Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex

Yıl: 2023 Cilt: 29 Sayı: 1 Sayfa Aralığı: 71 - 77 Metin Dili: İngilizce DOI: 10.9775/kvfd.2022.28624 İndeks Tarihi: 03-05-2023

Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex

Öz:
Abstract: Cardiac complications associated with respiratory diseases are well-documented in humans, but there are not many studies with cattle. Therefore, this study aimed to investigate cardiac damage in cattle with bovine respiratory disease complex (BRDC) with serum heart-type fatty acid-binding protein (H-FABP), N-terminal pro-peptide natriuretic type B (NT-proBNP) and other known cardiac damage biomarkers [cardiac troponin I (cTnI), creatine kinase-myocardial band (CK-MB), creatine kinase (CK), aspartate aminotransferase (AST), and lactate dehydrogenase (LDH)]. The material of this study consisted of 20 cattle, aged 4-6 months with BRDC (infected group) and 10 healthy cattle aged 4-6 months (control group). The study findings revealed that leukocyte parameters and serum H-FABP, NT-proBNP, cTnI, CK-MB, CK, LDH, and AST levels were higher in cattle with BRDC (P=0.000). Heart rate and respiratory rate showed a strong positive correlation with cardiac damage markers. ROC analysis revealed that serum H-FABP levels with a cut-off value of 0.45 ng/ml were more sensitive (100%) and specific (100%) than the rest in determining cardiac damage. It was concluded that cardiac damage occurred in cattle with BRDC, and H-FABP was more sensitive and specific in detecting cardiac damage. It is anticipated that the use of biomarkers to detect cardiac injury in BRDC will be important for determining prognosis and guiding treatment.
Anahtar Kelime:

Sığırların Solunum Sistemi Hastalığı Kompleksinde Kardiyak Hasarın Belirlenmesinde Serum H-FABP ve NT-proBNP Düzeylerinin Tanısal Değeri

Öz:
Öz: Solunum yolu hastalıkları ile ilişkili kardiyak komplikasyonlar insanlarda iyi tanımlanmasına rağmen sığırlarda bu alanda çok az çalışma yapılmıştır. Bu nedenle, bu çalışmada sığır solunum hastalığı kompleksi (BRDC) olan sığırlarda serum kalp tipi yağ asidi bağlayıcı protein (H-FABP), N-terminal pro-peptid natriüretik tip B (NT-proBNP) ve bilinen diğer kardiyak hasar biyobelirteçleri [kardiyak troponin I (cTnI), kreatin kinaz-miyokardiyal band (CK-MB), kreatin kinaz (CK), aspartat aminotransferaz (AST) ve laktat dehidrogenaz (LDH)] ile kardiyak hasarın araştırılması amaçlandı. Çalışmanın materyalini BRDC’li (enfekte grup) 4-6 aylık 20 sığır ve 4-6 aylık 10 sağlıklı sığır (kontrol grubu) oluşturdu. Verilerimiz, BRDC’li sığırlarda lökosit parametreleri ve serum H-FABP, NTproBNP, cTnI, CK-MB, CK, LDH ve AST düzeylerinin daha yüksek olduğunu ortaya koydu (P=0.000). Kalp ve solunum hızı, kardiyak hasar belirteçleri ile güçlü pozitif korelasyon gösterdi. ROC analizi, 0,45 ng/ml eşik değerine sahip serum H-FABP düzeylerinin kardiyak hasarı belirlemede diğer tanısal belirteçlere göre daha duyarlı (%100) ve özgül (%100) olduğunu ortaya çıkardı. Sonuç olarak, BRDC’li sığırlarda kardiyak hasarın meydana geldiği ve H-FABP’nin kardiyak hasarı tespit etmede daha duyarlı ve özgül olduğu sonucuna varıldı. BRDC’de kardiyak hasarı saptamak için biyobelirteçlerin kullanılmasının, prognozu belirlemek ve tedaviyi yönlendirmek için önemli olacağı tahmin edilmektedir.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. McGill JL, Sacco RE: The immunology of bovine respiratory disease. Vet Clin North Am Food Anim Pract, 36 (2): 333-348, 2020. DOI: 10.1016/j. cvfa.2020.03.002
