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Biomedical subjects

H Shennib

Publications and source records attributed to H Shennib.

At least 19 recordsLinked to original sources

Successful retrieval and function of lungs from non-heart-beating donors.

BACKGROUND: Lung transplantation has been used effectively as a therapeutic tool in end-stage pulmonary diseases, but organ shortages have restricted its use. There is growing interest in alternative organ sources such as organs from circulation-arrested cadavers, so called non-heart-beating donors. METHODS: We examined the effects of postmortem rapid in situ cadaver lung cooling by bilateral chest cavity flushing (group 2) and by pulmonary artery flush through right heart catheterization followed by pleural cavity flushing (group 3) on pulmonary function and morphology in a rabbit non-heart-beating donor model. The results were compared with those in a control group of heart-beating donors (group 1). RESULTS: At the end of a 2-hour reperfusion period, there were no significant differences in mean pulmonary artery pressure, pulmonary vascular resistance, pulmonary compliance, arteriovenous oxygen, pulmonary wet to dry weight ratio, and lung morphology between the three groups. CONCLUSIONS: Our study demonstrates that using bilateral chest cavity flushing with or without pulmonary flush protects the function and morphology of cadaver lungs and renders them suitable for lung transplantation.

Animals↗

Nitric oxide system in needle-induced transmyocardial revascularization.

BACKGROUND: Nitric oxide (NO) promotes endothelial proliferation and migration, essential for angiogenesis. The purpose of this study was to determine the cellular expression of inducible and endothelial nitric oxide synthases (iNOS and eNOS) in an ischemic cardiomyopathy animal model of needle-induced transmyocardial revascularization (TMR). METHODS: Myocardial infarction was created in rats by ligating the left coronary artery, and animals were divided into two groups: no-TMR group (served as control) and TMR group (underwent concomitant TMR by the creation of six transmural channels with a 25-gauge needle in the ischemic area). Rats were sacrificed at intervals of 1, 2, 4, and 8 weeks. Immunohistochemistry using specific antisera was performed for iNOS, eNOS, and endothelial cell marker factor VIII. Vascular density and positive staining area with either iNOS or eNOS were assessed in the infarcted myocardium. RESULTS: Vascular density in the infarcted myocardium was significantly increased in the TMR group (p < 0.001). The positive staining area for iNOS and the intensity of iNOS immunoreactivity in cardiomyocytes, vascular endothelium, and macrophages were significantly greater in the TMR group (p < 0.05). However, these differences were seen only in the first 2 weeks after TMR. There was no significant difference in the expression of eNOS between groups. CONCLUSIONS: A mechanical injury using needle puncture in an ischemic myocardium increased vascular density and is associated with increased expression of myocardial iNOS. Increased production of NO derived from iNOS may contribute to the angiogenic response of TMR.

Animals↗

Effect of endothelin receptor antagonist on lung allograft apoptosis and NOSII expression.

BACKGROUND: It is postulated that apoptosis contributes to ischemia-reperfusion graft dysfunction after lung transplantation. The purpose of this study was to determine whether the improvement in lung function that we previously observed with the use of an endothelin-1 (ET-1) receptor antagonist after ischemia-reperfusion injury is associated with a reduction in inducible nitric oxide synthase (NOSII) expression and programmed cell death. METHODS: Left lung canine allotransplantation was performed. Harvested lung blocks were preserved with modified Eurocollins solution and stored at 4 degrees C for 18 to 20 hours. Lung allografts were tested for the expression of NOSII by immunohistochemistry, and extent of apoptosis by terminal dUTP nick end-labeling (TUNEL). Animals blindly received either an intravenous infusion of saline (control) or the ET-1 receptor antagonist (SB209670) (15 microg/kg/min). Infusion began 30 minutes pretransplantation and continued to 6 hours posttransplantation. RESULTS: Immunohistochemical analysis demonstrated significantly stronger NOSII immunostaining in the allografts of the saline control group (36.5%+/-3.6%) compared with native right lungs (6.9%+/-1.3%, p < 0.001) or the ET-receptor antagonist treatment group (9.6%+/-1.4%, p < 0.001). The TUNEL staining revealed a significantly stronger labeling in the allografts of the saline treatment control group (40.7%+/-6.2%) compared with native right lungs (5.0%+/-0.6%, p < 0.005) or the ET receptor antagonist treatment group (14.1%+/-2.8%, p < 0.01). CONCLUSIONS: We conclude that treatment of lung allografts with the ET-1 receptor antagonist SB209670 reduces the area of NOSII expression and the extent of apoptosis, factors known to contribute to the process of prolonged ischemia-reperfusion injury.

