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Biomedical subjects

T Shin'oka

Publications and source records attributed to T Shin'oka.

At least 19 recordsLinked to original sources

[Repair for atrioventricular valve regurgitation using autologous pericardium: report of a case].

A 13-year-old boy with [SLL] single left ventricle first underwent ventricular septation using a dacron patch at 3 years of age. Eight years after the first surgery, he presented with general fatigue on exertion as the chief complaint. Right-sided atrioventricular valve regurgitation, and dilatation of the right heart were diagnosed. Eleven years after surgery, right heart failure was uncontrollable by medicine, and 2nd surgery was performed. At operation, the right-sided heart valve leaflet was tightly adherent to the dacron septation patch, and valve plasty was judged impossible. We repaired the right-sided atrioventricular valve using an autologous pericardial valve leaflet and sub-valvular tissue. The postoperative course was uneventful, and he has been free from any complication for 33 months.

Adolescent↗

Double switch operation for superior-inferior ventricles.

Superior-inferior ventricles are a rare cardiac malformation characterized by the two ventricles lying one above the other instead of side by side. Consequently, the interventricular septum that separates such ventricles is horizontal, and anomalies of the atrioventricular valves and the ventriculoarterial relations are almost always present. This complex anomaly is difficult to manage with an operation, so few cases have been reported. We describe a successful experience in which we performed a double switch operation, consisting of the Senning and Jatene procedures, for this rare malformation accompanied by double-outlet right ventricle [S,L,L]. This is the first report we have been able to locate of a double switch operation for superior-inferior ventricles.

Adolescent↗

Surgical intervention for anomalous origin of the left coronary artery from the pulmonary artery: the Tokyo experience.

BACKGROUND: Few studies after surgical repair of the anomalous origin of the left coronary artery have reported the importance of the mitral annuloplasty or the long-term results. METHODS: Between January 1982 and March 2000, 29 patients with anomalous origin underwent surgical intervention at our institution (direct aortic reimplantation in 19 and Takeuchi procedure in 10). Age at the time of operation ranged from 2 months to 24 years (median, 29.3 months), and 9 patients were infants. Twenty-four patients had varying degrees of mitral incompetence. Simultaneous mitral annuloplasty at the anterolateral commissure was performed in all 24 patients with incompetence. RESULTS: There were 2 hospital deaths among the infants, and no late deaths. Mean follow-up was 100 +/- 57 months, and the actuarial survival was 93.1% at 10 years (70% confidence limits, 87-99). Cardiothoracic ratio at discharge was not decreasing significantly (P =.35); however, this value 5 years after the operation showed the significant decrease (P =.003) versus preoperative value. Preoperative mitral incompetence decreased in all but one of the operative survivors with mitral annuloplasty at the last follow-up. The left ventricular fractional shortening z-score was not normalized at discharge but was normalized in the late period. CONCLUSION: These data demonstrate that impaired left ventricular function normalized in the long term (even if it was below normal immediately after operation) after 2-coronary repair. We recommend that the simultaneous mitral annuloplasty should be performed at the time of operation for patients who have mitral incompetence with anomalous origin of the left coronary artery.

Adolescent↗

Coarctation of the aorta and ventricular septal defect: should we perform a single-stage repair?

BACKGROUND: Optimal management for coarctation of the aorta and ventricular septal defect remains controversial. The current study was undertaken to determine outcome, including recoarctation after 2-stage repair, at our institution. METHODS: Between 1984 and 1998, 79 patients younger than 3 months with coarctation and ventricular septal defect underwent 2-stage repair at our institution. The first-stage operation consisted of subclavian flap angioplasty and pulmonary banding. The median age at the time of first operation was 28 days (range, 4-90 days), and median weight was 3.2 kg (range, 1.2-5.1 kg). Hypoplastic aortic arch was present in 27 patients, and coexisting anomalies were present in 13 patients. After a mean interval of 10.4 +/- 9.6 months, they underwent a second-stage repair, with closure of the ventricular septal defect and pulmonary debanding. RESULTS: There were 2 hospital deaths and 4 late deaths. Mean follow-up was 9.2 +/- 4.9 years (range, 2.0-18.3 years), and actuarial survival was 92.3% at 10 years (95% confidence interval, 86.6%-98.3%). Age at first operation, body weight, hypoplastic arch, and coexisting anomalies had no significant influence on overall mortality. Freedom from recoarctation rate was 90.4% at 10 years (95% confidence interval, 83.7%-97.2%). CONCLUSION: To diminish mortality and the recoarctation rate and also to decrease the possibility of complications related to circulatory arrest and allogeneic blood transfusion, 2-stage repair is still an effective technique for coarctation of the aorta associated with ventricular septal defect.

