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Preparation, pungency and bioactivity of gingerols from ginger ( Zingiber officinale Roscoe): a review.

Yuge GaoYujia LuNa ZhangChibuike C UdenigweYuhao ZhangYu Fu
Published in: Critical reviews in food science and nutrition (2022)
Ginger has been widely used for different purposes, such as condiment, functional food, drugs, and cosmetics. Gingerols, the main pungent component in ginger, possess a variety of bioactivities. To fully understand the significance of gingerols in the food and pharmaceutical industry, this paper first recaps the composition and physiochemical properties of gingerols, and the major extraction and synthesis methods. Furthermore, the pungency and bioactivity of gingerols are reviewed. In addition, the food application of gingerols and future perspectives are discussed. Gingerols, characterized by a 3-methoxy-4-hydroxyphenyl moiety, are divided into gingerols, shogaols, paradols, zingerone, gingerdiones and gingerdiols. At present, gingerols are extracted by conventional, innovative, and integrated extraction methods, and synthesized by chemical, biological and in vitro cell synthesis methods. Gingerols can activate transient receptor potential vanilloid type 1 (TRPV1) and induce signal transduction, thereby exhibiting its pungent properties and bioactivity. By targeted mediation of various cell signaling pathways, gingerols display potential anticancer, antibacterial, blood glucose regulatory, hepato- and renal-protective, gastrointestinal regulatory, nerve regulatory, and cardiovascular protective effects. This review contributes to the application of gingerols as functional ingredients in the food and pharmaceutical industry.
Keyphrases
  • blood glucose
  • human health
  • type diabetes
  • single cell
  • cell therapy
  • oxidative stress
  • risk assessment
  • metabolic syndrome
  • skeletal muscle
  • endoplasmic reticulum stress
  • blood brain barrier
  • drug induced
  • wound healing