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June 1, 2026Comprehensive Reviews in Food Science and Food Safety0 citations

Intrinsic Thermal Stability and Improvement Strategies of Goat Milk: The Roles of Protein Composition and Structure

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SWShuxuan WangTYTian YiluXWX Wang

Key Points

  • The review aims to clarify the factors contributing to the low thermal stability of goat milk proteins and to propose strategies for their improvement.
  • Synthesized current evidence on goat milk protein structure and stability.
  • Compared goat milk with cow milk regarding protein composition and thermal stability.
  • Evaluated various stabilization strategies and their mechanisms under different thermal processing conditions.
  • Identified low thermal stability of goat milk mainly due to unique protein composition and structure.
  • Proposed an integrated temperature-dependent framework for understanding protein behavior in goat milk.
  • Highlighted knowledge gaps regarding protein interaction mechanisms and evaluation methods for thermal stability.

Abstract

ABSTRACT Goat milk has gained increasing attention as a nutritionally rich and digestible alternative to cow milk, yet its industrial utilization remains limited by its low thermal stability. Proteins play a central role in determining this thermal fragility. However, current understanding of goat milk thermal stability remains fragmented, and a systematic synthesis is still lacking. Focusing on goat milk proteins, this review synthesizes current evidence and compares goat milk with cow milk to clarify how differences in protein composition and structure contribute to its relatively low thermal stability. Furthermore, an integrated temperature‐dependent framework is proposed to unify the structural transitions and aggregation behavior of goat milk proteins reported under different thermal processing conditions. Within this framework, current stabilization strategies are comparatively evaluated, with particular emphasis on their mechanisms and practical feasibility. Overall, this review provides an integrated and systematic perspective on the heat instability of goat milk proteins. At the same time, the synthesis highlights several remaining knowledge gaps, particularly in protein interaction mechanisms within complex milk matrices and in the lack of standardized methods for evaluating thermal stability, which deserve further investigation.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a1d234302fbce9130638e64https://doi.org/10.1111/1541-4337.70522
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