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F B Cerra

Publications and source records attributed to F B Cerra.

At least 19 recordsLinked to original sources

Near-infrared and nuclear magnetic resonance spectroscopic assessment of tissue energetics in an isolated, perfused canine hind limb model of dysoxia.

This controlled laboratory study examined the efficacy of near-infrared spectroscopy (NIRS) and 31P-nuclear magnetic resonance (NMR) spectroscopy in measuring regional tissue oxygenation in a isolated, perfused hind limb model of tissue dysoxia. Isolated hind limb perfusion was carried out in 20 mongrel dogs and oxygen delivery was varied by manipulating either hemoglobin concentration, oxygen saturation, or flow. Hind limbs from anesthetized mongrel dogs (n = 20) were separated and isolated perfusion performed. NIRS probes for recording relative O2 saturation of tissue hemoglobin (HbO2) and cytochrome a,a3 and NMR probes for measuring 31P-high energy phosphates were placed over the limb. Measurements of physiologic parameters, blood gases, lactate, NIRS values for HbO2 and cytochrome a,a3 redox state, and 31P-phosphate levels were recorded at set intervals throughout the experiment. Measures of tissue oxygen consumption (VO2) correlated with tissue oxygenation as measured by HbO2 and cytochrome a,a3 redox state (NIRS), as well as by 31P-high energy phosphate levels (NMR) throughout the experiment. Delivery-dependent tissue oxygenation was detected at a higher DO2 by NIRS than by VO2 or NMR. Tissue oxygenation as measured by NIRS and NMR shows excellent correlation with oxygen delivery in an isolated, perfused model of shock. NIRS may allow early detection of tissue dysoxia using rapid non-invasive techniques.

Animals↗

Modulation of macrophage and B cell function by glycosaminoglycans.

There is increasing evidence that the behavior of antigen-presenting cells may be regulated, in part, by the surrounding microenvironment. Components of the microenvironment of solid tissues that might influence antigen-presenting cell functions include glycosaminoglycans. We previously showed that heparan sulfate glycosaminoglycans activate macrophages, leading to profound alterations in T cell responses. Here we demonstrate the functional changes that occur in murine antigen-presenting cells induced by heparan sulfate and other glycosaminoglycans, and postulate how these functional changes influence the nature of local immune responses. Heparan sulfate triggered up-regulation of ICAM-1 and I-A, caused the release by antigen-presenting cells of interleukin (IL)-1, IL-6, tumor necrosis factor, IL-12, transforming growth factor beta, and prostaglandin E2 (PGE2), and (in macrophages) induced cytotoxic capability. Heparin induced IL-12 and interferon-gamma production but did not promote the release of other cytokines. Chondroitin sulfate and dermatan sulfate, although not stimulating the production of cytokines or of PGE2, elicited the production by macrophages of nitric oxide. These findings support a model in which the glycosaminoglycan composition of a given tissue, which may be altered by inflammatory processes, helps to regulate the behavior of antigen-presenting cells, which in turn determines the characteristics of the immune response that ensues.

Animals↗

Brain lactate by magnetic resonance spectroscopy during fulminant hepatic failure in the dog.

A noninvasive test is needed to assess the severity of encephalopathy during fulminant hepatic failure. This feasibility study was designed to compare a noninvasive test, brain lactate measurement by magnetic resonance spectroscopy, with intracranial pressure monitoring in a large animal model of fulminant hepatic failure. Five dogs received an intraventricular catheter for intracranial pressure measurement. Liver injury was induced by intravenous bolus of D-galactosamine. Brain lactate concentrations were determined by magnetic resonance spectroscopy for up to 48 hours after D-galactosamine administration (t = 0 hour). A dose of D-galactosamine exceeding 1.5 g/kg resulted in fulminant hepatic failure. Brain lactate levels increased to > 10 mmol/L in the two dogs that developed severe intracranial hypertension of > 50 mm Hg and sustained cerebral perfusion pressures of < 40 mm Hg. Both dogs experienced brain death, 42 and 48 hours after the administration of D-galactosamine. Brain lactate concentrations determined by magnetic resonance spectroscopy were in agreement with brain tissue concentrations of lactate determined by high-performance liquid chromatography at necropsy. Plasma lactate concentrations were only mildly elevated (3.2 and 4.2 mmol/L) at the time of brain death. Elevated levels of brain lactate are associated with intracranial hypertension and poor neurological outcome during fulminant hepatic failure.

