Laminin Coating

Laminin coating is a cell-culture technique that applies the extracellular matrix protein laminin to a surface to support cell attachment, survival, and organization. Laminin adsorbs to culture plates or other substrates, where its bioactive domains interact with cell-surface receptors such as integrins and promote adhesion-related signaling. In biology research, laminin-coated surfaces help maintain primary cells, stem cells, neurons, and other cell types that require matrix cues for growth or differentiation. The method improves the consistency of in vitro models and supports studies of cell behavior, development, tissue organization, and regenerative biology.

Laminin Coating - Related Videos

Education

JoVE Core - Cell Biology

Laminins are the Adhesive Proteins of Basal Lamina

0 Views •

2023

Laminins are heterotrimeric proteins with high molecular mass found in the extracellular matrix. Each laminin molecule is composed of three chains, viz. alpha, beta, and gamma, coded by five, four, and three paralogous genes, respectively. Laminins are categories based on the compositions of the three chains. In humans, the five forms of alpha chains are LAMA 1, LAMA 2, LAMA 3, LAMA 4, and LAMA 5. The four forms of beta chains are LAMB 1, LAMB 2, LAMB 3, and LAMB 4. The three forms of gamma...

Research

JoVE Journal - Bioengineering

Graphene Coatings for Biomedical Implants

0 Views •

Cited by 37 •

2013

Graphene offers potential as a coating material for biomedical implants. In this study we demonstrate a method for coating nitinol alloys with nanometer thick layers of graphene and determine how graphene may influence implant response.

Generating a Fractal Microstructure of Laminin-111 to Signal to Cells

0 Views •

Cited by 1 •

2020

We describe three methods to generate Ln1 polymers with fractal properties that signal to cells differently compared to unpolymerized Ln1.

Pinching-off of Coated Vesicles

0 Views •

2023

Vesicle budding is orchestrated by distinct cytosolic proteins such as adaptor proteins, coat proteins, and GTPases. To initiate vesicle budding, membrane-bending proteins containing crescent-shaped BAR domains bind to the lipid heads in the bilayer and distort the membrane to form a protein-coated vesicle bud. Adaptors proteins such as AP2 for clathrin-coated vesicles can nucleate on the deformed membrane. Finally, coat proteins such as clathrin or COPI and COPII assemble into a coat forming...

Coat Assembly and GTPases

0 Views •

2023

Vesicles incorporate different coat protein subunits in different cell locations, which changes the properties of the coat, such as the shape and geometry of the transport vesicles. Thus, vesicle coat proteins also play a significant role in cargo selection. Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...

View All Results

FAQs

Related Topics