在默认模式网络中减少灰质体积,与胰岛素抵抗有关
Saki Asano1, Akitoshi Ogawa1, Takahiro Osada1
1Department of Neurophysiology, Juntendo University School of Medicine, 2-1-1 Hongo, Bunkyo-ku, Tokyo 113-8421, Japan.
Cerebral cortex (New York, N.Y. : 1991)
|September 27, 2023
概括
胰岛素抵抗与老年人中与默认模式和边缘系统相关的大脑网络中的灰质体积减少有关. 这种大脑变化可能涉及调节新陈代谢平衡的下丘脑机制.
科学领域:
- 神经科学是一个神经科学.
- 内分泌学 在内分泌学.
- 老年学是指老年学的学科.
背景情况:
- 胰岛素耐药性是一个日益关注的问题,可能会影响大脑健康.
- 胰岛素耐药性影响人类大脑的确切机制尚未完全理解.
- 以前的研究表明,代谢功能障碍和神经系统异常之间存在联系.
研究的目的:
- 为了研究胰岛素抵抗与大脑结构之间的关联,特别是灰质体积.
- 检查受影响的大脑区域和下丘脑之间的功能连接.
- 阐明通过胰岛素抵抗可能损害大脑功能的神经通路.
主要方法:
- 利用两个大规模的神经成像数据库进行全面分析.
- 评估灰质体积与胰岛素耐药性相关.
- 分析了皮质网络和下丘脑核之间的静止状态功能连接.
主要成果:
- 胰岛素抵抗与老年人大脑皮层的默认模式和边缘网络中的灰质体积减少相关.
- 在这些皮质网络和下丘脑的副腹腔核之间观察到显著的静止状态功能连接.
- 在这些网络中,减少灰色物质体积和改变的功能连接之间发现了显著的相关性.
结论:
- 胰岛素抵抗与关键皮质网络中的结构性大脑变化有关.
- 下丘脑,特别是副腹腔核,在调解这些效应方面发挥着至关重要的作用.
- 这些发现表明,胰岛素抵抗通过下丘脑对代谢恒常的调节影响大脑结构和功能.
更多相关视频
相关概念视频
Carbohydrate Metabolism
11.2K
Carbohydrates are polymers composed of molecules containing atoms of carbon, hydrogen and oxygen. One gram of carbohydrate can provide four kilo-calories of energy, which makes it the most efficient instant energy source.
Starch accounts for approximately 60% of the carbohydrates consumed by humans. Since amylase enzymes cannot function in the stomach's acidic environment, starch can only be digested in the mouth and small intestine. Simple sugars are found naturally in milk and fruits in...
Starch accounts for approximately 60% of the carbohydrates consumed by humans. Since amylase enzymes cannot function in the stomach's acidic environment, starch can only be digested in the mouth and small intestine. Simple sugars are found naturally in milk and fruits in...
11.2K
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion
1.3K
The pancreatic islets comprising only 1%-2% of the volume are highly vascularized and innervated mini-organs. They contain five endocrine cell types, including β cells that secrete insulin, which is synthesized as a single polypeptide chain, preproinsulin, processed to proinsulin, and finally to insulin and C-peptide. This process is complex and regulated, involving the Golgi complex, the endoplasmic reticulum, and the secretory granules of the β cell.
Insulin and C-peptide are...
Insulin and C-peptide are...
1.3K
Insulin: The Receptor and Signaling Pathways
1.3K
Insulin action is mediated through a receptor tyrosine kinase, akin to the IGF-1 receptor. The number of receptors per cell varies significantly, from 40 on erythrocytes to 300,000 on adipocytes and hepatocytes. The insulin receptor consists of linked α/β subunit dimers, forming a heterotetramer glycoprotein with two extracellular α subunits and two β subunits spanning the membrane. The α subunits inhibit the inherent tyrosine kinase activity of the β subunits, but...
1.3K
Diabetes Mellitus: Type 2 and Gestational
2.5K
Type 2 diabetes, characterized by insulin resistance, arises when the insulin receptors on cells lose responsiveness to insulin, diminishing the cell's capacity to take up glucose, resulting in elevated blood glucose levels. To receive a diagnosis of Type 2 diabetes, a series of blood glucose tests are necessary to assess whether the blood glucose falls within normal parameters. If the result is out of the normal range, a patient may be diagnosed as prediabetic or diabetic, depending on the...
2.5K
Hormones Regulating Blood Glucose
3.5K
Insulin is released by beta cells of the pancreas when blood glucose levels are high. It facilitates glucose absorption and utilization in insulin-dependent cells with insulin receptors on their plasma membranes. Insulin promotes glucose uptake by increasing the number of glucose transport proteins in the cell membrane, allowing glucose to enter the cell. As a result, glucose utilization and ATP production are enhanced.
In addition to accelerating glucose uptake and utilization, insulin has...
In addition to accelerating glucose uptake and utilization, insulin has...
3.5K


