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Titlebook: Surface Modification of Nanoparticles for Targeted Drug Delivery; Yashwant V Pathak Book 2019 Springer Nature Switzerland AG 2019 nanotech

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Biodegradable Nanoparticles for Drug Delivery and Targeting, and targeting. Several new nanoparticles are developed to serve those purposes. In this specific chapter, the author will focus on the biodegradable nanoparticles which can be automatic degraded. The application of biodegradable nanoparticles for drug delivery and targeting will be summarized and p
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Functionalized Antibacterial Nanoparticles for Controlling Biofilm and Intracellular Infections,used antimicrobial agents. Nanoparticles have promising future in the development of new therapeutics because of their easy functionalization and unique mode of action. This book chapter consists of three parts. The first two parts explain the limitations in the treatment of intracellular and biofil
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Brain-Targeted Drug Delivery with Surface-Modified Nanoparticles,al strategies were developed to overcome these problems, still the treatment remains ineffective. To overcome these problems, nanomedicines which are based on noninvasive strategies are an emerging trend for brain-targeted drug delivery. The advantages of nanoparticles such as small size, lipophilic
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Surface Modification of Resorcinarene-Based Self-Assembled Solid Lipid Nanoparticles for Drug Targehave numerous benefits over other drug delivery carriers. Solid lipid nanoparticles (SLNs) have acquired significant attention as a potential substitutive carrier system to usual colloidal carriers like liposomes, emulsion, as well as polymeric nanoparticles. SLNs are the novel fundamental approache
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Targeted Delivery of Surface-Modified Nanoparticles: Modulation of Inflammation for Acute Lung Injuusted by changing the materials, designs, and physicochemical properties of the carriers. Furthermore, the carrier surface could be modified to minimize the particle clearance, increase the circulation duration, escape the biological protective mechanisms, penetrate through physical barriers, and pr
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Surface Modification of Nanocarriers for Specific Cell Targeting for Better Therapeutic Effect,ety of different therapeutic agents. Specifically designed to localize in target sites, nanocarriers have the ability to increase cellular uptake while decreasing toxicity. Surface-modified nanocarriers have the potential to overcome several biological barriers, thus further improving site specifici
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