Animals↗

Inhibition of cyclooxygenase-2 improves cardiac function in myocardial infarction.

Induction of cyclooxygenase-2 (COX-2) in ischemic myocardium is thought to increase the production of proinflammatory prostanoids and contribute significantly to the ischemic inflammation. Left ventricular myocardial infarction (MI) was created by ligating the left coronary artery in Lewis rats. Hemodynamic measurements at 4 weeks showed better cardiac function in the group treated with a selective COX-2 inhibitor (DFU; 5 mg/kg/day) for 2 weeks after induction of MI compared to the vehicle treated group. These results suggest that induction of COX-2 contributes to myocardial dysfunction, and that selective inhibition of COX-2 could constitute an important therapeutic target for the treatment of MI.

Animals↗

An automated interrupted suturing device for coronary artery bypass grafting: automated coronary anastomosis.

BACKGROUND: The purpose of this study was to have a preliminary assessment of the safety and efficacy of an automated vascular suturing device. METHODS: The device (Heartflo, Perclose/Abbott Labs, Redwood City, CA), which delivers 10 interrupted 7-0 polypropylene sutures between side-to-side arteriotomies, was evaluated in animals (8 Yorkshire pigs). RESULTS: Tissue edge capture and quality of anastomosis were highly rated. Time of anastomoses averaged 22 minutes. This time was prolonged primarily due to suture management, tying of interrupted sutures, and learning curve effects. Six of the anastomoses were hemostatic and two required an additional stitch each. Angiography and histology of the anastomosis confirmed patency and quality of the anastomosis. CONCLUSIONS: Our preliminary results indicate that the Heartflo automated anastomotic device is safe and effective. Preclinical and clinical studies to validate its acute and long-term effectiveness will commence shortly.

Anastomosis, Surgical↗

Right heart circulatory support facilities coronary artery bypass without cardiopulmonary bypass.

BACKGROUND: Revascularization of the posterior wall often causes hemodynamic instability in beating heart coronary artery bypass (CAB). Our previous clinical studies have shown that tilting the heart primarily alters right-heart hemodynamics. The purpose of this study was to evaluate right-heart support in clinical cases. METHODS: Seventeen patients underwent beating heart CAB with right-heart support. The right-heart support system (A-Med Systems, West Sacramento, CA) consisted of a coaxial cannula placed through the right atrium and the tip of the cannula positioned in main pulmonary artery. Blood was removed from the right atrium and returned to the main pulmonary artery. RESULTS: Elective beating heart CAB was accomplished successfully in 17 patients with right-heart support. Anastomoses performed were left anterior descending coronary artery (11), diagonal (3), circumflex (5), obtuse marginal artery (11), and right coronary artery (10). Right-heart support between 1 and 3 L/min improved hemodynamics especially in the circumflex position. No device-related patient incidents occurred, nor were there incidents of infection or air embolism. All 17 patients were discharged to their homes. CONCLUSIONS: The right-heart support system was safe without complications. Exposure of the posterior wall was possible in all cases without hemodynamic compromise.

Aged↗

Endothelin receptor antagonist SB209670 decreases lung allograft apoptosis and improves lung graft function after prolonged ischemia.

Apoptosis has been postulated as a contributing factor in ischemia-reperfusion graft dysfunction following lung transplantation. The purpose of this study was to determine whether treatment with an endothelin-A/endothelin-B- (ET(A)/ET(B)) receptor antagonist could reduce the level of apoptosis observed in the lung following ischemia-reperfusion injury. Eleven dogs were subjected to left lung allotransplantation. Heart-lung blocks were harvested from donor dogs and preserved with modified Eurocollins solution and stored at 4 degrees C for 18 to 20 h. We investigated the level of apoptosis by terminal deoxynucleotidyl transferase-mediated dUTP nick end-labeling (TUNEL), in the lungs of animals receiving an intravenous infusion of saline (control, n = 5) or the ET receptor antagonist SB209670 (n = 6) (15 microg/kg/min). The infusion began 30 min prior to transplantation and continued for up to 6 h thereafter. The TUNEL staining was significantly higher in the airway epithelium and the parenchyma of the saline (control) group (40.67 +/- 6.16), compared with native right lungs (5.00 +/- 0.56) and the treatment group (14.13 +/- 2.84). We conclude that treatment of lung allografts with the mixed ET(A)/ET(B)-receptor antagonist SB209670 can ameliorate lung injury by reducing the level of apoptosis seen in the allograft following ischemia-reperfusion injury.

