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Biomedical subjects

K S Black

Publications and source records attributed to K S Black.

At least 19 recordsLinked to original sources

A rapid and sensitive cellular enzyme-linked immunoabsorbent assay (CELISA) for the detection and quantitation of antibodies against cell surface determinants. I. A comparison of cell fixation and storage techniques.

A solid phase cellular ELISA was designed and evaluated for the detection of antibodies specific for cell surface determinants. It was hypothesized that certain fixation and freezing procedures would result in stabilization of cell structures for prevention of antigen diffusion and extraction during washing procedures. This would assure assay accuracy and convenient sample management. It was hypothesized that fixation with certain reagents prior to analysis would not alter antigenicity of antibody targeted epitopes. In order to improve the preservation of the cells following cell binding to the solid phase matrix while still retaining antigenicity and morphology, a series of fixatives and storage procedures were screened to determine which were best suited for CELISA. Methanol, washing buffer (WB), Hanks' balanced salt solution (HBSS), and 0.5% formalin in HBSS were examined by comparing their relative cell binding capacity and the subsequent cell morphology. In consideration of all variables, fixation in 0.5% formalin provided the best maintenance of cell antigenicity, morphology, binding, and was associated with consistent results. Cells used immediately after fixation and fixed cells used after storage at -80 degrees C for up to 12 months were compared to determine if long term storage affected antigenicity. Since frozen cells and fresh cells demonstrated statistically identical positive to negative ratios and consistency of antibody binding, it was determined that long term frozen storage of formalin-fixed cells did not adversely affect antibody binding capacity to cell surface determinants.

Animals

Mechanisms of prior blood transfusion-cyclosporine-induced tolerance: a potential role for immune-cellular chimerism.

Skin allografts were not enhanced by prior conditioning of blood and CyA (5 or 10 mg/kg/d). However, when BM-CyA pretreatment was used, SA survival was significantly prolonged (CyA, 5 or 10 mg/kg/d). In examining differences between the BT-CyA and BM-CyA protocols, equivocal levels of donor microchimerism (1.5%) were found in the spleens of BT-CyA conditioned recipients at the time of transplantation (day 0). In contrast, highly significant levels of splenic donor chimerism (17.2%) developed at day 0 for the BM-CyA pretransplant recipients. Skin-allograft prolongation under the BM-CyA protocol implied that the effect may be linked to the existence of a donor-specific stem-cell population in the recipient animal.

Animals

Vascularized bone marrow transplantation (VBMT): induction of stable mixed T-cell chimerism and transplantation tolerance in unmodified recipients.

In this preliminary report, our model of VBMT across a semiallogeneic barrier consistently brings about antigen-specific host tolerance with absence of GVHD in the majority of recipients. No immunologic or radiologic intervention was utilized. These results emphasized a potentially important mechanism for low-level stable mixed lymphoid chimerism (SMLC) in tolerance induction, independent of immune suppressive effects due to irradiation or immunopharmacologic intervention.

Animals

The effects of testicular trauma on fertility in the Lewis rat and comparisons to isoimmunized recipients of syngeneic sperm.

Adult male Lewis (LEW) rats were used to investigate the effects of unilateral testicular trauma on fertility. Comparisons were made between normal and experimental rats immunized with syngeneic sperm in Complete Freund's Adjuvant (CFA). Matings within the three groups yielded offspring to all normal males, no offspring to the immunized rats, and 27% (3/11) fertility in the trauma group (p less than 0.001). The contralateral testis demonstrated decreased volumes, various degrees of aspermatogenesis and smaller seminiferous tubular diameters, in both the trauma and immunized groups compared to the controls. Similar histopathologic findings of chronic granulomatous inflammation within contralateral testes in both the trauma and immunized groups suggested a common immune etiology for infertility via possible disruption of the blood-testis barrier.

Animals

Partial tolerance in rat renal allograft recipients following multiple blood transfusions and concomitant cyclosporine.

