JoVE Logo

登录

需要订阅 JoVE 才能查看此.

Tracking Axonal Transport of Organelles in Motor Neurons Using a Microfluidic Device

-- views • 1:16 min

成績單

Begin with a polymer-coated microfluidic chamber with proximal and distal wells connected via multiple microgrooves.

In the proximal well, place mouse embryonic spinal cord tissues rich in developing motor neurons.

Supplement this well with a nutrient medium. Incubate to allow neuron growth and adherence to the polymer-coated surface.

Later, add a growth factor-free nutrient medium to the proximal well.

In distal wells, add a higher volume of nutrient medium containing growth factors to create concentration and volume differences.

These differences cause the axons, the longer neuronal projections, to grow toward the distal wells via the microgrooves.

Add a fluorescent dye solution into both wells.

The dye molecules enter the neurons and stain the mitochondria and acidic organelles at both ends.

In live confocal imaging, fluorescently stained organelles move in both directions between the neural cell bodies and the axons, confirming axonal transport in motor neurons.

article

01:44

Tracking Axonal Transport of Organelles in Motor Neurons Using a Microfluidic Device

相关视频

17 Views

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。