Animals↗

Characterization of the three-compartment gel-entrapment porcine hepatocyte bioartificial liver.

A hybrid bioartificial liver device supporting a large mass of cells expressing differentiated hepatocyte metabolic capabilities is necessary for the successful treatment of fulminant hepatic failure. The three-compartment gel-entrapment porcine hepatocyte bioartificial liver was designed to provide "bridge" support to transplantation or until native liver recovery is achieved for patients with acute liver failure. The device is an automated mammalian cell culture system supporting 6-7 x 10(9) porcine hepatocytes entrapped in a collagen matrix and inoculated into the capillary lumen spaces of two 100 kDa molecular mass cut-off hollow fiber bioreactors. Gel contraction recreates a small lumen space within the hollow fiber which allows for the delivery of a nutrient medium. This configuration supported hepatocyte viability and differentiated phenotype as measured by albumin synthesis, ureagenesis, oxygen consumption, and vital dye staining during both cell culture and ex vivo application. The hollow fiber membrane was also shown to isolate the cells from xenogenic immunoglobulin attack. The gel-entrapment bioartificial liver maintained a large mass of functional hepatocytes by providing a three-dimensional cell culture matrix, by delivering basal nutrients through lumen media perfusion, and by preventing rejection of the xenocytes. These features make this device a favorable candidate for the treatment of clinical fulminant hepatic failure.

Animals↗

Comparative effects of lipopolysaccharide on newborn versus adult rat hepatocyte and nonparenchymal cell cocultures.

OBJECTIVE: To examine the effects of development on the response of hepatocytes and nonparenchymal cells to an endotoxin challenge as an in vitro model of organ system dysfunction at differing developmental ages. DESIGN: In vitro animal cell culture model. SETTING: University teaching hospital research laboratory. SUBJECTS: Adult and newborn Sprague-Dawley rats. INTERVENTIONS: The method of hepatocyte and nonparenchymal cell coculture was utilized and modified to allow evaluation of cells derived from newborns. Cells were isolated from adult rats by standard perfusion technique. Hepatocytes and nonparenchymal cells were isolated from newborn rats by use of identical enzymatic degradation after fine mincing of the organ. Isolated cells were purified by density gradient. The hepatocytes were incubated in standard cell culture plates for 24 hrs before the addition of nonparenchymal cells. Hepatocytes were incubated with similar-age nonparenchymal cells. After an additional 24 hrs, serial log dilutions of lipopolysaccharide were added as a stimulus and the system was cultured an additional 24 hrs. The response of the hepatocytes was assessed by determination of 3H-leucine incorporation in acid-precipitated protein. In addition, the production of tumor necrosis factor, interleukin (IL)-1, and IL-6 by isolated nonparenchymal cells from adult and newborn rats was determined after stimulation with serial log dilutions of lipopolysaccharide by bioassay. MEASUREMENTS AND MAIN RESULTS: Both adult and newborn hepatocytes cocultivated with nonparenchymal cells demonstrated a comparable and statistically significant dose response to lipopolysaccharide (p < .01). The newborn hepatocytes demonstrated a greater rate of protein synthesis than the adult hepatocytes at all concentrations of lipopolysaccharide. Tumor necrosis factor production by newborn and adult nonparenchymal cells was similar at all lipopolysaccharide doses. IL-1 production demonstrated a positive dose response to lipopolysaccharide in the adult and newborn nonparenchymal cells, with a trend (p = .17) toward greater IL-1 secretion by the adult cells. There were significant differences in IL-6 production by isolated nonparenchymal cells at lipopolysaccharide doses of 0.01, 0.1, and 10 micrograms/mL. While a similar trend was apparent in the cocultured cells, the significance was not apparent, except at the highest lipopolysaccharide dose. CONCLUSIONS: The dose responses of newborn and adult hepatocytes to nonparenchymal cells stimulated with lipopolysaccharide were similar, although newborn hepatocytes appeared to have an inherently higher rate of protein synthesis compared with adult hepatocytes. Cytokine production was similar in nonparenchymal cells of both ages, although IL-1 production by stimulated newborn nonparenchymal cells appeared to be less than IL-1 production by adult nonparenchymal cells.

