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Biomedical subjects

F Sanfilippo

Publications and source records attributed to F Sanfilippo.

At least 19 recordsLinked to original sources

Effect of continuous complement inhibition using soluble complement receptor type 1 on survival of pig-to-primate cardiac xenografts.

A single bolus of soluble complement (C) receptor type 1 (sCR1, TP-10) has been shown to delay hyperacute rejection (HAR) of porcine cardiac xenografts (Xgs) by primate recipients. In these recipients, C activity slowly returned and C deposition was noted in the Xgs at rejection. To evaluate the effect of sustained C inhibition using sCR1 on HAR, two additional cynomolgus monkeys received porcine cardiac Xgs and a continuous infusion of sCR1. In the first recipient, Xgs survival was 5 days (120+ hr), whereas in the second, Xg survival was 7 days (168+ hr). Serial biopsies of the Xgs were remarkable for an increasing cellular infiltrate composed predominantly of neutrophils and macrophages, and the development of edema, hemorrhage, and myocyte necrosis. These findings suggest that once C-mediated HAR has been inhibited, infiltration of the Xg by these cells may lead to accelerated acute rejection, which is an additional barrier to successful longer term Xg survival.

Animals

CTLA4Ig inhibits alloantibody responses to repeated blood transfusions.

Allosensitization is a fundamental problem that limits the effectiveness of blood transfusions. Patients who receive multiple transfusions of blood or blood components frequently develop alloantibodies against donor alloantigens. Allosensitized patients are refractory to further transfusion and difficult to transplant successfully. CTLA4Ig fusion protein, which blocks the CD28-B7 costimulatory pathway in T-lymphocyte activation, was tested for its capacity to inhibit allosensitization to blood transfusions. Groups of LEW (RT1') rats were transfused with ACI blood (RT1a) together with L6 (a human immunoglobulin G1 [IgG1] antibody as isotype control) or CTLA4Ig in different doses (0.004, 0.02, 0.1, and 0.5 mg). Rats were retransfused with ACI blood after 28 and 84 days without any additional CTLA4Ig therapy. Weekly sera samples were tested for alloantibody against donor leukocytes using flow cytometry. CTLA4Ig caused a dose-dependent decrease in the IgM alloantibody response against donor major histocompatibility complex (MHC) class I antigens. In addition, 0.02-, 0.1-, and 0.50-mg doses of CTLA4Ig totally inhibited the IgG responses to the first transfusion, and this immunosuppressive effect persisted for the second and third transfusions. To study the capacity of CTLA4Ig to prevent a secondary immune response, three groups of LEW rats were transfused with ACI blood with no accompanying treatment. Animals were retransfused 28 days later with ACI blood together with L6 control antibody or 0.5 or 2.5 mg CTLA4Ig. CTLA4Ig, but not L6, prevented an increase in IgG alloantibody response despite repeated transfusions. The effects of CTLA4Ig treatment on helper T-lymphocyte proliferation was tested by limiting dilution analysis (LDA). Peripheral blood cells taken 30 days after blood transfusion and CTLA4Ig treatment contained significantly decreased donor-specific T-lymphocyte precursors compared with L6-treated rats. These data support the idea that blocking the B7/CD28 signal of T-lymphocyte activation by CTLA4Ig treatment at the time of transfusion may be an important therapeutic tool to inhibit alloantibody responses to blood transfusions.

Abatacept

Inhibition of complement, evoked antibody, and cellular response prevents rejection of pig-to-primate cardiac xenografts.

Complement (C) inhibition alone using a recombinant soluble form of complement receptor type 1 (sCR1) prevents hyperacute rejection but not subsequent irreversible accelerated acute rejection of discordant pig-to-cynomolgus monkey cardiac xenografts, which occurs within 1 week. To inhibit accelerated acute rejection, which is associated with a rise in serum xenoreactive antibody (Ab) and a cellular infiltrate, triple therapy with standard immunosuppressive agents (cyclosporine, cyclophosphamide, and steroids [CCS]) was combined with continuous C inhibition using sCR1. Each of two monkeys that received sCR1 + CCS showed minimal evidence of rejection when killed on days 21 and 32 in comparison to a monkey that received sCR1 + subtherapeutic CCS (rejected at 11 days) and a control that received CCS alone (rejected at 38 min). Prolonged xenograft survival was associated with low Ab levels and a minimal cellular infiltrate, suggesting that combined inhibition of C, xenoreactive Ab responses, and cellular immunity may be a useful approach in overcoming the immune barriers to discordant xenotransplantation.

