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相关概念视频

Exocrine Glands: Methods of Secretion01:08

Exocrine Glands: Methods of Secretion

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Exocrine glands are those that release their secretions through ducts. Based on their mode of secretion, they can be classified into merocrine, apocrine, and holocrine.
Merocrine Secretion
Merocrine secretion is the most common type of exocrine secretion. The secretions are enclosed in vesicles and moved to the cell's apical surface, where the contents are released by exocytosis. For example, mucous, a watery secretion rich in the glycoprotein mucin, is a merocrine secretion. The eccrine...
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Regulation of Hormone Secretion01:19

Regulation of Hormone Secretion

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Regulation of hormone secretion is a finely tuned orchestration driven by various types of stimuli, encompassing neural, humoral, and hormonal signals. Environmental cues instigate neural stimuli, where action potentials traverse nerve fibers to reach their designated targets. An illustrative scenario is the body's response to stress, wherein the sympathetic nervous system releases epinephrine from the adrenal glands, inducing the well-known 'fight or flight' reaction.
Humoral...
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The Pituitary Gland01:17

The Pituitary Gland

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The pituitary is a small endocrine organ in the sphenoid bone under the hypothalamus. Primarily, the pituitary in adults has two distinct anatomical and functional regions— the anterior and posterior lobes. During human fetal development, a third pituitary gland region called the pars intermedia atrophies and disappears. However, some of its cells migrate and exist adjacent to the anterior pituitary in adults.
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Hormones of the Pituitary Gland01:27

Hormones of the Pituitary Gland

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The small, pea-sized pituitary gland is located at the base of the brain. It is crucial in regulating various bodily functions, from growth to reproduction. The gland is divided into the anterior lobe and the posterior lobe. The secretory cell clusters in the pars distalis of the anterior pituitary lobe are controlled by hypothalamic regulators and synthesize six primary hormones.
The most abundantly secreted hormone from the anterior lobe is the growth hormone, which controls overall growth by...
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Overview of Secretory Vesicles01:33

Overview of Secretory Vesicles

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Secretory vesicles, also known as dense core vesicles (DCVs), are membrane-bound vesicles that transport secretory proteins, such as hormones or neurotransmitters. Regulated secretory vesicles transport proteins from the trans-Golgi network to the exterior of the cell. Proteins present in regulated secretory vesicles are required to be rapidly exocytosed in large amounts upon a specific stimulus.
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
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The Pineal Gland01:02

The Pineal Gland

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The pineal gland, a diminutive endocrine structure named for its pinecone-shaped appearance, is situated atop the third ventricle within the diencephalon region of the forebrain. This gland, composed of secretory cells known as pinealocytes arranged in compact cords and clusters around dense particles of calcium salts, plays a pivotal role in hormonal regulation.
The primary secretion of the pineal gland is the hormone melatonin, derived from serotonin. The concentration of melatonin in the...
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相关实验视频

Updated: Sep 15, 2025

Microdissection and Whole Mount Scanning Electron Microscopy Visualization of Mouse Choroid Plexus
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冠状动脉 (choroid plexus) 产生的阿波克林分泌物

Ya'el Courtney1,2, Maria K Lehtinen3,4

  • 1Department of Pathology, Boston Children's Hospital, Harvard Medical School, Boston, MA, 02115, USA.

Fluids and barriers of the CNS
|July 16, 2025
PubMed
概括

胸膜 (ChP) 使用分泌物释放细胞质载荷到脑脊液 (CSF),影响大脑发育. 这种依赖的过程,由诸如血清素这样的因素调节,提供神经发生过程中至关重要的蛋白质和细胞器.

关键词:
分泌物分泌的阿波克林分泌物是一种大脑脊髓液中的脑脊液.冠状动脉 (choroid plexus) 是一个动脉的组成部分.皮质细胞是表皮细胞.细胞外 (exocytosis) 是一种细胞外.细胞外囊泡中的细胞外囊泡.神经调节是一种神经调节.

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Isolation and Characterization of the Immune Cells from Micro-dissected Mouse Choroid Plexuses
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相关实验视频

Last Updated: Sep 15, 2025

Microdissection and Whole Mount Scanning Electron Microscopy Visualization of Mouse Choroid Plexus
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Isolation and Characterization of the Immune Cells from Micro-dissected Mouse Choroid Plexuses
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科学领域:

  • 神经科学是一个神经科学.
  • 细胞生物学 细胞生物学
  • 发育生物学 发展生物学

背景情况:

  • 胸膜 (ChP) 表皮产生脑脊液 (CSF) 和信号分子,对大脑发育至关重要.
  • 除了经典的分泌外,ChP还利用了阿波克林分泌,从其顶端表面释放出大量的细胞质部分 (细胞体).
  • 这种阿波克林通路依赖于,并由神经化学物质如血清醇调节.

研究的目的:

  • 审查支持ChP非分泌分泌的结构性,功能性和蛋白质学证据.
  • 为了比较阿波克林分泌与其他上皮细胞释放机制.
  • 确定关于CHP无分泌的调节和生理作用的关键问题.

主要方法:

  • 综合现有关于CHP结构和功能的文献.
  • 对图像和分子数据分析,对阿波克林分泌的分析.
  • 关于CSF货物的蛋白质学数据解释.

主要成果:

  • 分泌分泌将独特的细胞质蛋白质,细胞器和信号分子输送到CSF中.
  • 这一过程在神经发生和原始细胞分化中起着重要作用.
  • ChP的非分泌分泌显著塑造了CSF的环境.

结论:

  • 皮细胞的非分泌是一种被低估但至关重要的机制,用于将货物释放到脑脊流中.
  • 了解这种非常规的途径是理解它对大脑发育的贡献的关键.
  • 需要进一步的研究才能充分阐明这种分泌过程的调节和生理影响.