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Biomedical subjects

R M Bolman

Publications and source records attributed to R M Bolman.

At least 19 recordsLinked to original sources

Donor-derived antibodies and hemolysis after ABO-compatible but nonidentical heart-lung and lung transplantation.

BACKGROUND: Organ donors and transplant recipients are routinely tested for ABO compatibility. ABO-identical organs are preferred, but occasionally the use of an ABO-compatible but nonidentical donor is clinically warranted. In heart-lung transplantation, the incidence of hemolysis from donor-derived anti-ABO antibodies is as high as 70%. The incidence of hemolysis for lung-only transplantation is not known. Our current posttransplantation transfusion policy for ABO-compatible but nonidentical lung-only transplant recipients is, when indicated, to use donor ABO group red blood cells. METHODS: To evaluate the efficacy of our transfusion policy, we reviewed our experience from 1986-96. One heart-lung transplant, four single lung transplant, and three bilateral single lung transplant recipients received ABO-compatible but nonidentical organs. RESULTS: The heart-lung transplant recipient developed a positive direct antiglobulin test (DAT), with anti-A eluted, and severe hemolysis on postoperative day 8 requiring plasma and whole blood exchange. Four of six lung-only transplant patients tested developed a positive DAT with anti-A eluted. Two early lung-only patients, who did not receive donor ABO group red blood cells, demonstrated clinical and laboratory evidence of hemolysis. Three bilateral lung transplant recipients were followed prospectively. The first patient had a negative DAT. The next two patients developed positive DATs on postoperative day 8 and 10, respectively. No evidence of hemolysis was detected in any of these cases. CONCLUSIONS: These results confirm that donor-derived anti-ABO antibodies develop with lung-only transplants. Our current transfusion policy is justified for both heart-lung and lung recipients of ABO-compatible but nonidentical organs. A high index of suspicion for donor-derived antibody causing hemolysis and communication with blood bank personnel are mandatory in this setting.

ABO Blood-Group System

Usefulness of surveillance endomyocardial biopsy after pediatric cardiac transplantation.

Endomyocardial biopsy remains the 'gold standard' for the diagnosis of acute rejection after cardiac transplantation, but few guidelines exist to determine the indications for its use in pediatric cardiac transplant recipients. To determine the usefulness of surveillance endomyocardial biopsy, 176 biopsies were reviewed from 12 patients, aged 0.5-16 (average 9.7) yr, maintained on cyclosporine, azathioprine and prednisone immunosuppression, and followed 2.8-45.5 (average 26.3) months after cardiac transplantation. Children old enough to cooperate (n = 6) underwent biopsy on nine occasions in the first 6 months after transplantation and quarterly thereafter. Children too young to cooperate (n = 6) underwent biopsy with general anesthesia on four occasions in the first 6 months after transplantation and every 6 months thereafter. Additional biopsies were performed as warranted by symptoms or noninvasive tests. A new episode of acute rejection was present in 13 biopsies (7%); continuing or resolving rejection in 19 others (11%). Remaining biopsies had no evidence of rejection (82 biopsies, 47%), had lymphocytic infiltrates insufficient for diagnosis (47 biopsies, 27%), were inadequate for diagnosis (14 biopsies, 8%), or were consistent with ischemia (1 biopsy, 0.5%). During the first 6 postoperative months, eight of 101 biopsies were positive for rejection, three occurring on routine surveillance biopsy. After 6 months, five of 75 biopsies showed a new episode of rejection, only one occurring on routine surveillance biopsy. Based on this data, it is concluded that: 1) episodes of rejection are relatively uncommon with triple drug immunosuppression; 2) surveillance biopsies in the first 6 months after cardiac transplantation may show unsuspected rejection; and 3) routine surveillance biopsies more than 6 months after cardiac transplantation are unlikely to show rejection in the absence of symptoms or other tests.

Adolescent

Establishing and using a local/regional cardiac surgery database.