Adolescent↗

Frank B. Cerra, MD.

Though the effects of managed care can be seen all across the country, the state of Minnesota has clearly been in the forefront of change. While this has presented an opportunity to be on the leading edge of health reform, it has also had a revolutionary impact on all previously held ways of doing business. A long-time faculty member at the University of Minnesota Frank Cerra was named Dean of the medical school in May of 1995, a time which found the University of Minnesota Hospital in a precarious position. The day-to-day financial workings of the institution soon became his major focus and in 1997 he became the Senior Vice-President for Health Sciences. In this position much of the restructuring and strategic planning of the school is now under his supervision, and he has dealt with several daunting challenges both within the school and the state. Interviewed in his office in Minnesota, Cerra candidly reflected on the power of market-based health reform the frustrations involved in turning a slow moving public institution towards the future.

Academic Medical Centers↗

Mechanistics of formation and ultrastructural evaluation of hepatocyte spheroids.

Freshly harvested rat hepatocytes form spheroids on uncoated positively charged polystyrene surfaces. Time lapse microscopy revealed that cell movement and reorganization were involved in spheroid formation. Ultrastructural evaluation using scanning and transmission electron microscopy indicated polarized cellular morphology and extensive cell-cell communication within spheroids. Bile canalicular structures were observed to surround each individual hepatocyte, forming an intricate three-dimensional continuous network of channels that appeared to end as pores/holes on the surface of the spheroid. The maintenance of differentiated cellular morphology coincided with preservation of hepatocyte viability and enhanced levels of tissue specific functions in spheroids.

Albumins↗

The future. Monitoring cellular energetics.

Current monitoring of critically ill patients uses measurement of global parameters such as oxygen consumption and lactate levels. With development of new monitoring technologies, it may be possible to monitor patients on an organ or tissue level, allowing manipulation of specific organ or tissue perfusion. Potentially useful techniques for monitoring tissue energetics in the future include NIR and NMR spectroscopy. However, both of these techniques are currently limited in their usefulness due to technical factors; NIR by its inability to monitor "silent" metabolically active organs and NMR by its cost, size, and interference of magnetic fields with electronic equipment. Both of these techniques may be useful for identification of dysoxia or oxygen-limited mitochondrial turnover. Experimental evidence suggests that organs in the septic state are more sensitive to dysoxia. Implications for the care of the patient with sepsis include possible decreased tolerance to factors leading to dysoxia, such as hypoxemia, hemodilution, or ischemia.

Critical Care↗

Evidence based critical care medicine; what is it and what can it do for us? Evidence Based Medicine in Critical Care Group.

OBJECTIVE: To describe the philosophy and approach to patient care called evidence based medicine, and to highlight how it can enhance the practice of intensive care. DATA SOURCES: We searched MEDLINE, reference lists, and our personal files to identify relevant literature. STUDY SELECTION: Articles on intensive care practice, critical appraisal, clinical research, and healthcare delivery were selected for discussion. DATA SYNTHESIS: We summarize the rationale for evidence based medicine, its applications and future developments, and suggest several methods for intensivists to use evidence based medicine in their practice and teaching. CONCLUSIONS: Evidence based medicine can complement other foundation disciplines in intensive care. This is the first article in a series entitled "Evidence Based Critical Care Medicine" which will demonstrate how this approach can be used at the bedside.

Clinical Competence↗

Extrahepatic metabolism of 4-methylumbelliferone and lidocaine in the anhepatic rabbit.

