scholarly journals Current State of the Art on the Antioxidant Activity of Sage (Salvia spp.) and Its Bioactive Components

Planta Medica ◽  
2020 ◽  
Vol 86 (04) ◽  
pp. 224-238 ◽  
Author(s):  
Efthymios Poulios ◽  
Constantinos Giaginis ◽  
Georgios K. Vasios

AbstractCommon sage (Salvia spp., with the most common species Salvia officinalis) is an important medicinal and aromatic plant due to its bioactive components, secondary products of its metabolism. These components are mainly phenolics, terpenoids, polyphenols, and flavonoids. Many studies have identified their important role in fighting oxidative stress in cells and organisms, together with their anticancer, antimicrobial, and anti-inflammatory role. There are many methods measuring the antioxidant activity of sage phenolic components, usually based on radical scavenging of free radical species, such as 2,2-diphenyl-1-picrylydrazyl and 2,2′-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid), and determining the absorbance of the reduced product by a photometric assay. In addition, there are several in vitro and in vivo studies determining the protection of sage extracts in cells in culture or animals, respectively, after induction of oxidative stress. In this review, results from the currently available studies that unravel the significant role of sage bioactive compounds, as antioxidant compounds, and the variety of methods used have been critically analyzed and discussed.

Nanomaterials ◽  
2019 ◽  
Vol 9 (11) ◽  
pp. 1565 ◽  
Author(s):  
Turin-Moleavin ◽  
Fifere ◽  
Lungoci ◽  
Rosca ◽  
Coroaba ◽  
...  

Background. Cerium oxide nanoparticles present the mimetic activity of superoxide dismutase, being able to inactivate the excess of reactive oxygen species (ROS) correlated with a large number of pathologies, such as stents restenosis and the occurrence of genetic mutations that can cause cancer. This study presents the synthesis and biological characterisation of nanoconjugates based on nanoparticles of iron oxide interconnected with cerium oxide conjugates. Methods. The synthesis of magnetite-nanoceria nanoconjugates has been done in several stages, where the key to the process is the coating of nanoparticles with polyethyleneimine and its chemical activation-reticulation with glutaraldehyde. The nanoconjugates are characterised by several techniques, and the antioxidant activity was evaluated in vitro and in vivo. Results. Iron oxide nanoparticles interconnected with cerium oxide nanoparticles were obtained, having an average diameter of 8 nm. Nanoconjugates prove to possess superparamagnetic properties and the saturation magnetisation varies with the addition of diamagnetic components in the system, remaining within the limits of biomedical applications. In vitro free-radical scavenging properties of nanoceria are improved after the coating of nanoparticles with polyethylenimine and conjugation with magnetite nanoparticles. In vivo studies reveal increased antioxidant activity in all organs and fluids collected from mice, which demonstrates the ability of the nanoconjugates to reduce oxidative stress. Conclusion. Nanoconjugates possess magnetic properties, being able to scavenge free radicals, reducing the oxidative stress. The combination of the two properties mentioned above makes them excellent candidates for theranostic applications.


Biomolecules ◽  
2020 ◽  
Vol 10 (10) ◽  
pp. 1435 ◽  
Author(s):  
Stella Maria Andrade Gomes Barreto ◽  
Cesar Orlando Muñoz Cadavid ◽  
Rafael Amir de Oliveira Moura ◽  
Giovanna Melo Martins Silva ◽  
Samara Vitória Ferreira de Araújo ◽  
...  

Agave sisalana agro-industrial residue has considerable potential against damage associated with oxidative stress and skin aging. This study aims to demonstrate, in vitro and in vivo, the potential of Agave sisalana agro-industrial residue as a safe and effective alternative for the prevention of damage caused by oxidative stress and aging. The antioxidant activity was evaluated in vitro (total antioxidant capacity, reducing power, DPPH radical scavenging, metal chelating (Fe2+ and Cu2+), and hydroxyl radical scavenging) and in vivo using the Caenorhabditis elegans organism model. The extract showed in vitro antioxidant activity in all tests performed. Tests with C. elegans showed that the extract was able to reduce the intracellular levels of reactive oxygen species (ROS) and increase the survival rate of worms. A downregulation of gst-4::GFP expression suggests a direct action against free radicals. Agave sisalana agro-industrial residue extract (AsRE) can therefore be considered as a source of antioxidant biomolecules, and the use of this agro-industrial residue in a new production process can lead to sustainability and socioeconomic development.


