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Titlebook: Microscale Technologies for Cell Engineering; Ankur Singh,Akhilesh K. Gaharwar Book 2016 Springer International Publishing Switzerland 201

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Microscale Technologies for High-Throughput Analysis of Immune Cellsscribe advances in the NGS of antibody repertoires from B cell populations including its combination with microfluidicis-single cell analysis and proteomics technologies. We then describe how these approaches to antibody repertoire analysis have been used for monoclonal antibody discovery and engine
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Microscale Cell Encapsulation Materials and Fabrication Techniques for Type 1 Diabetesomplish the encapsulation and immunoprotection, a variety of materials and microscale techniques have been developed. This chapter provides a brief overview of the different methods developed to fabricate microscale encapsulation materials and devices. We conclude that although challenging, fabricat
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Engineering Mechanical, Biochemical, and Topographical Niche Cues by Photocrosslinkable, Microribbonble hydrogels as a new generation of scaffolding materials. Gelatin-based microribbons provide independently tunable macroporosity and matrix stiffness, as gelatin-based biochemical ligands promote cell adhesion and proliferation. PEG-based microribbons enable the independent control of macroporosit
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Nanoparticulate Systems for Controlling Monocyte/Macrophage Behaviorsis. NPs can also be designed to have dual functions as both a diagnostic tool and a therapeutic, also known as theranostic, allowing simultaneous tracking and treatment. Recently, it was discovered that macrophages have the ability to switch from a pro-inflammatory (M1) to an anti-inflammatory/pro-
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