İklim Değişikliğinin Kronik Böbrek Hastalığı Üzerindeki Etkisi
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P: 460-465
Ekim 2023

İklim Değişikliğinin Kronik Böbrek Hastalığı Üzerindeki Etkisi

Bezmialem Science 2023;11(4):460-465
Bilgi mevcut değil.
Bilgi mevcut değil
Alındığı Tarih: 08.03.2023
Kabul Tarihi: 14.08.2023
Yayın Tarihi: 25.10.2023
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ÖZET

Hava kirliliği ve küresel ısınma gibi iklim değişikliği sorunlarının insan faaliyetleriyle ilgili olduğu varsayılmaktadır. Küresel ısınma ve hava kirliliği birbiriyle ilişkili konulardır. Sağlık durumunun, özellikle kronik böbrek hastalığı insidansı ve ilerlemesi açısından, bu iklim değişikliklerinden olumsuz etkilendiği varsayılmaktadır. Bu derlemenin amacı, hekimleri hava kirliliği ve küresel ısınmanın böbrek hastalığını nasıl etkilediği konusunda güncellemektir.

References

1
IPCC 2021. Summary for policymakers. In: Masson-Delmotte V, Zhai P, Pirani A, et al. eds. Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge, England: Cambridge University Press; in press. 
2
Bowe B, Xie Y, Li T, Yan Y, Xian H, Al-Aly Z. Particulate Matter Air Pollution and the Risk of Incident CKD and Progression to ESRD. J Am Soc Nephrol 2018;29:218-30. 
3
United Nations. United Nations Framework Convention on Climate Change. 1992. Available at https://unfccc.int/files/essential_background/background_publications_htmlpdf/application/pdf/conveng.pdf
4
IPCC, 2021: Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)].
5
Vanholder R, Agar J, Braks M, Gallego D, Gerritsen KGF, Harber M, et al. The European Green Deal and nephrology: a call for action by the European Kidney Health Alliance (EKHA). Nephrol Dial Transplant 2023;38:1080-8.
6
Borg MA, Bi P. The impact of climate change on kidney health. Nat Rev Nephrol 2021;17:294-5.
7
 Li G, Huang J, Wang J, Zhao M, Liu Y, Guo X, et al. Long-Term Exposure to Ambient PM2.5 and Increased Risk of CKD Prevalence in China. J Am Soc Nephrol 2021;32:448-58.
8
Centers for Disease Control and Prevention. Diseases Carried by Vectors. December 21, 2020. Available at: https://www.cdc.gov/climateandhealth/effects/vectors.htm
9
Johnson RJ, Wesseling C, Newman LS. Chronic Kidney Disease in Agricultural Communities. N Engl J Med 2019;380:1843-52.
10
Crowe J, Wesseling C, Solano BR, Umaña MP, Ramírez AR, Kjellstrom T, et al. Heat exposure in sugarcane harvesters in Costa Rica. Am J Ind Med 2013;56:1157- 64.
11
Glaser J, Lemery J, Rajagopalan B, Diaz HF, García-Trabanino R, Taduri G, et al. Climate Change and the Emergent Epidemic of CKD from Heat Stress in Rural Communities: The Case for Heat Stress Nephropathy. Clin J Am Soc Nephrol 2016;11:1472-83.
12
 Diaz HF, Mora C, Wesseling C, Johnson RJ, Crowe J, Hidalgo HG, et al. Increasing Heat Stress, Kidney Disease, and Possible Connection to Climate Change in Selected Regions of Central America. Clim Change. Forthcoming 2019.
13
Johnson RJ. Pro: Heat stress as a potential etiology of Mesoamerican and Sri Lankan nephropathy: a late night consult with Sherlock Holmes. Nephrol Dial Transplant 2017;32:598-602.
14
Wesseling C, Aragón A, González M, Weiss I, Glaser J, Rivard CJ, et al. Heat stress, hydration and uric acid: a cross-sectional study in workers of three occupations in a hotspot of Mesoamerican nephropathy in Nicaragua. BMJ Open 2016;6:e011034.
15
 Sorensen CJ, Butler-Dawson J, Dally M, Krisher L, Griffin BR, Johnson RJ, et al. Risk Factors and Mechanisms Underlying Cross-shift Decline in Kidney Function in Guatemalan Sugarcane Workers. J Occup Environ Med 2019;61:239-50.
16
Fischer RSB, Vangala C, Mandayam S, Chavarria D, García-Trabanino R, Garcia F, et al. Clinical markers to predict progression from acute to chronic kidney disease in Mesoamerican nephropathy. Kidney Int 2018;94:1205-16.
