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Illinois Institute of Technology

3 ARTICLES PUBLISHED IN JoVE

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Medicine

Generation of Alginate Microspheres for Biomedical Applications
Omaditya Khanna 1, Jeffery C. Larson 2, Monica L. Moya 3, Emmanuel C. Opara 4, Eric M. Brey 2,5
1Department of Chemical and Biological Engineering, Illinois Institute of Technology, 2Department of Biomedical Engineering, Illinois Institute of Technology, 3Department of Biomedical Engineering, University of California at Irvine, 4Wake Forest Institute for Regenerative Medicine and Department of Biomedical Engineering, Wake Forest University Health Sciences, 5Research Service, Hines Veterans Administration Hospital

In the following sections, we outline procedures for the preparation of alginate microspheres for use in biomedical applications. We specifically illustrate a technique for creating multilayered alginate microspheres for the dual purpose of cell and protein encapsulation as a potential treatment for type 1 diabetes.

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Cancer Research

A Method of Targeted Cell Isolation via Glass Surface Functionalization
Ali Ansari 1, Reema Patel 2, Kinsey Schultheis 1, Vesna Naumovski 3, P. I. Imoukhuede 1
1Department of Bioengineering, University of Illinois at Urbana-Champaign, 2Department of Liberal Arts & Sciences, University of Illinois at Urbana-Champaign, 3Department of Biomedical Engineering, Illinois Institute of Technology

This protocol describes customizable surface functionalization of the desthiobiotin, streptavidin, and APTES system in order to isolate specific cell types of interest. In addition, this manuscript covers the applications, optimization, and verification of this process.

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Education

X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle Disease
Weikang Ma 1, Thomas C. Irving 1
1BioCAT, Dept. of Biological Sciences, Illinois Institute of Technology

We present detailed protocols for performing small-angle X-ray diffraction experiments using intact mouse skeletal muscles. With the wide availability of transgenic mouse models for human diseases, this experimental platform can form a useful test bed for elucidating the structural basis of genetic muscle diseases

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