A comprehensive analysis of albuminuria in canine chronic kidney disease
Jazyk angličtina Země Anglie, Velká Británie Médium print
Typ dokumentu časopisecké články
Grantová podpora
2022ITA16
Internal Creative Agency of the University of Veterinary Sciences Brno
PubMed
38419297
PubMed Central
PMC10902581
DOI
10.1002/vms3.1403
Knihovny.cz E-zdroje
- Klíčová slova
- albuminuria, canine, chronic kidney disease, hypertension, proteinuria, renal biomarkers,
- MeSH
- albuminurie veterinární diagnóza moč MeSH
- chronická renální insuficience * veterinární moč MeSH
- hypertenze * moč veterinární MeSH
- kreatinin moč MeSH
- nemoci psů * diagnóza MeSH
- proteinurie veterinární MeSH
- psi MeSH
- zvířata MeSH
- Check Tag
- psi MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- kreatinin MeSH
BACKGROUND: Albuminuria, an important marker of decreased kidney function in chronic kidney disease (CKD), is not routinely used for CKD detection or proteinuria appearance. Its relationships with biochemical parameters and blood pressure in dogs are poorly understood. OBJECTIVES: This study aimed to evaluate the relationship of albuminuria with various CKD markers, its correlation with the urinary protein to creatinine ratio (UPC), and hypertension in dogs with early stages of CKD. It also sought to determine the usability of the urinary albumin to creatinine ratio (UAC) for CKD screening. METHODS: The study reviewed records of 102 dogs, categorising them into four groups based on disease status. UAC and UPC ratio, biochemistry and haematology variables, age, and systolic blood pressure were determined. RESULTS: The Pearson's correlation coefficient between log-transformed values of UPC and UAC was r = 0.902 (95% CI: 0.87 to 0.93). Median UAC ratio values were 2.1 mg/g for the Healthy control group (n = 17), 54.2 mg/g for early stages CKD (n = 42), 5.8 mg/g for Acute sick control (n = 30), and 104 mg/g for Chronic sick control (n = 13). Thresholding UAC ratio as an indicator for impaired kidney function with the threshold of 10 mg/g (established based on the receiver operating characteristic curve) had a sensitivity 81.8%, specificity of 89.4%, positive predictive value (PPV) 90%, and negative predictive value (NPV) 80.1%. The correlation of UAC with biochemistry and haematology variables was statistically significant; for SDMA (μg/L), it was r = 0.566 and for other variables, it was weak to moderate. UAC was markedly elevated in cases of severe hypertension. CONCLUSIONS: UAC ratio was significantly different among dogs with impaired and not impaired kidney function. The correlation strength for the UAC and UPC ratios was high. UAC ratio may be a promising marker for proteinuria analysis in dogs with CKD or other kidney function alterations.
Department of Biomedical Sciences College of Veterinary Medicine Iowa State University Ames Iowa USA
Department of Data Science Institute for Clinical and Experimental Medicine Prague Czech Republic
Small Animal Clinic University of Veterinary Sciences Brno Brno Czech Republic
Small Animal Clinical Laboratory University of Veterinary Sciences Brno Brno Czech Republic
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International Renal Interest Society (IRIS) staging system. (accessed on April 10, 2023). Available online: http://www.iris‐kidney.com/
