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Multiple Labeling of Compartmentalized Cortical Neurons in Microfluidic Chambers.
Moya-Alvarado, Guillermo; Aguirre-Soto, Alejandro; Bronfman, Francisca C.
Affiliation
  • Moya-Alvarado G; Department of Physiology, Faculty of Biological Sciences and Center for Aging and Regeneration (CARE), Pontificia Universidad Catolica de Chile, Av. Libertador Bernardo O´Higgins 340, Santiago, 8970117, Chile.
  • Aguirre-Soto A; NeuroSignaling Lab (NESLab), Institute of Biomedical Sciences (ICB), Faculty of Medicine, and Faculty of Life Sciences, Universidad Andres Bello, Echaurren 183, 8370146, Santiago, Chile.
  • Bronfman FC; NeuroSignaling Lab (NESLab), Institute of Biomedical Sciences (ICB), Faculty of Medicine, and Faculty of Life Sciences, Universidad Andres Bello, Echaurren 183, 8370146, Santiago, Chile.
Bio Protoc ; 14(1): e4911, 2024 Jan 05.
Article in En | MEDLINE | ID: mdl-38213323
ABSTRACT
Neurons are complex cells with two distinct compartments the somatodendritic and the axonal domains. Because of their polarized morphology, it is challenging to study the differential cellular and molecular mechanisms that occur in axons and impact the soma and dendrites using conventional in vitro culture systems. Compartmentalized cultures offer a solution by physically and chemically separating the axonal from the somatodendritic domain of neurons. The microfluidic chamber model presented in this work is valuable for studying these mechanisms in primary cortical cultures derived from rat and mouse. In addition, this chamber model is compatible with various microscopy methods, such as phase contrast, and fluorescence imaging of living and fixed cells. Key features • Preparation and attachment of PDMS microfluidic chambers to glass coverslips. • Primary culture of cortical neurons and plating cortical neurons in microfluidic chamber. • Confirmation of compartmentalization using the retrograde transport of the fluorescently labeled form of cholera toxin subunit B (f-Ctb). • Immunofluorescence and multilabeling of compartmentalized cortical neurons. • Retrograde transport of fluorescently labeled BDNF.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Bio Protoc Year: 2024 Document type: Article Affiliation country: Chile Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Bio Protoc Year: 2024 Document type: Article Affiliation country: Chile Country of publication: United States