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THE EFFECTS OF MICROPLASTICS ON THE IMMUNE SYSTEM AND PREGNANCY

Yıl 2025, Cilt: 9 Sayı: 1, 112 - 129, 25.04.2025

Öz

Microplastics are one of the most common sources of environmental pollution. Microplastics are synthetic particles smaller than 5 mm and can enter the human body through many means, from seafood to water sources and even the air. The effects of microplastics, which enter the body through inhalation, oral ingestion and skin contact, on human health are a growing concern. The accumulation of microplastics in the digestive and respiratory systems can lead to disruptions in the intestinal microbiota, inflammation and weakening of the immune response. The presence of microplastics, especially in critical barriers between the mother and the fetus, such as the placenta and amniotic fluid, draws attention with their negative effects on fetal development and birth outcomes. Studies have shown that babies exposed to microplastics exhibit negative outcomes such as low birth weight, short birth length and low Apgar scores. This study discusses the potential effects of microplastics on human health, their effects on the immune system and their dangers, especially during pregnancy.

Kaynakça

  • Amato-Lourenço, L.F., Costa, N.D.S.X., Dantas, K.C., dos Santos Galvão, L., Moralles, F.N., Lombardi, S.C.F.S., Junior A.M., Lindoso, J.A.L., Ando, R.A., Lima, F.G., Olivera, R.C., & Mauad, T. (2022). Airborne microplastics and SARS-CoV-2 in total suspended particles in the area surrounding the largest medical centre in Latin America. Environmental Pollution, 292, 118299.
  • Amereh, F., Amjadi, N., Mohseni-Bandpei, A., Isazadeh, S., Mehrabi, Y., Eslami, A., Naeiji, Z., & Rafiee, M. (2022). Placental plastics in young women from general population correlate with reduced foetal growth in IUGR pregnancies. Environmental Pollution, 314, 120174.
  • Boraschi, D., & Italiani, P. (2018). Innate immune memory: time for adopting a correct terminology. Frontiers in Immunology, 9, 799.
  • Camacho, M., Herrera, A., Gómez, M., Acosta-Dacal, A., Martínez, I., Henríquez-Hernández, L. A., & Luzardo, O. P. (2019). Organic pollutants in marine plastic debris from Canary Islands beaches. Science of the Total Environment, 662, 22-31.
  • Carbery, M., O'Connor, W., & Palanisami, T. (2018). Trophic transfer of microplastics and mixed contaminants in the marine food web and implications for human health. Environment İnternational, 115, 400-409.
  • Deng, Y., Zhang, Y., Lemos, B., & Ren, H. (2017). Tissue accumulation of microplastics in mice and biomarker responses suggest widespread health risks of exposure. Scientific Reports, 7(1), 46687.
  • Doğdu, G., Karabörk, Ş., & Dilek, M. (2024). Mikroplastiklerin yenidoğan maruziyeti ve immün sistem üzerine etkileri. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 7(2), 902-923.
  • Dong, Y.-d., Gao, L., Wu, F.-j., Lin, R., Meng, Y., Jia, L.-h., & Wang, X.-f. (2020). Abnormal differentiation of regulatory T cells and Th17 cells induced by perinatal bisphenol A exposure in female offspring mice. Molecular & Cellular Toxicology, 16, 167-174.
  • Fiorentino, I., Gualtieri, R., Barbato, V., Mollo, V., Braun, S., Angrisani, A., Turano, M., Furia, M., Netti, P. A. Guarnieri, D., Fusco, S., & Talevi, R. (2015). Energy independent uptake and release of polystyrene nanoparticles in primary mammalian cell cultures. Experimental Cell Research, 330(2), 240-247.
  • Gaudino, S. J., & Kumar, P. (2019). Cross-talk between antigen presenting cells and T cells impacts intestinal homeostasis, bacterial infections, and tumorigenesis. Frontiers in Immunology, 10, 360.
  • Guo, H., Liu, T., Uemura, Y., Jiao, S., Wang, D., Lin, Z., Narita, Y., Suziki, M., Hirosawa, N., Ichihara, Y., Ishihara, O., Kikuchi, H., Sakamoto, Y., Senju, S., Zhang, Q., & Ling, F. (2010). Bisphenol A in combination with TNF-α selectively induces Th2 cell-promoting dendritic cells in vitro with an estrogen-like activity. Cellular & Molecular İmmunology, 7(3), 227-234.
