Vascular Structure

Vascular structure refers to the organized network of blood vessels that transports oxygen, nutrients, hormones, and waste throughout the body while regulating blood flow and tissue exchange. Arteries, veins, and capillaries form a branching hierarchy, and their endothelial lining responds to pressure, shear stress, and chemical signals to control vessel diameter and permeability. In bioengineering, researchers recreate these structural and functional features in vascular grafts, engineered tissues, organoids, and microfluidic systems. Accurate vascular architecture can improve tissue survival, support controlled transport, and advance studies of cardiovascular disease, drug delivery, and regenerative medicine.

Vascular Structure - Related Videos

Research

JoVE Journal - Biology

Implantation of Electrospun Vascular Grafts with Optimized Structure in a Rat Model

0 Views •

Cited by 7 •

2018

Here, we present a modified electrospinning method to fabricate PCL vascular grafts with thick fibers and large pores, and describe a protocol to evaluate the in vivo performance in a rat model of abdominal aorta replacement.

Visualization of Vascular and Parenchymal Regeneration after 70% Partial Hepatectomy in Normal Mice

0 Views •

Cited by 3 •

2016

Tools used for visualizing vascular regeneration require methods for contrasting the vascular trees. This film demonstrated a delicate injection technique used to achieve optimal contrasting of the vascular trees and illustrate the potential benefits resulting from a detailed analysis of the resulting specimen using µCT and histological serial sections.

Engineered Vascularized Muscle Flap

0 Views •

Cited by 6 •

2016

To date, thick tissue defects are typically reconstructed by applying autologous tissue flaps or engineered tissues. In this protocol, we present a new method for engineering vascularized tissue flap bearing an autologous pedicle, to serve as a substitute to autologous flaps.

Microfluidic Bioprinting for Engineering Vascularized Tissues and Organoids

0 Views •

Cited by 37 •

2017

We provide a generalized protocol based on a microfluidic bioprinting strategy for engineering a microfibrous vascular bed, where a secondary cell type could be further seeded into the interstitial space of this microfibrous structure to generate vascularized tissues and organoids.

Assessment of Vascular Regeneration in the CNS Using the Mouse Retina

0 Views •

Cited by 7 •

2014

The rodent retina has long been recognized as an accessible window to the brain. In this technical paper we provide a protocol that employs the mouse model of oxygen-induced retinopathy to study the mechanisms that lead to failure of vascular regeneration within the central nervous system after ischemic injury. The described system can also be harnessed to explore strategies to promote regrowth of functional blood vessels within the retina and CNS.

View All Results

FAQs

Related Topics