Metabolic and Kidney Diseases in the Setting of Climate Change, Water Shortage, and Survival Factors
Climate change (global warming) is leading to an increase in heat extremes and coupled with increasing water shortage, provides a perfect storm for a new era of environmental crises and potentially, new diseases. We use a comparative physiologic approach to show that one of the primary mechanisms by...
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Published in | Journal of the American Society of Nephrology Vol. 27; no. 8; pp. 2247 - 2256 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
American Society of Nephrology
01.08.2016
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Abstract | Climate change (global warming) is leading to an increase in heat extremes and coupled with increasing water shortage, provides a perfect storm for a new era of environmental crises and potentially, new diseases. We use a comparative physiologic approach to show that one of the primary mechanisms by which animals protect themselves against water shortage is to increase fat mass as a means for providing metabolic water. Strong evidence suggests that certain hormones (vasopressin), foods (fructose), and metabolic products (uric acid) function as survival signals to help reduce water loss and store fat (which also provides a source of metabolic water). These mechanisms are intricately linked with each other and stimulated by dehydration and hyperosmolarity. Although these mechanisms were protective in the setting of low sugar and low salt intake in our past, today, the combination of diets high in fructose and salty foods, increasing temperatures, and decreasing available water places these survival signals in overdrive and may be accelerating the obesity and diabetes epidemics. The recent discovery of multiple epidemics of CKD occurring in agricultural workers in hot and humid environments may represent harbingers of the detrimental consequences of the combination of climate change and overactivation of survival pathways. |
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AbstractList | Climate change (global warming) is leading to an increase in heat extremes and coupled with increasing water shortage, provides a perfect storm for a new era of environmental crises and potentially, new diseases. We use a comparative physiologic approach to show that one of the primary mechanisms by which animals protect themselves against water shortage is to increase fat mass as a means for providing metabolic water. Strong evidence suggests that certain hormones (vasopressin), foods (fructose), and metabolic products (uric acid) function as survival signals to help reduce water loss and store fat (which also provides a source of metabolic water). These mechanisms are intricately linked with each other and stimulated by dehydration and hyperosmolarity. Although these mechanisms were protective in the setting of low sugar and low salt intake in our past, today, the combination of diets high in fructose and salty foods, increasing temperatures, and decreasing available water places these survival signals in overdrive and may be accelerating the obesity and diabetes epidemics. The recent discovery of multiple epidemics of CKD occurring in agricultural workers in hot and humid environments may represent harbingers of the detrimental consequences of the combination of climate change and overactivation of survival pathways. |
Author | Jensen, Thomas Roncal, Carlos Stenvinkel, Peter Bankir, Lise Johnson, Richard J Sánchez-Lozada, Laura G Lanaspa, Miguel A Song, Zhilin |
Author_xml | – sequence: 1 givenname: Richard J surname: Johnson fullname: Johnson, Richard J email: Richard.Johnson@ucdenver.edu organization: Division of Renal Diseases and Hypertension, University of Colorado Denver, Aurora, Colorado; Richard.Johnson@ucdenver.edu – sequence: 2 givenname: Peter surname: Stenvinkel fullname: Stenvinkel, Peter organization: Division of Renal Medicine, Department of Clinical Science Intervention and Technology, Karolinska University Hospital, Stockholm, Sweden – sequence: 3 givenname: Thomas surname: Jensen fullname: Jensen, Thomas organization: Division of Renal Diseases and Hypertension, University of Colorado Denver, Aurora, Colorado – sequence: 4 givenname: Miguel A surname: Lanaspa fullname: Lanaspa, Miguel A organization: Division of Renal Diseases and Hypertension, University of Colorado Denver, Aurora, Colorado – sequence: 5 givenname: Carlos surname: Roncal fullname: Roncal, Carlos organization: Division of Renal Diseases and Hypertension, University of Colorado Denver, Aurora, Colorado – sequence: 6 givenname: Zhilin surname: Song fullname: Song, Zhilin organization: Division of Renal Diseases and Hypertension, University of Colorado Denver, Aurora, Colorado – sequence: 7 givenname: Lise surname: Bankir fullname: Bankir, Lise organization: Institut National de las Santé et de la Recherche Medicalé UMRS 1138, Centre de Recherche des Cordeliers, Paris, France; and – sequence: 8 givenname: Laura G surname: Sánchez-Lozada fullname: Sánchez-Lozada, Laura G organization: Laboratory of Renal Physiopathology, Instituto Nacional de Cardiologia Ignacio Chávez, Mexico City, Mexico |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/27283495$$D View this record in MEDLINE/PubMed http://kipublications.ki.se/Default.aspx?queryparsed=id:134366099$$DView record from Swedish Publication Index |
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Snippet | Climate change (global warming) is leading to an increase in heat extremes and coupled with increasing water shortage, provides a perfect storm for a new era... |
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SubjectTerms | Animals Climate Change Dehydration - complications Dehydration - metabolism Fructose - metabolism Humans Kidney Diseases - complications Kidney Diseases - epidemiology Kidney Diseases - etiology Kidney Diseases - metabolism Medicin och hälsovetenskap Metabolic Diseases - complications Metabolic Diseases - epidemiology Metabolic Diseases - etiology Metabolic Diseases - metabolism Survival Up Front Matters Water Supply |
Title | Metabolic and Kidney Diseases in the Setting of Climate Change, Water Shortage, and Survival Factors |
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