Acierno, M. J. , Brown, S. , Coleman, A. E. , Jepson, R. E. , Papich, M. , Stepien, R. L. , & Syme, H. M. (2018). ACVIM consensus statement: Guidelines for the identification, evaluation, and management of systemic hypertension in dogs and cats. Journal of Veterinary Internal Medicine, 32, 1803–1822. 10.1111/jvim.15331 PubMed DOI PMC
Bacic, A. , Kogika, M. M. , Barbaro, K. C. , Iuamoto, C. S. , Simões, D. M. , & Santoro, M. L. (2010). Evaluation of albuminuria and its relationship with blood pressure in dogs with chronic kidney disease. Veterinary Clinical Pathology, 39, 203–209. 10.1111/j.1939-165X.2009.00207.x PubMed DOI
Brown, C. A. , Rissi, D. R. , Dickerson, V. M. , Davis, A. M. , Brown, S. A. , & Schmiedt, C. W. (2019). Chronic renal changes after a single ischemic event in an experimental model of feline chronic kidney disease. Veterinary Pathology, 56, 536–543. PubMed
Butt, L. , Unnersjö‐Jess, D. , Höhne, M. , Edwards, A. , Binz‐Lotter, J. , Reilly, D. , Hahnfeldt, R. , Ziegler, V. , Fremter, K. , Rinschen, M. M. , Ebert, L. K. , Castrop, H. , Hackl, M. J. , Walz, G. , Brinkkoetter, P. T. , Liebau, M. C. , Tory, K. , Hoyer, P. F. , Beck, B. B. , …, Brismar, H. (2020). A molecular mechanism explaining albuminuria in kidney disease. Nature Metabolism, 2, 461–474. 10.1038/s42255-020-0204-y PubMed DOI
Chacar, F. , Kogika, M. , Sanches, T. R. , Caragelasco, D. , Martorelli, C. , Rodrigues, C. , Capcha, J. M. C. , Chew, D. , & Andrade, L. (2017). Urinary Tamm‐Horsfall protein, albumin, vitamin D‐binding protein, and retinol‐binding protein as early biomarkers of chronic kidney disease in dogs. Physiological Reports, 5, e13262. 10.14814/phy2.13262 PubMed DOI PMC
Cianciolo, R. E. , Mohr, F. C. , Aresu, L. , Brown, C. A. , James, C. , Jansen, J. H. , Spangler, W. L. , van der Lugt, J. J. , Kass, P. H. , Brovida, C. , Cowgill, L. D. , Heiene, R. , Polzin, D. J. , Syme, H. , Vaden, S. L. , van Dongen, A. M. , & Lees, G. E. (2016). World small animal veterinary association renal pathology initiative: Classification of glomerular diseases in dogs. Veterinary Pathology, 53, 113–135. 10.1177/0300985815579996 PubMed DOI
Comper, W. D. , Vuchkova, J. , & McCarthy, K. J. (2022). New insights into proteinuria/albuminuria. Frontiers in Physiology, 13, 991756. 10.3389/fphys.2022.991756 PubMed DOI PMC
Coyne, M. , Szlosek, D. , Clements, C. , McCrann, D., 3rd , & Olavessen, L. (2020). Association between breed and renal biomarkers of glomerular filtration rate in dogs. The Veterinary Record, 187, e82. 10.1136/vr.105733 PubMed DOI PMC
Crivellenti, L. Z. , Silva, G. E. , Borin‐Crivellenti, S. , Cianciolo, R. , Adin, C. A. , Dantas, M. , Dos Anjos, D. S. , Tinucci‐Costa, M. , & Santana, A. E. (2016). Prevalence of glomerulopathies in canine mammary carcinoma. PLoS ONE, 11, e0164479. 10.1371/journal.pone.0164479 PubMed DOI PMC
De Santis, F. , Boari, A. , Dondi, F. , & Crisi, P. E. (2022). Drug‐dosing adjustment in dogs and cats with chronic kidney disease. Animals, 12, 262. PubMed PMC
Di Azevedo, M. I. N. , Santanna, R. , Carvalho‐Costa, F. A. , & Lilenbaum, W. (2022). The same strain leading to different clinical outcomes: The enigma behind the canine leptospirosis. Microbial Pathogenesis, 165, 105500. 10.1016/j.micpath.2022.105500 PubMed DOI
Dunaevich, A. , Chen, H. , Musseri, D. , Kuzi, S. , Mazaki‐Tovi, M. , Aroch, I. , & Segev, G. (2020). Acute on chronic kidney disease in dogs: Etiology, clinical and clinicopathologic findings, prognostic markers, and survival. Journal of Veterinary Internal Medicine, 34, 2507–2515. 10.1111/jvim.15931 PubMed DOI PMC
