PDF

Simulation of Human Small Intestinal Digestion of Starch Using an In Vitro System Based on a Dialysis Membrane Process

Carol González, Daniela González

2020esdigestionstarchin vitroabsorptionmembrane

Abstract

Language:

This work deepens our understanding of starch digestion and the consequent absorption of hydrolytic products generated in the human small intestine. Gelatinized starch dispersions were digested with α-amylase in an in vitro intestinal digestion system (i-IDS) based on a dialysis membrane process. This study innovates with respect to the existing literature, because it considers the impact of simultaneous digestion and absorption processes occurring during the intestinal digestion of starchy foods and adopts phenomenological models that deal in a more realistic manner with the behavior found in the small intestine. Operating the i-IDS at different flow/dialysate flow ratios resulted in distinct generation and transfer curves of reducing sugars mass. This indicates that the operating conditions affected the mass transfer by diffusion and convection. However, the transfer process was also affected by membrane fouling, a dynamic phenomenon that occurred in the i-IDS. The experimental results were extrapolated to the human small intestine, where the times reached to transfer the hydrolytic products ranged between 30 and 64 min, according to the flow ratio used. We consider that the i-IDS is a versatile system that can be used for assessing and/or comparing digestion and absorption behaviors of different starch-based food matrices as found in the human small intestine, but the formation and interpretation of membrane fouling requires further studies for a better understanding at physiological level.

Download

Cite This Work

@article{7cfd669c-cf46-4c46-b173-6a13bffb17a5,
  title={Simulation of Human Small Intestinal Digestion of Starch Using an In Vitro System Based on a Dialysis Membrane Process},
  author={Carol González and Daniela González},
  year={2020},
  language={es}
}
TY  - JOUR
TI  - Simulation of Human Small Intestinal Digestion of Starch Using an In Vitro System Based on a Dialysis Membrane Process
AU  - Carol González
AU  - Daniela González
PY  - 2020
LA  - es
ER  -

Similar Items

Metal Casting Processes

Unknown, Unknown

This chapter discusses metal casting processes, highlighting the diversity and common characteristics among them. The objective is to elucidate the fu

2023enPDF

Artificial intelligence-aided materials design: AI-algorithms and case studies on alloys and metallurgical processes

Rajesh Jha, Bimal Kumar Jha

This book describes the application of artificial intelligence (AI) and machine learning (ML) concepts to develop predictive models that can be used t

2022enPDF

Process Engineering and Plant Design

Siddhartha Mukherjee

This book provides a comprehensive overview of the critical aspects of industrial process engineering and plant design, addressing the complexities an

2022enPDF

The Nature of Solid Iron and Its Grain Structure

Unknown, Unknown

This study focuses on the fundamental characteristics of solid iron, which is predominantly composed of iron atoms and provides a basis for understand

2023enPDF

ETUDE COMPARATIVE DES EXTRACTANTS DU CUIVRE LIX 984N ET LIX 84-I SUR LES SOLUTIONS DE LIXIVIALION DE L’USINE CHEMAF ETOILE PAR MODELISATION EXPERIMENTALE

DJESSE KABANGE Jessy

L'extraction par solvant du cuivre d'une solution de lixiviation suivie par l’électrolyse d’extraction est un procédé de concentration couramment renc

2021frPDF

Flottation: Mécanismes et réactifs

Pierre BLAZY, El-Aid JDID

La croissance industrielle durant le XXe siècle a nécessité des quantités considérables de métaux et, de ce fait, la mise en œuvre de procédés compati

2023frPDF