2008 ◽  
Vol 5 (s2) ◽  
pp. 1123-1132 ◽  
Author(s):  
H. Vijay Kumar ◽  
C. R. Gnanendra ◽  
Nagaraja Naik ◽  
D. Channe Gowda

Dibenz[b,f]azepine and its five derivatives bearing different functional groups were synthesized by known methods. The compounds thus synthesized were evaluated for antioxidant potential through different in vitro models such as (DPPH) free radical scavenging activity,ß-carotene-linoleic acid model system, reducing power assay and phosphomolybdenum method. Under our experimental condition among the synthesized compounds dibenz[b,f]azepine (a) and 10-methoxy-5H-dibenz[b,f]azepine (d) exhibited potent antioxidant activity in concentration dependent manner in all the above four methods. Butylated hydroxyl anisole (BHA) and ascorbic acid (AA) were used as the reference antioxidant compounds. The most active compounds like dibenz[b,f]azepine and its methoxy group substituent have shown more promising antioxidant and radical scavengers compared to the standards like BHA and ascorbic acid. It is conceivable from the studies that the tricyclic amines,i.e. dibenz[b, f]azepine and some of its derivatives are effective in their antioxidant activity properties.


Author(s):  
Shubharani Ramnath ◽  
Sivaram Venkataramegowda

Antioxidants from the natural products are essential to prevent the progression of free radical mediated diseases. In the present study, ethanol extract of propolis collected from different geographical origin were evaluated for their free radical scavenging potential by employing different in-vitro assays such as DPPH, ABTS, Nitric oxide and Hydrogen peroxide. All the tested samples contained considerable amount of total phenols and vitamin C content. In the entire assay, the percentage of inhibition increased with the increase in concentration. Among the propolis samples collected, the highest activity was found in Tamil Nadu, Kerala, Karnataka and Haryana. The difference in the antioxidant activity level was obtained from the assay may reflect a relative difference in the ability of antioxidant compounds to scavenge different free radicals in the extract. Phenols and vitamin C are the major contributors to antioxidant activity in propolis. The propolis from these locations may be of considerable interest in preventing the ill effects of excessive free radical generation in the human body.


Antioxidants ◽  
2020 ◽  
Vol 9 (1) ◽  
pp. 76 ◽  
Author(s):  
Natividad Chaves ◽  
Antonio Santiago ◽  
Juan Carlos Alías

Plants have a large number of bioactive compounds with high antioxidant activity. Studies for the determination of the antioxidant activity of different plant species could contribute to revealing the value of these species as a source of new antioxidant compounds. There is a large variety of in vitro methods to quantify antioxidant activity, and it is important to select the proper method to determine which species have the highest antioxidant activity. The aim of this work was to verify whether different methods show the same sensitivity and/or capacity to discriminate the antioxidant activity of the extract of different plant species. To that end, we selected 12 species with different content of phenolic compounds. Their extracts were analyzed using the following methods: 2,2-di-phenyl-1-picrylhydrazyl (DPPH) radical scavenging capacity assay, ferric reducing (FRAP) assay, Trolox equivalent antioxidant capacity (ABTS) assay, and reducing power (RP) assay. The four methods selected could quantify the antioxidant capacity of the 12 study species, although there were differences between them. The antioxidant activity values quantified through DPPH and RP were higher than the ones obtained by ABTS and FRAP, and these values varied among species. Thus, the hierarchization or categorization of these species was different depending on the method used. Another difference established between these methods was the sensitivity obtained with each of them. A cluster revealed that RP established the largest number of groups at the shortest distance from the root. Therefore, as it showed the best discrimination of differences and/or similarities between species, RP is considered in this study as the one with the highest sensitivity among the four studied methods. On the other hand, ABTS showed the lowest sensitivity. These results show the importance of selecting the proper antioxidant activity quantification method for establishing a ranking of species based on this parameter.