Falus, F. A. , Vizi, Z. , Szabó, K. É. , Müller, L. , Reiczigel, J. , Balogh, N. , & Manczur, F. (2022). Establishment of a reference interval for urinary albumin‐to‐creatinine ratio in dogs. Veterinary Clinical Pathology, 51(4), 585–590. 10.1111/vcp.13149 PubMed DOI PMC
Ferlizza, E. , Isani, G. , Dondi, F. , Andreani, G. , Vasylyeva, K. , Bellei, E. , Almeida, A. M. , & Matzapetakis, M. (2020). Urinary proteome and metabolome in dogs (Canis lupus familiaris): The effect of chronic kidney disease. Journal of Proteomics, 222, 103795. 10.1016/j.jprot.2020.103795 PubMed DOI
Finco, D. R. , & Duncan, J. R. (1976). Evaluation of blood urea nitrogen and serum creatinine concentrations as indicators of renal dysfunction: A study of 111 cases and a review of related literature. Journal of the American Veterinary Medical Association, 168, 593–601. PubMed
Fukuda, A. , Minakawa, A. , Kikuchi, M. , Sato, Y. , Nagatomo, M. , Nakamura, S. , Mizoguchi, T. , Fukunaga, N. , Shibata, H. , Naik, A. S. , Wiggins, R. C. , & Fujimoto, S. (2020). Urinary podocyte mRNAs precede microalbuminuria as a progression risk marker in human type 2 diabetic nephropathy. Scientific Reports, 10, 18209. 10.1038/s41598-020-75320-1 PubMed DOI PMC
García San José, P. , Arenas Bermejo, C. , Clares Moral, I. , Cuesta Alvaro, P. , & Pérez Alenza, M. D. (2020). Prevalence and risk factors associated with systemic hypertension in dogs with spontaneous hyperadrenocorticism. Journal of Veterinary Internal Medicine, 34, 1768–1778. 10.1111/jvim.15841 PubMed DOI PMC
Giapitzoglou, S. , Saridomichelakis, M. N. , Leontides, L. S. , Kasabalis, D. , Chatzis, M. , Apostolidis, K. , Theodorou, K. , Roumpeas, E. , & Mylonakis, M. E. (2020). Evaluation of serum symmetric dimethylarginine as a biomarker of kidney disease in canine leishmaniosis due to Leishmania infantum . Veterinary Parasitology, 277, 109015. 10.1016/j.vetpar.2019.109015 PubMed DOI
Gilor, C. , & Graves, T. K. (2011). Interpretation of laboratory tests for canine Cushing's syndrome. Topics in Companion Animal Medicine, 26, 98–108. 10.1053/j.tcam.2011.03.001 PubMed DOI
Hall, J. A. , Fritsch, D. A. , Yerramilli, M. , Obare, E. , Yerramilli, M. , & Jewell, D. E. (2018). A longitudinal study on the acceptance and effects of a therapeutic renal food in pet dogs with IRIS‐Stage 1 chronic kidney disease. Journal of Animal Physiology and Animal Nutrition, 102, 297–307. 10.1111/jpn.12692 PubMed DOI
Hall, J. A. , Yerramilli, M. , Obare, E. , Yerramilli, M. , Almes, K. , & Jewell, D. E. (2016). Serum concentrations of symmetric dimethylarginine and creatinine in dogs with naturally occurring chronic kidney disease. Journal of Veterinary Internal Medicine, 30, 794–802. 10.1111/jvim.13942 PubMed DOI PMC
Herring, I. P. , Panciera, D. L. , & Werre, S. R. (2014). Longitudinal prevalence of hypertension, proteinuria, and retinopathy in dogs with spontaneous diabetes mellitus. Journal of Veterinary Internal Medicine, 28, 488–495. 10.1111/jvim.12286 PubMed DOI PMC
Hokamp, J. A. , Cianciolo, R. E. , Boggess, M. , Lees, G. E. , Benali, S. L. , Kovarsky, M. , & Nabity, M. B. (2016). Correlation of urine and serum biomarkers with renal damage and survival in dogs with naturally occurring proteinuric chronic kidney disease. Journal of Veterinary Internal Medicine, 30, 591–601. 10.1111/jvim.13832 PubMed DOI PMC
Holm, S. (1979). A simple sequentially rejective multiple test procedure. Scandinavian Journal of Statistics, 6, 65–70.
