Access the full text.
Sign up today, get DeepDyve free for 14 days.
Shamshad Khan, M. Naushad, M. Govarthanan, J. Iqbal, S. Alfadul (2021)
Emerging contaminants of high concern for the environment: Current trends and future research.Environmental research
Junjie Zhang, Lei Wang, L. Trasande, K. Kannan (2021)
Occurrence of Polyethylene Terephthalate and Polycarbonate Microplastics in Infant and Adult FecesEnvironmental Science & Technology Letters
Jian-mei Yuan, Jie Ma, Yiran Sun, Tao Zhou, Youcai Zhao, Fei Yu (2020)
Microbial degradation and other environmental aspects of microplastics/plastics.The Science of the total environment, 715
Nam Phuong, A. Zalouk‐Vergnoux, L. Poirier, A. Kamari, A. Châtel, C. Mouneyrac, F. Lagarde (2016)
Is there any consistency between the microplastics found in the field and those used in laboratory experiments?Environmental pollution, 211
Danlian Huang, Haojie Chen, Maocai Shen, Jiaxi Tao, Shaio-Shing Chen, Lingshi Yin, Wei Zhou, Xinya Wang, Ruihao Xiao, Ruijin Li (2022)
Recent advances on the transport of microplastics/nanoplastics in abiotic and biotic compartments.Journal of hazardous materials, 438
Han Qu, Ruixue Ma, Bin Wang, Yizhe Zhang, Li-Cheng Yin, Gang Yu, Shubo Deng, Jun Huang, Yujue Wang (2018)
Effects of microplastics on the uptake, distribution and biotransformation of chiral antidepressant venlafaxine in aquatic ecosystem.Journal of hazardous materials, 359
Razegheh Akhbarizadeh, F. Moore, B. Keshavarzi (2018)
Investigating a probable relationship between microplastics and potentially toxic elements in fish muscles from northeast of Persian Gulf.Environmental pollution, 232
C. Yong, S. Valiyaveettil, B. Tang (2020)
Toxicity of Microplastics and Nanoplastics in Mammalian SystemsInternational Journal of Environmental Research and Public Health, 17
N. Evangeliou, H. Grythe, Z. Klimont, C. Heyes, S. Eckhardt, S. Lopez-Aparicio, A. Stohl (2020)
Atmospheric transport is a major pathway of microplastics to remote regionsNature Communications, 11
Nur Nor, M. Kooi, N. Diepens, A. Koelmans (2021)
Lifetime Accumulation of Microplastic in Children and AdultsEnvironmental Science & Technology, 55
Xinjie Wang, N. Bolan, Daniel Tsang, B. Sarkar, L. Bradney, Yang Li (2020)
A review of microplastics aggregation in aquatic environment: Influence factors, analytical methods, and environmental implications.Journal of hazardous materials, 402
B. Maher, I. Ahmed, V. Karloukovski, D. Maclaren, Penelope Foulds, D. Allsop, D. Mann, R. Torres-Jardón, L. Calderón-Garcidueñas (2016)
Magnetite pollution nanoparticles in the human brainProceedings of the National Academy of Sciences, 113
Wen Zhang, Qi Wang, Hao Chen (2021)
Challenges in characterization of nanoplastics in the environmentFrontiers of Environmental Science & Engineering, 16
R. Hale (2018)
Are the Risks from Microplastics Truly Trivial?Environmental science & technology, 52 3
K. Cox, Garth Covernton, Hailey Davies, J. Dower, F. Juanes, Sarah Dudas (2019)
Human Consumption of Microplastics.Environmental science & technology
E. Besseling, P. Redondo-Hasselerharm, E. Foekema, A. Koelmans (2018)
Quantifying ecological risks of aquatic micro- and nanoplasticCritical Reviews in Environmental Science and Technology, 49
S. Rist, B. Almroth, Nanna Hartmann, Therese Karlsson (2018)
A critical perspective on early communications concerning human health aspects of microplastics.The Science of the total environment, 626
Dongqi Yang, Huahong Shi, Lan Li, Jiana Li, Khalida Jabeen, Prabhu Kolandhasamy (2015)
Microplastic Pollution in Table Salts from China.Environmental science & technology, 49 22
B. Koelmans, S. Pahl, T. Backhaus, F. Bessa, G. Calster, N. Contzen, R. Cronin, T. Galloway, A. Hart, L. Henderson, G. Kalčíková, F. Kelly, B. Kołodziejczyk, E. Marku, W. Poortinga, M. Rillig, E. Sebille, L. Steg, J. Steinhorst, J. Steidl, K. Syberg, Richard Thompson, M. Wagner, A. Wezel, K. Wyles, S. Wright (2019)
A Scientific Perspective on Microplastics in Nature and Society
ShengDong Liu, Enxiang Shang, Jingnan Liu, Yining Wang, N. Bolan, M. Kirkham, Yang Li (2021)
