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Biomedical subjects

J Shelby

Publications and source records attributed to J Shelby.

At least 19 recordsLinked to original sources

Stimulation of in vivo angiogenesis by cytokine-loaded hyaluronic acid hydrogel implants.

Crosslinked hyaluronic acid (HA) hydrogels were evaluated for their ability to elicit new microvessel growth in vivo when preloaded with one of two cytokines, vascular endothelial growth factor (VEGF) or basic fibroblast growth factor (bFGF). HA film samples were surgically implanted in the ear pinnas of mice, and the ears retrieved 7 or 14 days post implantation. Histologic analysis showed that all groups receiving an implant demonstrated significantly more microvessel density than control ears undergoing surgery but receiving no implant (p < 0.01). Moreover, aqueous administration of either growth factor produced substantially more vessel growth than an HA implant with no cytokine. However, the most striking result obtained was a dramatic synergistic interaction between HA and VEGF. Presentation of VEGF in crosslinked HA generated vessel density of NI = 6.7 at day 14, where NI is a neovascularization index defined below, more than twice the effect of the sum of HA alone (NI = 1.8) plus VEGF alone (NI=1.3). This was twice the vessel density generated by co-addition of HA and bFGF (NI=3.4, p<0.001). New therapeutic approaches for numerous pathologies could be notably enhanced by the localized, synergistic angiogenic response produced by release of VEGF from crosslinked HA films.

Animals↗

Effects of thermal injury on skeletal metabolism in two strains of mice.

Long-term growth retardation occurs in children and osteopenias occur among children and adults who have been burned or suffer other injuries that result in a systemic inflammatory response. The purpose of this study was to define some of the growth, and to determine cancellous and cortical bone changes that occur following thermal injury in several contrasting strains of mice. Male C3H/HeN and Balb/c mice were given about a 20% total body thermal injury and 10 days later skeletal tissues were collected. The bone ash weights of the burned animals from both strains were less than their sham controls. In both strains, cancellous bone volumes were less in the burned animals than in their respective sham or baseline control groups. The loss of bone was particularly evident in the secondary spongiosa regions and also included a decrease in trabecular thickness and connectivity and an increase in trabecular separation. Longitudinal (endochondral) growth was suppressed in the burn animals. In the burned animals, indices of cancellous bone formation were substantially reduced whereas those in cortical bone were essentially nonexistent. The numbers of osteoclasts were increased in cancellous bone, and endocortical eroded surface was increased in the burn animals. These data show that there are rapid and profound changes in skeletal growth and metabolism in an experimental model of thermal injury. In general, a greater relative response was observed in the Balb/c vs. the C3H/HeN strain. Thermal injury resulted in a rapid and dramatic suppression of bone formation and endochondral growth with increased bone resorption in both cancellous and cortical bone.

Animals↗

Myocyte function and [Ca 2+ ]i homeostasis during early allogenic heart transplant rejection.

BACKGROUND: Recent studies from our laboratory have demonstrated that in vivo contractile function of rejecting mouse heterotopic abdominal heart allografts 5 days after transplantation is depressed to 40% of that of syngenic controls, and that this depression of function is prevented by the nitric oxide synthase (NOS) inhibitor NG-monomethyl-l-arginine. However, the mechanisms of altered myocyte function caused by nitric oxide production in this setting are not established. METHODS: We measured intracellular calcium concentration ([Ca2+]i) transients (fluo-3, confocal microscopy), fractional shortening (video motion), and L-type Ca2+ currents (whole-cell patch clamp) 5 days after transplantation in ventricular myocytes freshly isolated from syngenic (Balb/C into Balb/C) and allogenic (Balb/C into C3H) transplants. RESULTS: L-type Ca2+ currents, [Ca2+]i transient amplitudes, and fractional shortening did not differ between nonrejecting, syngenic and rejecting, allogenic transplants. Catecholamine responsiveness as analyzed by the change in the peak [Ca2+]i transient induced by 100 nM isoproterenol was also similar. Superfusion with l-arginine, an NOS substrate, caused decreased shortening with no change in [Ca2+]i transients in allogenic myocytes, but had no effect in syngenic myocytes. CONCLUSIONS: Depressed contractile function of rejecting allogenic heart transplants in vivo appears to be caused in part by an NOS-dependent decrease in myofilament Ca2+ sensitivity.

Animals↗

Functional importance and caffeine sensitivity of ryanodine receptors in primary lymphocytes.

