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Titlebook: Nanomaterial Biointeractions at the Cellular, Organismal and System Levels; Nilesh Sharma,Shivendra Sahi Book 2021 The Editor(s) (if appli

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书目名称Nanomaterial Biointeractions at the Cellular, Organismal and System Levels
编辑Nilesh Sharma,Shivendra Sahi
视频video
概述This book covers the broad biological interactions of nanomaterials at the organismal levels of plant and animal.Focuses on both toxic effects as well as growth-enhancing roles of nanomaterials.Includ
丛书名称Nanotechnology in the Life Sciences
图书封面Titlebook: Nanomaterial Biointeractions at the Cellular, Organismal and System Levels;  Nilesh Sharma,Shivendra Sahi Book 2021 The Editor(s) (if appli
描述The range of nanomaterial applications has expanded recently from catalysis, electronics, and filtration to therapeutics, diagnostics, agriculture, and food because of unique properties and potentials of different nanoparticles and nanomaterials. Research shows that these exquisite particles can interact with an organism at the cellular, physiological, biochemical, and molecular levels. However, our knowledge of how they affect these changes, selectively or generally, in diverse organism or ecosystems is very limited and far from satisfactory. Data indicate that the biological function largely depends on the shape, size, and surface characteristics of the nanoparticles used besides life cycle stages of an organism. Therefore, this compilation will focus on the body of work carried out by distinguished investigators using diverse nanomaterials and plant and animal species. This book includes specific case studies as well as general review articles highlighting aspects of multilayered interactions, and targets not only research and academic scholars but also the concerned industry and policy makers as well.
出版日期Book 2021
关键词Bio-nano-interactions; Oxidative stress; Genotoxicity; Nanoparticles; Toxicity; Agriculture; Systematic Bo
版次1
doihttps://doi.org/10.1007/978-3-030-65792-5
isbn_softcover978-3-030-65794-9
isbn_ebook978-3-030-65792-5Series ISSN 2523-8027 Series E-ISSN 2523-8035
issn_series 2523-8027
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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eir narratives in a manner that is comparable with non-propaganda truth-claims (i.e., verifiable). The chapter identifies ten characteristics of truth-claims that propagandists seek to mimic. Applying this model to Russiagate, the chapter assesses the campaign as effective in aligning with pre-exist
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ers with a family kind of relationship, all internal intrigues and animosities notwithstanding. The size of this relatively small institution more than doubled by the end of the 1920s; the Bolshevik takeover not only did not result in the abolition of the academy, but on the contrary, the new govern
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Zebrafish Models of Nanotoxicity: A Comprehensive Account impact that nanomaterials could have on human health and environment. Thereby, to fill this gap of knowledge, in the last decade, toxicity studies were strongly promoted by the scientific community. In this framework, zebrafish (.) represent emerging and powerful models systems for high-throughput
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Response to Engineered Nanomaterials in ,, a Model Plantplications. Plants being ubiquitous are the first sink for such released materials as they can easily uptake, transport, accumulate and transform materials in the nano/micrometre range. As a model plant, . has several advantages over other plants, which can be used to delineate the cellular or molec
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Metal Oxide Nanoparticle Toxicity in Aquatic Organisms: An Overview of Methods and Mechanismspotential human and animal exposures to NPs are increasing as the range of consumer products containing engineered NPs increases over time. Thus, there has been a surge in research focusing on the interactions and toxicity of NPs with living organisms. The toxicity of metallic nanoparticles such as
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Cerium and Titanium Oxide Nanoparticles Increase Algal Growth and Nutrient Accumulation in Rice Paddoles in rice production. This study investigated whether the presence of two common metal oxide engineered nanoparticles (ENPs), cerium oxide (.CeO.) and titanium dioxide (.TiO.), directly influenced algal biomass production and algal nutrient accumulation and consequentially indirectly affected ove
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