroxyl radical scavenging, pro-oxidant activity, and iron chelating ability were measured.
- In vivo study: Chromosomal aberration frequency was analyzed in mice exposed to gamma radiation (4 Gy) and treated with P. niruri extracts (50-250 mg/kg).
- Phytochemical analysis: Qualitative screening for secondary metabolites like flavonoids, polyphenols, and lignans was performed.
Main Results:
- The alcoholic extract (PnA1) exhibited significant in vitro free radical scavenging ability, particularly at concentrations above 250 microg/ml.
- Aqueous extract (PnAq) demonstrated notable pro-oxidant activity, whereas PnA1 did not show this effect.
- Administration of PnA1 (250 mg/kg) significantly reduced gamma radiation-induced chromosomal aberrations compared to the radiation-only group.
- The alcoholic extract showed greater radioprotective efficacy than the aqueous extract.
- Phytochemical analysis revealed the presence of flavonoids, polyphenols, lignans, and other compounds in both extracts.
Conclusions:
- The alcoholic extract of P. niruri possesses significant radioprotective properties, likely attributed to its potent antioxidant activity and rich content of polyphenolic compounds.
- PnA1 is a promising candidate for further investigation as a radioprotective agent.
- The findings support the traditional use of P. niruri and highlight the importance of phytochemical constituents in mediating its biological effects.
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