BACKGROUND: In 1993, the Minnesota Society of Thoracic Surgeons and the Minnesota Cardiac Surgery Database were organized in response to a third-party payer demand for data about practice protocols and patient outcomes. It has matured to an active organization of 46 cardiothoracic surgeons, 14 institutions, and more than 7,000 patients who have undergone coronary artery bypass grafting. METHODS: Data are validated for completeness and accuracy through a statewide auditing process. They are coded by hospital, analyzed using the standard Society of Thoracic Surgeons National Cardiac Surgery Database format and definitions, and reviewed quarterly in a continuous quality improvement process. RESULTS: Through data review and exchange site visits, variations in practice protocols and outcomes have been identified. For example, our statewide data review and continuous quality improvement process identified prolonged ventilation (more than 24 hours) as one variation. Multidisciplinary teams were defined, and statewide exchange site visits led by cardiovascular surgeons were implemented. An example of the improvement in the accuracy and completeness of the data used to study procedure outcomes is represented by the improved reporting of ejection fraction values that has resulted from this process. CONCLUSIONS: Using the standardized Society of Thoracic Surgeons National Cardiac Surgery Database and the Minnesota Society of Thoracic Surgeons organizational structure to establish a high-quality database will allow for statewide peer review, exchange of practice guidelines, and promotion of standardization, which eventually can improve outcomes and reduce costs. This organization or model can be replicated at any local, state, or regional level. Thoracic surgeons faced with similar challenges for public disclosure of surgical results can learn much from the successful development of the Minnesota Cardiac Surgery Database.

Clinical Protocols

Early and late airway complications after lung transplantation: incidence and management.

BACKGROUND: Airway anastomosis complications continue to be a source of morbidity for lung transplant recipients. METHODS: This study analyzes incidence, treatment, and follow-up of airway anastomotic complications occurring in 127 consecutive lung transplant airway anastomoses (77 single lung and 25 bilateral sequential lung). Complications were categorized as stenosis (11), granulation tissue (8), infection (7), bronchomalacia (5), or dehiscence (3). Follow-up after treatment ranged from 6 months to 4 years. RESULTS: Nineteen airway anastomosis complications (15.0%) occurred in 18 patients. Telescoping the airway anastomosis reduced the complication rate to 12 of 97 (12.4%), compared with 7 of 30 (23.3%) for omental wrapping, (p = 0.15). Complications developed in 13 of 77 single-lung airway anastomoses (16.9%) versus 6 of 50 bilateral sequential lung recipients (12.0%). Treatment consisted of stenting (9 airway anastomoses), bronchodilation (8), laser debridement (4), rigid bronchoscopic debridement (2), operative revision (2), and growth factor application (2). There was no difference in actuarial survival between patients with or without airway anastomosis complications (p = 1.0). CONCLUSIONS: Airway anastomosis complications can be successfully managed in the immediate or late postoperative period with good outcome up to 4 years after intervention.

Adult

Risk factors for the development of bronchiolitis obliterans syndrome after lung transplantation.

OBJECTIVE: This study identifies specific clinical and immunologic factors in lung transplant recipients that influence the subsequent development of chronic allograft dysfunction. METHODS: The study group consisted of 132 consecutive patients who received lung allografts (76 single, 25 bilateral single, and 31 heart-lung) and survived at least 90 days. One hundred twenty-one patients were used in the analysis that modeled time to development of histologic obliterative bronchiolitis or bronchiolitis obliterans syndrome. RESULTS: Variables noted to have an effect on the time to development of bronchiolitis obliterans syndrome included cytomegalovirus pneumonitis (RR = 3.2, p = 0.001), late acute rejection (RR = 1.3, p = 0.02), human leukocyte antigen mismatches at the A loci (RR = 1.8, p = 0.02), total human leukocyte antigen mismatches (RR = 1.4, p = 0.04), and absence of donor antigen-specific hyporeactivity (52% vs 100% survival free from bronchiolitis obliterans syndrome at 2 years; p = 0.005). Cytomegalovirus pneumonitis had a significant effect on time to obliterative bronchiolitis (RR = 3.6, p = 0.0005), as did donor antigen-specific hyporeactivity (52% vs 100% survival free from obliterative bronchiolitis at 2 years; p = 0.01). In multivariate analysis, cytomegalovirus pneumonitis (RR = 3.2, p = 0.02), human leukocyte antigen mismatches at the A loci (RR = 2.4, p = 0.006), and late acute rejection (RR = 1.3, p = 0.02) were identified as predictors of bronchiolitis obliterans syndrome. Cytomegalovirus pneumonitis was associated with time to development of histologic obliterative bronchiolitis (RR = 2.3, p = 0.02). CONCLUSIONS: Several risk factors were associated with the development of chronic allograft dysfunction, which, in turn, had a significant impact on long-term survival. Early identification of lung allograft recipients with risk factors for the development of bronchiolitis obliterans syndrome may allow modification in immunosuppression and antiviral therapy to potentially decrease the prevalence of this disorder.

