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Titlebook: Biomaterials in Regenerative Medicine and the Immune System; Laura Santambrogio Book 2015 Springer International Publishing Switzerland 20

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https://doi.org/10.1007/978-3-642-83044-0ning blood cell mimics and plasma substitutes. In parallel to synthetic blood substitutes, currently research is also being focused on generating blood cells from stem cells. This chapter provides a comprehensive discussion of the various blood product designs highlighting the biomaterials-based applications and approaches in this field.
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Fallbeispiel Firma Legrand-BTicino GmbH, take into account which DC subset(s) needs to be targeted. In this chapter, we discuss how the function of DC subsets differ, how this impacts NP design, and outline recent promising novel NP platforms that may be suitable for DC targeting.
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,Einführung eines MES im Unternehmen,cancer or infectious disease and others that suppress the immune system in the context of autoimmunity. Additional research into the design and application of aAPCs could unlock the full potential of this technology to direct the immune response.
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Role of Mesenchymal Stem Cells, Macrophages, and Biomaterials During Myocardial Repair,role during the remodeling process. This chapter describes the inflammatory environment found after an MI followed by a description of how MSCs can be used as part of a cardiac patch that can modulate the inflammatory response to improve healing.
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The Role of Macrophages in the Foreign Body Response to Implanted Biomaterials,M2), and the role it plays in wound healing and biomaterial vascularization. We conclude with a discussion of biomaterial design strategies that have been suggested to positively interact with and potentially control macrophages in order to improve interactions with the inflammatory response.
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Advances in Molecular Design of Polymer Surfaces with Antimicrobial, Anticoagulant, and Antifoulingrfaces while maintaining bacteriophage’s biological activities capable of killing deadly human pathogens are also explored. This alternative approach of fighting microbial wars on polymeric surfaces may be considered as a long-term alternative to inhibit early stages of microbial film formation.
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