Engineered adhesion molecules drive synapse organization

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Engineered adhesion molecules drive synapse organization
Programming multicellular assembly with synthetic cell adhesion molecules
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
Synaptic stabilization - Wikipedia
Engineered adhesion molecules drive synapse organization
Complexes by synaptic cell-adhesion molecule families
Engineered adhesion molecules drive synapse organization
Microfluidics for Neuronal Cell and Circuit Engineering
Engineered adhesion molecules drive synapse organization
Engineered adhesion molecules drive synapse organization
Engineered adhesion molecules drive synapse organization
MDGAs bind to neuroligin-2 via ectodomain interactions. (A) Soluble
Engineered adhesion molecules drive synapse organization
SynCAMs Organize Synapses through Heterophilic Adhesion
Engineered adhesion molecules drive synapse organization
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus
Engineered adhesion molecules drive synapse organization
SynCAMs Organize Synapses through Heterophilic Adhesion
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