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The Tongue and Taste Buds00:49

The Tongue and Taste Buds

34.7K
The surface of the tongue is covered with various small bumps called papillae, which either distribute what has been ingested (filiform papillae) or contain the sensory taste (or gustatory) receptor cells (fungiform, circumvallate, and foliate papillae). Embedded within each taste-related papilla are the taste buds—clusters of 30 to 100 gustatory receptor cells.
34.7K
Gustation01:43

Gustation

43.5K
Gustation is a chemical sense that, along with olfaction (smell), contributes to our perception of taste. It starts with the activation of receptors by chemical compounds (tastants) dissolved in the saliva. The saliva and filiform papillae on the tongue distribute the tastants and increase their exposure to the taste receptors.
43.5K
G-Protein Gated Ion Channels01:21

G-Protein Gated Ion Channels

5.5K
GPCRs are primarily responsible for our sense of smell, taste, and vision.  The binding of a sensory stimulus activates GPCR to stimulate effector proteins, many of which are ion channels in the sensory organs. GPCRs modulate the opening and closing of the target ion channels either directly by binding them, or by releasing second messengers that activate these channels. As ions move across the membrane, the membrane potential is altered, which induces an appropriate response.
Sensory...
5.5K
Taste Buds and Receptors01:20

Taste Buds and Receptors

5.6K
Gustation, or the sense of taste, is intrinsically linked to the anatomical structures located on the tongue. This organ's surface, along with the entirety of the oral cavity, is adorned with stratified squamous epithelium. Evident on the tongue are elevated structures known as papillae (singular = papilla), which house the mechanisms for the transduction of gustatory stimuli. Four distinct types of papillae exist, each identified by their unique morphological attributes: the circumvallate,...
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The Physiology of Taste01:24

The Physiology of Taste

6.8K
The perception of a salty flavor is facilitated by sodium ions within the oral salivary fluid. Upon consumption of a salty substance, salt crystals disassemble, leading to the liberation of its constituents—Na+ and Cl- ions. These ions subsequently dissolve into the salivary fluid present in the oral cavity. The external environment of the gustatory cells experiences an elevation in Na+ concentration, thereby establishing a potent concentration gradient. This gradient propels the...
6.8K
Tactile and Chemical Senses01:27

Tactile and Chemical Senses

1.6K
Tactile senses encompass touch, temperature, and pain, each mediated by specific receptors. Touch receptors detect mechanical energy or pressure against the skin. Sensory fibers from these receptors enter the spinal cord and relay information to the brain stem. Here, most fibers cross over to the opposite side of the brain. The touch information then moves to the thalamus, which projects a map of the body's surface onto the somatosensory areas of the parietal lobes in the cerebral cortex.
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Updated: Apr 30, 2026

Taste Exam: A Brief and Validated Test
07:10

Taste Exam: A Brief and Validated Test

Published on: August 17, 2018

15.8K

苦い味の受容体とコードロジック

Ken L Mueller1, Mark A Hoon, Isolde Erlenbach

  • 1Howard Hughes Medical Institute and Department of Biology, University of California at San Diego, La Jolla, California 92093-0649, USA.

Nature
|March 11, 2005
PubMed
まとめ

苦い味の受容体 (T2Rs) は,有毒物質の検出に不可欠です. この研究は,T2Rsが苦い知覚に不可欠であり,その位置が味覚反応を決定し,動物の行動を導くことを示しています.

科学分野:

  • 感覚生物学 感覚生物学とは
  • 分子生物学は分子生物学である.
  • 神経科学は神経科学である.

背景:

  • 苦い味の検出は,毒素を摂取することに対する重要な防御メカニズムです.
  • 味覚受容体,特にT2Rs (味覚2受容体) は,Gタンパク質結合受容体 (GPCRs) で,苦い化合物の感知に関与しています.
  • T2R機能を理解することは,苦い味の知覚とその進化的意義を理解するための鍵です.

研究 の 目的:

  • 苦い味の検出と知覚におけるT2R受容体の必要性と十分性を調査する.
  • T2Rの種別差異が苦い味の選択性にどのように影響するか調べる.
  • 行動的嫌悪を媒介する専用の苦い感覚細胞の役割を明らかにする.

主な方法:

  • マウスのT2R発現の遺伝子操作.
  • 味覚の好みと嫌悪を評価するための行動分析.
  • 味覚反応を測定するための生理学的記録.

主要な成果:

  • T2R受容体は,苦い化合物の検出と知覚に必要かつ十分であることが判明しました.
  • 種別T2Rの変動により,検出される苦い物質の範囲が決定されます.
  • 苦い受容体を"甘い細胞"で発現させると,苦い味に惹かれ,T2R細胞で発現させると嫌悪感が生じます.

さらに関連する動画

Whole-Mount Staining, Visualization, and Analysis of Fungiform, Circumvallate, and Palate Taste Buds
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Whole-Mount Staining, Visualization, and Analysis of Fungiform, Circumvallate, and Palate Taste Buds

Published on: February 11, 2021

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Author Spotlight: Advances in Chemoreception – From Insect Odor Receptors to Non-Coding RNAs
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Author Spotlight: Advances in Chemoreception – From Insect Odor Receptors to Non-Coding RNAs

Published on: March 1, 2024

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関連する実験動画

Last Updated: Apr 30, 2026

Taste Exam: A Brief and Validated Test
07:10

Taste Exam: A Brief and Validated Test

Published on: August 17, 2018

15.8K
Whole-Mount Staining, Visualization, and Analysis of Fungiform, Circumvallate, and Palate Taste Buds
07:40

Whole-Mount Staining, Visualization, and Analysis of Fungiform, Circumvallate, and Palate Taste Buds

Published on: February 11, 2021

3.0K
Author Spotlight: Advances in Chemoreception – From Insect Odor Receptors to Non-Coding RNAs
04:58

Author Spotlight: Advances in Chemoreception – From Insect Odor Receptors to Non-Coding RNAs

Published on: March 1, 2024

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結論:

  • 専用の周辺細胞は,幅広く調節された苦いセンサーとして機能します.
  • これらの苦いセンサーのニューラル配線は,有害物質に対する行動的嫌悪を指示します.
  • この研究は,周辺の苦い味のコーディングの基本原理を明確にします.