17
García-Arroyo FE, Tapia E, Blas-Marron MG, Gonzaga G, Silverio O, Cristóbal M, et al. Vasopressin Mediates the Kidney Damage Induced by Limited Fructose Rehydration in Recurrently Dehydrated Rats. Int J Biol Sci 2017;13:961-75.
18
Roncal-Jimenez C, García-Trabanino R, Barregard L, Lanaspa MA, Wesseling C, Harra T, et al. Heat Stress Nephropathy From Exercise-Induced Uric Acid Crystalluria: A Perspective on Mesoamerican Nephropathy. Am J Kidney Dis 2016;67:20-30.
19
Brikowski TH, Lotan Y, Pearle MS. Climate related increase in the prevalence of urolithiasis in the United States. Proc Natl Acad Sci USA 2008;105:9841-6.
20
Hooton TM, Vecchio M, Iroz A, Tack I, Dornic Q, Seksek I, et al. Effect of Increased Daily Water Intake in Premenopausal Women With Recurrent Urinary Tract Infections: A Randomized Clinical Trial. JAMA Intern Med 2018;178:1509-15.
21
Cirillo P, Gersch MS, Mu W, Scherer PM, Kim KM, Gesualdo L, et al. Ketohexokinase dependent metabolism of fructose induces proinflammatory mediators in proximal tubular cells. J Am Soc Nephrol 2009;20:545-53.
22
Mix J, Elon L, Vi Thien Mac V, Flocks J, Economos E, Tovar-Aguilar AJ, et al. Hydration Status, Kidney Function, and Kidney Injury in Florida Agricultural Workers. J Occup Environ Med 2018;60:253-60.
23
Moyce S, Mitchell D, Armitage T, Tancredi D, Joseph J, Schenker M. Heat strain, volume depletion and kidney function in California agricultural workers. Occup Environ Med 2017;74:402-9.
24
Campbell-Lendrum D, Manga L, Bagayoko M, Sommerfeld J. Climate change and vector-borne diseases: what are the implications for public health research and policy? Philos Trans R Soc Lond B Biol Sci? Philos Trans R Soc Lond B Biol Sci 2015;370:20130552.
25
Mishra SK, Das BS. Malaria and acute kidney injury. Semin Nephrol 2008;28:395-408.
26
Oliveira JF, Burdmann EA. Dengue-associated acute kidney injury. Clin Kidney J 2015;8:681-5.
27
Organ Procurement and Transplantation Network. Guidance on zika virus. 2016. Available at: https://optn.transplant.hrsa.gov/news/guidance-on-zikavirus/. Accessed December 21, 2016.
28
GBD 2015 Risk Factors Collaborators. Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks, 1990-2015: a systematic analysis for the Global Burden of Disease Study 2015. Lancet 2016;388:1659-724. 
29
Xu X, Nie S, Ding H, Hou FF. Environmental pollution and kidney diseases. Nat Rev Nephrol 2018;14:313-24. 
30
Zhang J, Liu Y, Cui LL, Liu SQ, Yin XX, Li HC. Ambient air pollution, smog episodes and mortality in Jinan, China. Sci Rep 2017;7:11209.
31
Brook RD, Rajagopalan S, Pope CA 3rd, Brook JR, Bhatnagar A, Diez-Roux AV, et al. Particulate matter air pollution and cardiovascular disease: An update to the scientific statement from the American Heart Association. Circulation 2010;121:2331-78.
32
Lin CK, Lin RT, Chen PC, Wang P, De Marcellis-Warin N, Zigler C, et al. A Global Perspective on Sulfur Oxide Controls in Coal-Fired Power Plants and Cardiovascular Disease. Sci Rep 2018;8:2611. 
33
Kazancioglu R. Risk factors for chronic kidney disease: an update. Kidney Int Suppl (2011) 2013;3:368-71.
34
Bowe B, Xie Y, Li T, Yan Y, Xian H, Al-Aly Z. Particulate Matter Air Pollution and the Risk of Incident CKD and Progression to ESRD. J Am Soc Nephrol 2018;29:218-30.
35
Lin HC, Hung PH, Hsieh YY, Lai TJ, Hsu HT, Chung MC, et al. Long-term exposure to air pollutants and increased risk of chronic kidney disease in a community-based population using a fuzzy logic inference model. Clin Kidney J 2022;15:1872-880.
36
Mehta AJ, Zanobetti A, Bind MA, Kloog I, Koutrakis P, Sparrow D, et al. Long-Term Exposure to Ambient Fine Particulate Matter and Kidney Function in Older Men: The Veterans Administration Normative Aging Study. Environ Health Perspect 2016;124:1353-60.