  • 2. Joshi V, Gupta VK, Bhanuprakash AG, Mandal RSK, Dimri U, Ajith Y: Haptoglobin and serum amyloid A as putative biomarker candidates of naturally occurring bovine respiratory disease in dairy calves. Microb Pathog, 116, 33-37, 2018. DOI: 10.1016/j.micpath.2018.01.001
  • 3. Orro T, Pohjanvirta T, Rikula U, Huovilainen A, Alasuutari S, Sihvonen L, Pelkonen S, Soveri T: Acute phase protein changes in calves during an outbreak of respiratory disease caused by bovine respiratory syncytial virus. Comp Immunol Microbiol Infect Dis, 34 (1): 23-29, 2011. DOI: 10.1016/j. cimid.2009.10.005
  • 4. Stanford K, Zaheer R, Klima C, McAllister T, Peters D, Niu YD, Ralston B: Antimicrobial resistance in members of the bacterial bovine respiratory disease complex isolated from lung tissue of cattle mortalities managed with or without the use of antimicrobials. Microorganisms, 8 (2): 288, 2020. DOI: 10.3390/microorganisms8020288
  • 5. Pansri P, Katholm J, Krogh KM, AagaardL AK, Schmidt LMB, Kudirkiene E, Larsen LE, Olsen JE: Evaluation of novel multiplex qPCR assays for diagnosis of pathogens associated with the bovine respiratory disease complex. Vet J, 256:105425, 2020. DOI: 10.1016/j. tvjl.2020.105425
  • 6. Değirmençay Ş, Kırbaş A, Aydın H, Aydın Ö, Aktaş MS, Kaman R: Evaluation of serum iron and ferritin levels as inflammatory markers in calves with bovine respiratory disease complex. Acta Vet Belgrade, 72 (1): 59-75, 2022. DOI: 10.2478/acve-2022-0005
  • 7. Karayel Hacioğlu İ, Coşkun N, Duran Yelken S, Sevinç S, Alkan F: Phylogenetic analysis of Bovine Respiratory Syncytial Virus from calves with respiratory disorders. Kafkas Univ Vet Fak Derg, 25 (2): 251-256, 2019. DOI: 10.9775/kvfd.2018.20819
  • 8. Blakebrough-Hall C, McMeniman JP, González LA: An evaluation of the economic effects of bovine respiratory disease on animal performance, carcass traits, and economic outcomes in feedlot cattle defined using four BRD diagnosis methods. J Anim Sci, 98 (2):skaa005, 2020. DOI: 10.1093/ jas/skaa005
  • 9. Klima CL, Zaheer R, Cook SR, Booker CW, Hendrick S, Alexander TW, McAllister TA: Pathogens of bovine respiratory disease in North American feedlots conferring multidrug resistance via integrative conjugative elements. J Clin Microbiol, 52 (2): 438-448, 2014. DOI: 10.1128/JCM.02485-13
  • 10. Capik SF, White BJ, Lubbers BV, Apley MD, DeDonder KD, Larson RL, Harhay GP, Chitko-McKown CG, Harhay DM, Kalbfleisch TS, Schuller G, Clawson ML: Comparison of the diagnostic performance of bacterial culture of nasopharyngeal swab and bronchoalveolar lavage fluid samples obtained from calves with bovine respiratory disease. Am J Vet Res, 78 (3): 350-358, 2017. DOI: 10.2460/ajvr.78.3.350
  • 11. Buczinski S, Forté G, Francoz D, Bélanger AM: Comparison of thoracic auscultation, clinical score, and ultrasonography as indicators of bovine respiratory disease in preweaned dairy calves. J Vet Intern Med, 28 (1): 234- 242, 2014. DOI: 10.1111/jvim.12251
  • 12. Love WJ, Lehenbauer TW, Kass PH, Van Eenennaam AL, Aly SS: Development of a novel clinical scoring system for on-farm diagnosis of bovine respiratory disease in pre-weaned dairy calves. Peer J, 2:e238, 2014. DOI: 10.7717/peerj.238
  • 13. McGuirk SM, Peek SF: Timely diagnosis of dairy calf respiratory disease using a standardized scoring system. Anim Heal Res Rev, 15 (2): 145-147, 2014. DOI: 10.1017/S1466252314000267
