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Biomedical subjects

R R Bollinger

Publications and source records attributed to R R Bollinger.

At least 37 records · Page 2Linked to original sources

Mechanisms of injury in porcine livers perfused with blood of patients with fulminant hepatic failure.

Hyperacute rejection of renal and cardiac xenografts is initiated by the reaction of recipient natural antibodies and complement with endothelial cell antigens of the donor organ. The liver is thought to be less susceptible to this form of rejection; however, the mechanisms underlying its decreased susceptibility are not known. We investigated the organ injury occurring in porcine livers perfused with blood from 4 human subjects with fulminant hepatic failure. Nine porcine livers were perfused via an extracorporeal circuit in order to provide temporary metabolic support. Each porcine liver exhibited metabolic function, and the duration of xenoperfusion ranged from 2 to 5 hr. Histologic examination of the xenoperfused livers revealed focal hepatocellular necrosis, prominent infiltration of neutrophils, and, in 7 of 9 cases, periportal and centrilobular hemorrhage and thrombosis. Immunopathology demonstrated minimal or no human IgM and IgG along the small vessels and sinusoidal surfaces. Trace deposits of human IgM were observed along the luminal surfaces of large blood vessels in most cases. Trace deposits of C3 were noted in 2 of 9 livers; however, C4, iC3b, C5b, properdin, and the membrane attack complex were not detected. Human anti-porcine natural antibody titers decreased less than expected during the perfusions. Serum CH50, C3, and C4 levels were low before each procedure and decreased slightly with perfusion. One patient perfused 2 porcine livers and a human liver. The human liver had focal hepatocellular necrosis, trace deposits of IgM, no deposits of complement, and an infiltrate consisting of neutrophils; however, the neutrophil influx was less than that observed in the xenoperfused livers. To further evaluate the effects of alloperfusion, venovenous bypass was established in 2 pigs and the extracorporeal circuit was utilized to perfuse 2 porcine livers. The alloperfused porcine livers had focal hepatocellular necrosis and a minimal infiltrate of neutrophils. There were no deposits of porcine IgM, IgG, or complement components. In conclusion, although the porcine livers perfused by human blood sustained structural damage, the time course, the absence of immune deposits, and the findings of similar, albeit less severe, lesions in the alloperfused livers suggest that the pathogenesis of tissue injury in the xenoperfused livers differs from that of hyperacute rejection and may be related to the action of recipient neutrophils.

Adult↗

Substance P binding sites on intestinal lymphoid aggregates and blood vessels in inflammatory bowel disease correspond to authentic NK-1 receptors.

Previous reports have described the ectopic expression of substance P binding sites on lymphoid aggregates and small blood vessels in inflammatory bowel disease. In this report, three non-peptide NK-1 receptor antagonists, CP-96,345, RP-67,580, and L-703,606 abolished saturable 125I-Bolton-Hunter substance P binding to the ectopically expressed receptors in frozen sections of surgically resected bowel from five patients with either Crohn's disease or ulcerative colitis. The rank order of affinity was approximately substance P approximately CP-96,345 approximately L-703,606 > RP-67,580. These results suggest that: (i) the ectopically expressed substance P binding sites in inflammatory bowel disease are authentic NK-1 receptors, (ii) all ectopically expressed receptors on small blood vessels, and lymphoid aggregates as well as normally expressed receptors on the bowel circular muscle have similar receptor affinities and specificities for substance P and the non-peptide antagonists, and (iii) non-peptide antagonists may be therapeutically beneficial in inflammatory bowel disease by inhibiting the pro-inflammatory effects of substance P acting via the NK-1 receptor.

Binding Sites↗

The effect of soluble complement receptor type 1 on hyperacute rejection of porcine xenografts.

The use of xenografts (Xgs) from distantly related species to relieve the increasing shortage of organs for clinical transplantation is prevented by the occurrence of hyperacute rejection (HAR). This process, in which C activation plays a central role, cannot be inhibited with currently available immunosuppressants. In two clinically relevant xenotransplantation models, this study evaluated the effect of C inhibition using recombinant soluble complement receptor type 1 (sCR1) on HAR. In an ex vivo model in which porcine cardiac Xgs were perfused with human blood, cardiac function ceased within 34 min when the perfusate blood was untreated (n = 3). When the perfusate blood was treated with sCR1 (300 micrograms/ml), cardiac Xg function was maintained for up to 4 hr (n = 3). Immunohistologic examination of these Xgs demonstrated deposition of C3b/iC3b and C3d in Xgs perfused with untreated human blood but only C3d deposition in those Xgs perfused with sCR1-treated human blood. These findings are consistent with the cofactor activity of sCR1 for factor I-mediated degradation of deposited C3b/iC3b to C3d. Treatment with sCR1 also prevented the histopathologic changes of HAR observed when untreated blood was used as the perfusate. In an in vivo pig-to-primate heterotopic cardiac xenotransplantation model, in which porcine Xgs transplanted into untreated cynomolgus monkey recipients underwent HAR in 1 hr or less (n = 3), a single intravenous bolus of sCR1 (15 mg/kg) administered to the recipient immediately before Xg reperfusion markedly inhibited total and alternative pathway serum C activity and prolonged Xg survival to between 48 and 90 hr (n = 5). These studies confirm the important role of C activation in HAR of porcine cardiac Xgs by primates and indicate that sCR1 may be a useful agent for xenotransplantation.

Animals↗

Adenine nucleotides of ischemic intestine do not reflect injury.

