Nanotoxicology
基本情報
Nanotoxicology publishes peer-reviewed research relating to the hazards, exposure, and risks associated with nano-structured materials during their life cycle. The journal primarily covers research on any material with at least one dimension in the nanometer size range (1-100nm). This includes nanoparticles, nanomaterials (including high aspect ratio nanomaterials (HARN) and fibres), nanomedicines, nano-surfaces of larger materials, nanocomposites, and advanced materials. Such materials may be used in a range of consumer products (e.g. paints, cosmetics, electronics, textiles, packaging), generated for intentional delivery into the body (e.g. food, medicines, diagnostics, medical devices), or designed for environmental applications (such as remediation of contaminated sites). We will consider research on different sources (e.g. natural, anthropogenic, engineered) of all of these materials, as well as studies which focus on assessment of the hazards, exposure and risks of air pollution particles (e.g. PM 10, PM 2.5), micro and nanoplastics, and occupational dusts. Articles which focus on single or agglomerated/aggregated particles can be submitted to the journal. We will also publish papers on studies related to solid phase materials, aerosols or colloids if humans are potentially exposed or if they might be released into the environment. We are particularly interested in studies which have assessed the hazards of nanomaterials to human health and the environment using in chemico, in silico, in vitro, and in vivo models as well as epidemiological studies and encourage the submission of articles which have investigated the mechanism(s) of toxicity. Studies that support understanding of environmental and human exposure and risk assessment are within the scope of the journal. Furthermore, articles which focus on legislation and regulation are strongly welcomed. Research articles relevant to the area of nanomedicine will be considered but there must be a strong safety or toxicology component. More specifically, the manuscript should not be focussed solely on investigating clinical effectiveness of the nanomedicine but must present toxicology data from a relevant model and assess the toxicity using appropriate endpoints (e.g. viability assays to assess cytotoxicity in vitro alone is not sufficient). It is essential that the physicochemical properties of ‘as produced/supplied’ materials as well as dispersions of the materials in relevant biological media are well characterized. We encourage the use of standard or reference materials such as those supplied from the US National Institute of Standards or those selected by the OECD Working Party on Manufactured Nanomaterials. We do not publish papers on nanomaterials produced by new principles of synthesis if toxicological effects are not analysed in parallel with well established reference or benchmark materials. The journal welcomes original basic and clinical research articles, review articles including meta-analyses, short communications, study protocols, case reports, clinical practice papers, letters to the Editor, inaugural lectures, conference abstracts and book reviews.
CiteScore
分野 | ランク | パーセンタイル |
---|---|---|
Pharmacology, Toxicology and PharmaceuticsToxicology |
9 / 133 | 93% |
ジャーナル統計
投稿情報
関連論文
Ultra-thin NiFeSe nanosheets as a highly efficient bifunctional electrocatalyst for overall water splitting
Yu-Yang Sun, Mei-Yan Jiang, Guang-Ya Hou, Yi-Ping Tang, Min Liu
DOI: 10.1039/C9SE00905A
Nickel-containing N-doped carbon as effective electrocatalysts for the reduction of CO2 to CO in a continuous-flow electrolyzer
Bert De Mot, Daniel Choukroun, Chen Li, Annick Hubin, Sara Bals, Jonas Hereijgers
DOI: 10.1039/C9SE00814D
Building microsphere–nanosheet structures in N-doped carbon to improve its performance in the oxygen reduction reaction and vanadium redox flow batteries
Baobing Huang, Yuchuan Liu, Miao Xia, Jiugen Qiu, Zailai Xie
DOI: 10.1039/C9SE00851A
Engineering of electrodeposited binder-free organic-nickel hydroxide based nanohybrids for energy storage and electrocatalytic alkaline water splitting
Rohit G. Jadhav, Devraj Singh, Shaikh M. Mobin, Apurba K. Das
DOI: 10.1039/C9SE00483A
High-performance tungsten carbide electrocatalysts for the hydrogen evolution reaction
Jing Li, Bao Wang, Wei Liu
DOI: 10.1039/C9SE00853E
An overview of latest advances in exploring bioactive peptide hydrogels for neural tissue engineering
Pooja Sharma, Vijay Kumar Pal, Sangita Roy
DOI: 10.1039/D0BM02049D
Non-aqueous neptunium and plutonium redox behaviour in THF – access to a rare Np(iii) synthetic precursor
Nickolas H. Anderson, Suzanne C. Bart, Andrew J. Gaunt, Brian L. Scott
DOI: 10.1039/C8CC02611D
Chemoproteomics-based target profiling of sinomenine reveals multiple protein regulators of inflammation
Lianguo Chen, Hong-jian Wang, Teng-fei Ji, Chong-Jing Zhang
DOI: 10.1039/D1CC01522B