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Biomedical subjects

E L Milford

Publications and source records attributed to E L Milford.

At least 19 recordsLinked to original sources

Prevalence of hepatitis C virus RNA in organ donors positive for hepatitis C antibody and in the recipients of their organs.

BACKGROUND: There is a high prevalence of liver disease among the recipients of organs from donors with antibodies to hepatitis C virus (HCV). We undertook a study to determine the frequency of persistent HCV infection, as indicated by the presence of HCV RNA, among both cadaveric organ donors positive for antibodies to HCV (anti-HCV) and the recipients or organs from these donors. METHODS: Serum samples from donors and recipients were tested for HCV RNA with the reverse transcriptase polymerase chain reaction, with use of primers from the 5' untranslated region of the HCV genome, and for anti-HCV with the first-generation enzyme-linked immunosorbent assay (ELISA) and two second-generation tests. RESULTS: HCV RNA was detected in 9 of the 11 organ donors (82 percent) with a positive first-generation ELISA for anti-HCV. Among the organ recipients, the prevalence of HCV RNA increased after transplantation: 7 of 26 patients (27 percent) had positive samples before transplantation, as compared with 23 of 24 patients (96 percent) after transplantation (P less than 0.001). Among 13 recipients who were HCV RNA-negative before receiving organs from the nine HCV RNA-positive donors, HCV infection was detected in all 13 after transplantation, and anti-HCV developed in 8 (62 percent). On the basis of a positive test for HCV RNA, the maximal sensitivity of the three anti-HCV tests was 57 percent (positive in 4 of 7 patients with end-stage organ failure) before transplantation and 70 percent (positive in 16 of 23 patients) after transplantation. CONCLUSIONS: Nearly all the recipients of organs from anti-HCV-positive donors become infected with HCV. The current tests for anti-HCV antibodies underestimate the incidence of transmission and the prevalence of HCV infection among immunosuppressed organ recipients.

Base Sequence

New recombinant HLA-B alleles in a tribe of South American Amerindians indicate rapid evolution of MHC class I loci.

Evidence suggests that the New World was colonized only 11,000-40,000 years ago by Palaeo-Indians. The descendants of these Palaeo-Indians therefore provide a unique opportunity to study the effects of selection on major histocompatibility complex class I genes over a short period. Here we analyse the class I alleles of the Waorani of South America and the Zuni of North America. Four of the Waorani HLA-B alleles were new functional variants which could be accounted for by intralocus recombination. In contrast, all of the Zuni HLA-A and -B molecules were present in caucasians and orientals. This suggests that the new Waorani HLA-B variants arose in South America. The description of four new HLA-B alleles in the Waorani and another five new HLA-B alleles from two other tribes of South American Amerindians indicates that the HLA-B locus can evolve rapidly in isolated populations. These studies underline the importance of gathering genetic data on endangered native human populations.

Alleles

Evidence for functional heterogeneity of rat CD4+ T cells in vivo. Differential expression of IL-2 and IL-4 mRNA in recipients of cardiac allografts.

The in vivo relevance of functional dichotomy of CD4+ Th clones was studied by analyzing the induction of mRNA encoding for Th1- (IL-2) and Th2- (IL-4) specific lymphokines in a model of accelerated (24 h) cardiac allograft (Tx) rejection in presensitized rats. The polymerase chain reaction-assisted screening of total cellular RNA from cardiac Tx of otherwise untreated sensitized recipients has revealed sequential lymphokine mRNA expression, with the peak of IL-2 mRNA (6-12 h) preceding that for IL-4 mRNA, which was maximal at the time of actual Tx loss (24 h). Both IL-2 and IL-4 transcripts could be readily detected by polymerase chain reaction analysis in the spleens during the course of accelerated rejection. Treatment of prospective cardiac Tx recipients with BWH-4, a mouse anti-rat CD4 mAb, abrogated rejection at 24 h and prolonged cardiac Tx survival to ca. 11 days, coinciding with significantly diminished IL-2 mRNA expression. In contrast, CD4 targeted therapy preserved intra-Tx and splenic transcription of the IL-4 gene. Spleen lymphocytes from mAb-conditioned recipients separated by magnetic microspheres into phenotypically distinct subpopulations, showed differential induction of IL-2 and IL-4 mRNA. Thus, IL-2 mRNA was at most very weakly expressed, whereas IL-4 transcription was strongly induced both in CD4+ T cells and its OX-22- subset. This study demonstrates the induction of IL-4 mRNA in situ in the rat system, describes discordant elaboration of IL-2 and IL-4 mRNA in untreated/anti-CD4 mAb-treated cardiac Tx recipients, and identifies OX-22- CD4+ T cells as the IL-4 mRNA producers. Thus, these results provide evidence for functional heterogeneity of rat CD4+ T cells in vivo, as defined by divergent mRNA lymphokine transcription profiles.

