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1.
Molecules ; 25(24)2020 Dec 11.
Article in English | MEDLINE | ID: mdl-33322297

ABSTRACT

The potential of plant extracts as bioinsecticides has been described as a promising field of agricultural development. In this work, the extracts of Punica granatum (pomegranate), Phytolacca americana (American pokeweed), Glandora prostrata (shrubby gromwell), Ulex europaeus (gorce), Tagetes patula (French marigold), Camellia japonica red (camellia), Ruta graveolens (rue or herb-of-grace) were obtained, purified, and their activity against Spodoptera frugiperda (Sf9) insect cells was investigated. From the pool of over twenty extracts obtained, comprising different polarities and vegetable materials, less polar samples were shown to be more toxic towards the insect cell line Sf9. Among these, a dichloromethane extract of R. graveolens was capable of causing a loss of viability of over 50%, exceeding the effect of the commercial insecticide chlorpyrifos. This extract elicited chromatin condensation and the fragmentation in treated cells. Nanoencapsulation assays of the cytotoxic plant extracts in soybean liposomes and chitosan nanostructures were carried out. The nanosystems exhibited sizes lower or around 200 nm, low polydispersity, and generally high encapsulation efficiencies. Release assays showed that chitosan nanoemulsions provide a fast and total extract release, while liposome-based systems are suitable for a more delayed release. These results represent a proof-of-concept for the future development of bioinsecticide nanoformulations based on the cytotoxic plant extracts.


Subject(s)
Biological Control Agents/chemistry , Pesticides/chemistry , Plant Extracts/chemistry , Plant Leaves/chemistry , Animals , Camellia , Chitosan/chemistry , Fabaceae , Insecta , Insecticides/analysis , Liposomes/chemistry , Lithospermum , Nanostructures , Phytolacca americana , Pomegranate , Ruta , Solvents , Glycine max/drug effects , Tagetes
2.
Foods ; 9(6)2020 Jun 11.
Article in English | MEDLINE | ID: mdl-32545265

ABSTRACT

The aim of this work was to evaluate the color stability of betalain- and anthocyanin-rich extracts in yogurt-like fermented soy, in order to develop a preliminary understanding of how these pigments behave in this type of food system during storage for 21 days at 4 °C. Thus, the extracts of red beetroot, opuntia, hibiscus and red radish were integrated into the yogurt-like fermented soy in two different ways-directly after lyophilization, and encapsulated in nanosystems based in soybean lecithin-as this approach has never been used to further increase the value and potential of the dairy-free alternatives of yogurt-like fermented soy. The results showed that non-encapsulated betalain-rich extracts from red radish are the most promising for coloring yogurt-like fermented soy. However, encapsulated opuntia extracts can also be an alternative to supplement the soy fermented beverages with betalains, without changing significantly the color of the system but giving all its health benefits, due to the protection of the pigments by nanoencapsulation.

3.
Molecules ; 25(9)2020 May 10.
Article in English | MEDLINE | ID: mdl-32397593

ABSTRACT

The possibility of obtaining a carmine or pink color on ordinary cooked ham by applying natural dyes from three plant species, namely red radish (Raphanus sativus L.), hibiscus (Roselle sabdariffa L.) and red beetroot (Beta vulgaris L.), was investigated. The extracts were evaluated for the stability at physical-chemical parameters and subjected to cytotoxicity assays in the gastric cell line AGS Encapsulation of the extracts in soybean lecithin liposomes and maltodextrin microcapsules was performed. Lyophilized extracts before and after encapsulation in maltodextrin were applied in the formulation of ordinary cooked ham and used in a pilot scale of production. The color of cooked ham samples from different assays was evaluated visually and by colorimetry. The results suggest that the coloration of ordinary cooked ham obtained with extracts of red beetroot is very promising for future applications in this type of meat product.


Subject(s)
Beta vulgaris/chemistry , Betalains/analysis , Cooking/methods , Meat Products/standards , Plant Extracts/analysis , Pork Meat/standards , Betacyanins/analysis , Betacyanins/chemistry , Betacyanins/toxicity , Betalains/chemistry , Betalains/isolation & purification , Betalains/toxicity , Capsules/chemistry , Cell Line , Color , Colorimetry , Coloring Agents/chemistry , Coloring Agents/isolation & purification , Hibiscus/chemistry , Humans , Lecithins/chemistry , Liposomes/chemistry , Mass Spectrometry , Plant Extracts/chemistry , Plant Extracts/isolation & purification , Plant Extracts/toxicity , Polysaccharides/chemistry , Raphanus/chemistry , Glycine max/chemistry
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