Calcium signaling patterns are important for the specific regulation of activation and effector function in lymphocytes. Studies of [Ca2+]i regulation in lymphocytes, including the involvement of ryanodine receptors (RyR) and the importance of caffeine-sensitive pools, have been carried out mainly in lymphocyte cell lines and the presence and functional importance of these pools in primary lymphocytes has not been addressed. Here we show by confocal microscopy that caffeine caused a prompt but transitory increase of [Ca2+]i in primary lymphocytes, an effect that was inhibited by pre-treatment with ryanodine. Furthermore, the increase of [Ca2+]i in CD4+ and CD8+ MLR T lymphocytes stimulated by 5 microg/ml concanavalin A was significantly inhibited by pretreatment with caffeine. In functional studies, caffeine decreased cytotoxicity against myocyte target cells which is probably related to an altered calcium signaling in CD8+ MLR lymphocytes. Caffeine also terminated spontaneous Ca2+ oscillations and induced a rise in [Ca2+]i in CD4- and CD8- MLR lymphocytes probably of B cell origin. These results demonstrate that caffeine alters Ca2+ signaling in primary lymphocytes, and suggest that RyR, probably the skeletal muscle receptor (RyR-1) and brain receptor (RyR-3), are involved in mediating this effect. It is also possible that blocking of inositol-1,4,5-triphosphate (IP3) receptors is involved in the effects of caffeine on lymphocyte activation.

Animals↗

Interleukin-18 production following murine cardiac transplantation: correlation with histologic rejection and the induction of INF-gamma.

Interleukin-18 (IL-18) and IL-12 have been shown to play an important role in the induction of interferon-gamma (IFN-gamma). IFN-gamma induces the proliferation of T cells and natural killer (NK) cells and augments the Th1 immune cascade. The role of IL-18 and IL-12 in the induction of IFN-gamma following allogeneic heart transplantation has not been described. We sought to characterize the IL-12 and IL-18 response to murine allogeneic heart transplantation, particularly with respect to IFN-gamma production and histologic transplant rejection. Forty-eight heterotopic heart transplants were performed in two groups of mice: syngeneic C3H/HeN to C3H/HeN mice and allogeneic BALB/C to C3H/HeN mice. Transplants were followed out to 2, 6, 10, and 14 days. Six transplants were performed in each group. Serum and splenic samples were used to evaluate the cytokine response by ELISA. Explanted heart tissue was processed for evidence of histologic rejection, and RT-PCR was performed to evaluate the IL-12, IL-18, and IFN-gamma signal qualitatively. Analysis of variance (ANOVA), Fisher's projected least significant difference (PLSD) was used for statistical analysis. Transplant rejection occurred in the allogeneic group histologically by day 6 and clinically by day 10. Serum IFN-gamma levels rose significantly by day 6 in the allogeneic group and then continued to rise in the splenocyte cultures. Serum IL-18 also rose significantly in the allogeneic group at day 6 compared with syngeneic group. RT-PCR revealed that the allogeneic tissue contained an increased signal for IL-12, IL-18, and IFN-gamma beginning at day 6 and peaking at day 10 after transplant. Beginning 6 days after transplantation, IL-12 and IL-18 appear to play a significant role in the induction of IFN-gamma in allogeneic heart transplants.

Animals↗

Cardiac unloading alters contractility and calcium homeostasis in ventricular myocytes.

Altered cardiac workload has an important effect on myocyte structure and function. Cardiac hypertrophy resulting from an increase in load has been studied extensively in the past. However, the effects of unloading and atrophy have recently become of more interest since devices for mechanical left ventricular unloading have been introduced into clinical practice for the treatment of patients with terminal heart failure, and a resulting improved cardiac and myocyte contractility have been reported. We used the heterotopic abdominal mouse heart transplant model in order to study the effects of 5 days of unloading on cell size (confocal microscopy), contractility (fractional shortening: video motion), calcium homeostasis ([Ca(2+)](i)transients, SR Ca(2+)content); and L-type Ca(2+)and sodium/calcium exchanger currents (whole cell patch clamp technique). We found unloading caused decreased cell volume consistent with atrophy. An increased fractional shortening and [Ca(2+)](i)transient were observed in myocytes from unloaded hearts as compared with controls. Transsarcolemmal I(Ca,L)and I(Na/Ca)densities, and SR Ca(2+)content were unaltered, as was membrane capacitance. A reduction in cell volume with mainteinance of internal and surface membrane areas, and/or a decrease in concentration of cellular protein Ca(2+)buffers, may contribute to the increase in the [Ca(2+)](i)transient in this model.

