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Biomedical subjects

J A Kern

Publications and source records attributed to J A Kern.

At least 19 recordsLinked to original sources

Outcome of adult umbilical cord blood transplant patients admitted to a medical intensive care unit.

Umbilical cord blood transplant (UCBT) has emerged as an alternate source of stem cells for transplantation in patients with hematologic malignancies. However, outcomes of adult UCBT patients requiring ICU admission remain unknown. In order to identify predictors of ICU transfer and mortality in UCBT patients, the course and outcome of all adult (> or = 16 years old) patients who underwent UCBT between 1 January 1998 and 31 December 2003 at University Hospitals of Cleveland were analyzed. Forty-four patients underwent UCBT during the study period and 25 (57%) required ICU transfer. Use of a myeloablative preparative regimen was a significant predictor of ICU transfer (P = 0.03). An infusion of higher numbers of nucleated cells was protective from ICU transfer (P = 0.05). For those patients transferred to the ICU, mortality was 72%. The univariate predictors of mortality, at the time of ICU admission were a high APACHE III score (P = 0.0004), use of vasopressors (P = 0.03), and a low platelet count (P = 0.03). We conclude that transfer of UCBT patients to an ICU may be predicted by their preparative regimen, while ICU mortality may be predicted by physiologic parameters upon admission.

APACHE↗

Acute lung injury augments hypoxic ventilatory response in the absence of systemic hypoxemia.

The objective of the present study was to examine the impact of early stages of lung injury on ventilatory control by hypoxia and hypercapnia. Lung injury was induced with intratracheal instillation of bleomycin (BM; 1 unit) in adult, male Sprague-Dawley rats. Control animals underwent sham surgery with saline instillation. Five days after the injections, lung injury was present in BM-treated animals as evidenced by increased neutrophils and protein levels in bronchoalveolar lavage fluid, as well as by changes in lung histology and computed tomography images. There was no evidence of pulmonary fibrosis, as indicated by lung collagen content. Basal core body temperature, arterial Po(2), and arterial Pco(2) were comparable between both groups of animals. Ventilatory responses to hypoxia (12% O(2)) and hypercapnia (7% CO(2)) were measured by whole body plethysmography in unanesthetized animals. Baseline respiratory rate and the hypoxic ventilatory response were significantly higher in BM-injected compared with control animals (P = 0.003), whereas hypercapnic ventilatory response was not statistically different. In anesthetized, spontaneously breathing animals, response to brief hyperoxia (Dejours' test, an index of peripheral chemoreceptor sensitivity) and neural hypoxic ventilatory response were augmented in BM-exposed relative to control animals, as measured by diaphragmatic electromyelograms. The enhanced hypoxic sensitivity persisted following bilateral vagotomy, but was abolished by bilateral carotid sinus nerve transection. These data demonstrate that afferent sensory input from the carotid body contributes to a selective enhancement of hypoxic ventilatory drive in early lung injury in the absence of pulmonary fibrosis and arterial hypoxemia.

Acute Disease↗

Mouse spinal cord compression injury is reduced by either activation of the adenosine A2A receptor on bone marrow-derived cells or deletion of the A2A receptor on non-bone marrow-derived cells.

Activation of the adenosine A(2A) receptor (A(2A)R) at the time of reperfusion has been shown to reduce ischemia-reperfusion injury in peripheral tissues and spinal cord. In this study we show that treating mice with the A(2A)R agonist, 4-{3-[6-amino-9-(5-cyclopropylcarbamoyl-3,4-dihydroxy-tetrahydro-furan-2-yl)-9H-purin-2-yl]-prop-2-ynyl}-piperidine-1-carboxylic acid methyl ester for four days beginning before or just after the onset of reperfusion after compression-induced spinal cord injury rapidly (within 1 day) and persistently (>42 days) reduces locomotor dysfunction and spinal cord demyelination. Protection is abolished in knockout/wild type bone marrow chimera mice selectively lacking the A(2A)R only on bone marrow-derived cells but retaining receptors on other tissues including blood vessels. Paradoxically, reduced spinal cord injury is also noted in A(2A)R -/- mice, and in wild type/knockout bone marrow chimera mice selectively lacking the A(2A)R on non-bone marrow-derived cells, or in mice treated with the A(2A) antagonist, 4-(2-[7-amino-2-[2-furyl][1,2,4]triazolo[2,3-a][1,3,5]triazin-5-yl-amino]ethyl)phenol. The greatest protection is seen in knockout/wild type bone marrow chimera mice treated with 4-{3-[6-amino-9-(5-cyclopropylcarbamoyl-3,4-dihydroxy-tetrahydro-furan-2-yl)-9H-purin-2-yl]-prop-2-ynyl}-piperidine-1-carboxylic acid methyl ester, i.e. by activating the A(2A)R in mice expressing the receptor only in bone marrow-derived cells. The data suggest that inflammatory bone marrow-derived cells are the primary targets of A(2A) agonist-mediated protection. We conclude that A(2A) agonists or other interventions that inhibit inflammation during and after spinal cord ischemia may be effective in reducing spinal cord injury in patients, but excessive or prolonged stimulation of the A(2A)R may be counterproductive. It may be possible to devise strategies to produce optimal spinal cord protection by exploiting temporal differences in A(2A)R-mediated responses.

