Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phytochemical Screening and Antioxidant Profile of Syngonium podophyllum Schott Stems: A Fecund Phytopharmakon

View through CrossRef
Background: Oxidative stress has been shown to play an imperative role in copious disease pathology. Plants are acquaintances of mankind and mainstay for the treatment of oxidative stress linked disorders. Therefore, the objective of the existing study was to assess the phytochemical contents and antioxidant activity of crude methanol extract (CME), n-hexane (NHF), chloroform (CLF), ethyl acetate (EAF) and aqueous (AQF) fractions of Syngonium podophyllum (S. podophyllum) Schott stems.Methods: The S. podophyllum Schott stems extract and its fractions were subjected to phytochemical analysis to detect the presence of alkaloids, carbohydrates, saponins, tannins, resins, flavonoids and steroids. The antioxidant profile was determined by total antioxidant activity (TAA), reducing power activity (RPA) and DPPH (2,2-diphenyl-1-picrylhydrazyl) radical scavenging activity tests and correlated with the estimation of total flavonoid content (TFC).Results: In CME and its fractions of S. podophyllum Schott stems all of the tested phytoconstituents (alkaloids, tannins, resins, flavonoids and steroids) were detected at various concentration except carbohydrates and saponins. In TAA test, highest absorbance (2.18 nm) which is a measure of high antioxidant activity was reported in CME compared to remaining fractions. Likely in RPA test with respect to all fractions similar denouements were found for CME (3.29 nm). In case of DPPH scavenging test, the CME showed highest scavenging activity (77.89 %) having IC50 of 41.02 ?g/ml (P < 0.05) compared to remaining fractions. The antioxidant activity is possibly due to the highest TFC (7.45 mg of GAE/g of dried extract) reported in CME compared to existing fractions.Conclusion: The aforementioned outcomes recommend that CME of S. podophyllum Schott stems can be a possible cradle of plant-derived natural antioxidant and can be used to avert diseases linked with free radicals.
Title: Phytochemical Screening and Antioxidant Profile of Syngonium podophyllum Schott Stems: A Fecund Phytopharmakon
Description:
Background: Oxidative stress has been shown to play an imperative role in copious disease pathology.
Plants are acquaintances of mankind and mainstay for the treatment of oxidative stress linked disorders.
Therefore, the objective of the existing study was to assess the phytochemical contents and antioxidant activity of crude methanol extract (CME), n-hexane (NHF), chloroform (CLF), ethyl acetate (EAF) and aqueous (AQF) fractions of Syngonium podophyllum (S.
podophyllum) Schott stems.
Methods: The S.
podophyllum Schott stems extract and its fractions were subjected to phytochemical analysis to detect the presence of alkaloids, carbohydrates, saponins, tannins, resins, flavonoids and steroids.
The antioxidant profile was determined by total antioxidant activity (TAA), reducing power activity (RPA) and DPPH (2,2-diphenyl-1-picrylhydrazyl) radical scavenging activity tests and correlated with the estimation of total flavonoid content (TFC).
Results: In CME and its fractions of S.
podophyllum Schott stems all of the tested phytoconstituents (alkaloids, tannins, resins, flavonoids and steroids) were detected at various concentration except carbohydrates and saponins.
In TAA test, highest absorbance (2.
18 nm) which is a measure of high antioxidant activity was reported in CME compared to remaining fractions.
Likely in RPA test with respect to all fractions similar denouements were found for CME (3.
29 nm).
In case of DPPH scavenging test, the CME showed highest scavenging activity (77.
89 %) having IC50 of 41.
02 ?g/ml (P < 0.
05) compared to remaining fractions.
The antioxidant activity is possibly due to the highest TFC (7.
45 mg of GAE/g of dried extract) reported in CME compared to existing fractions.
Conclusion: The aforementioned outcomes recommend that CME of S.
podophyllum Schott stems can be a possible cradle of plant-derived natural antioxidant and can be used to avert diseases linked with free radicals.

Related Results

Environmental Factors Influencing Phytochemical Production for Enhanced Phytochemical Defense
Environmental Factors Influencing Phytochemical Production for Enhanced Phytochemical Defense
Phytochemicals are essential compounds in plants that serve as advanced defense mechanisms against various environmental stressors. This chapter delves into the environmental facto...
Podophyllum–A Dangerous Laxative
Podophyllum–A Dangerous Laxative
A physician asked the Food and Drug Administration (FDA) for information regarding podophyllum. He had under his care an infant born with phocomelia manifested by bilateral absence...
Review of phytochemical and antioxidant properties of Ethiopian medicinal plants
Review of phytochemical and antioxidant properties of Ethiopian medicinal plants
Abstract Ethiopia possesses a rich ethnobotanical heritage and diverse medicinal flora that play an important role in traditional healthcare....
Phytochemical Evaluation and Antioxidant Capacity of Ganoderma lucidum and Pleurotus pulmonarius in Ibadan, Nigeria
Phytochemical Evaluation and Antioxidant Capacity of Ganoderma lucidum and Pleurotus pulmonarius in Ibadan, Nigeria
Aims: To evaluate the phytochemical constituents and antioxidant properties of two selected mushrooms in Ibadan, Nigeria. Study Design: An experimental and descriptive study ...
Abstract A5: Cytotoxic Extracts of Ethnomedicinal Plants: Podophyllum peltatum (Mayapple) and Echinacea angustifolia
Abstract A5: Cytotoxic Extracts of Ethnomedicinal Plants: Podophyllum peltatum (Mayapple) and Echinacea angustifolia
Abstract Phytochemical and other natural compounds are historically established as cures for many ailments in rural America and other developing countries. Our lab i...

Back to Top