In vitro digestion models are essential to predictively evaluate the bioaccessibility and bioactivity of food molecules or natural products. Dynamic models better simulate the gastrointestinal conditions as they reproduce similar physiological environments. Despite this, static methods, also known as biochemical methods, represent a simple and useful approach for the study of different types of molecules, with a broad applicability in the nutritional, pharmaceutical, and toxicological fields. In addition, static models can be validated, avoiding the disadvantage of a difficult reproducibility of dynamic in vitro systems and inter-individual variations of in vivo experiments. A crucial point in the standardization of static models was the COST Action Infogest in 2014, which elaborated an international consensus static digestion method to harmonize experimental conditions and has general guidelines, thus allowing the comparison of studies and data. The aim of our review is to underline the impact of the Infogest consensus method and the development and evolution of in vitro static methods in the following years, with a focus on food applications.

Advances in static: In vitro digestion models after the COST action Infogest consensus protocol

Colombo R.;Ferron L.;Frosi I.;Papetti A.
2021-01-01

Abstract

In vitro digestion models are essential to predictively evaluate the bioaccessibility and bioactivity of food molecules or natural products. Dynamic models better simulate the gastrointestinal conditions as they reproduce similar physiological environments. Despite this, static methods, also known as biochemical methods, represent a simple and useful approach for the study of different types of molecules, with a broad applicability in the nutritional, pharmaceutical, and toxicological fields. In addition, static models can be validated, avoiding the disadvantage of a difficult reproducibility of dynamic in vitro systems and inter-individual variations of in vivo experiments. A crucial point in the standardization of static models was the COST Action Infogest in 2014, which elaborated an international consensus static digestion method to harmonize experimental conditions and has general guidelines, thus allowing the comparison of studies and data. The aim of our review is to underline the impact of the Infogest consensus method and the development and evolution of in vitro static methods in the following years, with a focus on food applications.
2021
The Food Science/Nutrition category includes resources in food science covering topics such as food additives and contaminants, food chemistry and biochemistry, food microbiology, technology, engineering, processing, quality, and safety. Also covered are meat science, dairy science, and brewing. The closely related area of nutrition is also covered in this category, including general nutrition, nutrition and metabolism, nutrition science, nutritional biochemistry, and dietetics.
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
12
17
7619
7636
18
static in vitro digestion; gastrointestinal static models; bioaccessibility; bioavailability; food matrix; food nutrients; food components, food contaminants.
https://pubs.rsc.org/en/content/articlelanding/2021/fo/d1fo01089a
no
4
info:eu-repo/semantics/article
262
Colombo, R.; Ferron, L.; Frosi, I.; Papetti, A.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1450696
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