Adenosine A2 Receptor Agonists↗

Primary sarcoma of the distal abdominal aorta: CT angiography findings.

Primary aortic angiosarcomas are extremely rare. Clinically and radiographically, they mimic atherosclerosis and atheroembolic disease. For a definitive diagnosis, histologic evaluation of the tumor or of peripheral emboli is required. The imaging findings are frequently nonspecific and in most published cases did not allow a definitive preoperative diagnosis. This is the first report of the computed tomographic angiographic findings of a primary intimal abdominal aortic sarcoma and a review of previously described imaging findings in these tumors.

Aorta, Abdominal↗

When to discontinue extracorporeal membrane oxygenation for postcardiotomy support.

BACKGROUND: Extracorporeal membrane oxygenation (ECMO) has demonstrated limited success in adult postcardiotomy shock. The goal of this study was to determine when to discontinue ECMO for postcardiotomy support. METHODS: During a 7-year period ECMO was used in 51 postcardiotomy patients, of whom 16 (31%) weaned and 8 (16%) survived. RESULTS: Patients in the heart transplant group were more likely to wean compared with patients in the non-heart transplant group (p = 0.03). Patients aged greater than 65 years (p = 0.04) or with ejection fractions of less than 30% after 48 hours of ECMO (p < 0.001) were less likely to wean. Time on ECMO was significantly longer for survivors in the heart transplant group (101.3 +/- 7.5 hours) compared with survivors in the non-heart transplant group (28.3 +/- 11.9 hours, p < 0.001). CONCLUSIONS: After 48 to 72 hours, consideration should be given to discontinuing ECMO, either by moving to an implantable ventricular assist device or by withdrawal of support, except in those patients with heart transplants. In the latter, both severe postoperative pulmonary hypertension and reperfusion injury may take as long as 120 hours to reverse.

Adult↗

Pulmonary macrophages are involved in reperfusion injury after lung transplantation.

BACKGROUND: Reperfusion injury is a perplexing cause of early graft failure after lung transplantation. Although recipient neutrophils are thought to have a role in the development of reperfusion injury, some researchers have shown that neutrophils are not involved in its earliest phase. Intrinsic donor pulmonary macrophages may be responsible for this early phase of injury. Using the macrophage inhibitor gadolinium chloride, we attempted to investigate the role of pulmonary macrophages in reperfusion injury after lung transplantation. METHODS: Using our isolated, ventilated, blood-perfused rabbit lung model, all groups underwent lung harvest followed by 18-hour storage (4 degrees C) and blood reperfusion for 30 minutes. Group I served as a control. Group II received gadolinium chloride at 7 mg/kg 24 hours before harvest. Group III received gadolinium chloride at 14 mg/kg 24 hours before harvest. RESULTS: Group III had significantly improved arterial oxygenation and pulmonary artery pressures compared with groups I and II after 30 minutes of reperfusion. CONCLUSIONS: The earliest phase of reperfusion injury after lung transplantation involves donor pulmonary macrophages.

Analysis of Variance↗

Retinoic acid enhances lung growth after pneumonectomy.