Extrahepatic drug metabolism was studied in an anhepatic rabbit model. Plasma concentrations of 4-methylumbelliferone (4-MU) and its major metabolites, 4-methylumbelliferyl-O-glucuronide and 4-methyumbelliferyl sulfate, along with lidocaine and its major metabolites, monoethylglycinexylidide and 3-hydroxylidocaine, were measured in sham rabbits (n = 4) and anhepatic rabbits (n = 4) following bolus intravenous administration of each drug. Along with concentration profiles of the drugs and metabolites, pharmacokinetic analyses of 4-MU metabolism and lidocaine metabolism were used to assess the extrahepatic metabolism of these classical substrates. Total body clearance of 4-MU in the anhepatic rabbits was about 50% that of the sham animals. Extensive extrahepatic glucuronidation of 4-MU was revealed by comparing the AUC ratios of 4-methylumbelliferyl-O-glucuronide and 4-MU in anhepatic and sham rabbit groups. Sulfation of 4-MU was reduced significantly in the anhepatic group, although some extrahepatic sulfation was observed. Total body clearance of lidocaine was reduced 3-fold in anhepatic animals. 3-Hydroxylidocaine was only detected in plasma samples from sham animals. These results emphasize the importance of extrahepatic sites in drug metabolism, especially glucuronidation of phenolic compounds such as 4-MU.

Anesthetics, Local↗

Distinct patterns of cyclin D1 regulation in models of liver regeneration and human liver.

The expression of cyclin D1 and associated cdks was examined in models of liver regeneration and human liver specimens. In mouse liver after 70% partial hepatectomy, there was > 20-fold induction of cyclin D1 mRNA and protein, beginning prior to peak DNA synthesis. In normal rat liver, basal levels of cyclin D1 protein were significantly higher than in the mouse. After hepatectomy in the rat, cyclin D1 mRNA was induced 6- to 10-fold, while the protein levels changed < 2-fold and did not parallel changes in the mRNA. Cyclin D1 protein was detected in freshly isolated rat hepatocytes, but this diminished within 6 hours in culture. After growth stimulation with HGF, cyclin D1 mRNA was induced 3- to 5-fold and its protein > 20-fold in rat hepatocytes. Immunoprecipitation of cyclin D1 demonstrated its association with cdk4 but not cdk5 in regenerating liver. In human liver biopsy specimens, cyclin D1 protein was detectable in normal liver and induced 2- to 10-fold in mitotically active liver following transplantation. These results suggest that the regulation of cyclin D1 protein in human liver may more closely parallel the mouse than the rat hepatectomy model. Furthermore, cyclin expression in primary cells in culture may differ significantly from that observed in vivo.

Animals↗

Heparan sulfate initiates signals in murine macrophages leading to divergent biologic outcomes.

We have previously shown that the interaction of heparan sulfate (HS), a constituent of cell surfaces and extracellular matrices, with murine macrophages causes activation of the macrophages leading to the production of cytokines and PGE2 and profound changes in the cellular immune responses triggered by the macrophages. Here we describe the molecular mechanisms that underlie these immunoregulatory changes. We demonstrate that HS delivers signals to macrophages through at least two pathways, one involving the activation of a tyrosine kinase and of nuclear factor-KB, and the other involving the activation of protein kinase C and the elevation of intracellular calcium. The former pathway is associated with the production of IL-6, and the latter pathway is associated with the production of PGE2. Our findings suggest a model in which components of the microenvironment, such as HS, may determine the functional state of an APC, thereby modifying immune responses.

Animals↗

Gel-entrapment bioartificial liver therapy in galactosamine hepatitis.

A need exists for an effective, safe bioartificial liver to support patients in fulminant hepatic failure (FHF). The purpose of this study was to determine the treatment efficacy of the novel gel-entrapment porcine hepatocyte bioartificial liver (BAL) in a fatal model of canine hepatic failure. FHF was produced in 27- to 30-kg halothane-anesthetized dogs by bolus infusion of the hepatotoxin D-galactosamine (D-Gal). Three groups were studied during the 48-hr experiment: Group D-Gal (n = 5) received galactosamine, 1.0 g/kg, iv at Time O, Group HepBAL (n = 5) received D-Gal followed by continuous hemoperfusion with the BAL device loaded with approximately 6 billion viable pig hepatocytes starting at Time 24 hr, and three dogs served as healthy controls (Group Control) and received no galactosamine. The primary endpoints were survival and coma development. Group D-Gal demonstrated 100% mortality from liver failure by 42 hr, characterized by a progressive rise in liver enzymes, total bilirubin, ammonia, and lactate and associated with coagulopathy, hypoglycemia, coma, and brain death. BAL therapy significantly delayed the onset of coma and improved survival (median 47 hr vs D-Gal median 36 hr). A significant delay in the rise of lactate and ammonia was also noted. BAL therapy prolonged survival and improved both laboratory and clinical markers of fatal liver failure. These data indicate that this BAL may have clinical utility in supporting human liver failure.