37
Xu X, Wang G, Chen N, Lu T, Nie S, Xu G, et al. Long-Term Exposure to Air Pollution and Increased Risk of Membranous Nephropathy in China. J Am Soc Nephrol 2016;27:3739-46. 
38
Orr SE, Bridges CC. Chronic kidney disease and exposure to nephrotoxic metals. Int J Mol Sci 2017;18:1039.
39
Robles-Osorio ML, Sabath-Silva E, Sabath E. Arsenic-mediated nephrotoxicity. Ren Fail 2015;37:542-7.
40
Tsao DA, Tseng WC, Chang HR. RKIP expression of liver and kidney after arsenic exposure. Environ Toxicol 2017;32:1079-82.
41
Aleksunes LM, Augustine LM, Scheffer GL, Cherrington NJ, Manautou JE. Renal xenobiotic transporters are differentially expressed in mice following cisplatin treatment. Toxicology 2008;250:82-8.
42
 Roggenbeck BA, Banerjee M, Leslie EM. Cellular arsenic transport pathways in mammals. J Environ Sci (China) 2016;49:38-58.
43
Mortensen ME, Wong LY, Osterloh JD. Smoking status and urine cadmium above levels associated with subclinical kidney effects in U.S. adults without chronic kidney disease. Int J Hyg Environ Health 2011;214:305-10.
44
 Gałazyn-Sidorczuk M, Brzóska MM, Jurczuk M, Moniuszko-Jakoniuk J. Oxidative damage to proteins and DNA in rats exposed to cadmium and/or ethanol. Chem Biol Interact 2009;180:31-8.
45
Matović V, Buha A, Ðukić-Ćosić D, Bulat Z. Insight into the oxidative stress induced by lead and/or cadmium in blood, liver and kidneys. Food Chem Toxicol 2015;78:130-40. 
46
 Iwata K, Saito H, Moriyama M, Nakano A. Kidney tubular function after reduction of environmental cadmium exposure: a ten-year follow-up. Arch Environ Health 1993;48:157-63.
47
 Fujishiro H, Yano Y, Takada Y, Tanihara M, Himeno S. Roles of ZIP8, ZIP14, and DMT1 in transport of cadmium and manganese in mouse kidney proximal tubule cells. Metallomics 2012;4:700-8. 
48
He L, Wang B, Hay EB, Nebert DW. Discovery of ZIP transporters that participate in cadmium damage to testis and kidney. Toxicol Appl Pharmacol 2009;238:250-7.
49
Evans M, Elinder CG. Chronic renal failure from lead: myth or evidence-based fact? Kidney Int 2011;79:272-9.
50
Cárdenas A, Roels H, Bernard AM, Barbon R, Buchet JP, Lauwerys RR, et al. Markers of early kidney changes induced by industrial pollutants. II. Application to workers exposed to lead. Br J Ind Med 1993;50:28-36.
51
Chung S, Chung JH, Kim SJ, Koh ES, Yoon HE, Park CW, et al. Blood lead and cadmium levels and kidney function in Korean adults. Clin Exp Nephrol 2014;18:726-34.
52
Bjørklund G, Dadar M, Mutter J, Aaseth J. The toxicology of mercury: Current research and emerging trends. Environ Res 2017;159:545-54. 
53
Zalups RK, Ahmad S. Homocysteine and the kidney epithelial transport and toxicity of inorganic mercury: role of basolateral transporter organic anion transporter 1. J Am Soc Nephrol 2004;15:2023-31.
54
Zalups RK, Koropatnick J. Temporal changes in metallothionein gene transcription in rat kidney and liver: relationship to content of mercury and metallothionein protein. J Pharmacol Exp Ther 2000;295:74-82.
55
Nuyts GD, Van Vlem E, Thys J, De Leersnijder D, D’Haese PC, Elseviers MM, et al. New occupational risk factors for chronic kidney failure. Lancet 1995;346:7-11. 
56
Orth SR. Effects of smoking on systemic and intrakidney hemodynamics: influence on kidney function. J Am Soc Nephrol 2004;15(Suppl 1):58-63.
57
Markowitz GS, Lin J, Valeri AM, Avila C, Nasr SH, D’Agati VD. Idiopathic nodular glomerulosclerosis is a distinct clinicopathologic entity linked to hypertension and smoking. Hum Pathol 2002;33:826-35.
58
Ejerblad E, Fored CM, Lindblad P, Fryzek J, Dickman PW, Elinder CG, et al. Association between smoking and chronic kidney failure in a nationwide population-based case-control study. J Am Soc Nephrol 2004;15:2178-85.