BACKGROUND: We sought to identify the role of retinoic acid (RA) upon lung growth. RA has a role in perinatal lung development, and we hypothesized that exogenous RA would enhance postpneumonectomy compensatory lung growth. METHODS: Utilizing the postpneumonectomy rat model, we studied the impact of RA upon contralateral lung growth. Adult Sprague-Dawley rats were divided into three groups. Group S underwent a sham left thoracotomy, group P underwent left pneumonectomy, and group R underwent left pneumonectomy with administration of exogenous RA (0.5 microg/g/day intraperitoneally). We then quantitated right lung growth after 10 and 21 days. Lung weight and volume were expressed as a ratio to the final body weight (lung weight and volume indices, LWI and LVI). Epidermal growth factor receptor (EGFR) expression was quantitated using Western blot analysis. Cellular proliferation index (CPI) was determined using BrdU immunostaining. RESULTS: LWI, LVI, CPI, and EGFR expression at 21 days were significantly higher in group R versus S and P. At the 10-day interval, both LWI and LVI were significantly higher in group R versus S and P. CONCLUSIONS: RA administration markedly enhances lung growth after pneumonectomy, as evidenced by increases in LWI, LVI, and CPI. Upregulation of EGFR expression was associated with these effects.

Animals↗

Cardiac reoperation in the intensive care unit.

BACKGROUND: At our institution, cardiac reoperations are routinely performed in the cardiac intensive care unit, as opposed to taking these patients back to the operating room. Our hypothesis was that reoperation in a cardiac intensive care unit does not increase sternal infection rate. METHODS: A retrospective analysis was performed on 6,908 adult patients undergoing cardiac operation over a 9-year period. Excluding those in cardiac arrest, 340 (4.9%) patients underwent reoperation in the cardiac intensive care unit, of which 289 survived (85%). RESULTS: Of the 289 patients who survived reoperation in the intensive care unit, 6 developed wound infections that required operative debridement (2.1%), which was not significantly different from those patients not requiring reoperation (1.9%, 121 of 6,497, p = 0.70). Hospital charges for a 2-hour reoperation in the intensive care unit and operating room are approximately $1,972/patient and $5,832/patient, respectively. CONCLUSIONS: Reoperation in the intensive care unit does not increase wound infection rate compared to those without reoperation. Decreased charges, avoiding transport of potentially unstable patients, quicker time to intervention, and convenience are advantages of reoperation in an intensive care unit.

Aged↗

Management of innominate artery injury in the setting of bovine arch anomaly.

Blunt injury to the aortic arch vessels is rare and can be life-threatening. Historically urgent repair of these injuries is emphasized. We describe the initial nonoperative management of a blunt injury to the brachiocephalic trunk in the setting of bovine arch anomaly, followed by delayed surgical management.

Adult↗

Epidermal growth factor receptor up-regulation is associated with lung growth after lobectomy.

BACKGROUND: We hypothesized that compensatory lung growth after lobectomy is characterized by a combination of cellular hyperplasia and hypertrophy and that up-regulation of epidermal growth factor receptor (EGFR) is involved in these processes. METHODS: Age-matched mature pigs were divided into four groups. The control group (group C) did not have operation. Two groups underwent left upper lobectomy and were studied 2 weeks (group L2) or 3 months (group L3) later. The last group underwent a sham left thoracotomy, and the left lower lobe was harvested 2 weeks later for EGFR analysis. Left lower lobes were studied using wet weight, cell proliferation index through immunostaining for 5-bromo-2'-deoxyuridine, morphometry, and Western blot analysis for EGFR. Content of protein and DNA (deoxyribonucleic acid) in the lung tissue was also determined. RESULTS: Left lower lobe weights were elevated in both groups L2 and L3 compared with group C. We noted a significant rise in the proliferation index, with a concomitant increase in EGFR expression, in group L2 compared with group C. In group L3, there was an increase in the protein to DNA ratio compared with group C. CONCLUSIONS: We conclude that compensatory lung growth after lobectomy comprises an early increase in the cell proliferation index (ie, cellular hyperplasia) and a late increase in the protein to DNA ratio (ie, cellular hypertrophy). The early proliferative phase is associated with EGFR up-regulation.

Animals↗

A cost comparison of heart transplantation versus alternative operations for cardiomyopathy.

