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Engineered adhesion molecules drive synapse organization

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Engineered adhesion molecules drive synapse organization
Cells, Free Full-Text
Engineered adhesion molecules drive synapse organization
Cells, Free Full-Text
Engineered adhesion molecules drive synapse organization
Cell adhesion molecules: signalling functions at the synapse
Engineered adhesion molecules drive synapse organization
Programming multicellular assembly with synthetic cell adhesion molecules
Engineered adhesion molecules drive synapse organization
Engineered In Vitro Tumor Model Recapitulates Molecular Signatures of Invasion in Glioblastoma
Engineered adhesion molecules drive synapse organization
Engineered adhesion molecules drive synapse organization
Engineered adhesion molecules drive synapse organization
Nrx HS Modification Is Required for Development of Functional Synapses
Engineered adhesion molecules drive synapse organization
Ligand-Induced Cell Adhesion in Synapse Formation
Engineered adhesion molecules drive synapse organization
Neuroligin-3 confines AMPA receptors into nanoclusters, thereby controlling synaptic strength at the calyx of Held synapses
Engineered adhesion molecules drive synapse organization
Neural Cell Adhesion Molecules of the Immunoglobulin Superfamily Regulate Synapse Formation, Maintenance, and Function: Trends in Neurosciences
Engineered adhesion molecules drive synapse organization
Multiple signaling pathways are essential for synapse formation induced by synaptic adhesion molecules
Engineered adhesion molecules drive synapse organization
Cell Adhesion and the Extracellular Matrix - ScienceDirect
Engineered adhesion molecules drive synapse organization
Progress and limitations in engineering cellular adhesion for research and therapeutics: Trends in Cell Biology
Engineered adhesion molecules drive synapse organization
Frontiers Teneurin paralogues are able to localise synaptic sites driven by the intracellular domain and have the potential to form cis-heterodimers
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