Animals

Blocking of mononuclear cell accumulation, cytokine production, and endothelial activation within rat cardiac allografts by CD4 monoclonal antibody therapy.

CD4 monoclonal antibody therapy prolongs allograft survival in a variety of experimental models and is currently undergoing clinical trials, though surprisingly little is known about the effects of CD4 mAb therapy on intragraft effector mechanisms that mediate rejection. We previously reported the significantly improved survival of (LEWxBN)F1 cardiac allografts in LEW rats treated for 10 days with the new CD4 mAb, BWH-4, at a dose of 700 micrograms/day, i.v., starting at the time of engraftment. Thus, CD4-treated rats showed prolongation of allograft survival to a median of 37 days (range 22 to greater than 100 days) post-Tx, compared with rejection at 7 days in untreated controls. We now report the results of detailed immunohistologic studies of allografts collected from these rats. Comparison of acutely rejecting allografts in untreated rats with well-functioning allografts collected at day 7 post-Tx from CD4-treated rats showed that CD4 mAb: (1) significantly reduced mononuclear cell infiltration, interstitial edema, hemorrhage formation and vascular and extravascular thrombosis; (2) inhibited mononuclear cell induction of receptors for IL-2 and transferrin, and upregulation of class II antigens and ICAM-1 on leukocytes and endothelial cells; (3) suppressed intragraft mononuclear cell and/or endothelial production of the cytokines IL-1, IL-2, IL-6, IFN-gamma, and TNF; and (4) blocked upregulation of endothelial tissue factor and downregulation of thrombomodulin, and consequently inhibited fibrin deposition. Studies of allografts from CD4-treated rats collected at day 30 post-Tx, prior to clinical rejection, showed a resurgence of CD4+ cells within allografts and a dense cellular immune response. We conclude that short-term CD4 mAb therapy has potent and extensive inhibitory effects on cytokine-related mononuclear cell and endothelial activation in vivo, blocking multiple afferent and efferent steps of the alloresponse.

Animals

Evidence that therapeutic strategies targeted at CD4+ cells modulate accelerated rejection of cardiac allografts in sensitized rats by different mechanisms.

(LEW x BN)F1 cardiac allografts are rejected within 36 hr in LEW rats presensitized with BN skin grafts 7 days earlier (acute rejection occurs within 8 days). We have previously described the effects of individual CD4 (BWH-4), CD25 (IL-2R, ART-18) mAbs, and CsA therapeutic regimens upon cardiac allograft survival in sensitized hosts. The present studies were designed to probe an adjunctive use of ART-18 or CsA upon BWH-4-mediated suppression of accelerated graft injury. Sequential therapy with BWH-4 and ART-18 in the sensitization phase (days -7 to -1) and effector phase (from day 0, the day of cardiac transplant), respectively, prolonged graft survival additively to c. 22 days. Treatment with BWH-4 markedly diminished host humoral response against ART-18 preparation. BWH-4 given in concert with subtherapeutic dose of CsA produced graft survival comparable to that induced by mAb alone (c. 13 days) with concomitant decreased host anti-BWH-4 response. None of the combined regimens affected the frequency of circulating CD4+ cells, as compared with that exerted by BWH-4 monotherapy. Thus this study defines principles and some mechanistic aspects of optimal immunosuppressive strategies potentiating the effects of CD4-targeted therapy.

Animals

Transmission of hepatitis C virus by organ transplantation.