Adult

Sequential measurement of peripheral blood allogeneic microchimerism levels and association with pulmonary function.

We have shown in lung recipients that high levels of peripheral blood allogeneic microchimerism at 12 to 18 months posttransplant correlated with donor antigen-specific hyporeactivity (i.e., decreased proliferative response to donor antigen in MLC while response to 3rd-party cells remains unchanged); both parameters correlated with an obliterative bronchiolitis (OB)-free state. We have expanded these studies to determine any association of sequential microchimerism levels with concomitant clinical events. In this preliminary study of 7 lung recipients, we used limiting-dilution PCR to quantify peripheral blood microchimerism at serial timepoints ranging from 3 to >48 months posttransplant. These levels were compared with a variety of immunologic and clinical parameters: acute rejection, CMV infection, OB, donor antigen-specific hyporeactivity, and pulmonary function. Pulmonary function was measured per the International Society of Heart and Lung Transplantation: "current FEV1/ baseline FEV1" (FEV1: forced expiratory volume in 1 second). Of the clinical parameters, the association between microchimerism and pulmonary function was the most striking. We observed dynamic patterns of peripheral microchimerism, which reflected the general rise and fall of FEV1. In all 7 recipients, chimerism and FEV1 were high very early posttransplant, then dropped at various rates and to various degrees. After its initial decline, microchimerism increased with FEV1 for the 1 hyporesponsive recipient; for the other 6 recipients, both values declined. These results illustrate, for the first time, that the fluctuation of peripheral blood microchimerism levels is associated with the recipient's clinical condition.

Blood Grouping and Crossmatching

Selective IgM depletion prolongs organ survival in an ex vivo model of pig-to-human xenotransplantation.

In the pig-to-primate model, xenograft hyperacute rejection (HAR) is mediated by antibody and complement. Previous studies have implicated xenoreactive IgM natural antibody (nAb) as the predominant immunoglobulin involved in HAR. To further evaluate the role of IgM, we selectively reduced IgM levels in human blood, without changing IgG and IgA levels, and then used this blood to perfuse porcine hearts ex vivo. Specific IgM depletion was accomplished with an immunoabsorption column containing sheep anti-human IgM (mu-chain specific) conjugated to Sepharose beads. Human blood was separated into plasma and cellular components. For control experiments, those components were unmodified and recombined in the perfusion system. For experiments with IgM reduced blood, the plasma was passed through the IgM column. Immunoabsorption resulted in approximately 90% reduction in xenoreactive IgM levels, as measured by ELISA. Porcine hearts perfused with unmodified human blood survived 25 +/- 5.6 min (n=5). Porcine hearts perfused with human blood containing reduced levels of IgM survived 229 +/- 45.2 min (n=4; P<0.01). Organ survival was negatively associated with xenoreactive IgM nAb levels measured immediately before perfusion (r=-0.83; P=0.01), and not with IgG nAb levels (r=-0.21; P=0.62). The ability of plasma from IgM-depleted blood to elicit complement activation, measured by iC3b binding to porcine aortic endothelial cells in vitro, was also strongly associated with IgM xenoreactive nAb levels (r=0.92; P<0.0001). Control hearts perfused with unmodified human blood showed typical widespread histologic features of HAR, while porcine hearts perfused with IgM-reduced blood demonstrated milder and less uniform changes. Immunopathological analysis of heart tissues obtained at the completion of each study showed similar deposition of IgG between groups but markedly less IgM, C3, C4, and C9 in the IgM reduction group. These results suggest that selective IgM reduction delays HAR with prolongation of survival and that xenoreactive IgM may be the predominant immunoglobulin involved in HAR in the pig-to-human combination.

