Abstract

To develop a 3D neural cell construct for encapsulated delivery of transplant cells; develop hydrogels seeded with magnetic nanoparticle (MNP)-labeled cells suitable for cell tracking by MRI. Astrocytes were exogenously labeled with MRI-compatible iron-oxide MNPs prior to intra-construct incorporation within a 3D collagen hydrogel. A connective, complex cellular network was clearly observable within the 3D constructs, with high cellular viability. MNP accumulation in astrocytes provided a hypointense MRI signal at 24h & 14days. Our findings support the concept of developing a 3D construct possessing the dual advantages of(i)support of long-term cell survival of neural populations with (ii)the potential for noninvasive MRI-tracking of intra-construct cells for neuroregenerative applications.

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