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Regulation of Hematopoietic Stem Cells01:01

Regulation of Hematopoietic Stem Cells

All blood and immune cells are produced from the multipotent hematopoietic stem cells (HSCs) by the process of hematopoiesis. However, they all have a limited life span. In addition, many are depleted in immune surveillance or combatting an injury or infection. This makes blood one of the most regenerative tissues. Hematopoiesis helps replenish these blood and immune cells, restoring the body's normal functioning. However, overproduction of blood and immune cells can make them cancerous or...
Differentiation of Common Myeloid Progenitor Cells01:15

Differentiation of Common Myeloid Progenitor Cells

Common myeloid progenitors (CMPs) are oligopotent cells that can differentiate into granulocytes and macrophages. Granulocytes and macrophages are essential for protecting the body against bacterial, viral, or fungal infections. They migrate from the bone marrow into the circulating blood to reach specific tissue sites where they differentiate and help in immune surveillance. However, they survive only for a few days and must be continuously made available to the organism to maintain a robust...
Role of Hematopoietic Growth Factors01:28

Role of Hematopoietic Growth Factors

Hematopoietic growth factors are molecules that regulate the differentiation rate of hematopoietic stem cells (HSCs). Erythropoietin (EPO), primarily produced by the kidneys, plays a crucial role in erythrocyte production. When oxygen levels in the blood are low, EPO is released into the bloodstream, reaching the bone marrow, where it stimulates HSCs to differentiate and mature into erythrocytes, which are vital for oxygen transport.
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Cerebrospinal Fluid01:21

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Cerebrospinal fluid (CSF) is a colorless liquid that flows around the brain and the spinal cord, playing a vital role in the protection, support, and overall function of the central nervous system (CNS). CSF production, circulation, and absorption are tightly regulated processes essential for the brain and spinal cord to function properly.
CSF Production
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Related Experiment Video

Updated: Jun 1, 2026

Expression of Fluorescent Fusion Proteins in Murine Bone Marrow-derived Dendritic Cells and Macrophages
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Published on: October 30, 2018

CsMgPO(4).

Nataliya Yu Strutynska, Igor V Zatovsky, Vyacheslav N Baumer

    Acta Crystallographica. Section E, Structure Reports Online
    |May 18, 2011
    PubMed
    Summary

    Caesium magnesium orthophosphate forms a 3D framework from linked tetrahedra. Caesium atoms occupy hexagonal channels within this crystal structure.

    Area of Science:

    • Crystal chemistry
    • Solid-state chemistry
    • Inorganic materials

    Background:

    • Understanding the structural properties of complex phosphates is crucial for materials science.
    • Caesium magnesium orthophosphate represents a novel crystalline material with potential applications.

    Purpose of the Study:

    • To elucidate the crystal structure of caesium magnesium orthophosphate.
    • To describe the atomic arrangement and bonding within the material.

    Main Methods:

    • Single-crystal X-ray diffraction was used to determine the crystal structure.
    • Analysis of coordination polyhedra and symmetry elements was performed.

    Main Results:

    • Caesium magnesium orthophosphate crystallizes with a three-dimensional framework structure.

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  • The framework is constructed from corner-sharing MgO(4) and PO(4) tetrahedra, both exhibiting .m. symmetry.
  • Caesium atoms, with .m. site symmetry, are situated within hexagonal channels along the a- and b-axis.
  • Conclusions:

    • The detailed crystal structure of caesium magnesium orthophosphate has been determined.
    • The arrangement of tetrahedra and caesium atoms defines the unique framework and channel system.
    • This structural insight is fundamental for exploring the material's properties and potential uses.