Acute Disease

Expression of human CD59 in transgenic pig organs enhances organ survival in an ex vivo xenogeneic perfusion model.

The serious shortage of available donor organs for patients with end stage organ failure who are in need of solid organ transplantation has led to a heightened interest in xenotransplantation. The major barrier to successful discordant xenotransplantation is hyperacute rejection. Hyperacute rejection results from the deposition of preformed antibodies that activate complement on the luminal surface of the vascular endothelium, leading to vessel occlusion and graft failure within minutes to hours. Endogenous membrane-associated complement inhibitors normally protect endothelial cells from autologous complement -- however, these molecules are species-restricted and therefore are ineffective at inhibiting activated xenogeneic complement. To address the pathogenesis of hyperacute rejection in the pig-to-human combination, F1 offspring were generated from a transgenic founder animal that was engineered to express the human terminal complement inhibitor hCD59. High-level cell surface expression of hCD59 was detected in the hearts and kidneys of these transgenic F1 animals, similar to expression levels in human kidney tissue. The hCD59 was expressed on both large vessel and capillary endothelium. Ex vivo perfusion experiments, using human blood as the perfusate, were performed with transgenic porcine hearts and kidneys to evaluate the ability of hCD59 to inhibit hyperacute rejection. These experiments demonstrated that transgenic organs expressing hCD69 resisted hyperacute rejection, as measured by increased organ function for both the hearts and the kidneys, as compared with control pig organs. Hearts from hCD59-expressing animals demonstrated a five-fold prolongation in function compared with controls, 109.8 +/- 20.7 min versus 21.2 +/- 2.9 min (P = 0.164). The hCD59-expressing kidneys also demonstrated significantly prolonged function at 157.8 +/- 27.0 min compared with 60.0 +/- 6.1 min for controls (P = 0.0174). Deposition of C9 neoantigen In the vasculature of porcine organs perfused with human blood was markedly reduced in organs expressing hCD59. These studies demonstrate that C5b-9 plays an important role in hyperacute rejection of a porcine organ perfused with human blood and suggest that donor pigs transgenic for hCD59 may be an integral component of successful clinical xenotransplantation.

Animals

Mycoplasma hominis infections occurring in cardiovascular surgical patients.

BACKGROUND: Postoperative Mycoplasma hominis sternal would or mediastinal infections are uncommon and difficult to diagnose. Atypical growth characteristics in routine bacterial culture, and the inability to demonstrate the organism on Gram stain, lead to delayed diagnosis of M hominis infections and increased morbidity. METHODS: Postoperative purulent would drainage or acute mediastinitis caused by M hominis developed in 3 cardiovascular surgery patients. These patients were considered along with 9 patients previously reported in the literature. RESULTS: Operative findings included moderately thick, gray purulent fluid with the degree of tissue necrosis related to duration of infection. Intraoperative Gram stain of wound or mediastinal drainage demonstrated no microorganisms, and initial bacterial cultures did not reveal microbial growth. After an average of 4.5 days of culture, minute translucent colonies of M hominis were identified. The institution of appropriate antimycoplasma therapy (doxycycline and clindamycin) was associated with clinical or microbiological cure in all patients. Sternal wound complications developed in 3 patients, and a chronic infection developed in 1 patient. CONCLUSIONS: Empiric therapy for M hominis infection should be considered in patients with mediastinitis or a sternal wound infection in which organisms are not observed on Gram stain and are not readily cultured.

Acute Disease

Primary pulmonary hypertension as a risk factor for the development of obliterative bronchiolitis in lung allograft recipients.