  • Haddadi, A., Kessabi, K., Boughammoura, S., Rhouma, M. B., Mlouka, R., Banni, M., & Messaoudi, I. (2022). Exposure to microplastics leads to a defective ovarian function and change in cytoskeleton protein expression in rat. Environmental Science and Pollution Research, 29(23), 34594-34606.
  • Halfar, J., Čabanová, K., Vávra, K., Delongová, P., Motyka, O., Špaček, R., Kukutschová, J. Šimetka, O., & Heviánková, S. (2023). Microplastics and additives in patients with preterm birth: The first evidence of their presence in both human amniotic fluid and placenta. Chemosphere, 343, 140301.
  • Huang, T., Zhang, W., Lin, T., Liu, S., Sun, Z., Liu, F., Yuan, Y., Xiang. X., Kuang, H., Yang, B., & Zhang, D. (2022). Maternal exposure to polystyrene nanoplastics during gestation and lactation induces hepatic and testicular toxicity in male mouse offspring. Food and Chemical Toxicology, 160, 112803.
  • Jambeck, J. R., Geyer, R., Wilcox, C., Siegler, T. R., Perryman, M., Andrady, A., Narayan Y., & Kara, L. L. (2015). Plastic waste inputs from land into the ocean. Science, 347(6223), 768-771.
  • Ji, Y., Wang, Y., Shen, D., Kang, Q., & Chen, L. (2021). Mucin corona delays intracellular trafficking and alleviates cytotoxicity of nanoplastic-benzopyrene combined contaminant. Journal of Hazardous Materials, 406, 124306.
  • Kuhn, D. A., Vanhecke, D., Michen, B., Blank, F., Gehr, P., Petri-Fink, A., & Rothen-Rutishauser, B. (2014). Different endocytotic uptake mechanisms for nanoparticles in epithelial cells and macrophages. Beilstein Journal of Nanotechnology, 5(1), 1625-1636.
  • Land, W.G. (2018). Antigen Uptake, Processing, and Presentation by Dendritic Cells. In W.G. Land, (Ed.), Damage-Associated Molecular Patterns in Human Diseases, (pp. 723-748) Springer.
  • Lebre, F., Boland, J. B., Gouveia, P., Gorman, A. L., Lundahl, M. L., Lynch, R. I., O'Brien, F. j., Coleman, J., & Lavelle, E. C. (2020). Pristine graphene induces innate immune training. Nanoscale, 12(20), 11192-11200.
  • Limonta, G., Mancia, A., Benkhalqui, A., Bertolucci, C., Abelli, L., Fossi, M. C., & Panti, C. (2019). Microplastics induce transcriptional changes, immune response and behavioral alterations in adult zebrafish. Scientific Reports, 9(1), 15775.
  • Lu, X., Li, M., Wu, C., Zhou, C., Zhang, J., Zhu, Q., & Shen, T. (2019). Bisphenol A promotes macrophage proinflammatory subtype polarization via upregulation of IRF5 expression in vitro. Toxicology in Vitro, 60, 97-106.
  • McKechnie, J. L., & Blish, C. A. (2020). The innate immune system: fighting on the front lines or fanning the flames of COVID-19? Cell Host & Microbe, 27(6), 863-869.
  • Mowat, A. M. (2003). Anatomical basis of tolerance and immunity to intestinal antigens. Nature Reviews Immunology, 3(4), 331-341.
  • National Center for Biotechnology Information (2025). PubChem Compound Summary for CID 6623, Bisphenol A. https://pubchem.ncbi.nlm.nih.gov/compound/Bisphenol-A
  • Ochando, J., Mulder, W. J., Madsen, J. C., Netea, M. G., & Duivenvoorden, R. (2023). Trained immunity—basic concepts and contributions to immunopathology. Nature Reviews Nephrology, 19(1), 23-37.
  • Öncü, C., & Aydemir, M. E. (2024). Microplastics and Public Health: Microplastics. Mehes Journal, 2(2), 29–43.
  • Perez, L., Scarcello, E., Ibouraadaten, S., Yakoub, Y., Leinardi, R., Ambroise, J., Bearzatto, B., Gala, J. l., Paquot, A., Muccioli, G. G., Bouzin, C., Brule, S van den, & Lison, D. (2021). Dietary nanoparticles alter the composition and function of the gut microbiota in mice at dose levels relevant for human exposure. Food and Chemical Toxicology, 154, 112352.
  • Qiao, J., Chen, R., Wang, M., Bai, R., Cui, X., Liu, Y., Wu, C., & Chen, C. (2021). Perturbation of gut microbiota plays an important role in micro/nanoplastics-induced gut barrier dysfunction. Nanoscale, 13(19), 8806-8816.
