在实验室中模仿猪条件下的人性化心脏生成
Jiajun Li1,2, Changjiang Xu2, Bingbo Shi3
1Fudan University, Shanghai, China.
Cell & bioscience
|January 29, 2026
概括
人类细胞在一种新的共同培养模型中适应更高的温度,增强心脏分化. 这项研究为利用猪的多能干细胞 (PSC) 制造人性化器官的策略提供了信息.
科学领域:
- 干细胞生物学 干细胞生物学
- 异种移植研究 异种移植研究
- 有机体的产生.
背景情况:
- 通过胚胎补充生成人性化的器官需要了解人类多能干细胞 (PSC) 适应猪环境 (38.5°C).
- 人体温度 (约37°C) 与猪体温有很大的不同.
研究的目的:
- 开发一种体外模型,用于在高温下评估人类和猪PSC的共同差异化.
- 研究在类似猪的环境中人类细胞适应和分化的机制.
- 评估胚胎补充模型中的潜在风险.
主要方法:
- 在38.5°C的同时培养人类和猪诱导的PSC.
- 诱导对心肌细胞的分化.
- 分析细胞反应,包括压力路径 (PI3K-Akt-mTOR).
- 在猪PSC中利用基因编辑 (MYH6淘汰) 来建模胚胎补充.
主要成果:
- 人类PSC在38.5°C与猪细胞共同培养时,表现出增强的分化成心肌特征.
- 高温引发了人体细胞的应激反应,包括PI3K-Akt-mTOR通路的激活.
- 在猪PSC中淘汰MYH6突出了人类组织中猪细胞污染的风险.
结论:
- 建立了一个新的体外模型来评估人类和猪细胞的共同差异化.
- 研究结果提供了对人类细胞适应高热的见解,这与异种移植有关.
- 该模型可以指导未来的 in vivo 胚胎补充实验用于器官生成.
相关概念视频
Conditions on Early Earth
101.4K
Around 4 billion years ago, oceans began to condense on earth while volcanic eruptions released nitrogen, carbon dioxide, methane, ammonia, and hydrogen into the primordial atmosphere. However, organisms with the characteristics of life were not initially present on earth. Scientists have used experimentation to determine how organisms evolved that could grow, reproduce, and maintain an internal environment.
101.4K
Classical Conditioning
2.2K
Associative learning, a core principle in behavioral psychology, involves forming connections between events and facilitating learned responses. This concept is vividly illustrated by classical conditioning, a process extensively studied by the Russian physiologist Ivan Pavlov. Pavlov's pioneering research on dogs' digestive systems led to the discovery that behaviors can be learned through association, laying the groundwork for classical conditioning.
Ivan Pavlov observed that dogs...
Ivan Pavlov observed that dogs...
2.2K
Conditions of Equilibrium
2.1K
Equilibrium refers to a state where a rigid body is not subjected to any translational or rotational motion. This state is achieved when the force and couple acting on a rigid body equal zero. When the system of external forces results in a net effect equivalent to zero, the rigid body is considered to be in equilibrium.
Internal forces are not considered for conditions of equilibrium because they occur in equal and opposite pairs within the body, effectively canceling each other. As a result,...
Internal forces are not considered for conditions of equilibrium because they occur in equal and opposite pairs within the body, effectively canceling each other. As a result,...
2.1K
Operant Conditioning
2.9K
Operant conditioning, a key concept in behavioral psychology, involves using reinforcement and punishment to alter the likelihood of a behavior being repeated. B.F. introduced this type of conditioning. Skinner focused on voluntary behaviors and the consequences that follow them, influencing whether these behaviors will be strengthened or diminished.
Reinforcement in operant conditioning can be positive or negative, both of which serve to increase the likelihood of a behavior. Positive...
Reinforcement in operant conditioning can be positive or negative, both of which serve to increase the likelihood of a behavior. Positive...
2.9K
Conditioned Taste Aversion
592
Conditioned taste aversion, also known as sauce béarnaise syndrome, is a phenomenon in which an individual develops an aversion to a certain food taste following a negative experience, typically illness. This form of aversion is a type of classical conditioning in which the taste of the food (conditioned stimulus, CS) is associated with the experience of illness (unconditioned stimulus, UCS).
A notable characteristic of conditioned taste aversion is that it often requires only a single...
A notable characteristic of conditioned taste aversion is that it often requires only a single...
592
Electrostatic Boundary Conditions
954
Consider an external electric field propagating through a homogeneous medium. When the electric field crosses the surface boundary of the medium, it undergoes a discontinuity. The electric field can be resolved into normal and tangential components. The amount by which the field changes at any boundary is given by the difference between the field components above and below the surface boundary.
The surface integral of an electric field is given by Gauss's law in integral form and is related to...
The surface integral of an electric field is given by Gauss's law in integral form and is related to...
954