Animals↗

Extended liver-specific functions of porcine hepatocyte spheroids entrapped in collagen gel.

The potential use of porcine hepatocytes in a bioartificial liver device requires large quantities of viable and highly active cells. To facilitate the scaling up of the system, liver specific activities of hepatocytes should be maximized. One way of enhancing the specific activities is to cultivate hepatocytes as multicellular spheroids. Freshly isolated porcine hepatocytes form spheroids when cultivated in suspended cultures. These spheroids exhibit higher activities for a number of liver specific functions compared to hepatocytes cultivated as monolayers. However, these activities decreased in a few days in culture. Entrappment of spheroids in collagen gel sustained their metabolic activities at a stable level over 21 days. Production of albumin and urea by spheroid hepatocytes entrapped in collagen gels were 2 to 3 times higher than those by freshly isolated single cells. P-450 activity was demonstrated by metabolism of lidocaine to its main metabolite, monoethylglycinexylidide. Phase II drug metabolism was demonstrated by glucuronidation of 4-methylumbelliferone. This work shows that porcine hepatocyte spheroids entrapped in collagen maintain differentiated functions for an extended time period. Such hepatocyte spheroid entrappment system may facilitate the development of a bioartificial liver support device.

Albumins↗

Early enteral administration of a formula (Impact) supplemented with arginine, nucleotides, and fish oil in intensive care unit patients: results of a multicenter, prospective, randomized, clinical trial.

OBJECTIVE: To determine if early enteral feeding, in an intensive care unit (ICU) patient population, using a formula supplemented with arginine, dietary nucleotides, and fish oil (Impact), results in a shorter hospital stay and a reduced frequency of infectious complications, when compared with feeding a common use enteral formula (Osmolite.HN). DESIGN: A prospective, randomized, double-blind, multicenter trial. SETTING: ICUs in eight different hospitals. PATIENTS: Of 326 patients enrolled in the study, 296 patients were eligible for analysis. They were admitted to the ICU after an event such as trauma, surgery, or sepsis, and met a risk assessment screen (Acute Physiology and Chronic Health Evaluation II [APACHE II] score of > or = 10, or a Therapeutic Intervention Scoring System score of > or = 20) and study eligibility requirements. Patients were stratified by age (< 60 or > or = 60 yrs of age) and disease (septic or systemic inflammatory response syndrome). INTERVENTIONS: Patients were enrolled and full-strength tube feedings were initiated within 48 hrs of the study entry event. Enteral feedings were advanced to a target volume of 60 mL/hr by 96 hrs of the event. One hundred sixty-eight patients were randomized to receive the experimental formula, and 158 patients were randomized to receive the common use control formula. MEASUREMENTS AND MAIN RESULTS: Both groups tolerated early enteral feeding well, and the frequency of tube feeding-related complications was low. There were no significant differences in nitrogen balance between groups on study days 4 and 7. Patients receiving the experimental formula had a significant (p = .0001) increase in plasma arginine and ornithine concentrations by study day 7. Plasma fatty acid profiles demonstrated higher concentrations of linoleic acid (p < .01) in the patients receiving the common use formula and higher concentrations of eicosapentaenoic and docosahexaenoic acid (p < .01) in the patients receiving the experimental formula. The mortality rate was not different between the groups and was significantly (p < .001) lower than predicted by the admission severity scores in both feeding groups. In patients who received at least 821 mL/day of the experimental formula, the hospital median length of stay was reduced by 8 days (p < .05). In patients stratified as septic, the median length of hospital stay was reduced by 10 days (p < .05), along with a major reduction in the frequency of acquired infections (p < .01) in the patients who received the experimental formula. In the septic subgroup fed at least 821 mL/day, the median length of stay was reduced by 11.5 days, along with a major reduction in acquired infections (both p < .05) in the patients who received the experimental formula. CONCLUSIONS: Early enteral feeding of the experimental formula was safe and well tolerated in ICU patients. In patients who received the experimental formula, particularly if they were septic on admission to the study, a substantial reduction in hospital length of stay was observed, along with a significant reduction in the frequency of acquired infections.