59
Tylicki L, Puttinger H, Rutkowski P, Rutkowski B, Horl WH. Smoking as a risk factor for renal injury in essential hypertension. Nephron Clin Pract 2006;103:121-8.
60
Obert DM, Hua P, Pilkerton ME, Feng W, Jaimes EA. Environmental tobacco smoke furthers progression of diabetic nephropathy. Am J Med Sci 2011;341:126-30.
61
Jaimes EA, Tian RX, Raij L. Nicotine: the link between cigarette smoking and the progression of kidney injury? Am J Physiol Heart Circ Physiol 2007;292:76-82.
62
Schwerdt G, Gordjani N, Benesic A, Freudinger R, Wollny B, Kirchhoff A, et al. Chloroacetaldehyde- and acrolein-induced death of human proximal tubule cells. Pediatr Nephrol 2006;21:60-7. 
63
Satarug S, Moore MR. Adverse health effects of chronic exposure to low-level cadmium in foodstuffs and cigarette smoke. Environ Health Perspect 2004;112:1099-103.
64
Boor P, Casper S, Celec P, Hurbánková M, Beno M, Heidland A, et al. Renal, vascular and cardiac fibrosis in rats exposed to passive smoking and industrial dust fibre amosite. J Cell Mol Med 2009;13:4484-91. 
65
Hall ME, Wang W, Okhomina V, Agarwal M, Hall JE, Dreisbach AW, et al. Cigarette Smoking and Chronic Kidney Disease in African Americans in the Jackson Heart Study. J Am Heart Assoc 2016;5:e003280.
66
Hogan SL, Vupputuri S, Guo X, Cai J, Colindres RE, Heiss G, et al. Association of cigarette smoking with albuminuria in the United States: the third National Health and Nutrition Examination Survey. Ren Fail 2007;29:133-42.
67
Warmoth L, Regalado MM, Simoni J, Harrist RB, Wesson DE. Cigarette smoking enhances increased urine albumin excretion as a risk factor for glomerular filtration rate decline in primary hypertension. Am J Med Sci 2005;330:111-9.
68
Noborisaka Y, Ishizaki M, Nakata M, Yamada Y, Honda R, Yokoyama H, et al. Cigarette smoking, proteinuria, and kidney function in middle-aged Japanese men from an occupational population. Environ Health Prev Med 2012;17:147-56.
69
Jiang N, Huang F, Zhang X. Smoking and the risk of diabetic nephropathy in patients with type 1 and type 2 diabetes: a meta-analysis of observational studies. Oncotarget 2017;8:93209-18.
70
Dülger H, Dönder A, Sekeroğlu MR, Erkoç R, Ozbay B. Investigation of the relationship between serum levels of cotinine and the kidney function in active and passive smokers. Ren Fail 2011;33:475-9.
71
Chen SY, Chu DC, Lee JH, Yang YR, Chan CC. Traffic-related air pollution associated with chronic kidney disease among elderly residents in Taipei City. Environ Pollut 2018;234:838-45.
72
Hodgson S, Nieuwenhuijsen MJ, Hansell A, Shepperd S, Flute T, Staples B, et al. Excess risk of kidney disease in a population living near industrial plants. Occup Environ Med 2004;61:717-9. 
73
Tennison I, Roschnik S, Ashby B, Boyd R, Hamilton I, Oreszczyn T, et al. Health care’s response to climate change: a carbon footprint assessment of the NHS in England. Lancet Planet Health 2021;5:84-92.
74
Patel M, Kumar R, Kishor K, Mlsna T, Pittman CU Jr, Mohan D. Pharmaceuticals of Emerging Concern in Aquatic Systems: Chemistry, Occurrence, Effects, and Removal Methods. Chem Rev 2019;119:3510-673.
75
Agar JWM, Barraclough KA. Water use in dialysis: environmental considerations. Nat Rev Nephrol 2020;16:556-57.
76
Connor A, Mortimer F. The green nephrology survey of sustainability in kidney units in England, Scotland and Wales. J Ren Care 2010;36:153-60.
77
Piccoli GB, Cupisti A, Aucella F, Regolisti G, Lomonte C, Ferraresi M, et al. Green nephrology and eco-dialysis: a position statement by the Italian Society of Nephrology. J Nephrol 2020;33:681-98. 
78
Piccoli GB, Nazha M, Ferraresi M, Vigotti FN, Pereno A, Barbero S. Eco-dialysis: the financial and ecological costs of dialysis waste products: is a ‘cradle-to-cradle’ model feasible for planet-friendly haemodialysis waste management? Nephrol Dial Transplant 2015;30:1018-27.
79
Grafals M, Sanchez R. The environmental impact of dialysis vs transplantation. Am J Transplant 2016;16:74.
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