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W D Whitley

Publications and source records attributed to W D Whitley.

7 recordsLinked to original sources

Cytokines, adhesion molecules, and the pathogenesis of chronic rejection of rat renal allografts.

Little is known of the host immune mechanisms responsible for initiation and progression of chronic rejection. We describe immunopathologic features associated with progressively deteriorating function of kidney allografts in the F344-to-Lewis rat strain combination, which differ at MHC and non-MHC loci. Initial rejection in untreated recipients was controlled by a brief course of CsA (5 mg/kg/day, for 10 days), resulting in > 80% of recipients surviving up to a year despite declining renal function. In contrast to controls (isografts placed in untreated or CsA-treated Lewis rats), allografts from 12-16 weeks post-Tx showed segmental or global glomerulosclerosis, increasing tubular atrophy, interstitial fibrosis, and intimal proliferation leading ultimately to vascular occlusion. By flow cytometry, IgM and IgG alloantibodies peaked at 2-4 weeks, with a gradual decline to baseline thereafter. Immunohistology showed early and progressive deposition of IgM, IgG, C3, and fibrin in vessel walls and glomeruli. In addition, by 12 weeks, extensive infiltration by activated (IL-2R+) macrophages and CD4+ T cells were noted in glomeruli and blood vessels, in conjunction with staining for the cytokines TNF-alpha, IL-1, and IL-6. The persistent and dense intraglomerular expression of IL-6 was of particular interest, given its potent mitogenic effects for mesangial cells in vitro, and suggests a role for this cytokine as a mediator of mesangial expansion, advanced glomerular injury, and glomerulosclerosis in chronic rejection. Parallel timing of IL-6 and TNF-alpha expression was shown in serum samples by ELISA and bioassays. In vitro binding studies showed increased binding of naive host lymphocytes to allograft versus isografts, correlating with upregulation (peaking at week 16) of intercellular adhesion molecule-1 expression by graft endothelium. We conclude that cytokine production and upregulation of adhesion molecules occurring as part of a cellular immune response may be as important to the etiology of chronic rejection as the hitherto widely emphasized antibody-mediated host responses.

Animals↗

Iron chelation suppresses mononuclear cell activation, modifies lymphocyte migration patterns, and prolongs rat cardiac allograft survival in rats.

Iron influences host immunity, in part by affecting the function and migration patterns of T cell subpopulations. Removal of iron stores from the body by chelation decreases proliferation and differentiation of T cells, as shown in models of autoimmunity and pancreatic islet transplantation. We have examined the influence of iron chelation on rejection of vascularized heart allografts in rats. Two protocols were investigated: "treated" recipients received desferrithiocin (30 mg/kg/day) orally for 10 days beginning the day of transplantation; "pretreated" hosts received a similar dose of the drug for 10 days before engraftment. Graft survival increased from about 7 days in untreated animals to 14-16 days in both treatment groups (P < 0.001). Histological and immunoperoxidase studies of allografts at day 7 showed that iron chelation resulted in only a mild reduction in cell infiltration, but in a marked decrease in graft edema and interstitial hemorrhage and essentially complete suppression of mononuclear cell activation and cytokine production. Chelation therapy was also found to inhibit profoundly cytokine (TNF-alpha) production in rats treated with LPS, consistent with the effects observed in situ in the allografts. In vitro studies showed that pretreatment significantly inhibited the mixed lymphocyte reaction. Chelation also influenced migration of T lymphocyte subsets: treatment stimulated migration of CD4+ lymphocytes to peripheral lymph nodes; pretreatment strikingly and selectively increased CD8+ cell migration into parathymic lymph nodes draining the graft, with the opposite effect on nondraining node groups. We conclude that treatment with iron-chelating agents has several effects on host alloresponsiveness in a rat heart graft model secondary to inhibition of immune activation; these include prolongation of graft survival, inhibition of the mixed lymphocyte reaction (pretreatment), marked depression of cytokine production, and alteration in recirculation patterns of lymphocyte subpopulations.

Animals↗

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↗

Cardiopulmonary response to an induced pulse in intracranial pressure.

Increased intracranial pressure may result in the Cushing response. We applied a short pulse of pressure to the cranial cavity of anesthetized cats which were intubated, curarized, ventilated, and the cranium exposed to an 80- to 100-msec pulse of pressure at 5.3 atm. The following significant increases developed: Intracranial pressure rose from 7.4 +/- 1.5 to 150.6 +/- 19.4 mm Hg, systolic arterial peak pressure from 130.7 +/- 8.1 to 299.0 +/- 11.4, pulmonary peak pressure from 18.9 +/- 1.9 to 42.9 +/- 4.9. Alveolar lavage protein in controls was 6.7 +/- 0.4 mg/g lung compared to 11.9 +/- 2.0 in the experimental group. Extravascular lung water/dry weight ratios increased from 3.36 +/- 0.04 in controls to 3.51 +/- 0.09 but varied inversely with pulmonary systolic peak pressure (r = 0.59). These results showed that a pulse of pressure applied to the cranium of cats produced lung edema which was inversely related to pulmonary artery pressures.

Animals↗