Abstract
Interrupted aortic arch in combination with hypoplasia of left heart structures is a rare congenital anomaly that is associated with high
morbidity and mortality, especially in combination with additional structural anomalies or comorbidities. In this study we present the
case of successful repair of interrupted aortic arch in combination with patent ductus arteriosus, ventricular septal defect, atrial septal
defect and hypoplasia of left heart structures after initial bilateral pulmonary artery banding and stenting of patent ductus arteriosus.
References
- Backer C.L., Mavroudis C. Congenital Heart Surgery
Nomenclature and Database Project: Patent ductus arteriosus,
coarctation of the aorta, interrupted aortic arch. Ann. Thorac.
Surg. 2000; 69 (4 Suppl.): S298–307.
- Shinkawa T., Jaquiss R.D., Imamura M. Single institutional
experience of interrupted aorctic arch repair over 28 years.
Interact. Cardiovasc. Thorac. Surg. 2012; 14 (5): 551–5.
- Patel D.M., Maldjian P.D., Lovoulos C. Interrupted aortic arch
with post interrupt-tion aneurysm and bicuspid aortic valve in
an adult: a case report and literature review. Radiol. Case Rep.
2015; 10 (3): 5–8.
- Jonas R.A. Hypoplastic left heart syndrome. In: Jonas R.A.
(eds). Comprehensive surgical management of congenital
heart disease. London: Hodder Arnold; 2004: 470–81.
- Davis J.A., Gilani R., Al-Najjar R., Tsai PI., Wall M.J., Jr.
Operative challenges in management of concurrent interrupted
aortic arch and descending thoracic aortic aneurysm.
J. Vasc. Surg. 2013; 57 (6): 1661e3.
- Hickey E.J., Nosikova Y., Zhang H., Caldarone C.A.,
Benson L., Redington A. et al. Very low birth weight infants
with congenital cardiac lesions: is there merit in delaying intervention
to permit growth and maturation? J. Thorac.
Cardiovasc. Surg. 2012; 143: 126–36.
- Miyamoto T., Yoshii T., Inui A., Ozaki S. Staged repair for aortic
arch reconstruction and intracardiac repair following bilateral
pulmonary artery banding in 3 critical patients. Interact.
Cardiovasc. Thorac. Surg. 2013; 16 (6): 892–4.
- Bockeria L., Alekyan B., Berishvili D., Pursanov M. et al. modified
hybrid stage I procedure for treatment of hypoplastic left
heart syndrome: an original surgical approach. Interact.
Cardiovasc. Thorac. Surg. 2010; 11 (2): 142–5
- Бокерия Л.А., Шаталов К.В. Детская кардиохирургия: Ру-
ководство для врачей. М.: НЦССХ им. А.Н. Бакулева 2016:
684–700 / Bockeria L.A., Shatalov K.V. Pediatric cardiac surgery:
The physicians' guide. Moscow: Nauchnyy Tsentr
Serdechno-Sosudistoy Khirurgii imeni A.N. Bakuleva; 2016:
684–700 (in Russ.).
- Jang W.S., Kim W.H., Choi K., Nam J., Jung J.C. et al.
Incidence, risk factors and clinical outcomes for acute kidney
injury after aortic arch repair in paediatric patients. Eur. J.
Cardiothorac. Surg. 2014; 45 (6): e208–14.
- Sethi S.K., Goyal D., Yadav D.K., Shukla U., Kajala P.L.,
Gupta V.K. et al. Predictors of acute kidney injury post-car-
diopulmonary bypass in children. Clin. Exp. Nephrol. 2011;
15: 529–34.
- Pedersen K.R., Hjortdal V.E., Christensen S., Pedersen J.,
Hjortholm K., Larsen S.H. et al. Clinical outcome in children
with acute renal failure treated with peritoneal dialysis after
surgery for congenital heart disease. Kidney Int. 2008; 108
(Suppl.): S81–6.
- Aydin S.I., Seiden H.S., Blaufox A.D., Parnell V.A.,
Choudhury T., Punnoose A. et al. Acute kidney injury after
surgery for congenital heart disease. Ann. Thorac. Surg. 2012;
94: 1589–95.
- Alabbas A., Campbell A., Skippen P., Human D., Mastell D.,
Mammen C. Epidemiology of cardiac surgery-associated
acute kidney injury in neonates: a retrospective study. Pediatr.
Nephrol. 2013; 28: 1127–34.
- McCrindle B.W., Tchervenkov C.I., Konstantinov I.E.,
Williams W.G., Neirotti R.A., Jacobs M.L. Congenital Heart
Surgeons Society. Risk factors associated with mortality and
interventions in 472 neonates with interrupted aortic arch: a
Congenital Heart Surgeons Society study. J. Thorac.
Cardiovasc. Surg. 2005; 129: 343–50.
- Chen P.C., Cubberley A.T., Reyes K., Zurakowski D.,
Baird C.W. et al. Predictors of reinterventionafter repair of
interrupted aortic arch with ventricular septal defect. Ann.
Thorac. Surg. 2013; 96 (2): 621–8.
- Hirata Y., Quaegebeur J.M., Mosca R.S., Takayama H.,
Chen J.M. Impact of aortic annular size on rate of reoperation
for left ventricular outflow tract obstruction after repair of interrupted
aortic arch and ventricular septal defect. Ann. Thorac.
Surg. 2010; 90: 588–92.
- Salem M.M., Starnes V.A., Wells W.J. et al. Predictors of left
ventricular outflow obstruction following single-stage repair of
interrupted aortic arch and ventricular septal defect. Am. J.
Cardiol. 2000; 86: 1044–7.
- Suzuki T., Ohye R.G., Devaney E.J. et al. Selective management
of the left ventricular outflow tract for repair of interrupted
aortic arch with ventricular septal defect: management of
left ventricular outflow tract obstruction. J. Thorac.
Cardiovasc. Surg. 2006; 131: 779–84.
- Geva T., Hornberger L.K., Sanders S.P., Jonas R.A., Ott D.A.,
Colan S.D. Echocardiographic predictors of left ventricular
outflow tract obstruction after repair of interrupted aortic arch.
J. Am. Coll. Cardiol. 1993; 22: 1953–60.
- Luciani G.B., Ackerman R.J., Chang A.C., Wells W.J., Starnes
V.A. One-stage repair of interrupted aortic arch, ventricular
septal defect, and subaortic obstruction in the neonate: a
novel approach. J. Thorac. Cardiovasc. Surg. 1996; 111:
348–58.
- Бокерия Л.А., Подзолков В.П., Барышникова И.Ю., Симогаева Е.Б., Беришвили Д.О. Двухжелудочковая реконструкция после гибридного I этапа при обструктивных поражениях левого сердца. Детские болезни сердца и сосудов. 2013; 4: 32–36 / Bockeria L.A., Podzolkov V.P.,
Baryshnikova I.Yu., Simogaeva E.B., Berishvili D.O.
Biventricular repair after hybrid palliation in case of left heart
obstructive disease. Detskie bolezni serdtsa i sosudov. 2013;
4: 32–6 (in Russ.).