  • Ragusa, A., Notarstefano, V., Svelato, A., Belloni, A., Gioacchini, G., Blondeel, C., Zucchelli, E., Luca, C. D., D'Avino, S., Gulotta, A., Carnevali, O., & Giorgini, E. (2022). Raman microspectroscopy detection and characterisation of microplastics in human breastmilk. Polymers, 14(13), 2700.
  • Ragusa, A., Svelato, A., Santacroce, C., Catalano, P., Notarstefano, V., Carnevali, O., Papa, F., Rongioletti, M. C. A., Baiocco, F., Draghi, S., D'Amore, E., Rinaldo, D., Matta, M., & Giorgini, E. (2021). Plasticenta: First evidence of microplastics in human placenta. Environment International, 146, 106274.
  • Rahman, A., Sarkar, A., Yadav, O. P., Achari, G., & Slobodnik, J. (2021). Potential human health risks due to environmental exposure to nano-and microplastics and knowledge gaps: A scoping review. Science of the Total Environment, 757, 143872.
  • Švajger, U., Dolenc, M. S., & Jeras, M. (2016). In vitro impact of bisphenols BPA, BPF, BPAF and 17β-estradiol (E2) on human monocyte-derived dendritic cell generation, maturation and function. International Immunopharmacology, 34, 146-154.
  • Tong, X., Li, B., Li, J., Li, L., Zhang, R., Du, Y., & Zhang, Y. (2022). Polyethylene microplastics cooperate with Helicobacter pylori to promote gastric injury and inflammation in mice. Chemosphere, 288, 132579.
  • Wang, X., Zhang, R., Li, Z., & Yan, B. (2022). Adsorption properties and influencing factors of Cu (II) on polystyrene and polyethylene terephthalate microplastics in seawater. Science of the Total Environment, 812, 152573.
  • Wei, Z., Wang, Y., Wang, S., Xie, J., Han, Q., & Chen, M. (2022). Comparing the effects of polystyrene microplastics exposure on reproduction and fertility in male and female mice. Toxicology, 465, 153059.
  • Weingrill, R. B., Lee, M.-J., Benny, P., Riel, J., Saiki, K., Garcia, J.,Oliveria, L. F. A. de M., Fonseca, E. J. da S., de Souza, S. T., D'Amato, F. d. O. S., Silva, U. R., Dutra, M. L., Marques, A. L. X., Borbely, A. U., & Urschitz, J. (2023). Temporal trends in microplastic accumulation in placentas from pregnancies in Hawaiʻi. Environment International, 180, 108220.
  • Wright, S. L., & Kelly, F. J. (2017). Plastic and human health: A micro issue? Environmental Science & Technology, 51(12), 6634-6647.
  • Xu, M., Halimu, G., Zhang, Q., Song, Y., Fu, X., Li, Y., Li, Y., & Zhang, H. (2019). Internalization and toxicity: A preliminary study of effects of nanoplastic particles on human lung epithelial cell. Science of the Total Environment, 694, 133794.
  • Xue, J., Xu, Z., Hu, X., Lu, Y., Zhao, Y., & Zhang, H. (2024). Microplastics in maternal amniotic fluid and their associations with gestational age. Science of the Total Environment, 920, 171044.
  • Yamashita, U., Sugiura, T., Yoshida, Y., & Kuroda, E. (2003). Effect of endocrine disrupters on thymocytes in vitro. Journal of UOEH, 25(2), 161-170.
  • Yang, W., Jannatun, N., Zeng, Y., Liu, T., Zhang, G., Chen, C., & Li, Y. (2022). Impacts of microplastics on immunity. Frontiers in Toxicology, 4, 956885.
  • Zhang, G., Cao, G., Luo, R.-H., Song, Q., Zeng, Y., Liu, K., Qu, J., Lin, X., Liu, F. L., Wang, G., Li, H., Li, L., Zheng, Y. T., Boraschi, D., Wu. L., Chang, Y. Z., & Li, Y. (2022). Microplastics interact with SARS-CoV-2 and facilitate host cell infection. Environmental Science: Nano, 9(8), 2653-2664.
  • Zhang, J., Wang, L., Trasande, L., & Kannan, K. (2021). Occurrence of polyethylene terephthalate and polycarbonate microplastics in infant and adult feces. Environmental Science & Technology Letters, 8(11), 989-994.
  • Zhou, L., Masset, T., & Breider, F. (2024). Adsorption of copper by naturally and artificially aged microplastics and subsequent release in simulated gastrointestinal fluid. Environmental Science: Processes & Impacts 26, 411-420.

