Biotechnology Strategies for Bioactive Compound Extraction
- ,
- Orlando Daniel de la Rosa-Flores,
- Elda M. Melchor-Martínez,
- Roberto Parra-Saldívar(corresponding author)
- Instituto Tecnologico de Estudios Superiores de Monterrey,
- Universidad Autonoma de Nuevo Leon,
- Cranfield University,
- Integration Engineering and Construction Systems
Sustainable Development Goals
- SDG 14 Life Below Water
Abstract
The marine environment is a relatively unexplored source of bioactive compounds that can be used in several industries in various ways. Some organisms live in harsh environmental conditions, resulting in complex compounds with unique biological properties. One of the main challenges for their application into the industry is their extraction, one of the most crucial stages in developing products containing bioactive compounds from marine sources. Soxhlet extraction is the most common method applied at lab and pilot scales to obtain compounds from any natural source. However, this method is based on using solvents that can be harmful to the environment and affect the biological properties of the compounds. For this, biotechnological extraction techniques such as fermentation, enzyme-assisted extraction, and molecular tools have emerged as alternatives to traditional methods that enable the extraction of high-quality bioactive compounds without using harmful solvents. Besides, these technologies have shown great potential to be applied at the industrial scale once the optimization of the process has been carried out. This chapter focuses on the potential use of biotechnological tools for extraction, considering the factors that affect the yields and downstream process of marine-derived bioactive compounds for further applications in the industry.
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 49-67 (19 pages)Publication milestones
- Published - 2025
Publication status
Publisher
Springer, GermanyPublication series
- Publication series name: Interdisciplinary Biotechnological Advances
ISSN (Print): 2730-7069
ISSN (Electronic): 2730-7077
Volume: Part F12684
Publication IDs
- Scopus: 105044962189