Actuarial Analysis↗

Tissue-engineered vascular autograft: inferior vena cava replacement in a dog model.

Tissue-engineered vascular autografts (TEVAs) were made by seeding 4-6 x 10(6) of mixed cells obtained from femoral veins of mongrel dogs onto tube-shaped biodegradable polymer scaffolds composed of a polyglycolid acid (PGA) nonwoven fabric sheet and a copolymer of L-lactide and caprolactone (n = 4). After 7 days, the inferior vena cavas (IVCs) of the same dogs were replaced with TEVAs. After 3, 4, 5, and 6 months, angiographies were performed, and the dogs were sacrificed. The implanted TEVAs were examined both grossly and immunohistologically. The implanted TEVAs showed no evidence of stenosis or dilatation. No thrombus was found inside the TEVAs, even without any anticoagulation therapy. Remnants of the polymer scaffolds were not observed in all specimens, and the overall gross appearance similar to that of native IVCs. Immunohistological staining revealed the presence of factor VIII positive nucleated cells at the luminal surface of the TEVAs. In addition, lesions were observed where alpha-smooth muscle actin and desmin positive cells existed. Implanted TEVAs contained a sufficient amount of extracellular matrix, and showed neither occlusion nor aneurysmal formation. In addition, endothelial cells were found to line the luminal surface of each TEVA. These results strongly suggest that "ideal" venous grafts with antithrombogenicity can be produced.

Animals↗

[Cryopreservation of vascular mixed cell for tissue engineering in cardiovascular surgery].

Tissue engineering (TE) is a new discipline that offers the potential to create replacement structures from autologous cells and biodegradable polymer scaffold. Various vascular and valvular grafts have been tried to create with this TE approach. In clinical use of this technique, harvested and cultured cells have to keep viability until implantation as tissue engineered tissue. But few research for cryopreservation of vascular mixed cells has been performed. So, we investigated the proper method for cryopreservation of vascular mixed cells harvested from femoral artery and vein of dogs. Cells were cultured and divide into three groups, A: cryopreserving in 5% dimethylsulfoxide (DMSO), hydroxyethyl starch (HES), and fetal bovine serum (FBS) with -80 degrees C freezer; B: cryopreserving in 10% DMSO and FBS with programmed freezer; C: control (continuous culture in media). After rapid thawing at 40 degrees C, group A showed higher viability than group B with flow cytometry. The results means that vascular mixed cells can be successfully cryopreserved in the DMSO/HES mixture simply and inexpensively, without rate controlled freezing.

Animals↗

Double-Switch operation for congenitally corrected transposition.

Double-switch operation was performed in 76 patients with congenitally corrected transposition of the great arteries at the Heart Institute of Japan, Tokyo Women's Medical University. Detailed surgical techniques of Mustard and Senning procedures for inlet switch, as well as arterial switch operation, pulmonary reconstruction by direct right ventricular-pulmonary arterial anastomosis, and external conduit repair for outlet switch are described in detail.

Adolescent↗

Definite improvement in left ventricular function at six years after the Takeuchi procedure.

We report a case of a six-year-old girl who underwent the Takeuchi procedure for anomalous origin of the left coronary artery from the pulmonary artery at the age of 4 months. The left ventricular function was severely deteriorated before the initial operation and at 6 years after the procedure showed a remarkable improvement. Mitral regurgitation disappeared during the 6 years. The intrapulmonary tunnel was sufficiently patent to provide adequate blood flow for the anomalous coronary artery. This patient showed supravalvular stenosis due to shrinkage and thickening in the equine pericardium used for reconstruction of the pulmonary artery, and this stenosis was successfully released by autologous pericardial patch angioplasty.