STUDY OBJECTIVES: Obliterative bronchiolitis (OB) is a major factor limiting long-term survival after lung transplantation. The etiology of this disease process remains incompletely understood. Several risk factors have been identified previously, including acute rejection and cytomegalovirus pneumonitis. The purpose of this study was to evaluate primary pulmonary hypertension (PPH) as a potential risk factor for the development of OB after lung transplantation. DESIGN AND PATIENTS: We retrospectively analyzed 107 lung allograft recipients (28 heart-lung, 18 bilateral sequential single-lung, 61 single-lung) who underwent transplantation between May 1, 1986, and April 30, 1994, and survived at least 3 months posttransplant. Mean follow-up posttransplant was 28.6 months (range, 3.5 to 99 months). Actuarial survival was estimated for patients with or without PPH and for those who did or did not develop OB. RESULTS: In all, 25 patients (23.4%) developed OB, diagnosed by strict histologic criteria. Of 23 patients with PPH, 9 (39.1%) developed OB, compared with 16 (19.0%) of 84 patients without PPH (p = 0.044). Actuarial survival, sex, time on waiting list, and follow-up posttransplant were not significantly different between groups. PPH was the major determinant for the development of OB (p = 0.0468) when evaluating PPH and cytomegalovirus pneumonitis together as risk factors. Patients with PPH also developed OB significantly earlier posttransplant, compared with patients with other primary disease (p = 0.05). CONCLUSIONS: Patients with PPH who undergo lung transplantation are at increased risk for the development of OB, which also occurs at a shorter time interval posttransplant. This subgroup needs aggressive monitoring for diagnosis and treatment of OB.

Adolescent

Unilateral volume reduction after single-lung transplantation for emphysema.

BACKGROUND: Single-lung transplantation has become accepted therapy for patients with end-stage emphysema. Hyperinflation of the native lung can occur after single-lung transplantation with mediastinal shifting and compression of the transplanted lung. A volume reduction operation (pneumectomy) [corrected] may relieve symptoms of dyspnea and improve exercise tolerance. METHODS: Three of 66 patients who underwent single-lung transplantation for emphysema had development of native lung hyperexpansion and mediastinal shifting causing compression of the transplanted contralateral lung at 12, 17, and 42 months after transplantation. There were 2 men and 1 woman. Unilateral volume reduction was performed without complication in all 3 patients. RESULTS: All patients were noted to have marked improvement in chest radiographs after volume reduction, substantial relief of dyspnea, and improvement in exercise tolerance. An improvement in pulmonary function test results was noted in 1 patient, but tests were not done for the other 2 patients. CONCLUSIONS: Patients with chronic obstructive pulmonary disease who undergo single-lung transplantation may have symptomatic hyperexpansion of the native lung requiring volume reduction months to years after transplantation. Unilateral volume reduction can be safely performed in the posttransplantation period.

Adult

Methotrexate for lung transplant recipients with steroid-resistant acute rejection.

BACKGROUND: Steroid-resistant or recurrent acute rejection is a risk factor for the development of chronic graft failure in lung transplant recipients. The best treatment for these patients is not known. Methotrexate has been used successfully in heart transplant recipients with persistent or recurrent acute rejection. This study was performed to evaluate the efficacy of methotrexate in lung transplant recipients with steroid-resistant acute rejection. METHODS: From January 1991 to December 1995, 12 patients with steroid-resistant acute rejection were treated with methotrexate given weekly for 6 weeks and dose-adjusted according to laboratory data and clinical side effects. After completion of therapy, all patients underwent transbronchial biopsy to evaluate the efficacy of methotrexate treatment. RESULTS: Twelve patients underwent treatment with methotrexate for steroid-resistant acute rejection. Acute rejection resolved in all patients completing at least 4 weeks of therapy; 10 of 12 patients (83%) had no further episodes of acute rejection during a mean follow-up period of 12.5 months (range 1 to 42 months). Acute rejection recurred in two patients 6 and 16 months after methotrexate therapy. Both resolved with high-dose corticosteroid therapy. One patient had asymptomatic cytomegalovirus shedding 8 weeks after completion of methotrexate therapy. One patient had aseptic meningitis after her fourth dose of methotrexate. Neither infectious complication was associated with neutropenia. One patient had bone marrow suppression and neutropenic fevers after augmentation of her methotrexate dose. Two patients received shortened methotrexate courses because of gastrointestinal side effects. CONCLUSIONS: Methotrexate is efficacious in the treatment of lung transplant recipients with steroid-resistant acute rejection. Patients must be monitored for side effects during therapy and dosing must be individualized based on laboratory and clinical parameters.

