Efficient strategies for controlled release of nanoencapsulated phytohormones to improve plant stress tolerance DOI Creative Commons
Jimmy Sampedro‐Guerrero, Vicente Vives‐Peris, ‪Aurelio Gómez‐Cadenas

et al.

Plant Methods, Journal Year: 2023, Volume and Issue: 19(1)

Published: May 15, 2023

Abstract Climate change due to different human activities is causing adverse environmental conditions and uncontrolled extreme weather events. These harsh are directly affecting the crop areas, consequently, their yield (both in quantity quality) often impaired. It essential seek new advanced technologies allow plants tolerate stresses maintain normal growth development. Treatments performed with exogenous phytohormones stand out because they mitigate negative effects of stress promote rate plants. However, technical limitations field application, putative side effects, difficulty determining correct dose, limit widespread use. Nanoencapsulated systems have attracted attention a controlled delivery active compounds for protection eco-friendly shell biomaterials. Encapsulation continuous evolution development improvement techniques economically affordable environmentally friendly, as well biomaterials high affinity carry coat bioactive compounds. Despite potential an efficient alternative phytohormone treatments, encapsulation remain relatively unexplored date. This review aims emphasize treatments means enhancing plant tolerance, specific focus on benefits that can be gained through improved application these using techniques. Moreover, main techniques, materials recent work treated encapsulated been compiled.

Language: Английский

Bigels as novel carriers of bioactive compounds: Applications and research trends DOI

Behnaz Hashemi,

Elham Assadpour, Seid Mahdi Jafari

et al.

Food Hydrocolloids, Journal Year: 2023, Volume and Issue: 147, P. 109427 - 109427

Published: Oct. 20, 2023

Language: Английский

Citations

17

Carvacrol nanocapsules as a new antifungal strategy: Characterization and evaluation against fungi important for grape quality and to control the synthesis of ochratoxins DOI

Athos Tópor,

Flávio Fonseca Veras, Fabíola Ayres Cacciatore

et al.

International Journal of Food Microbiology, Journal Year: 2024, Volume and Issue: 416, P. 110659 - 110659

Published: March 2, 2024

Language: Английский

Citations

6

Biological activities of fig latex -loaded cellulose acetate/poly(ethylene oxide) nanofiber for potential therapeutics: Anticancer and antioxidant material DOI
Gomaa El Fawal, Sherien E. Sobhy, E. S. E. Hafez

et al.

International Journal of Biological Macromolecules, Journal Year: 2024, Volume and Issue: 270, P. 132176 - 132176

Published: May 13, 2024

Language: Английский

Citations

6

75 Years of Vitamin A Production: A Historical and Scientific Overview of the Development of New Methodologies in Chemistry, Formulation, and Biotechnology DOI Creative Commons

Werner Bonrath,

Bo Gao,

Peter Houston

et al.

Organic Process Research & Development, Journal Year: 2023, Volume and Issue: 27(9), P. 1557 - 1584

Published: Aug. 14, 2023

In 1948, the first kilograms of synthetic vitamin A (acetate) were produced by F. Hoffmann-La Roche, eliminating need to extract this vital compound from natural sources; year marks 75 years successful production. Since then, a number chemical routes have been commercialized. Of these, three processes stood test time and are still in use today, with only minor modifications. This review covers both historical scientific developments production derivatives their beginnings up until recent including fully catalytic process pilot-scale via fermentation. addition, development formulation technologies, which gone hand-in-hand development, is described; correct essential for stabilizing sensitive light oxidation.

Language: Английский

Citations

16

Efficient strategies for controlled release of nanoencapsulated phytohormones to improve plant stress tolerance DOI Creative Commons
Jimmy Sampedro‐Guerrero, Vicente Vives‐Peris, ‪Aurelio Gómez‐Cadenas

et al.

Plant Methods, Journal Year: 2023, Volume and Issue: 19(1)

Published: May 15, 2023

Abstract Climate change due to different human activities is causing adverse environmental conditions and uncontrolled extreme weather events. These harsh are directly affecting the crop areas, consequently, their yield (both in quantity quality) often impaired. It essential seek new advanced technologies allow plants tolerate stresses maintain normal growth development. Treatments performed with exogenous phytohormones stand out because they mitigate negative effects of stress promote rate plants. However, technical limitations field application, putative side effects, difficulty determining correct dose, limit widespread use. Nanoencapsulated systems have attracted attention a controlled delivery active compounds for protection eco-friendly shell biomaterials. Encapsulation continuous evolution development improvement techniques economically affordable environmentally friendly, as well biomaterials high affinity carry coat bioactive compounds. Despite potential an efficient alternative phytohormone treatments, encapsulation remain relatively unexplored date. This review aims emphasize treatments means enhancing plant tolerance, specific focus on benefits that can be gained through improved application these using techniques. Moreover, main techniques, materials recent work treated encapsulated been compiled.

Language: Английский

Citations

15