Animals

Functional activity of anti-C6 antibodies elicited in C6-deficient rats reconstituted by liver allografts. Ability to inhibit hyperacute rejection of discordant cardiac xenografts.

A critical role of the complement membrane attack complex (C5b-9) in mediating hyperacute rejection has been demonstrated previously in fully C6-deficient PVG (C-)(RT1c) rats that reject guinea pig cardiac xenografts at a delayed tempo (45 +/- 9 hr; n=16) compared with C6-sufficient PVG (C+)(RT1c) hosts (0.5 +/- 2 hr; n=6). We have investigated whether selective depletion of C6 from Lewis rats by antibody therapy prevents hyperacute rejection. A polyclonal rat-antirat C6 antibody was induced in PVG (C-) recipients by orthotopic liver transplants from congenic PVG (C+) donors. These liver grafts produced high levels of C6 that reconstituted the complement function of PVG (C-) hosts by 7 days, but the recipients responded within 28 days with the synthesis of an IgG1 antibody to rat C6. The antiserum inhibited hemolytic complement activity of Lewis (RT1(1)) rats in vivo and in vitro. The effect of C6 depletion on Xg survival was investigated by injecting Lewis rats with 2 ml of rat-antirat C6 antiserum before and 1 ml after reperfusion of the guinea pig cardiac xenograft. Lewis rats rejected guinea pig cardiac xenografts after treatment with this rat-antirat C6 antiserum in 38 +/ -11 hr (n=3). Treatment with normal control sera from PVG (C-) rats did not prolong guinea pig cardiac xenograft survival in the Lewis rats (1 +/- 0.7 hr; n=3)(P<0.0043). Injection of 3 ml of the IgG fraction purified from the rat-antirat C6 antibody (33 mg/ml) prolonged xenograft survival to 13.6 +/- 4 hr (n=4) compared with the survival of 0.61 +/- 0.3 hr (n=4) after injection of control rat IgG (33 mg/ml) (P<0.005). These results demonstrate that specific depletion of C6 by antibody therapy has a significant effect on guinea pig cardiac xenograft survival in the Lewis rat. These findings further suggest that C6 depletion may be beneficial to patients undergoing hyperacute rejection of xenografts or allografts.

Animals

Induction of heat shock protein in cardiac allograft rejection--a cyclosporine-suppressible response.

The cellular response to a wide variety of stresses results in the synthesis of a family of proteins termed heat shock proteins (HSPs). To determine if acute allograft rejection could induce these proteins in a transplanted graft, we examined the HSP response to acute cardiac allograft rejection and analyzed the effect of immunosuppression upon this response. Donor hearts obtained from either Lewis (LEW) or ACI rats were heterotopically transplanted in recipient LEW rats. There were 4 experimental groups: untreated isografted (LEW to LEW) animals (n = 14), untreated allografted (ACI to LEW) animals (n = 14), cyclosporine-treated (10 mg/kg SQ/day) isografted animals (n = 12), and cyclosporine-treated allografted animals (n = 12). Animals were sacrificed on posttransplantation day 2, 4, or 6 (time of rejection for untreated allografts); n = 4-5 for each time point per group. At these times tissue obtained from the transplanted heart was examined histologically and analyzed for HSP72 by quantitative Northern and Western blots. The level of HSP72 in the untreated allografts progressively increased between 2, 4, and 6 days posttransplantation and was significantly greater than that of the untreated isografts at all time points. The HSP72 response in cyclosporine-treated allografts was significantly reduced at 4 and 6 days posttransplantation compared with the untreated allografts. In contrast, there was no difference in the HSP response in treated versus untreated isografts. Additionally, there was no difference in HSP levels in cyclosporine-treated isografts and allografts. These findings demonstrate that HSP expression in the transplanted heart correlates directly with the evolution of acute allograft rejection, and that immunosuppressive therapy inhibits the HSP response. These studies also raise the possibility of a functional role for HSPs in the allogeneic immune response.