Acute Disease

Organ-specific patterns of donor antigen-specific hyporeactivity and peripheral blood allogeneic microchimerism in lung, kidney, and liver transplant recipients.

Although their relative importance and interaction are unclear, donor antigen(Ag)*-specific hyporeactivity and allogeneic microchimerism have been associated with improved long-term graft outcome and a lower incidence of chronic rejection in solid organ transplant recipients. We have postulated that a critical level of donor antigen, for a critical time period, is necessary to develop and maintain donor antigen-specific hyporeactivity; both the level and the time may differ by organ transplanted. In our current study, we tested donor antigen-specific hyporeactivity and peripheral blood allogeneic microchimerism in liver and kidney recipients and compared these values with our previous findings in lung recipients. We tested 25 liver recipients at 12 to 29 months posttransplant: 10 (40%) had developed donor antigen-specific hyporeactivity; 5 (20%), peripheral blood allogeneic microchimerism. For all but 1 of the chimeric and hyporeactive recipients, the level of donor cells was very low (< 1:20,000). Five hyporeactive recipients and all 15 donor antigen-responsive recipients did not have detectable levels of peripheral blood microchimerism. No chronic rejection has developed in any of these recipients to date--however, a lower incidence of acute rejection was observed for those recipients with donor antigen-specific hyporeactivity (30% versus 60% without) or with peripheral blood allogeneic microchimerism (20% versus 55% without) (P = ns). These results differ from our previous findings in 19 lung recipients: at 12 to 18 months posttransplant, 35% of them had developed donor antigen-specific hyporeactivity; 47%, peripheral blood allogeneic microchimerism. All donor antigen-specific hyporeactivity recipients as well as some donor antigen-responsive recipients had peripheral blood allogeneic microchimerism. We expanded our current study to include 26 recipients and a quantitative estimate of the level of allogeneic microchimerism. We observed that the hyporesponsive recipients tended to have higher levels of donor cells in their peripheral blood (> 1:6,000) than did the responsive recipients. We previously reported that 22% of kidney recipients had developed donor antigen-specific hyporeactivity at 12 to 18 months posttransplant. In our current study of 33 kidney recipients, we observed peripheral blood allogeneic microchimerism in 7 (21%) at 12 to 18 months posttransplant. The level of donor cells was very low (approximately 1:75,000), with no correlation between donor antigen-specific hyporeactivity and peripheral blood allogeneic microchimerism at the time point tested. These studies emphasize the organ-specific nature of the development of donor antigen-specific hyporeactivity and the persistence of peripheral blood allogeneic microchimerism. Donor antigen-specific hyporeactivity correlates with very low levels of donor cells in liver recipients, while a higher critical level of donor cells is important in lung recipients. Additional sequential early posttransplant studies are necessary to further define the possible interrelationship between donor antigen and the development and maintenance of donor antigen-specific hyporeactivity.

Antigen Presentation

Complement inhibition with an anti-C5 monoclonal antibody prevents acute cardiac tissue injury in an ex vivo model of pig-to-human xenotransplantation.

Prevention of hyperacute xenograft rejection in the pig-to-primate combination has been accomplished by removal of natural antibodies, complement depletion with cobra venom factor, or prevention of C3 activation with the soluble complement inhibitor sCR1. Although these strategies effectively prevent hyperacute rejection, they do not address the relative contribution of early (C3a, C3b) versus late (C5a, C5b-9) activated complement components to xenogeneic organ damage. To better understand the role of the terminal complement components (C5a, C5b-9) in hyperacute rejection, an anti-human C5 mAb was developed and tested in an ex vivo model of cardiac xenograft rejection. In vitro studies demonstrated that the anti-C5 mAb effectively blocked C5 cleavage in a dose-dependent manner that resulted in complete inhibition of both C5a and C5b-9 generation. Addition of anti-C5 mAb to human blood used to perfuse a porcine heart prolonged normal sinus cardiac rhythm from a mean time of 25.2 min in hearts perfused with unmodified blood to 79,296, or > 360 min when anti-C5 mAb was added to the blood at 50 micrograms/ml, 100 micrograms/ml, or 200 micrograms/ml, respectively. In these experiments, activation of the classical complement pathway was completely inhibited. Hearts perfused with blood containing the highest concentration of anti-C5 mAb had no histologic evidence of hyperacute rejection and no deposition of C5b-9. These experiments suggest that the activated terminal complement components C5a and C5b-9, but not C3a or C3b, play a major role in tissue damage in this porcine-to-human model of hyperacute rejection. They also suggest that targeted inhibition of terminal complement activation by anti-C5 mAbs may be useful in clinical xenotransplantation.