MİKROPLASTİKLERİN İMMÜN SİSTEM ÜZERİNE ETKİLERİ VE GEBELİK

Yıl 2025, Cilt: 9 Sayı: 1, 112 - 129, 25.04.2025

Öz

Mikroplastikler, çevresel kirliliğin en yaygın kaynaklarından biridir. Mikroplastikler, 5 mm’den daha küçük sentetik parçacıklar olup, deniz ürünlerinden su kaynaklarına, hatta havaya kadar pek çok yolla insan vücuduna girebilir. Solunum, oral alım ve cilt teması yoluyla vücuda giren mikroplastiklerin insan sağlığı üzerindeki etkileri artan bir endişe kaynağıdır. Mikroplastiklerin sindirim ve solunum sistemlerinde birikimi, bağırsak mikrobiyotasında bozulmalara, inflamasyona ve immün yanıtın zayıflamasına yol açabilir. Özellikle plasenta ve amniyotik sıvı gibi anne ve fetüs arasındaki kritik bariyerlerde mikroplastiklerin bulunması, fetal gelişim ve doğum sonuçları üzerindeki olumsuz etkileriyle dikkat çekmektedir. Yapılan çalışmalar, mikroplastiklere maruz kalan bebeklerin düşük doğum ağırlığı, kısa doğum uzunluğu ve düşük Apgar skorları gibi olumsuz sonuçlar gösterdiğini ortaya koymuştur. Bu çalışmada, mikroplastiklerin insan sağlığı üzerindeki potansiyel etkileri, bağışıklık sistemine olan etkileri ve özellikle gebelik dönemindeki tehlikeleri ele alınmaktadır.

