Thermanox Coverslips

Thermanox Coverslips are thin, tissue-culture-treated plastic substrates that support adherent cells while providing a convenient surface for microscopic analysis. Their treated polystyrene surface improves wettability and cell attachment, allowing cells to spread and remain positioned during fixation, immunostaining, and imaging. In immunology and infection research, investigators can grow immune or host cells on these coverslips, expose them to microbes or microbial products, and assess cellular morphology, protein localization, pathogen uptake, or inflammatory responses by light or fluorescence microscopy. This workflow connects controlled cell culture with visual measurements of infection phenotypes, immune activation, and treatment effects.

Thermanox Coverslips - Related Videos

Research

JoVE EoE - Immune Response

B Cell Activation on an Antigen-Coated Coverslip

0 Views •

2025

This video demonstrates B cell activation in vitro. The process involves antigen interaction with B cell receptors, leading to cytoskeleton remodeling, immune synapse formation, lysosome movement, antigen internalization, processing, and subsequent presentation on MHC molecules for B cell activation.

Sequential Application of Glass Coverslips to Assess the Compressive Stiffness of the Mouse Lens: Strain and Morphometric Analyses

0 Views •

Cited by 28 •

2016

Age-related increases in eye lens stiffness are linked to presbyopia. This protocol describes a simple, cost-effective method for measuring mouse lens stiffness. Mouse lenses, like human lenses, become stiffer with age. This method is precise and can be adapted for lenses from larger animals.

Implantation of Cranial Imaging Window in Mouse Model: A Surgical Procedure to Implant Glass-based Coverslip for Stable Optical Access to Regions of Murine Brain

0 Views •

2023

This video presents a surgical procedure to implant cranial window in a mouse model for stable optical access to different regions of the brain.

Phase-Contrast Microscopy for Evaluating Developmental Mutants in Streptomyces

0 Views •

2025

Source: Bennett, J. A. et al. Visual and Microscopic Evaluation of Streptomyces Developmental Mutants. J. Vis. Exp. (2018)This video demonstrates the use of phase-contrast microscopy to examine phenotypic differences between wild-type and mutant Streptomyces coelicolor. It outlines the steps involved in preparing and imaging aerial filaments to detect developmental defects in spore formation.

Co-Culturing Glioblastoma Cells on Patterned Neurons: A Technique to Monitor the Migration of Glioblastoma Cells on Rat Hippocampal Neurons In Vitro

0 Views •

2025

This video describes a co-culture assay of glioblastoma cells on micropatterned neurons, which mimic the myelinated neuronal tracts invasion by the glioblastoma stem-like cells as they migrate on neurons in the peritumoral spaces. This assay can help analyze the effects of pharmacological drugs that inhibit glioblastoma cells' migration on neurons in a glioma.

View All Results

FAQs

Related Topics