Animals↗

Coronary artery bypass grafting on the beating heart: a simple technique for subluxating the heart.

Coronary artery bypass grafting on the beating heart is becoming a widely applied procedure. It necessitates proper cardiac stabilization without impairment of hemodynamics. We describe a simple and effective technique to bring the anterolateral coronary arteries to a midline position for the purpose of performing a coronary artery bypass graft on the beating heart. A surgical glove tied to a tube is positioned underneath the left ventricle. Injection of warm saline into the glove will gradually displace the heart and rotate the lateral wall of the ventricle to a midline position. In spite of our use of mechanical stabilizers to decrease mobility of the anastomotic site, compression of the left ventricle is avoided because the water bed created by the injected glove absorbs the movement of the left ventricle and prevents its compression and any potential drop in cardiac output.

Coronary Artery Bypass↗

Robotic computer-assisted telemanipulation enhances coronary artery bypass.

OBJECTIVES: Totally endoscopic coronary artery bypass grafting depends greatly on perfecting the anastomosis. We tested a new computer-assisted telemanipulation robot (Intuitive Surgical Inc, Mountain View, Calif) in performing endoscopic coronary bypass. METHODS: On-bench anastomoses of the porcine arterial graft to the left anterior descending coronary artery were performed with both direct visualization and conventional surgical instruments (group I), endoscopic 3-dimensional visualization and current endoscopic surgical instruments (group II), direct visualization and endoscopic instruments (group III), 3-dimensional endoscopic visualization and conventional surgical instruments (group IV), and telemanipulation robotic with 3-dimensional endoscopic visualization (group V). Anastomoses (n = 6 in each group) were assessed for time (minutes), quality (good = 3, fair = 2, poor = 1), technical difficulty (easy-difficult: 1-4), and patency (100% = 1, >50% = 2, <50% = 3). RESULTS: Anastomotic time was significantly longer in groups II and III than in groups IV and V (P </=.02). Patency was comparable in all groups. CONCLUSION: Telemanipulation technology may enhance the performance of totally endoscopic coronary artery anastomosis. The facility and time of an Intuitive telemanipulation anastomosis is comparable with that of a conventional anastomosis created under direct vision.

Anastomosis, Surgical↗

Sublobar resection for lung cancer.

The role of limited lung resection 'segmentectomy and wedge resection' in the treatment of lung cancer has been reviewed. Survival for patients with stage I lung cancer and lesions less than 2 cm is comparable to that of major resections such as lobectomy. The theoretical advantage of limited resection is the simplicity of the procedure and the potential for performing it through lesser invasive techniques. The major drawback at this time which should render it a compromise rather than a choice operation is the increased risk of locoregional recurrence. Until properly conducted clinical trials validate its efficacy in peripheral T1 lung cancer with or without adjuvent therapy, sublobar resection should be limited to patients that are at poor risk of tolerating major lung resection. Sublobar resections however may also play a useful role in treatment of metachronous or synchronous lung cancer.

Adenocarcinoma↗

Maximal exercise capacity and peripheral skeletal muscle function following lung transplantation.

