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Digitalis purpurea L. is a cardenolide-producing medicinal and ornamental plant.
Cardenolides, like digoxin, are commonly used to treat congestive heart failure,
cardiac arrhythmia, and atrial fibrillation. More recently, its cytotoxic activity on
several types of cancer and antiviral effect have been confirmed. As chemical
synthesis is not viable, D. purpurea plants are one of the major sources of
cardenolides for the pharmaceutical industry. However, cardenolide content is
highly variable under natural conditions. Therefore, D. purpurea in vitro culture
has been a focus of research since the second half of the twentieth century. This
chapter is a compendium of these reports with emphasis on the effects of
morphogenesis, culture conditions, and in vitro culture medium composition on
cardenolide content. Besides, some studies on the genetic stability of Digitalis
plants are summarized. Finally, we describe the biotechnological approaches
reported so far to obtain a higher yield of cardenolides in vitro, such as elicitation and metabolic engineering, both recognized as promising strategies.
Cardenolides, like digoxin, are commonly used to treat congestive heart failure,
cardiac arrhythmia, and atrial fibrillation. More recently, its cytotoxic activity on
several types of cancer and antiviral effect have been confirmed. As chemical
synthesis is not viable, D. purpurea plants are one of the major sources of
cardenolides for the pharmaceutical industry. However, cardenolide content is
highly variable under natural conditions. Therefore, D. purpurea in vitro culture
has been a focus of research since the second half of the twentieth century. This
chapter is a compendium of these reports with emphasis on the effects of
morphogenesis, culture conditions, and in vitro culture medium composition on
cardenolide content. Besides, some studies on the genetic stability of Digitalis
plants are summarized. Finally, we describe the biotechnological approaches
reported so far to obtain a higher yield of cardenolides in vitro, such as elicitation and metabolic engineering, both recognized as promising strategies.
Originele taal-2 | English |
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Titel | Plant Cell and Tissue Differentiation and Secondary Metabolites |
Redacteuren | K Ramawat, H Ekiert, S Goyal |
Uitgeverij | Springer Nature Switzerland AG |
Pagina's | 1-18 |
Aantal pagina's | 18 |
ISBN van elektronische versie | 978-3-030-11253-0 |
DOI's | |
Status | Published - 3 feb 2020 |
Publicatie series
Naam | Reference Series in Phytochemistry |
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Vingerafdruk
Duik in de onderzoeksthema's van 'Shoot Organogenesis, Genetic Stability, and Secondary Metabolite Production of Micropropagated Digitalis purpurea.'. Samen vormen ze een unieke vingerafdruk.Projecten
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Prijzen
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National Prize of the Cuban Academy of Sciences 2023
Kairuz Hernández-Díaz, E. (Recipient), Pérez-Alonso, N. (Recipient), Chong Pérez, B. (Recipient), Capote-Perez, A. (Recipient), Pérez, A. (Recipient), Gonzalez Hernandez, D. (Recipient), Angenon, Geert (Recipient) & Rivero-Aragón, A. (Recipient), mei 2024
Prijs: Prize (including medals and awards)
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