Acute Disease

Surfactant dysfunction in lung preservation.

We studied the effect of lung preservation on the surfactant system in rats. Lung surfactant is necessary to maintain normal lung mechanics, and hence normal lung function. We evaluated lung mechanics with pressure-volume (P-V) curves, and analyzed biochemical changes of surfactant in bronchoalveolar lavage (BAL) fluid. Additionally, we determined wet to dry weight ratios (W/D). We defined five study groups. In group I (controls) we harvested lungs without pulmonary artery flushing, then evaluated them immediately. In group II we flushed lungs through the pulmonary artery (PA) with hypothermic modified Euro-Collins solution (mECS), then removed and studied them immediately to determine the consequences of PA flushing alone. In groups III, IV, and V we flushed lungs with mECS, then stored them in normal saline (NS) for 6 hr (group III); in NS for 12 hr (group IV); or in mECS for 12 hr (group V). In groups III, IV, and V we evaluated lungs after storage. All four experimental groups showed significant changes in lung mechanics and surfactant biochemistry, compared with controls. Lungs in groups III, IV, and V showed additional changes in lung mechanics and surfactant biochemistry compared with group II. The W/D in stored lungs (groups III, IV, and V) was significantly higher than in controls and group II. We conclude that lung preservation induces deleterious changes in the surfactant system. Surfactant alterations are evident immediately after pulmonary artery flushing, and increase in severity with storage.

Animals

Removal of baboon and human antiporcine IgG and IgM natural antibodies by immunoadsorption. Results of in vitro and in vivo studies.

The safe and effective removal of xenoreactive antibodies in the peritransplant period is likely to be critical for the clinical application of xenotransplantation involving disparate donor species, such as the pig. In an effort to develop an improved method for antibody removal in xenotransplantation, we have studied reusable antihuman antibody (Ig) columns in vitro and in vivo. Two types of columns were tested: (1) an antihuman Ig column containing polyclonal sheep antihuman IgG (heavy- and light-chain-specific) conjugated to sepharose CL-4B (Ig-Therasorb), and (2) an antihuman Ig column using polyclonal antihuman IgM (mu-chain-specific) conjugated to sepharose. Passage of human or baboon plasma through the Ig-Therasorb column resulted in 97.5% and 78.4% mean reductions in total IgG and IgM, respectively. Reductions in total IgG and IgM correlated with lowering of antipig IgG (54-486 fold) and IgM (9-54 fold) antibody titers as assessed by pig endothelial cell ELISA. The ability of the Ig-Therasorb to significantly reduce IgM may be attributed to the light chain specificity of this column. With the anti-IgM column, marked reductions in total (82.6-83.9%) and antipig (27-54 fold) IgM in human and baboon plasma occurred, while levels of total and xenoreactive IgG were slightly affected. Other than a dilutional effect, neither column resulted in significant reduction in albumin, fibrinogen, factor 5, and factor 8. Repeated in vivo use of either column in baboons achieved reductions in IgG and IgM that closely followed the results of our in vitro studies. No subject morbidity or mortality occurred. Use of the Ig-Therasorb column with immunosuppression in two baboons receiving pig renal xenografts achieved sustained reductions in antipig antibodies and prevented hyperacute rejection. Subjects were sacrificed at 11 and 13 days posttransplant with functioning xenografts and were found to have no evidence of vascular xenograft rejection. We conclude that anti-Ig columns represent a safe and effective method for antibody removal, without several of the limitations of other antibody removal techniques. Also, columns appear to be safe for repeated antibody removal in the posttransplant period.

Acute Disease