BACKGROUND: Heart transplantation is an established therapy for cardiomyopathy but is limited by organ shortage and expense. As a result, alternative operations have been proposed including coronary bypass, mitral valve repair, and left ventricular reconstruction. Because it is unknown whether alternative operations are less expensive than replacing the diseased heart, we compared in-hospital costs and early outcome of these operations with elective heart transplantation. METHODS: We compared clinical and financial data of 268 patients with ejection fraction less than 30% who underwent elective heart transplantation (n = 52, UNOS status 2 only), coronary bypass (n = 176), mitral repair (n = 15), or left ventricular reconstruction (n = 25). Data were evaluated for between-group differences, with p less than 0.05 as significant. RESULTS: Preoperative ejection fraction, although similar for heart transplantation (21.2% +/- 1.3%), coronary bypass (25.8% +/- 0.4%), mitral repair (22.9% +/- 1.5%), and left ventricular reconstruction (24.2% +/- 2.1%), was significantly different between the former two (p < 0.001). There was no difference in operative mortality: 5.8% (3 of 52), 3.4% (7 of 176), 6.7% (1 of 15), and 4.0% (1 of 25), respectively (p = 0.8). However, total hospital cost of heart transplantation was significantly greater than all others: $75,992 +/- $5,380, $25,008 +/- $1,446, $32,375 +/- $2,379, and $26,584 +/- $4,076, respectively (p < 0.001). Organ procurement expenses alone comprised 39.7% ($30,169) of total transplant cost. Kaplan-Meier survival analysis failed to show any survival difference between the various groups (p = 0.86) CONCLUSIONS: Compared with heart transplantation, alternative operations yield a comparable early outcome and long-term survival, and are markedly less expensive. The cost of transplantation, which is largely due to procurement expenses, is yet another reason to attempt alternative operations for cardiomyopathy whenever feasible.

Aged↗

Systemic adenosine A2A agonist ameliorates ischemic reperfusion injury in the rabbit spinal cord.

BACKGROUND: The adenosine A2A agonist ATL-146e (4-[3-[6-Amino-9-(5-ethylcarbamoyl-3,4-dihydroxytetrahydro-furan-2-yl)-9H-purin-2-yl]-prop-2-ynyl]-cyclohexanecarboxylic acid methyl ester) has been shown to prevent reperfusion injury in multiple organ systems through inhibition of activated leukocyte-endothelial interaction. We hypothesized that systemic ATL-146e could reduce spinal cord reperfusion injury after aortic clamping. METHODS: Twenty-six rabbits underwent cross-clamping of the infrarenal aorta for 45 minutes. One group received intravenous ATL-146e for 3 hours during reperfusion. A second cohort received only vehicle and served as controls. Animals were assessed at 24 and 48 hours using the Tarlov (0 to 5) scoring system for hind limb function. To evaluate neuronal attrition, immunostaining of lumbar spinal cord sections was performed using anti-SMI 33 antibody against neurofilament. RESULTS: Systemic ATL-146e was tolerated without hemodynamic lability. Animals that received ATL-146e had significantly improved neurologic outcomes 24 and 48 hours after spinal cord ischemia (p < 0.001). There was preservation of neuronal architecture in the ventral horn of spinal cord sections from animals receiving ATL-146e compared with control animals. CONCLUSIONS: Intravenous ATL-146e given during reperfusion is tolerated without hemodynamic lability, and results in substantially improved spinal cord function after ischemia by preservation of ventral horn neurons.

Animals↗

Early intervention after severe oxygenation index elevation improves survival following lung transplantation.

BACKGROUND: Reperfusion injury and technical problems following lung transplantation may result in life-threatening pulmonary dysfunction that requires intervention with either extracorporeal membrane oxygenation or reoperation. Early intervention in these patients could prevent complications associated with delayed or emergent intervention and may improve survival. The oxygenation index [(mean airway pressure x percent of inspired oxygen)/partial pressure of arterial oxygen] provides a rapid assessment of pulmonary function in the critical phase of reperfusion. Our hypothesis was that the oxygenation index could be used as an early predictor for severe respiratory failure requiring acute intervention. METHODS: Analysis of 136 consecutive lung transplant operations revealed 18 patients (reperfusion injury in 16 and technical complications in 2) with an oxygen index of > or = 30. Of those patients with reperfusion injury, 9 had fibrotic lung disease, 4 had obstructive lung disease, and 3 had primary pulmonary hypertension. RESULTS: Patients undergoing transplantation for fibrotic lung diseases were more likely to develop severe reperfusion injury (oxygenation index > or = 30) compared to patients with obstructive lung diseases (9 of 42 or 21% vs 4 or 80 or 5%, p = 0.005). The 5 patients with early intervention (< or = 2 hours) after an oxygenation index elevation above 30 had significantly improved survival compared to the 13 with no or late intervention (80% vs 15% survival, p = 0.02). CONCLUSION: Oxygenation index elevation > or = 30 following lung transplantation is an early predictor of severe respiratory failure requiring acute intervention. Early intervention in these patients improves survival.

