Microvessel Formation

Microvessel formation is the development of small blood vessels, including capillaries and arterioles, that establish tissue perfusion and support oxygen, nutrient, and waste exchange. In biology, it commonly occurs through angiogenesis, in which endothelial cells respond to vascular endothelial growth factor, degrade the surrounding extracellular matrix, migrate, proliferate, and organize into lumen-containing tubes that connect with an existing vascular network. Microvessel formation is essential during development, wound healing, and tissue repair, but abnormal vessel growth also contributes to cancer and other diseases. Studying this process supports research on vascular biology, regenerative medicine, drug screening, and engineered tissue models.

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Research

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Endothelial Cell Culture from Rat Brain Microvessels: A Procedure to Isolate and Culture Endothelial Cells from Microvessels of Rat Brain

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2023

This video presents the isolation of microvessels from a rat brain using a combination of density gradient centrifugation and enzymatic digestion mehods. The isolated microvessels can be cultured in a culture flask pre-coated with collagen and fibronectin matrix to obtain endothelial cell colonies.

Microperfusion Technique to Investigate Regulation of Microvessel Permeability in Rat Mesentery

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Cited by 3 •

2015

The modified Landis technique enables paired measurement of the hydraulic conductivity of individual microvessels in the mesentery of normal and genetically modified rats under control and test conditions using microperfusion techniques. It provides a convenient method to evaluate mechanisms that regulate microvessel permeability and transvascular exchange under physiological conditions.

Micropatterning and Assembly of 3D Microvessels

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Cited by 12 •

2016

This manuscript presents an injection molding method to engineer microvessels that recapitulate physiological properties of endothelium. The microfluidic-based process creates patent 3D vascular networks with tailorable conditions, such as flow, cellular composition, geometry, and biochemical gradients. The fabrication process and examples of potential applications are described.

Quantifying Single Microvessel Permeability in Isolated Blood-perfused Rat Lung Preparation

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Cited by 5 •

2014

The isolated blood-perfused lung preparation makes it feasible to visualize microvessel networks on the lung surface. Here we describe an approach to quantify permeability of single microvessels in isolated lungs using real time fluorescence imaging.

Development and Characterization of In Vitro Microvessel Network and Quantitative Measurements of Endothelial [Ca2+]i and Nitric Oxide Production

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Cited by 7 •

2016

Primary human umbilical vein endothelial cells (HUVECs) were grown to confluence within a microfluidic network device. The endothelial cell junction and F-actin distributions were illustrated and the changes in intracellular calcium concentration and nitric oxide production in response to adenosine triphosphate (ATP) were quantified in real-time at individual cell levels.

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