Kaynakça

  • Amato-Lourenço, L.F., Costa, N.D.S.X., Dantas, K.C., dos Santos Galvão, L., Moralles, F.N., Lombardi, S.C.F.S., Junior A.M., Lindoso, J.A.L., Ando, R.A., Lima, F.G., Olivera, R.C., & Mauad, T. (2022). Airborne microplastics and SARS-CoV-2 in total suspended particles in the area surrounding the largest medical centre in Latin America. Environmental Pollution, 292, 118299.
  • Amereh, F., Amjadi, N., Mohseni-Bandpei, A., Isazadeh, S., Mehrabi, Y., Eslami, A., Naeiji, Z., & Rafiee, M. (2022). Placental plastics in young women from general population correlate with reduced foetal growth in IUGR pregnancies. Environmental Pollution, 314, 120174.
  • Boraschi, D., & Italiani, P. (2018). Innate immune memory: time for adopting a correct terminology. Frontiers in Immunology, 9, 799.
  • Camacho, M., Herrera, A., Gómez, M., Acosta-Dacal, A., Martínez, I., Henríquez-Hernández, L. A., & Luzardo, O. P. (2019). Organic pollutants in marine plastic debris from Canary Islands beaches. Science of the Total Environment, 662, 22-31.
  • Carbery, M., O'Connor, W., & Palanisami, T. (2018). Trophic transfer of microplastics and mixed contaminants in the marine food web and implications for human health. Environment İnternational, 115, 400-409.
  • Deng, Y., Zhang, Y., Lemos, B., & Ren, H. (2017). Tissue accumulation of microplastics in mice and biomarker responses suggest widespread health risks of exposure. Scientific Reports, 7(1), 46687.
  • Doğdu, G., Karabörk, Ş., & Dilek, M. (2024). Mikroplastiklerin yenidoğan maruziyeti ve immün sistem üzerine etkileri. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 7(2), 902-923.
  • Dong, Y.-d., Gao, L., Wu, F.-j., Lin, R., Meng, Y., Jia, L.-h., & Wang, X.-f. (2020). Abnormal differentiation of regulatory T cells and Th17 cells induced by perinatal bisphenol A exposure in female offspring mice. Molecular & Cellular Toxicology, 16, 167-174.
  • Fiorentino, I., Gualtieri, R., Barbato, V., Mollo, V., Braun, S., Angrisani, A., Turano, M., Furia, M., Netti, P. A. Guarnieri, D., Fusco, S., & Talevi, R. (2015). Energy independent uptake and release of polystyrene nanoparticles in primary mammalian cell cultures. Experimental Cell Research, 330(2), 240-247.
  • Gaudino, S. J., & Kumar, P. (2019). Cross-talk between antigen presenting cells and T cells impacts intestinal homeostasis, bacterial infections, and tumorigenesis. Frontiers in Immunology, 10, 360.
  • Guo, H., Liu, T., Uemura, Y., Jiao, S., Wang, D., Lin, Z., Narita, Y., Suziki, M., Hirosawa, N., Ichihara, Y., Ishihara, O., Kikuchi, H., Sakamoto, Y., Senju, S., Zhang, Q., & Ling, F. (2010). Bisphenol A in combination with TNF-α selectively induces Th2 cell-promoting dendritic cells in vitro with an estrogen-like activity. Cellular & Molecular İmmunology, 7(3), 227-234.
  • Haddadi, A., Kessabi, K., Boughammoura, S., Rhouma, M. B., Mlouka, R., Banni, M., & Messaoudi, I. (2022). Exposure to microplastics leads to a defective ovarian function and change in cytoskeleton protein expression in rat. Environmental Science and Pollution Research, 29(23), 34594-34606.
  • Halfar, J., Čabanová, K., Vávra, K., Delongová, P., Motyka, O., Špaček, R., Kukutschová, J. Šimetka, O., & Heviánková, S. (2023). Microplastics and additives in patients with preterm birth: The first evidence of their presence in both human amniotic fluid and placenta. Chemosphere, 343, 140301.
  • Huang, T., Zhang, W., Lin, T., Liu, S., Sun, Z., Liu, F., Yuan, Y., Xiang. X., Kuang, H., Yang, B., & Zhang, D. (2022). Maternal exposure to polystyrene nanoplastics during gestation and lactation induces hepatic and testicular toxicity in male mouse offspring. Food and Chemical Toxicology, 160, 112803.
  • Jambeck, J. R., Geyer, R., Wilcox, C., Siegler, T. R., Perryman, M., Andrady, A., Narayan Y., & Kara, L. L. (2015). Plastic waste inputs from land into the ocean. Science, 347(6223), 768-771.
  • Ji, Y., Wang, Y., Shen, D., Kang, Q., & Chen, L. (2021). Mucin corona delays intracellular trafficking and alleviates cytotoxicity of nanoplastic-benzopyrene combined contaminant. Journal of Hazardous Materials, 406, 124306.
  • Kuhn, D. A., Vanhecke, D., Michen, B., Blank, F., Gehr, P., Petri-Fink, A., & Rothen-Rutishauser, B. (2014). Different endocytotic uptake mechanisms for nanoparticles in epithelial cells and macrophages. Beilstein Journal of Nanotechnology, 5(1), 1625-1636.
  • Land, W.G. (2018). Antigen Uptake, Processing, and Presentation by Dendritic Cells. In W.G. Land, (Ed.), Damage-Associated Molecular Patterns in Human Diseases, (pp. 723-748) Springer.
  • Lebre, F., Boland, J. B., Gouveia, P., Gorman, A. L., Lundahl, M. L., Lynch, R. I., O'Brien, F. j., Coleman, J., & Lavelle, E. C. (2020). Pristine graphene induces innate immune training. Nanoscale, 12(20), 11192-11200.
  • Limonta, G., Mancia, A., Benkhalqui, A., Bertolucci, C., Abelli, L., Fossi, M. C., & Panti, C. (2019). Microplastics induce transcriptional changes, immune response and behavioral alterations in adult zebrafish. Scientific Reports, 9(1), 15775.
  • Lu, X., Li, M., Wu, C., Zhou, C., Zhang, J., Zhu, Q., & Shen, T. (2019). Bisphenol A promotes macrophage proinflammatory subtype polarization via upregulation of IRF5 expression in vitro. Toxicology in Vitro, 60, 97-106.