2012 ◽  
Vol 66 (4) ◽  
pp. 547-552 ◽  
Author(s):  
Marija Radojkovic ◽  
Zoran Zekovic ◽  
Senka Vidovic ◽  
Drago Kocar ◽  
Pavle Maskovic

Mulberry (Morus spp. L., Moraceae) fruits, leaves, bark and branch have been used in traditional medicine as diuretic, hypoglycemic and hypotensive. The mechanism of their effects is correlated with the content of active components. Objective of this work was to evaluate and compare antioxidant properties of different extracts of two Morus species growing in Serbia: Morus alba L. (white mulberry) and Morus nigra L. (black mulberry). Potential antioxidant activity, content of antioxidant compounds (phenolics and flavonoids) and radical scavenging capacity, tested by DPPH method, were evaluated. The phenolic and flavonoid composition of different Morus extracts was determined by the HPLC method. The extracts prepared from fruits, leaves and roots of M. alba and M. nigra exhibited different characteristics. The highest extraction yield was achieved by M. alba leaves extraction (23.40%). M. nigra roots extract shown the highest total phenolics (186.30 mg CAE/g), while highest total flavonoids content (67.37 mg RE/g) was determined for M. nigra leaves extracts. In addition, black mulberry leaves extracts with the highest antioxidant activity had the highest phenolic acids contents. The dominant phenolic components in the samples were rutin and chlorogenic acid. All investigated mulberry dry extracts shown high content of phenolic compounds and significant antioxidant activity. This work contributes to knowledge of the antioxidant properties of Morus species. The obtained results may be useful in the evaluation of new dietary supplements and food products.


2021 ◽  
Vol 16 (2) ◽  
pp. 1934578X2199767
Author(s):  
Quang-Vinh Nguyen ◽  
Thi-Tuoi Vu ◽  
Minh-Trang Tran ◽  
Phuong Tham Ho Thi ◽  
Huynh Thu ◽  
...  

Cordyceps is a well-known and valuable fungal Chinese medicine and health food. The polysaccharides from C. sinensis have been reported as the main bioactive components, which possess antioxidant, anti-aging, and liver protective activities. This study aimed to investigate the in vitro antioxidative and protective effects of exopolysaccharides (EPS) from cultivated Ophiocordyceps sinensis (O. sinensis) on rats with liver damage induced by CCl4. The results indicated that cultivated O. sinensis EPS possess moderate ABTS and hydroxyl radical scavenging abilities with IC50 values of 2.00 and 3.78 mg/mL, respectively. EPS and the positive control (silymarin) could also protect rat liver from the oxidative effect induced by CCl4 via increasing GSH levels, reducing MAD levels and decreasing serum AST and ALT activities. Moreover, the changes in histopathological liver tissue showed that EPS significantly reduced the damage induced by CCl4 in the liver. The findings suggest that EPS possesses a significant hepatoprotective effect against hepatotoxicity induced by CCl4 in rats.


2020 ◽  
Vol 14 (6) ◽  
pp. 2352-2361
Author(s):  
Hèzouwè Kagnou ◽  
Oudjaniyobi Simalou ◽  
Gneiny Whad Tchani ◽  
Sabrina Sanvee ◽  
Kokou Agbékonyi Agbodan ◽  
...  

Catharanthus roseus (L.) G. Don, est une plante médicinale largement utilisée en tradithérapie contre le diabète, l’hypertension, le cancer et les effets du stress oxydatif. Elle existe en trois variétés ("rosea", "alba" et "hybride") selon la couleur des fleurs. L’étude actuelle porte sur le criblage phytochimique et l’activité antioxydante in vitro (DPPH et FRAP) de l’extrait hydro-éthanolique des trois variétés. Les tests ont été effectués sur les extraits des feuilles, fleurs et racines. On a noté la présence des alcaloïdes, phénols, flavonoïdes, tanins, saponines, stérols, terpènes et quinines. Cependant, l’absence des sucres réducteurs, des flavonoïdes et des saponines dans les racines ainsi que les quinines dans les feuilles a été relevée. L'analyse comparative par piégeage du radical DPPH a montré que les extraits des fleurs et racines de l’hybride étaient plus actifs, respectivement de 130,023±3,2 et 131,189±1,8 mg EqQ/g. Une tendance différente a été observée dans les extraits des feuilles où la meilleure valeur DPPH de 65,746±2,5 mg EqQ/g est attribuée à "rosea" alors que celle du FRAP de 139,935±2,57 mg EqAA/g provient de "alba". Ces résultats devraient encourager la poursuite des travaux sur l'identification et la caractérisation de nouveaux composés bioactifs sélectivement abondant pour une meilleure valorisation de Catharanthus roseus sur le plan de phytomédicaments.Mots clés : Catharanthus roseus, variétés, criblage phytochimique, antioxydant. English Title: Phytochemical study and comparative antioxidant activity of the three varieties of Catharanthus roseus (L.) G. DonCatharanthus roseus (L.) G. Don, is a medicinal plant widely used in the treatment of diabetes, hypertension, cancer, and effects of oxidative stress. C. roseus exists in three varieties ("rosea", "alba" and "hybrid") depending on the colour of the flowers. This study focused on phytochemical screening and in vitro antioxidant activity (DPPH and FRAP) of the hydro-ethanol extract of the three varieties. The tests were carried out on leaves, flowers, and roots extracts. The presence of alkaloids, phenols, flavonoids, tannins, saponins, sterols, terpenes, and quinines were noted. However, the absence of reducing sugars, flavonoids, and saponins in the roots and quinines in the leaves was observed. Comparative analysis of DPPH radical scavenging showed that extracts from the flowers and roots of the hybrid were more active, respectively at 130.023±3.2 and 131.189±1.8 mg EqQ/g. FRAP values of the same samples were 175.166± 9.28 and 121.311±7.8 mg EqAA/g dry matter. For the leaves, the best DPPH value of 65.746±2.5 mg EqQ/g was attributed to "rosea" while the FRAP value of 139.935±2.57 mg EqAA/g was for "alba". These interesting antioxidant activities of the "hybrid" variety may be useful against oxidative stress pathologies. The current study might then promote the continuing identification and characterization of new bioactive compounds for a development of Catharanthus roseus.Keywords: Catharanthus roseus, varieties, phytochemical screening, antioxidant.  