BACKGROUND: Liver disease is a frequent and major complication after organ transplantation. We sought to determine whether hepatitis C virus (HCV) is transmitted by organ transplantation and whether it causes post-transplantation liver disease. METHODS: Serum samples from all cadaver organ donors to the New England Organ Bank between 1986 and 1990 were screened retrospectively for antibodies to HCV (anti-HCV) by enzyme-linked immunosorbent assay (ELISA). We reviewed the hospital records of all recipients of organs from anti-HCV-positive donors for evidence of liver disease. Serum samples from recipients obtained before transplantation and during follow-up were analyzed for anti-HCV. RESULTS: Of 716 organ donors, 13 (1.8 percent) were positive for anti-HCV. Their organs (19 kidneys, 6 hearts, and 4 livers) went to 29 recipients. Non-A, non-B hepatitis developed after transplantation in 14 of the 29 (48 percent), for a prevalence 7.4 times the 6.5 percent prevalence after transplantation from untested donors that was previously reported by two institutions in the organ bank (P less than 0.0001). The liver disease began a mean of 3.8 months after transplantation and became chronic in 12 patients; the other 2 had subfulminant hepatic failure. Liver disease was more frequent in the patients who had received antilymphocyte preparations (P = 0.04). HCV was the cause of the post-transplantation liver disease in 12 of the 13 recipients (92 percent) for whom serum samples were available. Anti-HCV was detected by ELISA in eight and enzyme immunoassay in one; in three others, HCV RNA was detected by polymerase chain reaction in serum samples obtained after transplantation. CONCLUSIONS: Organ transplantation can transmit hepatitis C. This raises serious questions about the continued acceptance of organs from donors positive for anti-HCV.

Adult

Ten-year experience with cyclosporine as primary immunosuppression in recipients of renal allografts.

Cyclosporine has been used as primary immunosuppression in renal allograft recipients in our unit for the past decade. The overall clinical experience and long-term effects of the agent are reviewed. There were 461 consecutive recipients of kidney grafts; 379 received grafts from cadaver donors (CAD) and 82 from living related donors (LRD). Four separate clinical protocols were used sequentially using progressively decreasing doses of CyA; azathioprine was added in group 4 recipients of LRD grafts, and in patients receiving secondary CAD grafts (group 5). The patient mortality rate was less than 5%, with sepsis being the prime contributor. The majority of kidney grafts were lost within the first 2 months after operation; those that never functioned were found almost invariably to have been irreversibly rejected. During the subsequent years of follow-up, attrition of CAD grafts was significantly greater than LRD grafts. In contrast, the attrition rate of primary and secondary CAD grafts was the same after the first 3 months, emphasizing the importance of early immunologic graft destruction. Primary nonfunction occurred in 49% of CAD kidneys and 17% of LRD grafts; however 71% of initially nonfunctioning LRD grafts never functioned at all compared to 34% of CAD grafts, the majority of such organs undergoing fulminate rejection. Individual graft loss after 1 year was almost inevitably due to chronic rejection; there were no differences in long-term allograft function among the treatment groups. Although CyA has improved overall results of kidney transplantation, chronic rejection remains a major unresolved problem.

Adult

A randomized prospective trial of anti-Tac monoclonal antibody in human renal transplantation.

Patient entry is now complete in a prospective trial of anti-Tac, a murine IgG2a monoclonal antibody directed against the p55 chain of the human IL-2 receptor, for the prevention of renal allograft rejection. Recipients of primary cadaver allografts were randomized to receive either anti-Tac (20 mg q.d. x 10 days beginning POD 1) plus low-dose CsA (4 mg/kg/day), azathioprine (2 mg/kg/day), and prednisone (30 mg q.d.), or conventional triple therapy with CsA (8 mg/kg/day), azathioprine, and prednisone. Forty patients were entered in each group, with current followup from 6 to 26 months. The results show a significant reduction in early rejection episodes in the anti-Tac-treated patients. During the 10-day treatment, 5 of 40 anti-Tac patients had rejection episodes, compared with 21 of 40 control patients (P less than 0.001). Anti-Tac significantly delayed the time to the first rejection (12.5 +/- 6.3 vs. 7.6 +/- 6.7 days) (P less than 0.05). Despite these effects, there were no differences in either actual or actuarial graft or patient survival between the two groups. Pneumonia, primarily CMV, developed in 5 treated and 4 control patients. In patients with functioning grafts mean serum creatinine at 3 months was 1.8 +/- 0.7 in the anti-Tac group and 2.0 +/- 0.8 in the control group (P = NS); at 12 months the values were 2.3 +/- 1.5 and 1.8 +/- 0.5, respectively (P = NS). The peak expression of IL-2 receptors on circulating T-cells was significantly lower in anti-Tac patients (15.1 +/- 3.6%) than in controls (21.9 +/- 4.5%) (P less than 0.05). Seven of 10 patients tested to date developed antimouse immunoglobulin antibodies, with antiidiotype shown in 6. These antibodies do not preclude subsequent treatment with OKT3. Five patients in this and previous anti-Tac protocols have received OKT3 for acute rejection despite known pretreatment antimouse antibodies, with resolution of rejection in all cases.

Adolescent

Differential role of CD4+ cells in the sensitization and effector phases of accelerated graft rejection.