  • 14. Hanedan B, Kirbas A, Dorman E, Timurkan Mehmet O, Kandemir MF, Alkan O: Cardiac troponin-I concentration in weaned calves with Bovine respiratory disease. Acta Vet Belgrade, 65 (4): 454-462, 2015. DOI: 10.1515/acve-2015-0038
  • 15. Moammar MQ, Ali MI, Mahmood NA, DeBari VA, Khan MA: Cardiac troponin I levels and alveolar-arterial oxygen gradient in patients with community-acquired pneumonia. Heart Lung Circ, 19 (2): 90-92, 2010. DOI: 10.1016/j.hlc.2009.08.009
  • 16. Divers TJ: Respiratory diseases. In, Divers T, Peek SF (Eds): Rebhun’s Diseases of Dairy Cattle. 2nd ed., 95, Elsevier Inc, St. Louis, Missouri, 2008.
  • 17. Babuin L, Jaffe AS: Troponin: The biomarker of choice for the detection of cardiac injury. CMAJ, 173 (10): 1191-1202, 2005. DOI: 10.1503/ cmaj/051291
  • 18. Chang CL, Mills GD, Karalus NC, Jennings LC, Laing R, Murdoch DR, Chambers ST, Vettise D, Tuffery CM, Hancox RJ: Biomarkers of cardiac dysfunction and mortality from community-acquired pneumonia in adults. PLoS One, 8 (5):e62612, 2013. DOI: 10.1371/journal. pone.0062612
  • 19. Kirbas A, Degirmencay S, Kilinc AA, Eroglu MS: Evaluation of serum cardiac troponin-I concentration and cardiac enzyme activities in neonatal calves with sepsis. Isr J Vet Med, 76 (1): 3-10, 2021.
  • 20. Gerede D, Güleç S, Vurgun VK, Özcan ÖU, Göksülük H, Kılıçkap M, Erol Ç: Comparison of qualitati ve measurement of heart-type fatty acid binding-protein with other cardiac markers Fas an early diagnostic marker in diagnosis of non-St-segment elevation myocardial infartion. Cardiovasc J Afr, 26 (6): 204-209, 2013. DOI: 10.5830/CVJA-2015-028
  • 21. Anjos DS, Cintra CA, Rocha JR, Junior DP: Cardiac biomarkers - An ally in the prognosis of heart disorders in small animals. Rev Investig Med Vet, 14 (6): 38-45, 2015.
  • 22. Vanderheyden M, Bartunek J, Goethals M: Brain and other natriuretic peptides: Molecular aspects. Eur J Heart Fail, 6 (3): 261-268, 2004. DOI: 10.1016/j.ejheart.2004.01.004
  • 23. Hall C: Essential biochemistry and physiology of (NT-pro)BNP. Eur J Heart Fail, 6 (3): 257-260, 2004. DOI: 10.1016/j.ejheart.2003.12.015
  • 24. Corrales-Medina VF, Musher DM, Wells GA, Chirinos JA, Chen L, Fine MJ: Cardiac complications in patients with community-acquired pneumonia: incidence, timing, risk factors, and association with shortterm mortality. Circulation, 125 (6): 773-781, 2012. DOI: 10.1161/ CIRCULATIONAHA.111.040766
  • 25. Corrales-Medina VF, Suh KN, Rose G, Chirinos JA, Doucette S, Cameron DW, Fergusson DA: Cardiac complications in patients with community-acquired pneumonia: A systematic review and meta-analysis of observational studies. PLoS Med, 8 (6):e1001048, 2011. DOI: 10.1371/ journal.pmed.1001048
  • 26. Singanayagam A, Singanayagam A, Elder DHJ, Chalmers JD: Is community-acquired pneumonia an independent risk factor for cardiovascular disease? Eur Respir J, 39 (1): 187-196, 2012. DOI: 10.1183/ 09031936.00049111
  • 27. Mellanby RJ, Henry JP, Cash R, Ricketts SW, Bexiga R, Truyers I, Mellor DJ: Serum cardiac troponin I concentrations in cattle with cardiac and noncardiac disorders. J Vet Intern Med, 23 (4): 926-930, 2009. DOI: 10.1111/j.1939-1676.2009.0330.x
  • 28. O’Brien PJ, Landt Y, Ladenson JH: Differential reactivity of cardiac and skeletal muscle from various species in a cardiac troponin I immunoassay. Clin Chem, 43 (12): 2333-2338, 1997.