  • McKechnie, J. L., & Blish, C. A. (2020). The innate immune system: fighting on the front lines or fanning the flames of COVID-19? Cell Host & Microbe, 27(6), 863-869.
  • Mowat, A. M. (2003). Anatomical basis of tolerance and immunity to intestinal antigens. Nature Reviews Immunology, 3(4), 331-341.
  • National Center for Biotechnology Information (2025). PubChem Compound Summary for CID 6623, Bisphenol A. https://pubchem.ncbi.nlm.nih.gov/compound/Bisphenol-A
  • Ochando, J., Mulder, W. J., Madsen, J. C., Netea, M. G., & Duivenvoorden, R. (2023). Trained immunity—basic concepts and contributions to immunopathology. Nature Reviews Nephrology, 19(1), 23-37.
  • Öncü, C., & Aydemir, M. E. (2024). Microplastics and Public Health: Microplastics. Mehes Journal, 2(2), 29–43.
  • Perez, L., Scarcello, E., Ibouraadaten, S., Yakoub, Y., Leinardi, R., Ambroise, J., Bearzatto, B., Gala, J. l., Paquot, A., Muccioli, G. G., Bouzin, C., Brule, S van den, & Lison, D. (2021). Dietary nanoparticles alter the composition and function of the gut microbiota in mice at dose levels relevant for human exposure. Food and Chemical Toxicology, 154, 112352.
  • Qiao, J., Chen, R., Wang, M., Bai, R., Cui, X., Liu, Y., Wu, C., & Chen, C. (2021). Perturbation of gut microbiota plays an important role in micro/nanoplastics-induced gut barrier dysfunction. Nanoscale, 13(19), 8806-8816.
  • Ragusa, A., Notarstefano, V., Svelato, A., Belloni, A., Gioacchini, G., Blondeel, C., Zucchelli, E., Luca, C. D., D'Avino, S., Gulotta, A., Carnevali, O., & Giorgini, E. (2022). Raman microspectroscopy detection and characterisation of microplastics in human breastmilk. Polymers, 14(13), 2700.
  • Ragusa, A., Svelato, A., Santacroce, C., Catalano, P., Notarstefano, V., Carnevali, O., Papa, F., Rongioletti, M. C. A., Baiocco, F., Draghi, S., D'Amore, E., Rinaldo, D., Matta, M., & Giorgini, E. (2021). Plasticenta: First evidence of microplastics in human placenta. Environment International, 146, 106274.
  • Rahman, A., Sarkar, A., Yadav, O. P., Achari, G., & Slobodnik, J. (2021). Potential human health risks due to environmental exposure to nano-and microplastics and knowledge gaps: A scoping review. Science of the Total Environment, 757, 143872.
  • Švajger, U., Dolenc, M. S., & Jeras, M. (2016). In vitro impact of bisphenols BPA, BPF, BPAF and 17β-estradiol (E2) on human monocyte-derived dendritic cell generation, maturation and function. International Immunopharmacology, 34, 146-154.
  • Tong, X., Li, B., Li, J., Li, L., Zhang, R., Du, Y., & Zhang, Y. (2022). Polyethylene microplastics cooperate with Helicobacter pylori to promote gastric injury and inflammation in mice. Chemosphere, 288, 132579.
  • Wang, X., Zhang, R., Li, Z., & Yan, B. (2022). Adsorption properties and influencing factors of Cu (II) on polystyrene and polyethylene terephthalate microplastics in seawater. Science of the Total Environment, 812, 152573.
  • Wei, Z., Wang, Y., Wang, S., Xie, J., Han, Q., & Chen, M. (2022). Comparing the effects of polystyrene microplastics exposure on reproduction and fertility in male and female mice. Toxicology, 465, 153059.
  • Weingrill, R. B., Lee, M.-J., Benny, P., Riel, J., Saiki, K., Garcia, J.,Oliveria, L. F. A. de M., Fonseca, E. J. da S., de Souza, S. T., D'Amato, F. d. O. S., Silva, U. R., Dutra, M. L., Marques, A. L. X., Borbely, A. U., & Urschitz, J. (2023). Temporal trends in microplastic accumulation in placentas from pregnancies in Hawaiʻi. Environment International, 180, 108220.
  • Wright, S. L., & Kelly, F. J. (2017). Plastic and human health: A micro issue? Environmental Science & Technology, 51(12), 6634-6647.
  • Xu, M., Halimu, G., Zhang, Q., Song, Y., Fu, X., Li, Y., Li, Y., & Zhang, H. (2019). Internalization and toxicity: A preliminary study of effects of nanoplastic particles on human lung epithelial cell. Science of the Total Environment, 694, 133794.
  • Xue, J., Xu, Z., Hu, X., Lu, Y., Zhao, Y., & Zhang, H. (2024). Microplastics in maternal amniotic fluid and their associations with gestational age. Science of the Total Environment, 920, 171044.
  • Yamashita, U., Sugiura, T., Yoshida, Y., & Kuroda, E. (2003). Effect of endocrine disrupters on thymocytes in vitro. Journal of UOEH, 25(2), 161-170.
  • Yang, W., Jannatun, N., Zeng, Y., Liu, T., Zhang, G., Chen, C., & Li, Y. (2022). Impacts of microplastics on immunity. Frontiers in Toxicology, 4, 956885.
  • Zhang, G., Cao, G., Luo, R.-H., Song, Q., Zeng, Y., Liu, K., Qu, J., Lin, X., Liu, F. L., Wang, G., Li, H., Li, L., Zheng, Y. T., Boraschi, D., Wu. L., Chang, Y. Z., & Li, Y. (2022). Microplastics interact with SARS-CoV-2 and facilitate host cell infection. Environmental Science: Nano, 9(8), 2653-2664.
  • Zhang, J., Wang, L., Trasande, L., & Kannan, K. (2021). Occurrence of polyethylene terephthalate and polycarbonate microplastics in infant and adult feces. Environmental Science & Technology Letters, 8(11), 989-994.
  • Zhou, L., Masset, T., & Breider, F. (2024). Adsorption of copper by naturally and artificially aged microplastics and subsequent release in simulated gastrointestinal fluid. Environmental Science: Processes & Impacts 26, 411-420.
Toplam 44 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Ebelik (Diğer)
Bölüm Derlemeler
Yazarlar