What have we known so far for fluorescence staining and quantification of microplastics: A tutorial reviewFrontiers of Environmental Science & Engineering, 16
Han Qu, Ruixue Ma, Bin Wang, Jian Yang, L. Duan, Gang Yu (2019)
Enantiospecific toxicity, distribution and bioaccumulation of chiral antidepressant venlafaxine and its metabolite in loach (Misgurnus anguillicaudatus) co-exposed to microplastic and the drugs.Journal of hazardous materials, 370
A. Treyer, Mario Pujato, Ximo Pechuan, A. Müsch (2016)
Iterative sorting of apical and basolateral cargo in Madin–Darby canine kidney cellsMolecular Biology of the Cell, 27
Jiajun Duan, N. Bolan, Yang Li, Shiyuan Ding, Thilakshani Atugoda, M. Vithanage, B. Sarkar, Daniel Tsang, M. Kirkham (2021)
Weathering of microplastics and interaction with other coexisting constituents in terrestrial and aquatic environments.Water research, 196
H Qu, R Ma, H Barrett, B Wang, J Han, F Wang, P Chen, W Wang, G Peng, G Yu (2020)
How microplastics affect chiral illicit drug methamphetamine in aquatic food chain?From green alga (Chlorella pyrenoidosa) to freshwater snail (Cipangopaludian cathayensis) Environment International, 136
Liang Lu, Ting Luo, Yao Zhao, Chunhui Cai, Z. Fu, Yuanxiang Jin (2019)
Interaction between microplastics and microorganism as well as gut microbiota: A consideration on environmental animal and human health.The Science of the total environment, 667
S. Wright, F. Kelly (2017)
Plastic and Human Health: A Micro Issue?Environmental science & technology, 51 12
Xinjie Wang, Yang Li, Jian Zhao, X. Xia, Xiaonan Shi, Jiajun Duan, Wen Zhang (2020)
UV-induced aggregation of polystyrene nanoplastics: effects of radicals, surface functional groups and electrolyteEnvironmental Science: Nano
Sulin Zhang, Huajian Gao, G. Bao (2015)
Physical Principles of Nanoparticle Cellular Endocytosis.ACS nano, 9 9
Han Qu, Ruixue Ma, H. Barrett, Bin Wang, Jiajun Han, Fang Wang, Pin Chen, Wei Wang, Guilong Peng, Gang Yu (2020)
How microplastics affect chiral illicit drug methamphetamine in aquatic food chain? From green alga (Chlorella pyrenoidosa) to freshwater snail (Cipangopaludian cathayensis).Environment international, 136
Wenke Yuan, Yanfei Zhou, Xiaoning Liu, Jun Wang (2019)
A new perspective on the nanoplastics disrupting the reproduction of an endangered fern in artificial freshwater.Environmental science & technology
Over the past decades, the plastic production has been dramatically increased. Indeed, a category of small plastic particles mainly with the shapes of fragments, fibers, or spheres, called microplastics (particles smaller than 5 mm) and nanoplastics (particles smaller than 1 µm) have attracted particular attention. Because of its wide distribution in the environment and potential adverse effects to animal and human, microplastic pollution has been reported as a serious environment problem receiving increased attention in recent years. As one of the commonly detected emerging contaminants in the environment, recent evidence indicates that the concentration of microplastics show an increasing trend, for the reason that up to 12.7 million metric tons of plastic litter is released into aquatic environment from land-based sources each year. Furthermore, microplastic exposure levels of model organisms in laboratory studies are usually several orders of magnitude higher than those found in environment, and the microplastics exposure conditions are also different with those observed in the environment. Additionally, the detection of microplastics in feces indicates that they can be excreted out of the bodies of animal and human. Hence, great uncertainties might exist in microplastics exposure and health risk assessment based on current studies, which might be exaggerated. Policies reduce microplastic emission sources and hence minimize their environmental risks are determined. To promote the above policies, we must first overcome the technical obstacles of detecting microplastics in various samples.
Frontiers of Environmental Science & Engineering – Springer Journals
Published: Jan 1, 2023
Keywords: Emerging contaminants; Microplastics; Environment risk; Health effect
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.