Animals↗

Relative importance of cytotoxic T lymphocytes and nitric oxide-dependent cytotoxicity in contractile dysfunction of rejecting murine cardiac allografts.

BACKGROUND: Previous in vitro studies have suggested that both cytotoxic T lymphocyte (CTL)-mediated and non-CTL-mediated myocyte lysis occur during murine cardiac heterotopic allograft rejection, but the relative importance of these injury mechanisms on myocardial function is not established. We therefore compared the in vivo effects of depletion of CTL and inhibition of nitric oxide synthase (NOS) on contractility of the rejecting heart. METHODS: Syngeneic (BALB/c into BALB/c) and allogeneic (BALB/c into C57/B16) heterotopic abdominal cardiac transplants were performed. In some of the allogeneic transplants, CD8+ lymphocytes were depleted by intraperitoneal injection of anti-CD8 monoclonal antibody. NOS inhibition was accomplished by continuous infusion of NG-monomethyl-L-arginine via a subcutaneous osmotic pump. Five days after transplantation, the abdominal cavity was opened and the transplanted heart exposed. Base to apex developed force was measured during spontaneous beating at a diastolic stretch of 4 g by placing a suture through the apex of the heart and attaching it to a strain gauge. Effects of interventions on graft survival were determined by recording the days required for loss of palpable graft contractions. RESULTS: Allogeneic hearts showed a significant reduction in systolic force compared to non-rejecting syngeneic hearts. Depletion of CD8+ cells improved contractility significantly relative to non-depleted allogeneic hearts, but contractility remained significantly reduced relative to syngeneic hearts. Developed force in allogeneic hearts was also improved by NOS inhibition (P<0.01), and NG-monomethyl-L-arginine infusion slightly prolonged graft survival. CONCLUSION: Both CTL-mediated and NOS-dependent (possibly macrophage-mediated) mechanisms contribute to contractile dysfunction during early cardiac allograft rejection in this model. However, NOS inhibition combined with CTL depletion only slightly prolongs graft survival in this model.

Animals↗

Distinct effects of allogeneic blood transfusion on splenocyte cytokine production after hemorrhagic shock.

UNLABELLED: Allogeneic blood transfusion is known to be immunosuppressive in the settings of cancer and transplantation, but the contribution of blood transfusion to immunomodulation after hemorrhage is unknown. Our purpose was to determine the influence of allogeneic blood transfusion upon cytokine profiles following hemorrhagic shock, using a model which approximates the clinical setting. METHODS: Male C3H/HeN mice were hemorrhaged via femoral arterial catheters to a mean arterial pressure (MAP) of 35 +/- 5 mm Hg, which was maintained for 1 h. Mice were resuscitated with autologous blood (auto BT) or allogeneic blood (allo BT) from Balb/c mice (both equivalent to volume of shed blood), and crystalloid (2X the volume of shed blood)-infused at 0.05 ml/min. Animals were sacrificed at 1, 2, and 5 days postshock, and splenocytes were cultured for 24 h with anti-CD3 antibody. Supernatants were assayed for IL-2, IL-6, IL-10, and gamma-IFN by ELISA. RESULTS: Regardless of transfusion status, hemorrhagic shock resulted in increased IL-6 and gamma-IFN by Day 2 postshock. Distinct cytokine alterations after allogeneic transfusion were as follows. IL-2: transient elevation of splenocyte IL-2 production in the shock + allo BT group (P < 0.005 vs. shock + auto BT) at Postshock Day 2. IL-6: suppression in IL-6 production in the shock + allo BT group by Postshock Day 5 (P < 0.05 vs. shock + auto BT). IL-10: persistently elevated IL-10 production following shock + allo BT (Day 1, P < 0.001 vs. shock + auto BT; Day 5; P < 0.05 vs. shock + auto BT). gamma-IFN: elevation in gamma-IFN production by Day 5 in the shock + allo BT group (P < 0.0005 vs. shock + auto BT). CONCLUSIONS: Allogeneic blood transfusion results in distinct alterations in splenocyte production of IL-2, IL-6, IL-10, and gamma-IFN after hemorrhagic shock. This model reflects the clinical usage of blood products and demonstrates some of the immune alterations after transfusion.

Animals↗

Long-term cytokine alterations following allogeneic blood transfusion.