APACHE↗

Effects of hepatocyte growth factor on viability and biotransformation functions of hepatocytes in gel entrapped and monolayer culture.

OBJECTIVES: An extracorporeal bioartificial liver device must maintain viability and differentiated function of hepatocytes cultivated at high cell density. Growth factors, such as hepatocyte growth factor, found in high concentrations in the plasma of patients with fulminant hepatic failure, have the potential to promote hepatocyte dedifferentiation and thus, decrease function. We tested the hypothesis that hepatocyte growth factor would improve viable cell density and decrease biotransformation functions of liver cells in monolayer culture and in hepatocytes entrapped in collagen cylindrical gel "noodles" as found in the extracorporeal bioartificial liver. DESIGN: In vitro, controlled study. SETTING: University research laboratory. SUBJECTS: Adult Sprague Dawley Rats. INTERVENTIONS: Hepatocytes were harvested by a two-step collagenase technique. Harvested hepatocytes were plated onto type 1 collagen coated plates or entrapped in type 1 collagen cylindrical gels and cultured in different concentrations of hepatocyte growth factor. Interval measurements of 3H-thymidine incorporation, albumin synthesis, biotransformation functions, and viability were made. MEASUREMENTS AND MAIN RESULTS: In monolayer culture, the addition of hepatocyte growth factor caused a dramatic increase in 3H-thymidine incorporation. This increase was accompanied by a decrease in the appearance of the lidocaine metabolite, monoethyglycinexylidide. Albumin production was unchanged. In cylindrical gel entrapment cultures, hepatocyte growth factor caused a significant increase in 2-day viability but had no effect on the metabolite appearance of lidocaine or 4-methyl umbelliferone or albumin production. CONCLUSIONS: Hepatocyte growth factor induces dedifferentiation of hepatocytes in monolayer culture. Collagen matrix entrapment appears to abrogate this effect and improve liver cell viability. There may be reciprocal regulation of hepatocyte reproductive and differentiated functions, such as biotransformation, which can be influenced by the entrapment of hepatocytes in an extracellular type 1 collagen matrix.

Animals↗

Cardiovascular response to acute and chronic endotoxemia in an awake, volume-resuscitated, canine model.

The cardiovascular response to endotoxemia was evaluated in an awake, intravascular volume-resuscitated canine model. The animals were chronically instrumented for ultrasonic crystal dimension analysis and pressure measurements of the left ventricle (LV), aorta, right atrium (RA), and pulmonary artery (PA) and for cardiac output (CO) measurement. Lipopolysaccharide (Escherichia coli 011:B4) (LPS) was administered intravenously either as an acute, high dose bolus (5 mg/kg; n = 5), a high dose bolus after complete beta-blockade with propranolol (n = 3), or a chronic, low dose infusion (5 micrograms/kg/h; n = 7). Relative to baseline values, cardiac contractility was increased after acute high dose LPS bolus, however this effect was negated by beta-blockade. Chronic, low dose LPS infusion produced an increase in cardiac contractility at 1 h, a return to baseline by 4 h, and maximal contractile depression by 24 h. No change was seen in LV compliance after the high dose LPS bolus. The LV end diastolic volume was decreased by the high dose LPS bolus. This change was blocked by propranolol administration. Chronic LPS administration was accompanied by a decrease in LV compliance and an increase in LV end diastolic volume. Other cardiovascular indices (heart rate, CO, systemic vascular resistance) changed in a fashion similar to human sepsis. These findings confirm that endotoxemia in conscious canine subjects causes changes in cardiovascular function similar to that seen in human and animal models of sepsis. This study also allows us to explain some of the discrepancies between earlier studies of human sepsis and animal models in which the appropriate clinical conditions and an intact neuro-endocrine axis were not maintained.

Animals↗