| Literature DB >> 28678522 |
Xing Chen1,2, Ronald Keith Tume3, Youling Xiong2, Xinglian Xu1, Guanghong Zhou1, Conggui Chen4, Tadayuki Nishiumi5.
Abstract
The texture, yield, and organoleptic properties of comminuted meat products are closely related to the structure and functionality of myofibrillar proteins (MP). To enhance functional properties of MP, high hydrostatic pressure (HHP) has been widely utilized to modify the structure of MP through protein denaturation, solubilization, aggregation or gelation. This modification depends on the protein system (specie, type and formulation) and HHP condition (pressure intensity, pressurizing gradient, duration time, temperature, pressure/temperature and the sequence of application). However, there remains a lack of a systematic summary of structural changes and structure-function relationship of MP in response to various HHP conditions. Hence, this review first explored the profound knowledge on the structural and functional changes of MP induced by HHP based on previous works and recent progress. Second, to meet the growing demand for economical, nutritional and healthy meat products, recent applications of HHP on the manufacture of low salt, low phosphate and/or low fat gel-type meat products, as well as value-added and texture-modified meat products were highlighted. Finally, future considerations were presented to facilitate progress in this area and to enable HHP as an efficient strategy in tailoring the manufacture of functionally improved, value-added and healthy muscle gelled foods.Entities:
Keywords: Myofibrillar protein; functionality; gel property; healthy meat products; high pressure; structure
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Year: 2017 PMID: 28678522 DOI: 10.1080/10408398.2017.1347557
Source DB: PubMed Journal: Crit Rev Food Sci Nutr ISSN: 1040-8398 Impact factor: 11.176