BACKGROUND: Allogeneic blood transfusion is associated with an increased risk of infection and higher cancer recurrence rates. Previous research has shown that blood transfusion results in multiple immune effects, including cytokine alterations. The purpose of this study was to measure the long term kinetics of splenocyte cytokine production in transfused mice. METHODS: Balb/c mice received either syngeneic transfusion (Syn-BT) or allogeneic transfusion (Allo-BT) from C3H-HeN mice. Splenocyte production of IL-2, IL-6, IL-10, and IFN-gamma was quantitated by ELISA on post-transfusion days 5, 10, 21, and 30. RESULTS: Both Allo-BT and Syn-BT produced significant alterations in cytokine production, but Allo-BT produced the most dramatic and enduring effects as summarized: IL-2: Production of IL-2 was suppressed at day 5, (p < 0.0001), but then rose, peaking at day 21, 30% greater than control values (p < 0.05). IL-6: Allo-BT mice showed suppression of IL-6 throughout the study period (p < 0.005 vs controls, each time point). IL-10: A 5-fold increase in IL-10 production was seen at day 5 after Allo-BT (p < 0.0001 vs control). Production of IL-10 was suppressed at days 10 and 21 (p < 0.001), but returned to control levels by day 30, gamma-IFN: At day 5 post Allo-BT, gamma-IFN was 4 x greater than controls (p < 0.0001). Gamma-IFN production was suppressed at day 10, but then rose at days 21 and 30 to nearly 3 x control levels (p < 0.0001). CONCLUSION: Allo-BT produced multiple cytokine alterations that were of prolonged duration. These results provide a theoretic explanation for the multiple, long-term immunomodulating effects seen in patients who have received transfusions.

Animals↗

Myocardial apoptosis in a heterotopic murine heart transplantation model of chronic rejection and graft vasculopathy.

BACKGROUND: Apoptosis has been implicated in myocardial reperfusion injury and in experimental transplantation rejection. One mechanism of apoptosis is through the interaction of the cell-surface Fas receptor on target cells and the Fas ligand that is expressed on cytotoxic T cells. The purpose of this study was to look for evidence of myocardial Fas receptor, Fas ligand, and apoptosis in a murine heterotopic heart transplantation model of chronic rejection/graft vasculopathy. METHODS: Using the nick-end labeling technique, we examined a murine heterotopic heart transplantation model of chronic rejection/graft vasculopathy (strain B10.A to B10.BR) histologically for evidence of DNA fragmentation. MRNA for the Fas receptor, Fas ligand, and beta-actin was detected with reverse transcription-polymerase chain reaction. RESULTS: Hearts harvested after 30 and 60 days showed an intimal index of the allografts (0.5 +/- 0.1) (mean +/- standard error) that was at least five times more than syngeneic grafts and native (nontransplanted) hearts (p < 0.01). In situ nick end-labeling of partially degraded DNA with terminal deoxynucleotydil transferase showed an increase in apoptotic cells in allografts and syngeneic grafts compared with native hearts. Reverse transcription-polymerase chain reaction detected equal myocardial RNA signal intensity of Fas receptor and beta-actin in allografts, syngeneic grafts, and native hearts. In contrast, allografts showed a strong signal for the Fas ligand mRNA, a signal not seen in syngeneic grafts or native hearts. CONCLUSIONS: Apoptosis is occurring in both allografts and syngeneic grafts in this murine model of chronic rejection/graft vasculopathy, although distinct mechanisms may be involved.

Animals↗

Cytokines and rejection of mouse cardiac allografts.

Graft survival is prolonged by pretransplant transfusion of the graft recipient. It has been postulated that graft rejection is associated with Th1-like cytokines. We tested whether transfusion shifts cytokine production from a Th1-type (gamma-IFN production) to a Th2-type (IL-4 production). Transfusion prolonged cardiac allograft (C3H/HeN donor to a C57BL/6 recipient) survival (10.4+/-0.5 versus 7.2+/-0.2 days for controls, P<0.0001). Splenocyte cultures from nontransfused recipients produced supernatant IFN-gamma concentrations of 13.4+/-1.4 ng/ml upon anti-CD3 stimulation; the same cells produced 32.3+/-3.5 pg/ml IL-4 stimulated with Con A. Spleen cells from transfused animals did not produce gamma-IFN with or without stimulation; (P<0.0001) and produced 21.5+/-3.2 pg/ml IL-4 without stimulation (P<0.0001 compared with controls). C57BL/6 CD8+ lymphocytes isolated from rejected C3H grafts were adoptively transferred (6.7+/-1x10(6)/animal) to pretransfused, C57BL/6 recipients of a C3H graft. Graft survival for these recipients was 7.8+/-0.3 days compared with 10.4+/-0.5 days for recipients pretreated with transfusion only (P<0.005). Transcripts of the gamma-IFN gene were present in unmodified grafts but not in the grafts from transfused recipients given the CD8 cells. In conclusion, transfusion downregulated gamma-IFN production and up-regulated IL-4 production and slowed (but did not abrogate) rejection; CD8 graft-infiltrating cells given adoptively restored normal rejection but not IFN-gamma. Further studies are needed to elucidate the role of cytokines in cardiac allograft rejection.