Multiple prior administrations of donor-strain blood while under limited cyclosporine cover, consistently induce extensive rat renal allograft survival and transplantation tolerance. Yet it was hypothesized that some chronic rejection mechanisms were nevertheless operative since consistent but nonprogressive minor renal dysfunction was observed long-term. A histopathologic study on these putative tolerant rats was undertaken to test this hypothesis. Twenty long-term LEW recipients of BN renal allografts receiving the blood-CsA regimen were examined histopathologically at day 100 post-transplant. Sixteen control LEW recipients receiving only a BN renal allograft were studied acutely at day 7 posttransplant. The control recipients demonstrated a range of lesions consistent with previous studies on acute renal allograft rejection in the rat. However, tolerant recipients demonstrated mild-to-moderate lesions consistent with chronic mechanisms of rejection including the following: moderate focal interstitial mononuclear inflammatory cellular infiltration, with periglomerular and perivascular accumulation; occasional arteriolar luminal obliteration and glomerular atrophy; focal areas of moderate interstitial fibrosis; mild interstitial hemorrhage; mild-to-moderate tubular atrophy; and focal tubular necrosis. Previously our laboratory has documented that tissue-specific renal basement membrane antigens may be responsible for inciting this pattern of focal chronic interstitial inflammation. However, from the present histopathologic studies, it would appear likely that chronic rejection mechanisms in these recipients, which were defined as tolerant by immunologic criteria, involve both tissue-specific and MHC determinants. Therefore, induction of transplantation tolerance in these indefinite survivors is partial or incomplete.

Animals

Development of stable mixed T cell chimerism and transplantation tolerance without immune modulation in recipients of vascularized bone marrow allografts.

A consistent majority (62.5%) of immunologically unmodified rat recipients transplanted with vascularized hind-limb bone marrow allografts across a semiallogeneic transplant barrier developed tolerance with absence of graft-versus-host disease. A minority of recipients (37.5%) demonstrated lethal GVHD. Transplantation tolerance in the majority was associated with the induction of stable low-level mixed T cell chimerism, including donor CD5+, CD4+, and CD8+ lymphocytes. Chimeras were specifically immune nonresponsive to host alloantigenic determinants. These results emphasized a potentially important mechanism for low-level stable mixed lymphoid chimerism (SMLC) in tolerance induction, independent of immune suppressive effects due to irradiation or immunopharmacologic intervention. These vascularized bone marrow transplantation (VBMT) results may establish the experimental foundation for a novel approach to stem cell transfer and bone marrow transplantation.

Animals

Site-specific suppression of cell-mediated immunity by cyclosporine.

In this study, it was demonstrated that site-specific suppression of T-cell-mediated immune responsiveness could indeed be achieved by topical application of cyclosporine. Evidence for site-specific immune suppression was obtained from a dual skin allograft model in rats. These animals were given an initial 10-d systemic treatment of CsA. Subsequently, one allograft was treated with topical CsA and the other was treated with the vehicle alone. Anti-inflammatory efficacy and prolonged skin allograft survival were observed both grossly and histopathologically in the presence of topically administered CsA, while contralateral vehicle-treated control grafts underwent vigorous rejection. Systemic lymphocyte DNA synthesis following Con-A and PHA stimulation was normal to elevated. Therefore, systemic T-cell-mediated immunity appeared unaffected or possibly activated even with concomitant topical CsA treatment. CsA levels were low systemically, and showed relative site-specificity in terms of tissue concentration. In conclusion, this study indicates that topical CsA is capable of locally suppressing a strong T-cell-mediated immune response after an initial short-term systemic dose of CsA. Furthermore, certain putative autoimmune and inflammatory diseases of the skin, such as psoriasis and eczematous dermatitis, which may share common mechanisms of action compared to skin allograft rejection should likewise benefit from topical CsA treatment.

Animals

Lethal cyclosporine associated toxicity in the rabbit: similar findings in two distant and independent transplant laboratories.

