Portopulmonary hypertension is a rare but serious complication of portal hypertension or portosystemic shunting. Portopulmonary hypertension is an indication for liver transplantation or shunt closure. However, liver transplantation is contraindicated in patients with severe pulmonary arterial hypertension. Reported mortality rates are high in children with portopulmonary hypertension and there are scarce recommendations on its management. Our aim was to report on our real-world experience of managing portopulmonary hypertension in a specialised centre. We describe a series of 6 children with portopulmonary hypertension. Their median age at diagnosis was 13 years (range 10-15). The underlying liver conditions were cirrhosis of unknown origin (1), congenital portocaval shunts (3), biliary atresia (1), and portal vein cavernoma with surgical mesenterico-caval shunt (1). Median mean pulmonary arterial pressure was 47 mmHg (range 32-70), and median pulmonary vascular resistance was 6.6 Wood units (range 4.3-15.4). All patients except one were treated with a combination of pulmonary arterial hypertension-specific therapy (phosphodiesterase type 5 inhibitors and/or endothelin receptor antagonists and/or prostacyclin analogues). Three patients then benefited from shunt closure and the others underwent liver transplantation. Five patients showed improvement or stabilisation of pulmonary arterial hypertension with no deaths after a mean follow-up of 39 months. Based on our limited experience, early and aggressive treatment with a combination of pulmonary arterial hypertension-specific therapy significantly improves patients' haemodynamic profile and enables the performance of liver transplantation and shunt closure with satisfactory outcomes.
Kingella kingae is a gram-negative coccobacillus belonging to the HACEK group (Haemophilus species, Aggregatibacter actinomycetemcomitans, Cardiobacterium hominis, Eikenella corrodens, and Kingella species) and is a common oropharyngeal colonizer of healthy young children. Osteoarticular infection is the most commonly reported invasive Kingella kingae infection in children, usually presenting a mild clinical picture. However, it can also cause severe invasive infections, especially infective endocarditis, with a high complication rate. We report the case of a 6-year-old girl, with no past medical history, who presented with fulminant infective endocarditis due to Kingella kingae. She received emergency venoarterial extracorporeal membrane oxygenation support, rapidly underwent cardiac surgery, and was then treated using ceftriaxone for 4 weeks as recommended by the American Heart Association. The patient's postoperative course was marked by a cerebral ischemic stroke consistent with septic embolism. She also presented with a para-aortic pseudoaneurysm that required a secondary surgical procedure, with a good postoperative result. This report illustrates a case of fulminant infective endocarditis due to Kingella kingae and responsible for two major complications. We also describe the preventive valve surgery performed to ensure the preservation of valve function and its capacity for growth.
Congenital and acquired heart diseases can cause pulmonary hypertension (PH) in children, either by increasing pulmonary blood flow (PBF), left atrial pressure (LAp), and/or pulmonary vascular resistance (PVR). Pathophysiological process of pulmonary vascular disease (PVD) in different types of congenital heart diseases (CHDs) are reviewed hereafter. As with other types of PH, a rigorous diagnostic evaluation is mandatory to characterize the etiology of the PH, rule out other or additional causes of PH, and establish a risk profile. Cardiac catheterization remains the gold standard exam for PH diagnosis. Treatment of pulmonary arterial hypertension (PAH) associated with CHD (PAH-CHD) can then be started according to the recent guidelines recommendations, although most of the evidence is extrapolated from studies on other causes of PAH. PH in pediatric heart disease is often multifactorial, and sometimes unclassifiable, making the management of these patients complicated. The operability of patients with a prevalent left-to-right shunt and increase of PVR, the management of children with PH associated with left-sided heart disease, the challenges of pulmonary vascular disorders in children with univentricular heart physiology and the role of vasodilator therapy in failing Fontan patients are some of the hot topics discussed in this review.
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