Honetschlagerová, Z. , Škaroupková, P. , Kikerlová, S. , Husková, Z. , Maxová, H. , Melenovský, V. , Kompanowska‐Jezierska, E. , Sadowski, J. , Gawrys, O. , Kujal, P. , Červenka, L. , & Čertíková Chábová, V. (2021). Effects of renal sympathetic denervation on the course of congestive heart failure combined with chronic kidney disease: Insight from studies with fawn‐hooded hypertensive rats with volume overload induced using aorto‐caval fistula. Clinical and Experimental Hypertension, 43, 522–535. 10.1080/10641963.2021.1907398 PubMed DOI
Hřibová, B. , Ceplecha, V. , Rehakova, K. , Proks, P. , Gabriel, V. , Kohoutová, L. , & Crha, M. (2019). Causes of lower urinary tract disease in Czech cat population. Acta Veterinaria Brno, 88, 433–441. 10.2754/avb201988040433 DOI
Karasová, M. , Tóthová, C. , Grelová, S. , & Fialkovičová, M. (2022). The etiology, incidence, pathogenesis, diagnostics, and treatment of canine babesiosis caused by Babesia gibsoni infection. Animals, 12, 739. PubMed PMC
Kielstein, J. T. , Salpeter, S. R. , Bode‐Boeger, S. M. , Cooke, J. P. , & Fliser, D. (2006). Symmetric dimethylarginine (SDMA) as endogenous marker of renal function – A meta‐analysis. Nephrology, Dialysis, Transplantation, 21, 2446–2451. 10.1093/ndt/gfl292 PubMed DOI
Kokkinos, Y. , Morrison, J. , Bradley, R. , Panagiotakos, T. , Ogeer, J. , Chew, D. , O'Flynn, C. , De Meyer, G. , Watson, P. , & Tagkopoulos, I. (2022). An early prediction model for canine chronic kidney disease based on routine clinical laboratory tests. Scientific Reports, 12, 14489. 10.1038/s41598-022-18793-6 PubMed DOI PMC
Kuleš, J. , Rubić, I. , Beer Ljubić, B. , Bilić, P. , Barić Rafaj, R. , Brkljačić, M. , Burchmore, R. , Eckersall, D. , & Mrljak, V. (2021). Combined untargeted and targeted metabolomics approaches reveal urinary changes of amino acids and energy metabolism in canine babesiosis with different levels of kidney function. Frontiers in Microbiology, 12, 715701. 10.3389/fmicb.2021.715701 PubMed DOI PMC
Lingaas, F. , Tengvall, K. , Jansen, J. H. , Pelander, L. , Hurst, M. H. , Meuwissen, T. , Karlsson, Å. , Meadows, J. R. S. , Sundström, E. , Thoresen, S. I. , Arnet, E. F. , Guttersrud, O. A. , Kierczak, M. , Hytönen, M. K. , Lohi, H. , Hedhammar, Å. , Lindblad‐Toh, K. , & Wang, C. (2023). Bayesian mixed model analysis uncovered 21 risk loci for chronic kidney disease in boxer dogs. PLoS Genetics, 19, e1010599. 10.1371/journal.pgen.1010599 PubMed DOI PMC
Lyon, S. D. , Sanderson, M. W. , Vaden, S. L. , Lappin, M. R. , Jensen, W. A. , & Grauer, G. F. (2010). Comparison of urine dipstick, sulfosalicylic acid, urine protein‐to‐creatinine ratio, and species‐specific ELISA methods for detection of albumin in urine samples of cats and dogs. Journal of the American Veterinary Medical Association, 236, 874–879. 10.2460/javma.236.8.874 PubMed DOI
McKenna, M. , Pelligand, L. , Elliott, J. , Walker, D. , & Jepson, R. (2020). Clinical utility of estimation of glomerular filtration rate in dogs. Journal of Veterinary Internal Medicine, 34, 195–205. 10.1111/jvim.15561 PubMed DOI PMC
Metzger, F. L . (2023). Pet Age Chart Poster by IDEXX Laboratories, Inc. (accessed on 05.03.2023). Available online: https://www.idexx.com/media/filer_public/2b/ec/2bec3064‐dc04‐46a3‐a499‐7c52ea1ded13/pet‐age‐chart‐poster‐ca‐en.pdf
Miyakawa, H. , Ogawa, M. , Sakatani, A. , Akabane, R. , Miyagawa, Y. , & Takemura, N. (2021). Evaluation of the progression of non‐azotemic proteinuric chronic kidney disease in dogs. Research in Veterinary Science, 138, 11–18. 10.1016/j.rvsc.2021.05.018 PubMed DOI
Nabity, M. B. , Lees, G. E. , Cianciolo, R. , Boggess, M. M. , Steiner, J. M. , & Suchodolski, J. S. (2012). Urinary biomarkers of renal disease in dogs with X‐linked hereditary nephropathy. Journal of Veterinary Internal Medicine, 26, 282–293. 10.1111/j.1939-1676.2012.00891.x PubMed DOI
Nadasdy, T. , Abdi, R. , Pitha, J. , & Slakey, D. , Racusen, L. (1999). Diffuse glomerular basement membrane lamellation in renal allografts from pediatric donors to adult recipients. The American Journal of Surgical Pathology, 23, 437–442. PubMed
O'Neill, D. G. , Elliott, J. , Church, D. B. , McGreevy, P. D. , Thomson, P. C. , & Brodbelt, D. C. (2013). Chronic kidney disease in dogs in UK veterinary practices: Prevalence, risk factors, and survival. Journal of Veterinary Internal Medicine, 27, 814–821. 10.1111/jvim.12090 PubMed DOI
Panciera, D. (2013). Hypothyroidism in dogs. In Rand, J. (Ed.), Clinical endocrinology of companion animals (pp. 263–272). Wiley.