A collaborative study was initiated between Basel and Irvine Laboratories named above in an attempt to characterize a unique and lethal gastrointestinal toxicity in rabbits associated with cyclosporine administration. Data from both laboratories were combined and analyzed. The rate of weight loss in CsA treated rabbits was found to be a significant linear function of the dose. In addition, animal survival decreased and showed a dose-dependent linear relationship to CsA use. Grossly, all of the animals presented with full stomachs, incompletely digested, dry, hard, rabbit chow. Histopathology could not provide any insight into the mechanisms of this gross finding and remain unclear. The complete similarity of clinical and histopathological results in distant independent laboratories confirms the specificity of this CsA associated toxicity in the rabbit.

Animals

Histochemical properties of muscle allografts enhanced via cyclosporine.

Until recently, the transplantation of skeletal muscle across a major histocompatibility barrier has proved difficult. However, with the advent of cyclosporine (CsA), it has become possible to achieve extended survival across such histocompatibility barriers. To date, very little is known about the histochemical, biochemical, immunological or contractile properties of long-term-surviving muscle allografts. Consequently, it was the focus of this study to histochemically examine muscle allografts prolonged with CsA and determine the cross-sectional area of fast glycolytic muscle fibers. Measurements of cross-sectional area were made because they are an important correlate to the amount of tension a muscle can generate. Animals were assigned randomly to one of three groups: control (normal) (n = 5), syngeneic (n = 4), and allogeneic (n = 4). Muscle allografts were performed by transplanting the gastrocnemius of an ACI rat (RT1a) hindlimb into the hindlimb of a Lewis rat (LEW;RT1(1]. The syngeneic model consisted of an ACI-to-ACI transplant. Animals in the allograft group were given CsA (8 mg/kg/day) until the time of sacrifice. At approximately 100 days following transplantation, both syngeneic and allogeneic muscles were removed from the recipient, and quickly frozen in isopentane cooled by liquid nitrogen. Muscle fibers were classified as slow-oxidative (SO), fast-oxidative-glycolytic (FOG), or fast-glycolytic (FG) based upon their staining for myofibrillar ATPase and NADH-dehydrogenase. From each muscle, the cross-sectional area of approximately 175 FG muscle fibers was determined. The fast-glycolytic muscle fibers of both the syngeneic and allogeneic grafts demonstrated a substantial decrease in cross-sectional area. The mean value (+/- SD) for the fibers of the allografted muscle was 1165 +/- 533 microns 2. The mean (+/- SD) fiber cross-sectional area for the fibers of the syngeneic muscle was 973 +/- 421 microns 2. These values contrast with a mean (+/- SD) value of 3552 +/- 601 microns 2 for fibers from age-matched control animals. The differences between the syngeneic and allogeneic muscles were not significant (P greater than 0.05). However, both exhibited significant (P less than 0.01) atrophy compared with the control muscle.

Animals

Serologic properties of the triple antibody-sandwich-lymphocyte-agglutination assay (TASLA).

Detailed studies concerning the serologic properties of the triple antibody-sandwich-lymphocyte-agglutination (TASLA) assay are described herin. The technique is a sensitive one based on sandwiching three layers of antibody onto the target cell. Two different test systems were utilized which included xeno- and allogeneic models. In the xenogeneic test system, rabbit-anti-DA lymphocyte xenosera served as the primary antibody sandwich layer. Goat-anti-rabbit and swine-anti-goat IgG served as the secondary and tertiary antibody sandwich layers, respectively. In the rat allogeneic test system, LEW-anti-BN rat lymphocyte allosera served as the primary antibody layer. Rabbit-anti-rat and goat-anti-rabbit IgG served as the secondary and tertiary antibody sandwich layers, respectively. Several different experiments were run with varying numbers of antibody sandwich layers, and differing concentrations within each layer. The lymphocyte agglutination reaction was then evaluated by regression analysis. Regardless of the number or concentration of antibody sandwich layers, it was found that the reaction could be functionally defined mathematically, by regression analysis. A secondary or tertiary antibody sandwich layer increased assay sensitivity. The level of lymphocyte agglutination was found to be both a linear function of the number of antibody sandwich layers and the concentration of each utilized. In addition, the serological properties of the TASLA assay were extended to the rat allogeneic test system and was again functionally defined mathematically by regression analysis.