Adult↗

Influence of graft ischemic time on outcomes following lung transplantation.

BACKGROUND: Reperfusion injury is the most common cause of early mortality following lung transplantation. Although cold graft ischemic time has been reported to influence this injury, some lung grafts with short ischemic times develop significant reperfusion injury, whereas other grafts with more prolonged ischemic times do not develop injury. Our hypothesis was that ischemic time did not significantly influence reperfusion injury or other outcomes following lung transplantation. METHODS: Data on 136 patients who had lung transplantation over a 10 year period was used for analysis. RESULTS: Cold graft ischemic time > or = 6 hours did not increase the risk of reperfusion injury, acute rejection, cytomegalovirus infection, bacterial or fungal pneumonia, bronchiolitis obliterans syndrome, 1-month mortality, 1-year mortality, or 5-year mortality compared with ischemic times of either < 4 hours or 4 to 6 hours. The incidence of reperfusion injury was at least 20% for each time group. CONCLUSIONS: At least 20% of all patients will develop reperfusion injury regardless of cold graft ischemic time. Prolonged ischemic times up to 8 hours do not result in a significant increase in adverse short-term, intermediate, or long-term outcomes. Cautious extension of ischemic time beyond the current target of 4 to 6 hours may be warranted for geographic expansion of the donor lung pool.

Adolescent↗

Adenosine analogue reduces spinal cord reperfusion injury in a time-dependent fashion.

BACKGROUND: We hypothesized that inflammation during spinal cord reperfusion worsens ischemic injury. ATL-146e, an adenosine A(2A) agonist with known anti-inflammatory properties, was used to test this hypothesis at varied intervals to determine the time course of reperfusion injury. METHODS: Forty rabbits underwent cross-clamping of the infrarenal aorta for 45 minutes. One group (n = 14 animals) received 0.06 microg/kg/min systemic ATL-146e over 3 hours, beginning after 30 minutes of ischemic time. A second group (n = 6 animals) received ATL-146e over 1.5 hours. A third group (n = 3 animals) received ATL-146e over 1 hour, and a fourth group (n = 17 animals) received saline solution. All animals were assessed at 48 hours for hind limb motor function (Tarlov scale, 0-5). RESULTS: Animals that received ATL-146e for 3 hours (Tarlov score, 4.3 +/- 0.22; P <.001) or 1.5 hours (Tarlov score, 2.7 +/- 0.6; P <.05) had improved neurologic outcomes compared with rabbits that received saline solution (Tarlov score, 0.6 +/- 0.29). Animals that received ATL-146e for 1 hour (Tarlov score, 0.7 +/- 0.8) were not significantly different from those animals that received saline solution. CONCLUSIONS: Systemic ATL-146e, given during reperfusion, results in time-dependent improvement in spinal cord function after ischemia. This implies that the mechanism of spinal reperfusion injury includes leukocyte-mediated inflammation at a critical post-ischemic time interval.

Adenosine↗

Lung transplant reperfusion injury involves pulmonary macrophages and circulating leukocytes in a biphasic response.

OBJECTIVE: Both donor pulmonary macrophages and recipient circulating leukocytes may be involved in reperfusion injury after lung transplantation. By using the macrophage inhibitor gadolinium chloride and leukocyte filters, we attempted to identify the roles of these two populations of cells in lung transplant reperfusion injury. METHODS: With our isolated, ventilated, blood-perfused rabbit lung model, all groups underwent lung harvest followed by 18-hour cold storage and 2-hour blood reperfusion. Measurements of pulmonary artery pressure, lung compliance, and arterial oxygenation were obtained. Group I (n = 8) served as a control. Group II (n = 8) received gadolinium chloride at 14 mg/kg 24 hours before lung harvest. Group III (n = 8) received leukocyte-depleted blood reperfusion by means of a leukocyte filter. RESULTS: The gadolinium chloride group had significantly improved arterial oxygenation and pulmonary artery pressure measurements compared with control subjects and an improved arterial oxygenation compared with the filter group after 30 minutes of reperfusion. After 120 minutes of reperfusion, however, the filter group had significantly improved arterial oxygenation and pulmonary artery pressure measurements compared with the control group and an improved arterial oxygenation compared with the gadolinium chloride group. CONCLUSIONS: Lung transplant reperfusion injury occurs in two phases. The early phase is mediated by donor pulmonary macrophages and is followed by a late injury induced by recipient circulating leukocytes.

Analysis of Variance↗