Warm ischemia of the intestine is a medical emergency which results from mesenteric vascular occlusion. In addition, intestinal transplantation techniques will also inevitably result in intestinal ischemia. The recovery of organ function following ischemia depends on the extent of irreversible damage produced by the ischemia and the extent of reflow upon reperfusion. In some organs energy homeostasis has been found to correlate with organ recovery and graft survival following ischemia-reperfusion. Investigating the usefulness of the determination of adenine and pyridine nucleotides as indicators of the extent of ischemic injury in intestinal segments, we found that after an initial 40% decrease in ATP following 30 min of ischemia there was no further decrease despite increasing the ischemia period to 120 min. Similarly, the decrease in NAD+ and NADP which occurred after 30 min of ischemia did not decrease further after 60, 90, or 120 min of ischemia. Xanthine was the only biochemical where an increase appeared to correlate with ischemia duration while energy charge was of no value in indicating injury extent. Additionally, after reperfusion there was at best a poor correlation between recovery of ATP content and the duration of ischemia. Microcirculation reflow after reperfusion indicated ischemia time-related endothelial cell injury. Thus, the measurement of high-energy phosphates in intestinal segments is not of value as an indicator of the extent of intestinal ischemic injury.

Adenine Nucleotides↗

The human antiporcine cellular repertoire. In vitro studies of acquired and innate cellular responsiveness.

Discordant xenogeneic transplantation offers a potentially unlimited source of donor organs from easily bred, nonendangered, physiologically compatible animals, but has been limited by the inevitable occurrence of hyperacute rejection (HAR). The potential existence of cell-mediated discordant graft rejection has remained obscured by HAR, and hence is incompletely understood. To define the cellular elements capable of recognition of and subsequent response against discordant tissue in a clinically applicable species combination, we have studied the in vitro interaction of human peripheral blood lymphocytes against 3 porcine B lymphoblastoid cell lines and 6 primary porcine endothelial cell populations. PBL from all individuals tested (n = 10) proliferated in response to culture for 72 hr in xenogeneic mixed lymphocyte culture (XMLC) with cell lines expressing porcine MHC (SLA) class II antigens, while endothelial cultures lacking SLA class II generally failed to evoke a response. The proliferative response to class II-positive cells was attenuated by addition of anti-SLA class II antibody but not by anti-SLA class I antibody. Two endothelial populations expressing class II stimulated an inhibitable proliferative response. The magnitude of the short-term proliferative xenogeneic response was similar to that evoked by fully mismatched allogeneic human B lymphoblastoid stimulators. Additionally, extended XMLC was performed with PBL from 3 individuals. All populations responded with continued proliferation when repeatedly stimulated by porcine cells. This was characterized not only by T cell growth, but by prominent NK cell growth as well. Elucidation of the TCR V beta chain usage patterns by semiquantitative PCR documented selection of TCR transcripts from gene family V beta 2 in each group, complemented by a heterogeneous mixture of other transcripts including V beta 17.1, 20.1, and 6.1, suggesting that direct human TCR binding of porcine cells occurs, and that it is likely to be an individualistic response complemented by a more homogeneous NK response. A 51Cr release assay was utilized to demonstrate that unprimed PBL could also lyse porcine target cells. This cytotoxic response was maintained despite the complete removal of T cells, suggesting that porcine-directed NK cell activity is present prior to the maturation of any T cell response. Cytolysis was also demonstrated in serum-free medium and thus was not mediated solely by antibody-dependent cellular cytotoxicity. Chinese hamster ovary cells transfected with the human T cell receptor accessory molecule CD4 were used to study the ability of this molecule to stabilize the interaction between the human TCR and SLA class II.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Renal allograft-infiltrating lymphocytes. A prospective analysis of in vitro growth characteristics and clinical relevance.

One-hundred consecutive human renal allograft Tru-cut needle biopsies were studied for in vitro proliferation of T lymphocytes under restrictive culture conditions containing low-dose recombinant interleukin 2. Each biopsy was entered into a blinded code and evaluated prospectively for visual evidence of growth at 24 hr and for sustained growth. Those T cell populations exhibiting sustained growth were then evaluated for cell surface phenotype by FACS; for allospecific cytotoxicity by 51Cr release; for a proliferative response to alloantigen by incorporation of [3H]-thymidine; and for secretion of IL-2, IL-4, IFN-gamma, and TNF-alpha in response to alloantigenic stimulation by ELISA. All results were compared with clinical diagnosis, immunosuppression at time of biopsy, diagnosis and phenotype by immunopathology, short-term outcome and long-term graft survival. Growth at 24 hr was predictive of acute cellular rejection (P less than 0.0005), unrelated to chronic rejection (P = 0.663) or maintenance immunosuppression (P = 0.911), and inversely correlated with cyclosporine toxicity (P = 0.051) and treatment with OKT3 (P = 0.014). The CD4/CD8 ratio of the sustained T cell populations was unrelated to that seen on histological examination (correlation coefficient = -0.098 and 0.044 for diffuse and aggregate infiltrates, respectively). Cytotoxic specificity for HLA class II was mediated by CD4+ cells and for HLA class I by CD8+ cells. Enhanced secretion of IL-2 in response to alloantigen distinguished those cells associated with irreversible allograft damage from those associated with complete functional recovery (P = 0.01). This study demonstrates that early evaluation of T cell proliferation in vitro identifies activated T cell infiltrates mediating acute cellular allograft rejection in a time frame suitable for clinical diagnostic application. It strengthens the concept that donor-specific cytotoxicity is governed by the stabilization of the alloantigen-T-cell receptor interaction by the accessory molecules CD4 and CD8, but either interaction is equally able to participate in an episode of acute rejection. Irreversible graft injury is associated with infiltrating cells that are capable of amplifying their responsiveness through secretion of IL-2.

CD4 Antigens↗