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Application of small animal models in the study of vascular access for hemodialysis

  • QIN Yu ,
  • DU Jing ,
  • ZHAO Zhan-Yun
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  • School of Clinical Medicine, Weifang Medical University, Weifang 261053, China; 2Department of Blood Purification Center, Weifang People’s Hospital, Weifang 261044, China

Received date: 2023-01-03

  Revised date: 2023-01-15

  Online published: 2023-06-12

Abstract

Vascular access for hemodialysis patients includes arteriovenous fistula (AVF), arteriovenous graft (AVG) and central venous catheter (CVC), but all the vascular access methods have the problem of dysfunction. The mechanism of blood access failure is unclear. Animal model can be helpful to understand the causes of vascular access failure. Small animal model has the advantages of easy to use and less expensive, suitable for the molecular study of blood access failure. This review introduces several small animal models as well as the research status and characteristics of the small animal models for the study of blood access failure.

Cite this article

QIN Yu , DU Jing , ZHAO Zhan-Yun . Application of small animal models in the study of vascular access for hemodialysis[J]. Chinese Journal of Blood Purification, 2023 , 22(06) : 446 -449 . DOI: 10.3969/j.issn.1671-4091.2023.06.010

References

[1]OBRADOR G T, LEVIN A.CKD Hotspots: Challenges and Areas of Opportunity[J].Semin Nephrol, 2019, 39(3):308-14
[2]LIYANAGE T, TOYAMA T, HOCKHAM C, et al.Prevalence of chronic kidney disease in Asia: a systematic review and analysis [J]. BMJ Glob Health, 2022, 7(1).
[3]YANG C, YANG Z, WANG J, et al.Estimation of Prevalence of Kidney Disease Treated With Dialysis in China: A Study of Insurance Claims Data[J].American journal of kidney diseases : the official journal of the National Kidney Foundation, 2021, 77(6):889-97
[4]ALLON M.Vascular Access for Hemodialysis Patients: New Data Should Guide Decision Making[J].Clin J Am Soc Nephrol, 2019, 14(6):954-61
[5]BRAHMBHATT A, REMUZZI A, FRANZONI M, et al.The molecular mechanisms of hemodialysis vascular access failure[J].Kidney international, 2016, 89(2):303-16
[6]KANG L, GRANDE J P, HILLESTAD M L, et al.A new model of an arteriovenous fistula in chronic kidney disease in the mouse: beneficial effects of upregulated heme oxygenase-1[J].American journal of physiology Renal physiology, 2016, 310(6):F466-76
[7]DOS SANTOS I F, SHERIFF S, AMLAL S, et al.Adenine acts in the kidney as a signaling factor and causes salt- and water-losing nephropathy: early mechanism of adenine-induced renal injury[J].American journal of physiology Renal physiology, 2019, 316(4):F743-f57
[8]T?RM?NEN S, P?RSTI I, LAKKISTO P, et al.Endothelin A receptor blocker and calcimimetic in the adenine rat model of chronic renal insufficiency[J].BMC nephrology, 2017, 18(1):323-
[9]LANGER S, KOKOZIDOU M, HEISS C, et al.Chronic kidney disease aggravates arteriovenous fistula damage in rats[J].Kidney international, 2010, 78(12):1312-21
[10]CUI J, KESSINGER C W, MCCARTHY J R, et al.In vivo nanoparticle assessment of pathological endothelium predicts the development of inflow stenosis in murine arteriovenous fistula[J].Arteriosclerosis, thrombosis, and vascular biology, 2015, 35(1):189-96
[11]BEZHAEVA T, DE VRIES M R, GEELHOED W J, et al.Relaxin receptor deficiency promotes vascular inflammation and impairs outward remodeling in arteriovenous fistulas[J]. FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 2018, :-