BACKGROUND: There have been many suggestions that diminished exercise capacity in patients that have undergone lung transplantation is due, in part, to peripheral muscle dysfunction, brought on by either detraining or immunosuppressive therapy. There is limited data quantifying skeletal muscle function in this population, especially in those more than 18 months post-procedure. The present study sought to quantitate skeletal muscle function and cardiopulmonary responses to graded exercise in 19 lung transplant recipients, 15 of which were mostly more than 18 months post-procedure. METHODS: Ten single- (SLT) and 9 double-lung transplantation (DLT) underwent anthropometric measures and performed expiratory spirometry, whole body plethysmography to assess lung volumes, static maximal mouth pressures to assess respiratory muscle strength, progressive exercise testing on a cycle ergometer (with cardiac output measurements being performed every second workload) and isokinetic cycling to assess peripheral muscle power and work capacity. RESULTS: The DLT group was younger than the SLT group (23.0 [21.0-32.0] vs 47.5 [43.0-55.0] median [interquartile range], p < .05) with no differences in height, weight, or BMI. Despite the DLT group having significantly better spirometric values (FEV1: 86% vs 56.5% median) and less airtrapping (RV/TLC: 30% vs 53.5%), both groups were equally limited in exercise capacity (Wmax)(38.0 percent predicted [30.0-65.0] vs 37.5 percent predicted [30.0-44.0], SLT vs DLT), leg power (76.1 percent predicted [53.8-81.4] vs 69.0 percent predicted [58.3-76.0]) and leg work capacity (63.3 percent predicted [34.7-66.8] vs 38.4 percent predicted [27.5-57.3]). This lack of difference in performance persisted when the analysis was limited to those more than 18 months post-procedure. Respiratory muscle strength was also not different for the two groups, and was within normal limits. Wmax was best correlated with leg work capacity (r = .84), but also with leg power, RV/TLC, FEV1 (r = .49, -.52, .58). When normalized for age, height, and sex, percent predicted Wmax only correlated with percent predicted leg work capacity (r = .58). Cardiac output was appropriate for the work performed. CONCLUSIONS: We conclude that peripheral skeletal muscle work capacity is reduced following lung transplantation and mostly responsible for the limitation of exercise performance. While the causes of muscular dysfunction have yet to be clarified, the preservation of respiratory muscle strength with the concomitant reduction in leg power and work capacity suggests that most of the muscular dysfunction post-transplantation is attributable to detraining.

Adult↗

Tools for precision enhancement in minimally invasive cardiac surgery: three dimensional visualization, computer enhancement and robotics.

This article is a current update of the rationale for development of new enabling technologies in minimally invasive cardiac surgery. Specifically the potential advantages of three dimensional visualization, computer enhancement technology and robotics in performance of totally endoscopic coronary artery bypass grafts will be addressed.

Computer Systems↗

Endothelin receptor antagonist improves pulmonary hemodynamics during lung ischemia/reperfusion injury.

BACKGROUND: We have previously shown that elevated release of endothelin-1 is associated with increased pulmonary vascular resistance (PVR) immediately after reperfusion of the transplanted lung. In the present study, we investigated the effect of ET receptor blockage on pulmonary hemodynamics and function in an ex vivo lung reperfusion model after 6 hr of cold ischemia. METHODS: Eighteen rabbits were divided into three groups: no ischemia followed by 3 hr of reperfusion (group I) and 6 hr of cold ischemia followed by 3 hr of reperfusion with either blood (group II) or blood + SB209670 (mixed ETA/ETB receptor antagonist) (group III). RESULTS: Shortly after reperfusion, mean pulmonary artery pressure, PVR, and pulmonary edema were increased, and pulmonary compliance and PO2 were decreased in group II compared with group I. Treatment with SB209670 resulted in a significant decrease in mean pulmonary artery pressure, PVR, and pulmonary edema, and improvement in pulmonary compliance and PO2. CONCLUSION: The data suggest an important role for ET-1 in lung ischemia/reperfusion injury and that the use of ET receptor antagonist immediately after transplantation may provide a new therapeutic tool in the management of early graft dysfunction.

Animals↗

Computer-assisted telemanipulation: an enabling technology for endoscopic coronary artery bypass.

BACKGROUND: The ultimate objective of minimally invasive coronary artery bypass grafting is to perform the anastomosis totally endoscopically. In this feasibility study, we examined the potential of performing coronary artery bypass grafting with the use of computer-assisted telemanipulation technology. METHODS: Intuitive Telemanipulation Technology (Intuitive Surgical, Mountain View, CA) was used to perform an arterial graft to left anterior descending coronary artery anastomosis in an ex vivo on-bench swine heart model. The degree of difficulty in performing the anastomosis, intraoperative events, duration of the anastomosis, and its quality were determined. RESULTS: Anastomosis was performed with relative facility, in a range of 10.7 to 17.4 minutes (mean +/- standard deviation, 14.6 +/- 2.6 minutes). All anastomoses were patent and of good quality except one, which had 30% narrowing of its heel. CONCLUSIONS: We conclude that Intuitive Telemanipulation Technology may in the future permit the performance of quality totally endoscopic coronary artery anastomosis with facility and acceptable time.

Anastomosis, Surgical↗