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Titlebook: Antimicrobial Peptides; Role in Human Health Jürgen Harder,Jens-M. Schröder Book 2016 Springer International Publishing Switzerland 2016 An

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https://doi.org/10.1007/978-94-011-7092-5r this microbial assault, the urinary tract has developed a highly effective antimicrobial “shield” that can rapidly eliminate invading pathogens or prevent their growth. During recent years, considerable advances have been made in our understanding of the immune mechanisms that contribute to urinar
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Displacement Current and Maxwell’s Equationstebrates take advantage of this fact to combat invaders by sequestering essential nutrients, a defense known as nutritional immunity. The most well-characterized aspect of this defense is the iron-withholding response. Advances in elemental imaging have revealed that zinc and manganese are also sequ
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https://doi.org/10.1007/978-3-030-82150-0ation provided a potential explanation for the ability of vitamin D to enhance the antimicrobial activity of immune cells like macrophages that had been observed in the 1980s. Further, this finding provided a mechanism that could explain the observed importance of vitamin D in maintaining the epithe
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Displacement Current and Maxwell’s Equationsstablished. The basic simplicity of the chemical structure of antimicrobial peptides along with the lower likelihood of the emergence of resistance compared with conventional antibiotics have made them attractive candidates for development as therapeutics. In this chapter, I describe the stories beh
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https://doi.org/10.1007/978-4-431-54526-2cal application possibilities for their potential therapeutic effects. As several reviews already summarized the current knowledge with regard to the eye, this chapter will only briefly recapitulate the current knowledge of antimicrobial compound expression in the eye and then will focus on infectio
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