Agglutination

Aneurysms and vascular malformations.

Intracranial aneurysms and vascular malformations are frequently detected following intracranial hemorrhages. A CT scan is the most sensitive method of detecting acute subarachnoid, parenchymal, and intraventricular hemorrhages. Small aneurysms are inconsistently visualized on MR scans. Angiography remains the standard for complete and accurate depiction of patent aneurysms, as well as of arteriovenous and venous malformations that have not thrombosed. Giant and thrombosed aneurysms present as mass lesions and are frequently detected when MR is used as a screening examination. Often MRI characterizes these lesions better than CT or angiography. Patients with vascular malformations who have focal neurologic symptoms without hemorrhage are best evaluated with MRI. Patent vascular malformations demonstrating flow void and other flow-related phenomena are readily demonstrated. Occult vascular malformations, including thrombosed arteriovenous, venous, and cavernous malformations and telangiectasia, are also best detected by MRI and are not visible on angiography.

Cerebral Angiography

Use of regression analysis and the complement-dependent cytotoxicity typing assay for predicting lymphoid chimerism.

The complement-dependent cytotoxicity typing assay was studied for its accuracy in determining the presence of donor lymphocytes within standard chimeric donor/host cell combinations. Regression analysis of the data was utilized to evaluate the chimera assay. Excellent coefficients of determination (r2 greater than 0.90) were obtained for all standard curves, and a significant (P less than 0.001) linear relationship was established between percent cytotoxicity (dependent variable) and level of donor target cell chimerism (independent variable) for each regression equation. A highly significant (P less than 0.001) linear function was also established between percent cytotoxicity and concentration of donor target bone marrow cells. Regression coefficients (slopes) approached, but did not show complete unity (range; b = 0.86-0.95). Therefore, levels of cytotoxicity were not directly equivalent to levels of donor cell chimerism. A more accurate assessment of donor lymphoid chimerism would be provided by regression analysis of standard donor/host cell independent variables and inverse prediction. Significant estimates of peripheral donor lymphoid chimerism in putative mixed chimeric recipients were successfully made by this technique.

Animals

Cyclosporine and skin allografts for the treatment of thermal injury. I. Extensive graft survival with low-level long-term administration and prolongation in a rat burn model.

The hypothesis tested in the present and accompanying study is that an effective treatment for severe burns involves early excision of necrotic tissue followed by skin allografting and cyclosporine (CsA) immunosuppressive therapy. LEW (RT1) rats served as recipients of thermal injury and/or skin allografts. BN x LEW F1 (LBN, RT1(l+n)) rats served as skin donors. LEW burn recipients received a hot water (90 degrees C for 10 sec) 30% body surface area (BSA) full-thickness burn. As expected, LEW recipients treated with CsA (25 mg/kg/day for 20 days) demonstrated significant graft prolongation compared with controls (P less than 0.005). Skin graft survival was similarly prolonged in LEW recipients undergoing burn injury, primary wound excision, and CsA administration compared with burn-skin allograft controls (P less than 0.001). Mortality was not increased in the thermal injury-CsA-treated recipients compared with burn controls. A final experiment was initiated to investigate how low-level long-term (greater than 100 days) maintenance CsA treatment influenced skin allograft survival for possible future consideration in burn trauma. Recipients receiving skin allografts plus CsA (20 days, 8mg/kg/day, followed by every other day thereafter) did not reject their grafts. However, a possible early sign of rejection (a single small ulcerative lesion) was noted in five of these long-term CsA-treated animals at a mean of 34 +/- 11 (SD) days. The lesion in these animals did not progress any further during CsA administration. Histopathologic study of selected animals removed from the CsA maintenance regimen for greater than 50 days following long-term administration revealed a number of interesting chronic lesions similar to those previously reported in the skin component of composite tissue (limb) allografts following long-term low-level CsA intervention. In conclusion, CsA was very successful in preventing rejection of skin allografts in a rat burn model without apparent adverse effects.

