Artificial Neural Networks and Response Surface Methodology approach for optimization of an eco-friendly and detergent-stable lipase production from Actinomadura keratinilytica strain Cpt29
Autor: | Selma Bounour, Bilal Kerouaz, Inès Belhaj, Noura Semache, Ali Gargouri, Fatiha Benamia, Ali Ladjama, Hafedh Belghith, Zeineddine Djeghaba |
---|---|
Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
Detergents
rsm Actinomadura engineering.material Detergent stable Fungal Proteins Hydrolysis Bacterial Proteins Enzyme Stability lipase Food science Response surface methodology Lipase ann QD1-999 Actinomadura keratinilytica Triglycerides General Environmental Science Strain (chemistry) biology Compost Chemistry Environmentally friendly Kinetics actinomadura keratinilytica Saccharomycetales engineering biology.protein General Earth and Planetary Sciences Neural Networks Computer optimization detergent |
Zdroj: | Acta Chimica Slovenica, Vol 68, Iss 3, Pp 575-586 (2021) |
ISSN: | 1580-3155 1318-0207 |
Popis: | This work mainly focused on the production of an efficient, economical, and eco-friendly lipase (AKL29) from Actinomadura keratinilytica strain Cpt29 isolated from poultry compost in north east of Algeria, for use in detergent industries. AKL29 shows a significant lipase activity (45 U/mL) towards hydrolyzed triacylglycerols, indicating that it is a true lipase. For maximum lipase production the modeling and optimization of potential culture parameters such as incubation temperature, cultivation time, and Tween 80 (v/v) were built using RSM and ANN approaches. The results show that both the two models provided good quality predictions, yet the ANN showed a clear superiority over RSM for both data fitting and estimation capabilities. A 4.1-fold increase in lipase production was recorded under the following optimal condition: incubation temperature (37.9 °C), cultivation time (111 h), and Tween 80 (3.27%, v/v). Furthermore, the partially purified lipase showed good stability, high compatibility, and significant wash performance with various commercial laundry detergents, making this novel lipase a promising potential candidate for detergent industries. |
Databáze: | OpenAIRE |
Externí odkaz: |