REFERENCES

1. Jiang B, Kauffman AE, Li L, et al. Health impacts of environmental contamination of micro- and nanoplastics: a review. Environ Health Prev Med 2020;25:29.

2. Eriksen M, Lebreton LCM, Carson HS, et al. Plastic pollution in the world’s oceans: more than 5 trillion plastic pieces weighing over 250,000 tons afloat at sea. PLoS One 2014;9:e111913.

3. Koelmans AA, Mohamed Nor NH, Hermsen E, Kooi M, Mintenig SM, De France J. Microplastics in freshwaters and drinking water: critical review and assessment of data quality. Water Res 2019;155:410-22.

4. Fang C, Luo Y, Naidu R. Microplastics and nanoplastics analysis: options, imaging, advancements and challenges. TrAC Trend Anal Chem 2023;166:117158.

5. Lee J, Chae KJ. A systematic protocol of microplastics analysis from their identification to quantification in water environment: a comprehensive review. J Hazard Mater 2021;403:124049.

6. Chen Z, Liu X, Wei W, Chen H, Ni BJ. Removal of microplastics and nanoplastics from urban waters: separation and degradation. Water Res 2022;221:118820.

7. Kik K, Bukowska B, Sicińska P. Polystyrene nanoparticles: sources, occurrence in the environment, distribution in tissues, accumulation and toxicity to various organisms. Environ Pollut 2020;262:114297.

8. Aon MA, Cortassa S, Lloyd D. Chaotic dynamics and fractal space in biochemistry: simplicity underlies complexity. Cell Biol Int 2000;24:581-7.

9. Gagné F. Ecotoxicology of altered fractal organization in cells. Am J Biomed Sci Res 2020;8:498-502.

10. Li X, Ji S, He E, et al. UV/ozone induced physicochemical transformations of polystyrene nanoparticles and their aggregation tendency and kinetics with natural organic matter in aqueous systems. J Hazard Mater 2022;433:128790.

11. Khago D, Bierma JC, Roskamp KW, Kozlyuk N, Martin RW. Protein refractive index increment is determined by conformation as well as composition. J Phys Condens Matter 2018;30:435101.

12. Wen J, Arakawa T. Refractive index of proteins in aqueous sodium chloride. Anal Biochem 2000;280:327-9.

13. Auclair J, Gagné F. The influence of polystyrene nanoparticles on the fractal kinetics of lactate dehydrogenase. Biochem Biophys Rep 2020;23:100793.

14. Capolupo M, Gunaalan K, Booth AM, Sørensen L, Valbonesi P, Fabbri E. The sub-lethal impact of plastic and tire rubber leachates on the Mediterranean mussel Mytilus galloprovincialis. Environ Pollut 2021;283:117081.

15. Cabaleiro-Lago C, Szczepankiewicz O, Linse S. The effect of nanoparticles on amyloid aggregation depends on the protein stability and intrinsic aggregation rate. Langmuir 2012;28:1852-7.

16. Zhou H, Cai W, Li J, Wu D. Visual monitoring of polystyrene nanoplastics < 100 nm in drinking water based on functionalized gold nanoparticles. Sens Actuators B Chem 2023;392:134099.

17. Savageau MA. Development of fractal kinetic theory for enzyme-catalysed reactions and implications for the design of biochemical pathways. Biosystems 1998;47:9-36.

18. Butterworth PHW, Baum H, Porter JW. A modification of the Ellman procedure for the estimation of protein sulfhydryl groups. Arch Biochem Biophys 1967;118:716-23.

19. Gagné F. Isolation and quantification of polystyrene nanoplastics in tissues by low pressure size exclusion chromatography. J Xenobiot 2022;12:109-21.

20. Xu EG, Lin N, Cheong RS, et al. Artificial turf infill associated with systematic toxicity in an amniote vertebrate. Proc Natl Acad Sci U S A 2019;116:25156-61.

21. Reinhard BM, Siu M, Agarwal H, Alivisatos AP, Liphardt J. Calibration of dynamic molecular rulers based on plasmon coupling between gold nanoparticles. Nano Lett 2005;5:2246-52.

22. Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976;72:248-54.

23. Greenspan P, Mayer EP, Fowler SD. Nile red: a selective fluorescent stain for intracellular lipid droplets. J Cell Biol 1985;100:965-73.

24. Pras M, Schubert M, Zucker-Franklin D, Rimon A, Franklin EC. The characterization of soluble amyloid prepared in water. J Clin Invest 1968;47:924-33.

25. Xing Y, Wang S, Mao X, Zhao X, Wei D. An easy and efficient fluorescent method for detecting aldehydes and its application in biotransformation. J Fluoresc 2011;21:587-94.

26. Choi I, Lee LP. Rapid detection of Aβ aggregation and inhibition by dual functions of gold nanoplasmic particles: catalytic activator and optical reporter. ACS Nano 2013;7:6268-77.

27. Pirade F, Lompe KM, Jiménez-lamana J, et al. How suitable is the gold-labelling method for the quantification of nanoplastics in natural water? AQUA Water Infra Ecosyst Soc 2023:jws2023278.

28. Gagné F, Roubeau-Dumont E, André C, Auclair J. Micro and nanoplastic contamination and its effects on freshwater mussels caged in an urban area. J Xenobiot 2023;13:761-74.

29. Naziri A, Mina T, Manoli K, et al. Looking into the effects of co-contamination by micro(nano)plastics in the presence of other pollutants on irrigated edible plants. Sci Total Environ 2023;892:164618.

30. Xu Y, Ou Q, Wang X, et al. Assessing the mass concentration of microplastics and nanoplastics in wastewater treatment plants by pyrolysis gas chromatography-mass spectrometry. Environ Sci Technol 2023;57:3114-23.

31. Xu X, Jian Y, Xue Y, Hou Q, Wang LP. Microplastics in the wastewater treatment plants (WWTPs): occurrence and removal. Chemosphere 2019;235:1089-96.

32. Guo X, Cai Y, Ma C, Han L, Yang Z. Combined toxicity of micro/nano scale polystyrene plastics and ciprofloxacin to Corbicula fluminea in freshwater sediments. Sci Total Environ 2021;789:147887.

33. Wang X, Shao S, Zhang T, Zhang Q, Yang D, Zhao J. Effects of exposure to nanoplastics on the gill of mussels Mytilus galloprovincialis: an integrated perspective from multiple biomarkers. Mar Environ Res 2023;191:106174.

34. Nezelof C. Role of defective intracellular proteolysis in human degenerative diseases. Bull Acad Natl Med 2102;196:1587-98.

35. Fang Y, Li H, Ai N, Luo W. Fractal diffusion in a chemical space. Int J Nonlinear Sci Numer Simul 2000;1:235-8.

36. Gagné F, Auclair J, André C. Polystyrene nanoparticles induce anisotropic effects in subcellular fraction of the digestive system of freshwater mussels. Cur Top Toxicol 2019;15:43-8. Available from: http://www.researchtrends.net/tia/article_pdf.asp?in=0&vn=15&tid=50&aid=6351. [Last accessed on 20 Dec 2023].

37. Kowalczyńska HM, Nowak-Wyrzykowska M, Szczepankiewicz AA, et al. Albumin adsorption on unmodified and sulfonated polystyrene surfaces, in relation to cell-substratum adhesion. Colloids Surf B Biointerfaces 2011;84:536-44.

38. Simončič M, Hritz J, Lukšič M. Biomolecular complexation on the “wrong side”: a case study of the influence of salts and sugars on the interactions between bovine serum albumin and sodium polystyrene sulfonate. Biomacromolecules 2022;23:4412-26.

39. Jung S, Raghavendra AJ, Patri AK. Comprehensive analysis of common polymers using hyphenated TGA-FTIR-GC/MS and Raman spectroscopy towards a database for micro- and nanoplastics identification, characterization, and quantitation. NanoImpact 2023;30:100467.

Water Emerging Contaminants & Nanoplastics
ISSN 2831-2597 (Online)

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