Although CD4-targeted therapy markedly prolongs survival of organ allografts in naive rodents, its effects in primed hosts have not been studied. In our model of accelerated rejection (ACCR) of cardiac Tx in rats, treatment with BWH-4, a CD4 mAb (IgG2a), in the sensitization (between skin and heart Tx) but not in the effector (after cardiac Tx) phase, abrogated fulminant less than 36 hr rejection response and prolonged Tx survival to ca. 11 days. This effect correlated with decreased frequency of circulating CD4+ cells, but it did not depend upon their total depletion. It was also related to BWH-4 mAb-mediated elimination/depression of strong anti-donor humoral responses and cellular responses as determined by lymphocyte-mediated cytotoxicity and mixed lymphocyte reaction and mounted otherwise at the time of engraftment by untreated sensitized hosts. Immunoperoxidase studies of cardiac Tx from BWH-4-conditioned recipients revealed reduced T and B cell activities, reflected in abolition/reduction in deposition of humoral mediators, infiltrating cells, intra-Tx elaboration of interleukin-2 and interferon-gamma, and cell activation. This first report of the successful use of CD4 mAb in sensitized recipients of vascularized organ Tx, stresses the role of CD4+ cells as potential targets for immunosuppression in the sensitization phase of accelerated Tx injury. The beneficial therapeutic effect, probably due to both depletion and functional inhibition of CD4+ T cells, has been achieved by using relatively low doses of BWH-4 mAb.

Animals

Effects of BWH-4 anti-CD4 monoclonal antibody on rat vascularized cardiac allografts before and after engraftment.

We studied the effects and mechanism of action of BWH-4, an IgG2a mouse antirat CD4 monoclonal antibody that recognizes a distinct epitope on the CD4 molecule, in LEW recipients of (LEW x BN)F1 vascularized heterotopic cardiac allografts. Ten animals received daily injections of 700 micrograms BWH-4 for ten days after engraftment. Median actuarial allograft survival was 37 days for the treated animals compared with 7.5 days for controls (n = 6). There was depletion of peripheral blood CD4+ lymphocytes to 4 +/- 1% one week posttransplant (normal = 48 +/- 4%, n = 6). Six additional animals were treated with a lower dose (100 micrograms) of BWH-4 daily for ten days. Median actuarial allograft survival was 10 days and the circulating CD4+ cells decreased to 30 +/- 6% at one week posttransplant. All six low-dose-treated animals mounted an anti-BN alloantibody response by 3 weeks, while only one of the ten high-dose-treated animals had positive alloantibodies two weeks posttransplant. Lymphocyte-mediated cytotoxicity against donor lymphoblasts was completely abolished in the high-dose-treated animals when compared with acutely rejecting controls. We also used low-dose (100 micrograms) BWH-4 to pretreat eleven experimental animals for 7 days prior to engraftment. The circulating CD4+ cells decreased to only 12 +/- 2% on the day of transplantation and 26 +/- 9% one week posttransplant. However, six (55%) pretreated animals survived more than 55 days. There was a 66% decrease in lymphocyte-mediated cytotoxicity against donor lymphoblasts when compared with acutely rejecting controls. We conclude that the anti-CD4 mAb, BWH-4, prevents acute rejection of vascularized heterotopic rat cardiac allografts; this effect is mediated by depletion of the CD4+ T cell subset, suppression of alloantibody production, and inhibition of lymphocyte-mediated cytotoxicity.

Animals

Prevention of graft-versus-host disease following small bowel transplantation with polyclonal and monoclonal antilymphocyte serum. The effect of timing and route of administration.

Graft-versus-host disease is a potential problem following small bowel transplantation. We have previously shown that a two-day intraperitoneal course of polyclonal antilymphocyte serum completely prevents GVHD without impairing allograft function in a unidirectional rat small bowel transplant model. In the present study we sought to determine the optimum route and timing of ALS administration and whether donor pretreatment with the anti-T cell receptor monoclonal antibody R73 would be similarly effective in preventing GVHD. Both intravenous and intraperitoneal injection of ALS effectively prevent GVHD in this model. ALS must be given to donors at least 48 hr prior to graft procurement for maximum effectiveness. Prevention of GVHD correlates with lymphocyte depletion in mesenteric lymph nodes, as opposed to peripheral blood or small bowel lamina propria. Donor pretreatment with the monoclonal antibody R73 significantly delays the onset of GVHD in this small bowel transplant model but appears less effective than polyclonal ALS.

Animals