Cardiac Surgical Procedures↗

Utility of near-infrared spectroscopic measurements during deep hypothermic circulatory arrest.

BACKGROUND: Near-infrared spectroscopy (NIRS) is used to monitor cerebral oxygenation during cardiac surgery. However, interpretation of the signals is controversial. The aim of the study was to determine which NIRS variable best correlated with brain damage as assessed by animal behavior and neurohistologic score and to compare the accuracy of NIRS and magnetic resonance spectroscopy (MRS) in predicting brain injury. METHODS: Forty 5-week-old piglets underwent 60 minutes of deep hypothermic circulatory arrest (DHCA) at 15 degrees C. Changes in brain adenosine triphosphate (ATP), phosphocreatine (PCr), and intracellular pH (pHi) were determined by MRS and correlated to changes in oxygenated hemoglobin (HbO2), deoxygenated hemoglobin (Hb), and oxidized cytochrome a,a3 (CytOx) NIRS signals. Brains were fixed on day 4 and examined using a neurohistologic score. RESULTS: Reductions in CytOx and HbO2 values were correlated closely with decreases in ATP, PCr, and pHi. The changes in CytOx and PCr showed the strongest correlation (r = 0.623). Maximal CytOx reduction during DHCA of more than -25 microM * differential pathlength factor (DPF) predicted brain damage with a sensitivity of 100% and a specificity of 75%. The histologic score was also correlated with a decrease in ATP (r = -0.52 for CytOx; r = -0.32 for ATP); HbO2, PCr, and pHi showed no correlations. CONCLUSIONS: Reduction in CytOx correlates with decreased brain energy state and predicts histologic brain injury after DHCA with a high sensitivity. These data suggest that the level of CytOx could be a very important predictor of brain damage during DHCA.

Adenosine Triphosphate↗

[Pulmonary outflow tract reconstruction with autologous tissue during the Ross procedure: right ventricular characteristics in mid-term follow-up].

BACKGROUND: The Ross procedure requires the interposition of prosthetic or homograft extracardiac conduits to establish ventricle-pulmonary artery connection (RV-PA). These materials usually require multiple reoperations because of conduit failure. To avoid the re-replacement of currently available conduits, usage of autologous tissue may be preferable to reconstruct RV-PA connection during the Ross procedure, especially in the pediatric age group. METHOD: Ten patients (mean age 8.7 years, range 2-23) with congenital aortic valve disease underwent the Ross procedure between June, 1996 and July, 1998. To establish RV-PA continuity, autologous aortic wall including aortic valve with a gusset of pericardial tissue was used in six patients, rolled pericardial conduit with fresh pericardial bicuspid valve in three and one direct anastomosis of pulmonary posterior wall onto the right ventricle with a fresh pericardial monocusp valved patch. All patient's postoperative courses were uneventful. All patients were followed up (mean follow-up period: 21.6 +/- 6.6 months) and postoperative right ventricular characteristics, cardio-thoracic ratio (CTR) on chest X-ray and pulmonary valve function were evaluated. RESULTS: Postoperative right ventricular end-diastolic volume, right ventricular ejection fraction and right ventricular end-diastolic pressure did not change significantly (RVEDV: 128 to 113% of normal, RVEF: 56.4 to 51.5%, RVEDP: 5.9 to 10.1 mmHg). Pulmonary regurgitation during follow-up was mild in six patients and moderate in four. However, CTR decreased significantly over time (preop.: 56.5% postop.: 58.5%, late period: 53.4%). CONCLUSION: Our results support the concept of the reconstruction of pulmonary outflow tract without foreign materials during the Ross procedure. Longer follow-up are necessary to define the possible limitation of this technique.

Adult↗

[Cerebral oxygenation during non-blood prime cardiopulmonary bypass in congenital heart surgery].