Durmuş Burak Demirkaya 0000-0003-0082-2744

Neslihan Özdemir 0000-0001-6451-2863

Serap Yalcin 0000-0002-9584-266X

Erken Görünüm Tarihi 25 Nisan 2025
Yayımlanma Tarihi 25 Nisan 2025
Gönderilme Tarihi 17 Ekim 2024
Kabul Tarihi 25 Kasım 2024
Yayımlandığı Sayı Yıl 2025 Cilt: 9 Sayı: 1

Kaynak Göster

APA Demirkaya, D. B., Özdemir, N., & Yalcin, S. (2025). MİKROPLASTİKLERİN İMMÜN SİSTEM ÜZERİNE ETKİLERİ VE GEBELİK. Kırşehir Ahi Evran Üniversitesi Sağlık Bilimleri Dergisi, 9(1), 112-129.

Dergimiz; Türk Medline, Sobiad Atıf Dizini, Türk Eğitim İndeksi, Türkiye Atıf Dizini (Turkiye Citation Index)' te taranmaktadır.


Dergimizin Önceki Editörleri:

2017-2019: Doç. Dr. Rıdvan Karabulut


Dr. Öğr. Üyesi Elif Tuba KOÇ, aniden aramızdan ayrıldığı güne kadar, dergimize Çocuk Sağlığı ve Hastalıkları Hemşireliği alanında alan editörü olarak önemli katkılar sağladı. Onun çaba ve gayretini, değerli emeğini ve aziz hatırasını saygı, sevgi ve özlemle anıyoruz.