  • 29. Varga A, Angelos JA, Graham TW, Chigerwe M: Preliminary investigation of cardiac troponin I concentration in cows with common production diseases. J Vet Intern Med, 27 (6): 1613-1621, 2013. DOI: 10.1111/jvim.12213
  • 30. Aydogdu U, Yildiz R, Guzelbektes H, Coskun A, Sen I: Cardiac biomarkers in premature calves with respiratory distress syndrome. Acta Vet Hung, 64 (1): 38-46, 2016. DOI: 10.1556/004.2016.004
  • 31. Hoar BR, Jelinski MD, Ribble CS, Janzen ED, Johnson JC: A comparison of the clinical field efficacy and safety of florfenicol and tilmicosin for the treatment of undifferentiated bovine respiratory disease of cattle in western Canada. Can Vet J, 39 (3): 161-166, 1998.
  • 32. Orak M, Üstündağ M, Güloğlu C, Ozhasenekler A, Alyan O, Kale E: The role of the heart-type fatty acid binding protein in the early diagnosis of acute coronary syndrome and its comparison with troponin I and creatine kinase-MB isoform. Am J Emerg Med, 28 (8): 891-896, 2010. DOI: 10.1016/j. ajem.2009.05.012
  • 33. Rezar R, Jirak P, Gschwandtner M, Derler R, Felder TK, Haslinger M, Kopp K, Seelmaier C, Granitz C, Hoppe UC, Lichtenauer M: Heart-type fatty acid-binding protein (H-FABP) and its role as a biomarker in heart failure: What do we know so far? J Clin Med, 9 (1): 164, 2020. DOI: 10.3390/jcm9010164
  • 34. Lam C, Casamian-Sorrosal D, Monteith G, Fonfara S: Heart-fatty acid binding protein in dogs with degenerative valvular disease and dilated cardiomyopathy. Vet J, 244, 16-22, 2019. DOI: 10.1016/j.tvjl.2018.11.017
  • 35. Yildiz R, Ok M, Ider M, Aydogdu U, Ertürk A: Heart-type fatty acidbinding protein (H-FABP), pentraxin-3 (PTX-3) and thrombomodulin in bovine traumatic pericarditis. Acta Vet Hung, 67 (4): 505-516, 2019. DOI: 10.1556/004.2019.050
  • 36. Angel KL, Tyler JW: Pulmonary hypertension and cardiac insufficiency in three cows with primary lung disease. J Vet Intern Med, 6 (4): 214-219, 1992. DOI: 10.1111/j.1939-1676.1992.tb00341.x
  • 37. Kirchhoff J, Uhlenbruck S, Goris K, Keil GM, Herrler G: Three viruses of the bovine respiratory disease complex apply different strategies to initiate infection. Vet Res, 45 (1): 20, 2014. DOI: 10.1186/1297-9716-45-20
  • 38. Yılmaz O, Gökçe G: Investigations on clinic, haematology, biochemistry, oxidative stress, acute phase proteins in infectious respiratory disease complex (BRDC) in cattle. Ataturk Univ Vet Bil Derg, 12, 34-44, 2017. DOI: 10.17094/ataunivbd.309771
  • 39. Dörtkardeş AB, Şahinduran Ş: Determination of serum amyloid A, haptoglobin and hepcidin levels in calves with endemic viral pneumonia. Ankara Üniv Vet Fak Derg, 67, 127-131, 2020. DOI: 10.33988/auvfd.523958
  • 40. Šoltésová H, Nagyová V, Tóthová C, Nagy O: Haematological and blood biochemical alterations associated with respiratory disease in calves. Acta Vet Brno, 84, 249-256, 2015. DOI: 10.2754/avb201584030249