To analyze oxygen delivery to the brain and cerebral cellular oxygenation during non-blood prime and blood prime cardiopulmonary bypass (CPB), 22 patients undergoing cardiac surgery with CPB were studied by near infrared spectroscopy (NIRS) monitor (NIRO 500, Hamamatsu Photonics). NIRS can assess continuously cytochrome oxidase (Cyt.aa 3) which is the terminal enzyme of the intramitochondrial respiratory chain. Patients were grouped according to conditions of CPB management: one group underwent repair with non-blood prime (group A, n = 12); the second group underwent with blood prime (group B, n = 10). Body weights ranged from 5.5 kg to 58 kg in group A, and 2.9 kg to 16 kg respectively. CPB was maintained at flow rates between 100 to 150 ml/kg/min. and the acid-base management strategy was alpha stat in all patients. No neurological complication was observed. NIRS date were expressed as changes from baseline where cannulation was prepared. The lowest value of Cyt.aa 3 was -2.7 +/- 0.7 mumol/l in the group A, and -3.9 +/- 1.0 mumol/l in the group B. From the standpoint of changes in Cyt.aa 3, non-blood prime cases we studied were speculated to be within a safety limit. In order to define the definite safety limits, however, further studies including the reduction velocity of Cyt.aa 3 signal as well as the absolute value of the lowest Cyt.aa 3 concentration are required.

Brain↗

[Heparin monitoring during cardiopulmonary bypass in congenital heart surgery].

The Hepcon/HMS system automatically provides the activated clotting time and a whole blood heparin concentration. It also provides the adequate protamine dose by titration of protamine to heparin. 45 patients undergoing congenital heart surgery with cardiopulmonary bypass (CPB) were studied by the Hepcon/HMS device. We measured the heparin dose response before heparin administration, and the ration between the dose of protamine (ml) which was necessary for heparin neutralization at the termination of CPB and the dose of total heparin (ml) in each patient. The value of heparin dose response ranged 120-390 (mean 228) IU/kg. The ratio between protamine dose and heparin dose varied 0.11-0.99 (mean 0.55). There was a statistically significant correlation between the duration of CPB and this ratio (r = -0.51, n = 45, p = 0.0005). From the standpoint of variances in the value of heparin dose response, conventional way of the heparin administration according to the patient's body weight alone may cause inadequacy of anticoagulation during CPB. A dose of protamine determined by Hepcon device that is smaller than a conventional dose of protamine prevents inadvertent overdose and, therefore, can reduce the adverse effects excessive protamine has.

Adolescent↗

Oxygenation strategy and neurologic damage after deep hypothermic circulatory arrest. I. Gaseous microemboli.

OBJECTIVES: Recent studies suggest that myocardial reperfusion injury is exacerbated by free radicals when pure oxygen is used during cardiopulmonary bypass. Partial replacement of the oxygenator gas mixture with nitrogen, however, such as has already been adopted clinically in many centers, could increase the risk of gaseous nitrogen microembolus formation and therefore of brain damage because of the low solubility of nitrogen, particularly under conditions of hypothermia. METHODS: Ten 7- to 10-kg piglets were cooled for 30 minutes to 15 degrees C on cardiopulmonary bypass and then rewarmed for 40 minutes to 37 degrees C. In 5 piglets cardiopulmonary bypass was normoxic and in 5 it was hyperoxic. In each group 3 bubble oxygenators without arterial filters and 2 membrane oxygenators with filters were used. Cerebral microemboli were monitored continuously by carotid Doppler ultrasonography (8 MHz) and intermittently by fluorescence retinography. RESULTS: Embolus count was greater with lower rectal temperature (P <.001), use of a bubble oxygenator (P <.001), and lower oxygen concentration (P =.021) but was not affected by the temperature gradient between blood and body during cooling or rewarming. CONCLUSIONS: Gaseous microemboli are increased with normoxic perfusion, but this is only important if a bubble oxygenator without a filter is used.

Animals↗

Oxygenation strategy and neurologic damage after deep hypothermic circulatory arrest. II. hypoxic versus free radical injury.

