A Commercial Clay-Based Material as a Carrier for Targeted Lysozyme Delivery in Animal Feed

Author:

Guagliano Marianna1,Cristiani Cinzia1ORCID,Dell’Anno Matteo2ORCID,Dotelli Giovanni1ORCID,Finocchio Elisabetta3,Lacalamita Maria4ORCID,Mesto Ernesto4ORCID,Reggi Serena2ORCID,Rossi Luciana2ORCID,Schingaro Emanuela4

Affiliation:

1. Dipartimento di Chimica, Materiali e Ingegneria Chimica “Giulio Natta”, Politecnico di Milano, Piazza Leonardo Da Vinci 32, 20133 Milano, Italy

2. Dipartimento di Medicina Veterinaria e Scienze Animali—DIVAS, Università degli Studi di Milano, Via dell’Università 6, 26900 Lodi, Italy

3. Dipartimento di Ingegneria Civile, Chimica e Ambientale, Università di Genova, Via Opera Pia 15, 16145 Genova, Italy

4. Dipartimento di Scienze della Terra e Geoambientali, Università degli Studi di Bari Aldo Moro, Via Edoardo Orabona 4, 70125 Bari, Italy

Abstract

The controlled supply of bioactive molecules is a subject of debate in animal nutrition. The release of bioactive molecules in the target organ, in this case the intestine, results in improved feed, as well as having a lower environmental impact. However, the degradation of bioactive molecules’ in transit in the gastrointestinal passage is still an unresolved issue. This paper discusses the feasibility of a simple and cost-effective procedure to bypass the degradation problem. A solid/liquid adsorption procedure was applied, and the operating parameters (pH, reaction time, and LY initial concentration) were studied. Lysozyme is used in this work as a representative bioactive molecule, while Adsorbo®, a commercial mixture of clay minerals and zeolites which meets current feed regulations, is used as the carrier. A maximum LY loading of 32 mgLY/gAD (LY(32)-AD) was obtained, with fixing pH in the range 7.5–8, initial LY content at 37.5 mgLY/gAD, and reaction time at 30 min. A full characterisation of the hybrid organoclay highlighted that LY molecules were homogeneously spread on the carrier’s surface, where the LY–carrier interaction was mainly due to charge interaction. Preliminary release tests performed on the LY(32)-AD synthesised sample showed a higher releasing capacity, raising the pH from 3 to 7. In addition, a preliminary Trolox equivalent antioxidant capacity (TEAC) assay showed an antioxidant capacity for the LY of 1.47 ± 0.18 µmol TroloxEq/g with an inhibition percentage of 33.20 ± 3.94%.

Funder

European project RM@Schools4.0

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference84 articles.

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3. Pharmaceuticals of Emerging Concern in Aquatic Systems: Chemistry, Occurrence, Effects, and Removal Methods;Patel;Chem. Rev.,2019

4. Effect of Fermented Rapeseed Meal in the Mixture for Growing Pigs on the Gastrointestinal Tract, Antioxidant Status, and Immune Response;Czech;Sci. Rep.,2022

5. Exploring the Potential of Antioxidants from Fruits and Vegetables and Strategies for Their Recovery;Arias;Innov. Food Sci. Emerg. Technol.,2022

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