Effect of Conventional Humid–Dry Heating through the Maillard Reaction on Chemical Changes and Enhancement of In Vitro Bioactivities from Soy Protein Isolate Hydrolysate–Yeast Cell Extract Conjugates

Author:

Phongphisutthinant Rewat12ORCID,Wiriyacharee Pairote234ORCID,Boonyapranai Kongsak5ORCID,Ounjaijean Sakaewan5ORCID,Taya Sirinya1,Pitchakarn Pornsiri6ORCID,Pathomrungsiyounggul Pattavara3,Utarat Patamaphorn3,Wongwatcharayothin Worachai3ORCID,Somjai Chalermkwan4ORCID,Chaipoot Supakit12ORCID

Affiliation:

1. Multidisciplinary Research Institute, Chiang Mai University, Chiang Mai 50200, Thailand

2. Research Center of Microbial Diversity and Sustainable Utilization, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand

3. Faculty of Agro-Industry, Chiang Mai University, Chiang Mai 50100, Thailand

4. Processing and Product Development Factory, The Royal Project Foundation, Chiang Mai 50100, Thailand

5. Research Institute for Health Sciences, Chiang Mai University, Chiang Mai 50200, Thailand

6. Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand

Abstract

This study investigated the formation of soy protein isolate hydrolysate–yeast cell extract (SPIH-YCE) conjugates through a humid–dry heating process and their impact on bioactivity. The incubation of SPIH-YCE samples at 60 °C and ~75% humidity for varying durations (0, 5, 10, 15, and 20 days) resulted in a significant decrease in reducing sugars and free amino acids, while the degree of glycation increased by approximately 65.72% after 10 days. SDS-PAGE analysis and size exclusion chromatography revealed the presence of peptides and glycoprotein molecules, with an increase in the distribution of larger peptide size chains. The conjugated SPIH-YCE (10 days) exhibited the highest antioxidant capacity compared to the other samples at different incubation times. A comparative study between SPIH-YCE (day 0) and SPIH-YCE after 10 days of incubation showed significantly higher anti-inflammatory and ACE inhibitory activities for the conjugates subjected to the humid–dry heating process. This suggests that SPIH-YCE conjugates could serve as an alternative substance with the potential to provide health benefits by mitigating or preventing non-communicable diseases (NCDs). This research highlights the importance of the Maillard reaction in enhancing bioactivity and offers insights into the alterations of the chemical structure of these conjugates.

Funder

Fundamental Fund 2022, Chiang Mai University

Publisher

MDPI AG

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