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関連する概念動画

What is a Sensory System?01:31

What is a Sensory System?

99.3K
Sensory systems detect stimuli—such as light and sound waves—and transduce them into neural signals that can be interpreted by the nervous system. In addition to external stimuli detected by the senses, some sensory systems detect internal stimuli—such as the proprioceptors in muscles and tendons that send feedback about limb position.
99.3K
Overview of Cell Signaling01:23

Overview of Cell Signaling

22.8K
Despite the protective membrane that separates a cell from the environment, cells need the ability to detect and respond to environmental changes. Additionally, cells often need to communicate with one another. Unicellular and multicellular organisms use a variety of cell signaling mechanisms to communicate with the environment.
Cells respond to many types of information, often through receptor proteins positioned on the membrane. For example, skin cells respond to and transmit touch...
22.8K
Diversity in Cell Signaling Responses01:22

Diversity in Cell Signaling Responses

7.2K
The physiological function of a cell and cellular communication are outcomes of a range of extrinsic signals, intracellular signaling pathways, and cellular responses. No two cell types express the same repertoire of signaling components. Receptors are highly selective for their cognate ligands, but once activated, they can alter multiple cellular processes such as DNA transcription, protein synthesis, and metabolic activity. 
Graded and Abrupt Responses
Some signaling systems generate...
7.2K
Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

6.9K
Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
6.9K
Cell Signaling Feedback Loops01:07

Cell Signaling Feedback Loops

6.9K
Positive and negative feedback loops are crucial for regulating biological signaling systems. These feedback loops are processes that connect output signals to their inputs.
Negative feedback loops
Most signaling systems have negative feedback loops that can perform different functions such as output limiter, and adaptation.
Output limiter
Upon receiving an input signal, the cellular response rapidly increases until a threshold is reached. Beyond this threshold, a negative feedback loop...
6.9K
Chemical Signaling in the Endocrine System01:08

Chemical Signaling in the Endocrine System

5.0K
A signaling cascade is a series of events that facilitates the transmission of information within or between cells, culminating in a targeted response in the recipient cell. As chemical messengers, hormones are pivotal in initiating and modulating these intricate signaling cascades based on their solubility.
Lipid-soluble hormones, such as steroid hormones, demonstrate an intracellular action. These hormones traverse cell membranes due to their lipid nature. Once inside the target cell, they...
5.0K

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関連する実験動画

Updated: Nov 18, 2025

Real-Time Proxy-Control of Re-Parameterized Peripheral Signals using a Close-Loop Interface
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Real-Time Proxy-Control of Re-Parameterized Peripheral Signals using a Close-Loop Interface

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バイオ・スーパモレキュラー・システム:反応にシグナルを統合する

Emma E Watson1, Simona Angerani1, Pramod M Sabale1

  • 1University of Geneva, Department of Organic Chemistry, Faculty of Science, NCCR Chem Biol, 30 Quai Ernest Ansermet, CH-1205 Geneva, Switzerland.

Journal of the American Chemical Society
|February 10, 2021
PubMed
まとめ

科学者はDNAやその他の分子を使って 人工生物学的回路を設計しています これらのシステムは情報を処理し,特定の出力を生成し,合成生物学やそれ以上の分野で新しい応用の道を開きます.

科学分野:

  • 合成生物学
  • 生物分子工学
  • 化学システム設計

背景:

  • 生物学的システムは 複雑な分子ネットワークに依存しています
  • 化学の進歩により 生物学的回路を模倣した 人工的なシステムを作れるようになりました
  • ダイナミックな分子システムを設計するための基盤を提供する.

研究 の 目的:

  • 人工生物学的ネットワークの顕著な例をレビューする.
  • 分子インプットを多様なアウトプットに変換するための方法論について議論する.
  • 人工生物回路の分野における潜在的な応用と将来の方向性を探求する.

主な方法:

  • プログラム可能な論理ゲートとシーケンス対応回路のためのDNAハイブリッド化を使用する.
  • タンパク質のインプットとインタフェースする核酸コンジュガートを開発する.
  • 核酸以外にも様々な バイオ・スーパモレキュラー相互作用を 採用しています

主要な成果:

  • 論理ゲートで複雑な回路の設計のための多用途のプラットフォームとしてDNAを実証しました.
  • 酵素活性,小分子,またはナノオブジェクトの変化を生成する核酸結合体が報告されています.

さらに関連する動画

A Fully Automated and Highly Versatile System for Testing Multi-cognitive Functions and Recording Neuronal Activities in Rodents
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Simultaneous Detection of c-Fos Activation from Mesolimbic and Mesocortical Dopamine Reward Sites Following Naive Sugar and Fat Ingestion in Rats
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Simultaneous Detection of c-Fos Activation from Mesolimbic and Mesocortical Dopamine Reward Sites Following Naive Sugar and Fat Ingestion in Rats

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関連する実験動画

Last Updated: Nov 18, 2025

Real-Time Proxy-Control of Re-Parameterized Peripheral Signals using a Close-Loop Interface
11:54

Real-Time Proxy-Control of Re-Parameterized Peripheral Signals using a Close-Loop Interface

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A Fully Automated and Highly Versatile System for Testing Multi-cognitive Functions and Recording Neuronal Activities in Rodents
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A Fully Automated and Highly Versatile System for Testing Multi-cognitive Functions and Recording Neuronal Activities in Rodents

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Simultaneous Detection of c-Fos Activation from Mesolimbic and Mesocortical Dopamine Reward Sites Following Naive Sugar and Fat Ingestion in Rats
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Simultaneous Detection of c-Fos Activation from Mesolimbic and Mesocortical Dopamine Reward Sites Following Naive Sugar and Fat Ingestion in Rats

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  • オリゴヌクレオチド配列を超えたタンパク質のインプットとアウトプットの統合を示した.
  • 結論:

    • ダイナミックな人工回路を設計する鍵となるのは DNAのプログラム性です
    • 核酸結合は分子入力と出力の範囲を拡大する.
    • タンパク質の設計の将来的な統合は 人工回路におけるマクロモレキュアの複雑さを高めるでしょう