Animals

Clinical and cost impact of second-opinion pathology. Review of prostate biopsies prior to radical prostatectomy.

Despite numerous studies evaluating second-opinion surgical programs, we are unaware of work evaluating the cost effectiveness of a second opinion for pathology prior to surgery. One of six pathologists reviewed the pathology of the outside needle biopsies of 535 consecutive men referred to Johns Hopkins Hospital for radical prostatectomy over a 12-month period (from October 1993 until October 1994) before the men underwent surgery. Of the 535 needle biopsies initially diagnosed on the outside as adenocarcinoma of the prostate, seven (1.3%) were reclassified as benign upon pathology review at Johns Hopkins Hospital. The most common lesion misinterpreted as adenocarcinoma was adenosis or less pronounced examples of adenosis consisting of foci of crowded glands (five cases). Foci of atrophy in the remaining two cases were misdiagnosed as adenocarcinoma of the prostate. Upon subsequent clinical work up, six of seven men were considered not to have adenocarcinoma, and their surgery was cancelled. The cost for reviewing all 535 preoperative needle biopsies was $44,883, which included the cost of immunohistochemical studies for high-molecular-weight cytokeratin and repeat biopsies and ultrasounds in men whose diagnoses were reversed. The total cost of the radical prostatectomies had the six men undergone surgery was estimated at $85,686, including hospitalization, anesthesia, radical prostatectomy pathology, and surgery. This cost savings did not include other costs resulting from lost wages, morbidity, or potential litigation. Second-opinion pathological evaluation of prostate biopsy before radical prostatectomy is cost effective and has a major impact on clinical treatment for a subset of patients.

Adenocarcinoma

Immunohistochemical manifestations of unilateral kidney ischemia.

Events in the early post-transplant period have been correlated with increased renal allograft loss. Immunologic reactions and ischemic injury have been implicated in this process. While the immunologic aspects of allograft injury have been studied extensively, ischemic effects remain less well understood. To study the effects of ischemia in rats with different genetic backgrounds without the introduction of an alloimmune response, a clamp was placed on the vascular pedicle of the left kidney for 60 min. The short-term effects (1 wk) of ischemia were studied in groups of PVG (RT1c), LEW (RT1), DA (RT1a) and WR (RT1u) rats, Immunoperoxidase staining demonstrated limited infiltration of monocytes, macrophages, and T-cells accompanied by upregulation of low levels of MHC class II antigens on tubular epithelial cells, peritubular capillaries, and interstitial cells in kidneys of PVG and WF rats. Kidneys of LEW and DA rats had greater influxes of monocytes, macrophages, and T cells in addition to higher amounts of MHC class II antigens upregulation on tubular epithelium and interstitial cells. The long-term effects of ischemia were studied in kidneys of WF rats. These kidneys had a progressive increase in infiltrating T cells, monocytes, macrophages and MHC class II expression on the tubular epithelium and the interstitial cells at 14, 30, and 90 d after the ischemic insult. The differences in MHC class II expression between ischemic kidneys of PVG and LEW rats were not associated with differences in production of mRNA for IL-2, IFN-gamma, and TNF-alpha. In summary, transient renal ischemia in the absence of an allogeneic immune response triggers a progression of inflammatory responses, including leukocyte infiltration, cytokine production and MHC class II antigen upregulation which appears to be strain-dependent.

Animals

Extrahepatic synthesis of C6 in the rat is sufficient for complement-mediated hyperacute rejection of a guinea pig cardiac xenograft.