Nanomaterials ◽  
2021 ◽  
Vol 11 (10) ◽  
pp. 2658
Author(s):  
Rúben G. R. Pinheiro ◽  
Marina Pinheiro ◽  
Ana Rute Neves

Quercetin is a flavonol present in many vegetables and fruits. Generally, quercetin can be found in aglycone and glycoside forms, mainly in leaves. The absorption of this compound occurs in the large and small intestine, where it suffers glucuronidation, sulfidation, and methylation to improve hydrophilicity. After metabolization, which occurs mainly in the gut, it is distributed throughout the whole organism and is excreted by feces, urine, and exhalation of carbon dioxide. Despite its in vitro cytotoxicity effects, in vivo studies with animal models ensure its safety. This compound can protect against cancer, cardiovascular diseases, chronic inflammation, oxidative stress, and neurodegenerative diseases due to its radical scavenging and anti-inflammatory properties. However, its poor bioavailability dampens the potential beneficial effects of this flavonoid. In that sense, many types of nanocarriers have been developed to improve quercetin solubility, as well as to design tissue-specific delivery systems. All these studies manage to improve the bioavailability of quercetin, allowing it to increase its concentration in the desired places. Collectively, quercetin can become a promising compound if nanotechnology is employed as a tool to enhance its therapeutic efficacy.


Author(s):  
Gyanendra Narayan Mohapatra ◽  
Bimala Tripathy ◽  
B.V.V. Ravi Kumar ◽  
Bimalendu Chowdhury ◽  
Rajaram Das

Background: Presence of free radicals in human body are harmful and cell systems are induce many diseases like cardiovascular, diabetes, cancer, inflammation, neuro-degenerative disorder, atherosclerosis, cataract, etc. Antioxidants can balance the effect of free radicals. Antioxidant-rich herbs are identified for preparation of drugs that can be administered to neutralize the free radicals. In the present context the selected medicinal plant is “Origanum majorana” (Family- Lamiaceae) widely known as Marwa in India sub-continent. As the medical professionals show their desires towards composite or lateral treatment, application of drugs with herbal origin gained its importance. Objective: This review presented various in vitro and in vivo methods used in the antioxidant activity study of O.majorana and observed its efficacy to reduce oxidative stress. Methods: Referred many reliable sources like Research gate, PubMed, Science Direct, Google scholar, Wiley online library, books to collect all information about the antioxidant activity of the selected plant. Results: Used several methods to determine the antioxidants activity of O.majorana, such as superoxide radical scavenging, ferric ion reducing antioxidant potency, thiobarbituric acid reactive substances, hydrogen peroxide scavenging, hydroxyl radical scavenging, lipid peroxidation inhibition, etc. The selected plant contains many phytoconstituents such as gallic acid, ferulic acid, apigenin, catechin, rutin, quercetin, luteolin, linolenic acid, β-sitosterol, and essential oils, which may be responsible for antioxidant activity. Conclusions : The review article provides information for investigating and developing new antioxidant methods and major phytoconstituents from O.majorana for better therapy of oxidative stress-mediated complications.


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