Chemokines are a class of small secreted proteins that regulate directional cell migration. They primarily establish spatial signals through chemokine receptors, cell-surface glycosaminoglycans, and cell-adhesion systems, thereby guiding neutrophils, monocytes, T cells, NK cells, and other cells ...
cell migration
Techniques for detecting, quantifying and localizing antigens and antibodies — ELISA, Western blotting, immunohistochemistry and flow cytometry. Below are the protocols, FAQs and technical articles in our knowledge base tagged with this topic.
GPCRs, integrins, and receptor tyrosine kinases regulate actin polymerization, contraction, and adhesion turnover through Rho family small GTPases, thereby controlling cell migration, morphology, and tissue function.
The cytoskeleton is a dynamic fibrous network composed of microfilaments, microtubules, and intermediate filaments, mainly consisting of actin, tubulin, and different types of intermediate filament proteins. The cytoskeleton not only maintains cell morphology, cell polarity, and intracellular ...
Microfilaments are mainly formed by the polymerization of actin and are an important component of the cytoskeleton. They participate in the maintenance of cell morphology, adhesion and migration, cytokinesis, endocytic transport, stress fiber formation, and the establishment of cell polarity.
The uPA/uPAR system is not merely a proteolytic module, but an important interface linking local fibrinolytic activation, cell-adhesion switching, amplification of migratory signaling, and microenvironment remodeling.
Techniques often explored alongside immunological experiments.