The liver is the major source of complement (C) components, but extrahepatic sources of C, such as macrophages and endothelial cells, have been hypothesized to contribute to inflammation. Our experiments demonstrate that extrahepatically produced C6 can contribute to hyperacute rejection. PVG (RT1c) rats with normal C activity (PVG (C+)) reject guinea pig cardiac xenografts in 0.5 +/- 0.2 hr, but fully C6-deficient PVG (RT1c) rats (PVG (C-)) reject guinea pig cardiac xenografts in 45 +/- 9 hr. PVG (C+) rats, which received liver transplants from PVG (C-) rats and retained all extrahepatic sources of C6, rejected guinea pig cardiac xenografts in 0.6 +/- 0.03 hr (n = 3). PVG (C-) rats, which received bone marrow transplants from PVG (C+) rats, had C6 levels restored to 10% of that of the donor and rejected guinea pig cardiac xenografts in 9 +/- 3.2 hr (n = 5). Thus, extrahepatic sources of C6 can contribute to xenograft rejection.

Animals

Predominant infiltration of rejecting human renal allografts with T cells expressing CD8 and CD45RO.

Subsets of T cells have been identified by the expression of different isoforms of CD45. Some T cells expressing CD45RA (gp220) have been characterized as "naive" in their response to antigens including alloantigens, whereas T cells expressing CD45RO (gp180) have been characterized as "memory" T cells. To examine the potential association between kidney allograft rejection and infiltration with these subsets, immunohistologic labeling of serial frozen sections from 17 nonrejecting and 18 rejecting kidney transplant biopsies was performed. Biopsies were selected on the basis of unambiguous clinical pathological diagnosis, no antirejection therapy within 1 month before biopsy, and enough tissue available for immunohistologic labeling. Sections were labeled for CD3, CD4, CD8, CD45RA, and CD45RO, and slides were evaluated in a masked manner. The numbers of cells were counted in 10 (400x) high power fields (HPF) in each section. The medians of average cell counts were significantly higher in the rejecting compared with nonrejecting group for CD3+, CD4+, CD8+, CD45RA+, and CD45RO+ T cells in both diffuse and aggregate patterns of infiltration. However, the numbers of infiltrating cells per HPF in rejecting grafts were most striking for CD8+ and CD45RO+ cells: 16/18 rejecting vs. 1/17 nonrejecting cases had more than 5 CD8+ cells/HPF. Likewise, 17/18 rejecting vs. 1/17 nonrejecting cases had more than 5 CD45RO+ cells/HPF. In both cases, the difference was most striking for cells infiltrating in a diffuse versus aggregate pattern. Significantly higher CD45RO+ to CD45RA+ ratios were observed in rejecting versus nonrejecting groups, both in the diffuse and aggregate patterns. Within the rejecting cases, the CD45RO+ to RA+ ratio was significantly higher in diffuse versus aggregate patterns of infiltration (P < 0.0002). These results indicate that a significant increase in CD8+, CD45RO+, and the ratio of CD45RO+ to CD45RA+ T cells in a diffuse pattern of infiltration is most characteristic of clinical renal allograft rejection.

Biopsy

The contribution of terminal complement components to acute and hyperacute allograft rejection in the rat.

Acute rejection and antibody-mediated hyperacute allograft rejection are affected by activation of the complement cascade. Split products of early complement components influence the localization, activation, and effector functions of platelets, granulocytes, monocytes, and lymphocytes, while the formation of membrane attack complex (C5b-C9) can lead to rapid cell destruction. Therefore, we compared acute and Ab-mediated hyperacute allograft rejection in a recently described model of C6 deficient PVG (C-) (RT1c) rats and their normal counterpart PVG (C+) (RT1c) rats. Cardiac allografts from fully MHC disparate ACI donors were heterotopically grafted into naive and skin graft sensitized PVG (C-) and PVG (C+) rats. ACI cardiac allografts were rejected acutely (8.3 +/- 2 days; n = 7) by naive PVG (C+) recipients, but survived significantly longer in PVG (C-) recipients (22 +/- 10 days; n = 10). Presensitized PVG (C+) rats rejected ACI cardiac allografts hyperacutely in 6.1 +/- 2.4 hr (n = 5). In contrast, ACI cardiac allografts transplanted into presensitized (PVG (C-) rats had markedly longer survival of 91 +/- 14 hr (n = 5). The alloantibody responses of naive PVG (C+) and PVG (C-) recipients 7 days after cardiac allografting, and of presensitized PVG (C+) and PVG (C-) recipients at time of cardiac allografting were not significantly different as measured by flow cytometry against ACI lymphocytes. Immunofluorescence demonstrated deposition of IgM, IgG and C3 in ACI allografts in PVG (C-) as well as in PVG (C+) recipients. Deposition of C6 was only found in grafts rejected by PVG (C+). The significantly longer survival of ACI cardiac allografts in C6-deficient PVG (C-) rats indicates that the membrane attack complex contributes to acute as well as antibody-mediated hyperacute allograft rejection.