[12]GHANEM S, SOMOGYI V, TANCZOS B, et al.Modulation of micro-rheological and hematological parameters in the presence of artificial carotid-jugular fistula in rats[J].Clinical hemorheology and microcirculation, 2019, 71(3):325-35
[13]GOLDSTONE R N, MCCORMACK M C, GOLDSTEIN R L, et al.Photochemical Tissue Passivation Attenuates AV Fistula Intimal Hyperplasia[J].Annals of surgery, 2018, 267(1):183-8
[14]LIN T, HORSFIELD C, ROBSON M G.Arteriovenous fistula in the rat tail: a new model of hemodialysis access dysfunction[J].Kidney international, 2008, 74(4):528-31
[15]MANNING E, SKARTSIS N, ORTA A M, et al.A new arteriovenous fistula model to study the development of neointimal hyperplasia[J].Journal of vascular research, 2012, 49(2):123-31
[16]DU J, LIANG L, LIU S, et al.Neointimal hyperplasia in the inferior vena cava of adenine-induced chronic kidney disease rats with aortocaval fistulas[J].Clin Exp Nephrol, 2020, 24(11):1007-14
[17]YAMAMOTO K, PROTACK C D, TSUNEKI M, et al.The mouse aortocaval fistula recapitulates human arteriovenous fistula maturation[J].Am J Physiol Heart Circ Physiol, 2013, 305(12):H1718-25
[18]SHO E, NANJO H, SHO M, et al.Arterial enlargement,tortuosity,and intimal thickening in response to sequential exposure to high and low wall shear stress[J].J Vasc Surg, 2004, 39(3):601-12
[19]BALDWIN Z K, CHANDIWAL A, HUANG W, et al.Slower onset of low shear stress leads to less neointimal thickening in experimental vein grafts[J].Ann Vasc Surg, 2006, 20(1):106-13
[20]MACASKILL M G, WATSON D G, EWART M A, et al.Improving arteriovenous fistula patency: Transdermal delivery of diclofenac reduces cannulation-dependent neointimal hyperplasia via AMPK activation [J]. Vascul Pharmacol, 2015, 71: 108-15.
[21]BAI H, DARDIK A, XING Y.Decellularized Carotid Artery Functions as an Arteriovenous Graft [J]. J Surg Res, 2019, 234: 33-9.
[22]XU Y, WANG Z, WEI S, et al.Hydrogel-coated needles prevent puncture site bleeding in arteriovenous fistula and arteriovenous grafts in rats [J]. Biomed Pharmacother, 2021, 143: 112113.
[23]YAO Y, JEONG Y, ZAW A M, et al.Rabbit Surgery Protocol for End-to-End and End-to-Side Vascular Graft Anastomosis [M]. Vascular Tissue Engineering. 2022: 177-89.
[24]LI M C, CHANG P Y, LUO H R, et al.Functioning tailor-made 3D-printed vascular graft for hemodialysis [J]. The journal of vascular access, 2022: 11297298221086173.
[25]XIANG D Z, VERBEKEN E K, VAN LOMMEL A T, et al.Composition and formation of the sleeve enveloping a central venous catheter[J].J Vasc Surg, 1998, 28(2):260-71
[26]XIANG D Z, VERBEKEN E K, VAN LOMMEL A T, et al.Sleeve-related thrombosis: a new form of catheter-related thrombosis[J].Thromb Res, 2001, 104(1):7-14
[27]KLEMENT P, DU Y J, BERRY L R, et al.Chronic performance of polyurethane catheters covalently coated with ATH complex: a rabbit jugular vein model[J].Biomaterials, 2006, 27(29):5107-17
[28]BRISBOIS E J, MAJOR T C, GOUDIE M J, et al.Attenuation of thrombosis and bacterial infection using dual function nitric oxide releasing central venous catheters in a 9day rabbit model [J]. Acta Biomater, 2016, 44: 304-12.
[29]TANABE H, TAKEMURA N, TERAO H, et al.Vascular endothelium damage from catheter-induced mechanical stimulation causes catheter sleeve formation in a rabbit model[J].The journal of vascular access, 2020, 21(3):379-86
[30]SINGHA P, GOUDIE M J, LIU Q, et al.Multipronged Approach to Combat Catheter-Associated Infections and Thrombosis by Combining Nitric Oxide and a Polyzwitterion: a 7 Day In Vivo Study in a Rabbit Model[J].ACS Appl Mater Interfaces, 2020, 12(8):9070-9
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