Animals

Cyclosporine and skin allografts for the treatment of thermal injury. II. Development of an experimental massive third-degree burn model demonstrating extensive graft survival.

We have previously reported the successful treatment and apparent development of skin allograft tolerance in a patient sustaining massive burns, utilizing skin allografts and cyclosporine. We now report the experimental correlate via successful achievement of a 75% body surface area (BSA) scald burn cyclosporine-skin allograft model in Lewis (LEW) rats. Cyclosporine (8 mg/kg/day) was given to the experimental animals daily for the first 20 days and then three times a week thereafter. Two experimental groups were studied: one received standard posttrauma care and the second critical posttrauma care. Controls (n = 22) and experimental groups 1 (n = 28) and 2 (n = 4) had average survival times of 13.8 +/- 12.8 days, 44.2 +/- 132.5 days, and 172.0 +/- 19.4 days, respectively. The allografts on the surviving experimental animals appeared normal and healthy and had nearly perfect hair growth. These results indicate that the model follows the clinical burn wound course, and treatment of massive burns with primary excision, skin allografts, and low doses of cyclosporine could provide immediate and complete functional repair of the burn wound.

Animals

The development of humoral immunity to tissue-specific tubular basement membrane alloantigens after renal transplantation across the major histocompatibility barrier in rats immunomodulated with blood transfusions and cyclosporin.

The development of a humoral immune response to the tubular basement membrane (TBM) alloantigen of Brown-Norway (BN) rat kidneys was studied after transplantation of BN rat kidneys into bilaterally nephrectomized Lewis (LEW) rats. The LEW rat recipients consisted of four groups receiving no form of immunosuppression, pretransplantation cyclosporin alone, or pretransplantation donor-specific or donor-nonspecific transfusions combined with cyclosporin. The latter two regimens induce indefinite allograft survival in the majority of recipients. Circulating antibody to collagenase-solubilized BN rat renal basement membrane (CS-BN-RBM) was present in all four groups of transplant recipients within 1 week after transplantation, and no significant differences in antibody levels were noted between rats receiving no immunosuppression (survival of 1-2 weeks) and the groups of rats who received various immunosuppressive regimens and survived longer. Circulating antibody to BN-CS-RBM continued to increase in quantity in the cyclosporin-treated group until the time of death (2-10 weeks post-transplantation). In the much longer lived combined transfusion and cyclosporin-treated groups, circulating antibody to BN-CS-RBM generally attained a maximum at approximately 2 to 4 months post-transplantation and then plateaued or decreased somewhat before the time of death (3-16 months post-transplantation). No correlation was found between quantity of circulating anti-BN-CS-RBM antibody and post-transplantation survival. Comparative study of the quantity of circulating antibody to BN-CS-RBM (the presumed nephritogenic antigen of experimental tubulointerstitial nephritis in the BN rat) in serum from transplant recipients as compared to serum from BN rats with severe experimental tubulointerstitial nephritis (TIN) (as induced by immunization with heterologous TBM antigens) demonstrated a greater quantity of potentially nephritogenic antibody circulating in transplant recipients than in BN rats with experimental TIN. Histologically, the transplanted kidneys in immunomodulated recipients demonstrated focal chronic interstitial inflammatory infiltrates with tubular atrophy and relative sparing of the glomeruli. The development of immune responses to tissue-specific alloantigens may become of clinical significance as graft-survival times are increased.

Animals