Acute Disease

The association of lymphocytotoxic antibodies with corneal allograft rejection in high risk patients. The Collaborative Corneal Transplantation Studies Research Group.

The Collaborative Corneal Transplantation Studies are a pair of multicenter prospective clinical trials evaluating the effectiveness of histocompatibility matching in high risk keratoplasty patients. The antigen matching study (AMS) evaluated HLA matching in patients without circulating lymphocytotoxic antibody to HLA antigens and the cross-match study (CS) evaluated the effect of using cross-match-negative donors in patients with identified circulating lymphocytotoxic antibodies to HLA antigens. Sera from 510 patients considered for enrollment in the studies were screened preoperatively for the presence of anti-class I lymphocytotoxic antibodies (LA). The 42 patients (8%) found to have detectable LA entered the CS. The 468 patients found not to have detectable LA preoperatively entered the AMS. Fifteen of the 37 transplanted CS patients were found to have donor-specific anti-class I antibody (before or after surgery). These patients were also screened for anti-class II LA and 25 had anti-class II panel reactive antibody > or = 5%. Forty-nine of the 419 transplanted AMS patients (12%) were found to have produced anti-class I LA after surgery, and in 19 patients, antibody specificities were those of donor HLA antigens. There was a significant association between the number of mismatched class I antigens and the number of donor-specific LA produced. The production of LA by AMS patients was significantly associated with reaction episodes; eighty-two percent of patients (40 of 49) with LA had reaction, compared with 63% of patients (230 of 365) without LA (P = 0.02). Likewise, production of donor-specific LA was significantly associated with immune-mediated graft failure (P = 0.025). For CS patients, there was no correlation between the production of donor-specific anti-class I or nonspecific anti-class II antibodies and graft outcome. However, the CS patients had poorer graft survival than did AMS patients at 3 years (57% vs. 66%, P = 0.01). These data demonstrate that LA, especially directed against donor class I HLA antigens following corneal transplantation in high risk patients, are associated with immune graft rejection and can be an indicator of allograft rejection.

Antilymphocyte Serum

Hepatic and extrahepatic biosynthesis of complement factor C6 in the rat.

The relative contributions of liver and bone marrow (BM) constituents to systemic C6 production were compared in a rat model. Liver grafts were transplanted from C6-sufficient PVG (RT1c) rats (PVG (C+)) to profoundly C6-deficient PVG rats (PVG (C-)). C6 levels were restored to 32% within 24 h and reached more than 80% of that of the PVG (C+) donor within 7 days post-grafting, which indicates that the liver is a primary source of systemic C6 production. When livers were transplanted from PVG (C-) to PVG (C+) rats (n = 3), levels of C6 dropped to 42% of pretransplant levels within 24 h and remained between 30 and 40% for more than 100 days after grafting. To determine the source of extrahepatic C6 production, BM was transplanted from PVG (C+) to PVG (C-) rats after total body irradiation. Levels of C6 increased from undetectable levels to 5% of C6 levels of the donor PVG (C+) rat within 60 days. Replenishing PVG (C-) recipients with BM after treatment of recipients with busulfan, which preferentially allows reconstitution with donor myelomonocyte stem cells, resulted in restoration of C activity. Treatment with cyclophosphamide before BM transplantation, which preferentially allows reconstitution of lymphoid stem cells, did not restore hemolytic C activity in PVG (C-) rats. These results were confirmed directly by the successful restoration of C activity with BM depleted of lymphocytes by counterflow centrifugal elutriation from PVG (C+) rats. These in vivo experiments demonstrate that the liver is a primary, but not the sole, source of C6 in the rat and that extrahepatic sources, such as myelomonocytes, and not lymphoid cells in the BM produce a significant amount of systemic C6 in the rat.

Animals