The impact of heating and drying on protease activities of ruminant milk before and after in vitro infant digestion.

Food Chem

Riddet Institute, Massey University, Palmerston North 4442, New Zealand; High-Value Nutrition National Science Challenge, Auckland 1010, New Zealand; Department of Nutrition, University of Otago, Dunedin 9016, New Zealand. Electronic address:

Published: December 2023

This study investigated the effect of heating (63°C/30 min or 75°C/15 s) and drying (spray-drying or freeze-drying) on plasmin, cathepsin D, and elastase activities in bovine, ovine, and caprine milk, compared to non-dried raw milk counterparts. Protease activities and protein hydrolysis were assessed before and after in vitro infant digestion with or without gastric and pancreatic enzymes. At 75°C/15 s, plasmin activity in caprine and ovine milk decreased (69-75%, p<0.05), while cathepsin D activity in spray-dried bovine milk heated increased (2.8-fold, p<0.05). Plasmin and cathepsin D activities increased (<1.2-fold, p<0.05) after in vitro digestion with pancreatin, regardless of milk species. Endogenous milk enzymes hydrolyzed more proteins than gastric enzymes during gastric digestion and contributed to small intestinal digestion. In summary, milk proteases remained active after processing with effects dependent on the species of milk, and they contributed to in vitro protein hydrolysis in the stomach and small intestine.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.foodchem.2023.136979DOI Listing

Publication Analysis

Top Keywords

protease activities
8
vitro infant
8
infant digestion
8
impact heating
4
heating drying
4
drying protease
4
activities ruminant
4
milk
4
ruminant milk
4
milk vitro
4

Similar Publications

Emerging tick-borne orthonairovirus infections pose a growing global concern, with limited understanding of the viral ovarian tumor-like cysteine proteases (vOTUs) encoded by novel orthonairoviruses. These vOTUs, a group of deubiquinylases (DUBs), disrupt the innate immune response. Yezo virus (YEZV), a recently discovered pathogenic orthonairovirus, was first reported in Japan in 2021.

View Article and Find Full Text PDF

Biomarkers in the diagnosis of mast cell activation.

Curr Opin Allergy Clin Immunol

February 2025

Division of Allergic Diseases, Mayo Clinic Rochester, Rochester, Minnesota, USA.

Purpose Of Review: Mast cell activation is defined by activation of mast cells by varying stimuli with release of chemical mediators either through degranulation or release of de novo synthesized proteins or lipid mediators. Currently, tryptase measurement increase during symptomatic episodes is the most accepted biomarker measurement for mast cell activation. However, newer diagnostic tools including clinically available urinary mast cell mediators are noninvasive and can be more readily obtained compared to serum tryptase levels.

View Article and Find Full Text PDF

Vacuolar H-ATPase and Megalin-Mediated Prorenin Uptake: Focus on Elements Beyond the (Pro)Renin Receptor.

J Cell Physiol

January 2025

Division of Vascular Medicine and Pharmacology, Department of Internal Medicine, Erasmus MC, Rotterdam, The Netherlands.

Megalin is a multiple-ligand receptor that contributes to protein reabsorption in the kidney. Recently, megalin was found to act as a novel endocytic receptor for prorenin. Internalization depended on the (pro)renin receptor.

View Article and Find Full Text PDF

Cathepsin D (Ctsd) has emerged as a promising therapeutic target for Alzheimer's disease (AD) due to its role in degrading intracellular amyloid beta (Aβ). Enhancing Ctsd activity could reduce Aβ42 accumulation and restore the Aβ42/40 ratio, offering a potential AD treatment strategy. This study explored Ctsd demethylation in AD mouse models using dCas9-Tet1-mediated epigenome editing.

View Article and Find Full Text PDF

Insights into Structure and Function of Growth Arrest Specific 2 (GAS2).

J Cancer

January 2025

Cyrus Tang Medical Institute, Collaborative Innovation Center of Hematology, Soochow University, Suzhou, China.

Growth arrest specific 2 (GAS2) is a microfilament-associated protein, which is widely distributed in human tissues. It exerts a pivotal influence on various cellular processes, including cytoskeletal regulation, cell cycle progression, apoptosis, and senescence. GAS2 has a dual function in cancer cell growth: on the one hand, it enhances the sensitivity of cancer cells to chemoradiotherapy and prevents malignant transformation of normal cells; but on the other hand, it maintains the growth of cancer cells.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!