Pasławska, U. , Szczepankiewicz, B. , Bednarska, A. , & Pasławski, R. (2020). Impact of high temperature on post‐exercise albuminuria in dogs. Animals, 10, 1988. PubMed PMC
Perini‐Perera, S. , Del‐Ángel‐Caraza, J. , Pérez‐Sánchez, A. P. , Quijano‐Hernández, I. A. , & Recillas‐Morales, S. (2021). Evaluation of chronic kidney disease progression in dogs with therapeutic management of risk factors. Frontiers in Veterinary Science, 8, 621084. 10.3389/fvets.2021.621084 PubMed DOI PMC
Polyak, M. M. R. , & Grosche, A. (2008). Comparison of vasosol and University of Wisconsin Solutions on early kidney function after 24 hours of cold ischemia in a canine autotransplantation model. Journal of Surgical Research, 150, 255–260. 10.1016/j.jss.2007.11.727 PubMed DOI
Polzin, D. J. , & Cowgill, L. D. (2016). Chronic kidney disease, an issue of veterinary clinics of North America: Small animal practice (Vol. 46). Elsevier Health Sciences.
Raila, J. , Schweigert, F. J. , & Kohn, B. (2014). Relationship between urinary Tamm‐Horsfall protein excretion and renal function in dogs with naturally occurring renal disease. Veterinary Clinical Pathology, 43, 261–265. 10.1111/vcp.12143 PubMed DOI
Reusch, C. E. , Liehs, M. R. , Hoyer, M. , & Vochezer, R. (1993). Fructosamine. Journal of Veterinary Internal Medicine, 7, 177–182. 10.1111/j.1939-1676.1993.tb03183.x PubMed DOI
Rudinsky, A. J. , Harjes, L. M. , Byron, J. , Chew, D. J. , Toribio, R. E. , Langston, C. , & Parker, V. J. (2018). Factors associated with survival in dogs with chronic kidney disease. Journal of Veterinary Internal Medicine, 32, 1977–1982. 10.1111/jvim.15322 PubMed DOI PMC
Sargent, H. J. , Elliott, J. , & Jepson, R. E. (2021). The new age of renal biomarkers: Does SDMA solve all of our problems? Journal of Small Animal Practice, 62, 71–81. 10.1111/jsap.13236 PubMed DOI
Schaefer, H. , Kohn, B. , Schweigert, F. J. , & Raila, J. (2011). Quantitative and qualitative urine protein excretion in dogs with severe inflammatory response syndrome. Journal of Veterinary Internal Medicine, 25, 1292–1297. 10.1111/j.1939-1676.2011.00829.x PubMed DOI
Smets, P. , Meyer, E. , Maddens, B. , & Daminet, S. (2010). Cushing's syndrome, glucocorticoids and the kidney. General and Comparative Endocrinology, 169, 1–10. 10.1016/j.ygcen.2010.07.004 PubMed DOI
Smets, P. M. Y. , Meyer, E. , Maddens, B. E. J. , Duchateau, L. , & Daminet, S. (2010). Urinary markers in healthy young and aged dogs and dogs with chronic kidney disease. Journal of Veterinary Internal Medicine, 24, 65–72. 10.1111/j.1939-1676.2009.0426.x PubMed DOI
Vaden, S. L. (2011). Glomerular disease. Topics in Companion Animal Medicine, 26, 128–134. 10.1053/j.tcam.2011.04.003 PubMed DOI
Vaden, S. L. , Turman, C. A. , Harris, T. L. , & Marks, S. L. (2010). The prevalence of albuminuria in dogs and cats in an ICU or recovering from anesthesia. Journal of Veterinary Emergency and Critical Care, 20, 479–487. 10.1111/j.1476-4431.2010.00584.x PubMed DOI
van Hoek, I. , & Daminet, S. (2009). Interactions between thyroid and kidney function in pathological conditions of these organ systems: A review. General and Comparative Endocrinology, 160, 205–215. 10.1016/j.ygcen.2008.12.008 PubMed DOI
Whittemore, J. C. , Gill, V. L. , Jensen, W. A. , Radecki, S. V. , & Lappin, M. R. (2006). Evaluation of the association between microalbuminuria and the urine albumin‐creatinine ratio and systemic disease in dogs. Journal of the American Veterinary Medical Association, 229, 958–963. 10.2460/javma.229.6.958 PubMed DOI
Wouters, O. J. , O'Donoghue, D. J. , Ritchie, J. , Kanavos, P. G. , & Narva, A. S. (2015). Early chronic kidney disease: Diagnosis, management and models of care. Nature Reviews Nephrology, 11, 491–502. 10.1038/nrneph.2015.85 PubMed DOI PMC