  • 41. Fulton RW, Blood KS, Panciera RJ, Payton ME, Ridpath JF, Confer AW, Saliki JT, Burge LT, Welsh RD, Johnson BJ, Reck A: Lung pathology and infectious agents in fatal feedlot pneumonias and relationship with mortality, disease onset, and treatments. J Vet Diagn Invest, 21 (4): 464-477, 2009. DOI: 10.1177/104063870902100407
  • 42. Haines DM, Moline KM, Sargent RA, Campbell JR, Myers DJ, Doig PA: Immunohistochemical study of Hemophilus somnus, Mycoplasma bovis, Mannheimia hemolytica, and bovine viral diarrhea virus in death losses due to myocarditis in feedlot cattle. Can Vet J, 45 (3): 231-234, 2004.
  • 43. Margineda CA, O’Toole D, Prieto M, Uzal FA, Zielinski GC: Histophilus somni myocarditis and leptomeningitis in feedlot cattle: Case report and occurrence in South America. J Vet Diagn Invest, 31 (6):893-898, 2019. DOI: 10.1177/1040638719876302
APA Değirmençay Ş (2023). Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. , 71 - 77. 10.9775/kvfd.2022.28624
Chicago Değirmençay Şükrü Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. (2023): 71 - 77. 10.9775/kvfd.2022.28624
MLA Değirmençay Şükrü Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. , 2023, ss.71 - 77. 10.9775/kvfd.2022.28624
AMA Değirmençay Ş Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. . 2023; 71 - 77. 10.9775/kvfd.2022.28624
Vancouver Değirmençay Ş Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. . 2023; 71 - 77. 10.9775/kvfd.2022.28624
IEEE Değirmençay Ş "Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex." , ss.71 - 77, 2023. 10.9775/kvfd.2022.28624
ISNAD Değirmençay, Şükrü. "Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex". (2023), 71-77. https://doi.org/10.9775/kvfd.2022.28624
APA Değirmençay Ş (2023). Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. Kafkas Üniversitesi Veteriner Fakültesi Dergisi, 29(1), 71 - 77. 10.9775/kvfd.2022.28624
Chicago Değirmençay Şükrü Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. Kafkas Üniversitesi Veteriner Fakültesi Dergisi 29, no.1 (2023): 71 - 77. 10.9775/kvfd.2022.28624
MLA Değirmençay Şükrü Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. Kafkas Üniversitesi Veteriner Fakültesi Dergisi, vol.29, no.1, 2023, ss.71 - 77. 10.9775/kvfd.2022.28624
AMA Değirmençay Ş Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. Kafkas Üniversitesi Veteriner Fakültesi Dergisi. 2023; 29(1): 71 - 77. 10.9775/kvfd.2022.28624
Vancouver Değirmençay Ş Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex. Kafkas Üniversitesi Veteriner Fakültesi Dergisi. 2023; 29(1): 71 - 77. 10.9775/kvfd.2022.28624
IEEE Değirmençay Ş "Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex." Kafkas Üniversitesi Veteriner Fakültesi Dergisi, 29, ss.71 - 77, 2023. 10.9775/kvfd.2022.28624
ISNAD Değirmençay, Şükrü. "Diagnostic Value of Serum H-FABP and NT-proBNP Levels in Determining Cardiac Damage in Cattle with Bovine Respiratory Disease Complex". Kafkas Üniversitesi Veteriner Fakültesi Dergisi 29/1 (2023), 71-77. https://doi.org/10.9775/kvfd.2022.28624