OBJECTIVES: Laboratory studies suggest that myocardial reperfusion injury is exacerbated by free radicals when pure oxygen is used during cardiopulmonary bypass. In phase I of this study we demonstrated that normoxic perfusion during cardiopulmonary bypass does not increase the risk of microembolic brain injury so long as a membrane oxygenator with an arterial filter is used. In phase II of this study we studied the hypothesis that normoxic perfusion increases the risk of hypoxic brain injury after deep hypothermia with circulatory arrest. METHODS: With membrane oxygenators with arterial filters, 10 piglets (8-10 kg) underwent 120 minutes of deep hypothermia and circulatory arrest at 15 degrees C, were rewarmed to 37 degrees C, and were weaned from bypass. In 5 piglets normoxia (PaO2 64-181 mm Hg) was used during cardiopulmonary bypass and in 5 hyperoxia (PaO2 400-900 mm Hg) was used. After 6 hours of reperfusion the brain was fixed for histologic evaluation. Near-infrared spectroscopy was used to monitor cerebral oxyhemoglobin and oxidized cytochrome a,a3 concentrations. RESULTS: Histologic examination revealed a significant increase in brain damage in the normoxia group (score 12.4 versus 8.6, P =.01), especially in the neocortex and hippocampal regions. Cytochrome a,a 3 and oxyhemoglobin concentrations tended to be lower during deep hypothermia and circulatory arrest in the normoxia group (P =.16). CONCLUSIONS: In the setting of prolonged deep hypothermia and circulatory arrest with membrane oxygenators, normoxic cardiopulmonary bypass significantly increases histologically graded brain damage with respect to hyperoxic cardiopulmonary bypass. Near-infrared spectroscopy suggests that the mechanism is hypoxic injury, which presumably overwhelms any injury caused by increased oxygen free radicals.

Animals↗

A novel sialyl Lewis X analog attenuates cerebral injury after deep hypothermic circulatory arrest.

BACKGROUND: The initial step in the inflammatory process, which can be initiated by cardiopulmonary bypass and by ischemia/reperfusion, is mediated by interactions between selectins on endothelial cells and on neutrophils. We studied the effects of selectin blockade using a novel Sialyl Lewis X analog (CY-1503) on recovery after deep hypothermic circulatory arrest in a piglet model. METHODS: Twelve Yorkshire piglets were subjected to cardiopulmonary bypass, 30 minutes of cooling, 100 minutes of circulatory arrest at 15 degrees C, and 40 minutes of rewarming. Five animals received a bolus of 60 mg/kg of CY-1503 and an infusion (3 mg/kg per hour) for 24 hours from reperfusion (group O), and 7 randomly selected control piglets received saline solution (group C). Body weight and total body water content were evaluated 3 hours and 24 hours after reperfusion by a bio-impedance technique. Neurologic recovery of animals was evaluated daily by neurologic deficit score (0 = normal, 500 = brain death) and overall performance categories (1 = normal, 5 = brain death). The brain was fixed in situ on the fourth postoperative day and examined by histologic score (0 = normal, 5+ = necrosis) in a blinded fashion. RESULTS: Two of 7 animals in group C died. The neurologic deficit score was significantly lower in group O than in group C (postoperative day 1, P <.001; postoperative day 2, P =.02). The overall performance category was significantly lower in group O than in group C on postoperative day 2 (P =.01). Percentage total body water after cardiopulmonary bypass was significantly higher in group C than in group O (P =.03). Histologic score tended to be higher in group C than in group O, but this difference did not reach statistical significance (group O = 0.5 +/- 0.7; group C = 1.3 +/- 1.off CONCLUSION: Blockade of selectin adhesion molecules by saturation with a Sialyl Lewisx analog accelerates recovery after 100 minutes of deep hypothermic circulatory arrest in a piglet survival model.

Animals↗

High-volume continuous hemofiltration during cardiopulmonary bypass attenuates pulmonary dysfunction in neonatal lambs after deep hypothermic circulatory arrest.

BACKGROUND: Cardiopulmonary bypass (CPB) induces an inflammatory reaction that activates neutrophils and releases free radicals in tissue. Ischemia-reperfusion further aggravates inflammation. Hemofiltration (HF) could potentially remove inflammatory mediators and reduce injury. This study assessed the effect of continuous high-volume HF during CPB on systemic edema formation and pulmonary function after deep hypothermic circulatory arrest (DHCA). METHODS AND RESULTS: Anesthetized lambs (n = 16) underwent CPB with systemic cooling (40 minutes), DHCA (120 minutes at 18 degrees C), and rewarming (40 minutes). All animals were weaned from CPB and observed for 3 hours after reperfusion. Continuous HF was used in 8 lambs at a flow rate of 300 mL/kg per hour throughout CPB, simultaneously replacing hemofiltration volume with a balanced salt solution (HF group). In 8 control animals, no hemofiltration was performed. Hematocrit remained at 23% to 25% during the experiment in both groups. Pulmonary vascular resistance (PVR), lung dynamic compliance (Cdyn), alveolar-arterial oxygen difference (AaDO2), and total body water content (bioimpedance) were measured. Malondialdehyde (MDA), a product of lipid peroxidation, was assayed in lung tissue. Percent increase of body water content at 180 minutes of reperfusion was significantly lower in the HF group than in control (132 +/- 2% vs 152 +/- 5%, P < 0.005). There was less of a rise in PVR compared with baseline at 180 minutes of reperfusion in the HF group than in control (131 +/- 8% vs 238 +/- 26%, P < 0.005). In addition, percent recovery of Cdyn and AaDO2 in the HF group was preserved significantly (respectively, P < 0.05) 2 hours after reperfusion than in the control group. Lung tissue MDA in the HF group (46.2 +/- 12.6 vs 65.3 +/- 17.1 nmol/L per gram of tissue, P < 0.05) was significantly lower than in the control group. CONCLUSIONS: High-volume, continuous hemofiltration during CPB attenuates systemic edema formation, pulmonary hypertension, the extent of lung dysfunction, and depression of cardiac output and reduces free radical-mediated tissue injury after CPB with DHCA. This technique may have a clinical application to reduce the morbidity rate of CPB.

Animals↗

Effects of a monoclonal antibody to P-selectin on recovery of neonatal lamb hearts after cold cardioplegic ischemia.

BACKGROUND: The interaction between endothelium and leukocytes plays a crucial role in ischemia-reperfusion injury. P-selectin, which is expressed on activated endothelium, mediates the first step in leukocyte adherence to the endothelium. This study examined the effects of a monoclonal antibody (mAb) against P-selectin on the recovery of cardiac function and myocardial neutrophil infiltration after ischemia. METHODS AND RESULTS: Thirteen blood-perfused, isolated neonatal lamb hearts underwent 2 hours of hypothermic cardioplegic arrest and 2 hours of reperfusion. Immediately before reperfusion, mAb to P-selectin was administered to the perfusate (15 micrograms/mL) in 6 hearts (group P-sel). In control (n = 7), the same volume of saline was added. Isovolumic left ventricular function and coronary blood flow were measured. At 2 hours after reperfusion, myocardial myeloperoxidase activity, an index of neutrophil accumulation, was assayed. At 30 minutes of reperfusion, hearts treated with mAb to P-selectin achieved significantly greater recovery of maximum developed pressure (70 +/- 4% in control versus 77 +/- 2% in group P-sel, P < 0.01), maximum positive first derivative of pressure (dP/dt) (64 +/- 7% in control versus 73 +/- 5% in group P-sel, P < 0.05), and maximum negative dP/dt (61 +/- 6% in control versus 70 +/- 6% in group P-sel, P < 0.05) compared with control. Percent baseline of coronary blood flow was also significantly increased in group P-sel (135 +/- 40% in control versus 205 +/- 43% in group P-sel, P < 0.05). Myocardial myeloperoxidase activity was significantly lower (P < 0.05) in group P-sel (4.7 +/- 3.2) versus control (16.0 +/- 10.1). (Units are change in absorbance/min/g tissue.) CONCLUSIONS: The functional blockade of P-selectin resulted in better recovery of cardiac function and attenuated neutrophil accumulation during early reperfusion. Strategies to block P-selectin mediated neutrophil adherence may have clinical application in improving myocardial function at early reperfusion.

Animals↗