Adoptive Transfer↗

Melatonin and a 21-aminosteroid attenuate shock after hemorrhage but differentially affect serum cytokines.

UNLABELLED: Melatonin and 21-aminosteroids (lazaroids) are potent antioxidants and may attenuate the increased membrane permeability associated with profound shock. Our purpose was to test the effect of melatonin and a lazaroid (U74389-G) on cytokine production and fluid requirements after shock. METHODS: Male C3H/HeN mice, 20-25 g, were hemorrhaged via a femoral artery catheter to a mean arterial pressure of 35 +/- 5 mm Hg, which was maintained for 1 hr, and then resuscitated with shed blood and crystalloid (2x vol of shed blood). Experimental mice received melatonin at 10 or 50 mg/kg, U74389-G at 3 mg/kg, or vehicle i.v. upon resuscitation, and blood was returned at 0.1 cc/min and crystalloid at 0.05 cc/min. The percentage of total crystalloid required to reach stabilization (mean arterial pressure remaining within 2 mm Hg for 5 min) was recorded. Animals were sacrificed at 1 hr postshock. Serum and anti-CD3-stimulated splenocyte culture supernatants were assayed for interleukin-6 (IL-6) and gamma-IFN by ELISA. RESULTS: Mice receiving lazaroid or melatonin (50 mg/kg) required significantly less fluid to reach stabilization, with lazaroid-treated animals requiring 24 +/- 1% and melatonin-treated animals requiring 28 +/- 2% of total crystalloid compared to 40 +/- 3% for untreated animals. Melatonin-treated mice (50 mg/kg) had lower serum IL-6 levels (368 +/- 154 vs 1078 +/- 146 pg/ml) and lazaroid-treated mice had lower gamma-IFN levels (7 +/- 6 vs 52 +/- 15 pg/ml) compared to those of the untreated group (P < 0.05). There were no differences in splenocyte cytokine production. CONCLUSIONS: Treatment with lazaroid and melatonin both reduced postshock fluid requirements. Melatonin reduced serum IL-6 levels, while lazaroid reduced serum gamma-IFN levels, suggesting different mechanisms of action.

Animals↗

Helper T lymphocyte unresponsiveness to cardiac allografts following transient depletion of CD4-positive cells. Implications for cellular and humoral responses.

Initial treatment of heterotopic cardiac transplant recipients with anti-CD4 mAb promotes long-term (> 60 days) allograft survival. We have used modified limiting dilution analysis to quantitate donor alloantigen-reactive helper T lymphocytes (HTL) and CTL in mice bearing long-term cardiac allografts. Despite repopulation of lymphoid tissues with CD4+ T cells, donor alloantigen-reactive IL-2 producing and IL-4-producing HTL were rare or not detectable in lymphoid tissues or in the graft. While donor-reactive precursor CTL were present in lymphoid tissues, modified limiting dilution analysis revealed that stimulated ("antigen-conditioned") CTL were not detectable, and few CTL were present in the graft. In addition, antibodies reactive with donor alloantigens were not detectable in the sera of mice bearing long-term cardiac allografts. To determine whether additional in vivo stimulation with donor alloantigens would elicit an immune response, sponge allografts were implanted into mice bearing long-term cardiac allografts. Previous reports from this laboratory have demonstrated that T cell infiltration of sponge allografts is dependent upon antigen-driven cytokine production. While third-party sponge allografts were readily infiltrated by third-party-reactive HTL and CTL, sponge allografts of the same strain as the cardiac allograft were not infiltrated by T cells. However, donor strain sponge allografts induced an IgM (but not IgG) alloantibody response. These data indicate that IgM alloantibody could be induced in the absence of a cellular response to the sponge allograft. Kinetic studies revealed that a transient IgM (but not IgG) response was induced by the initial cardiac transplantation in the absence of CD4+ cells. These IgM alloantibodies disappeared by day 21 despite the persistence of the allograft. These observations indicate that transient depletion of CD4+ T cells induces allograft-specific T cell tolerance, but does not eliminate the ability to mount an allograft-specific IgM response. To our knowledge, this is the first report of a transient humoral response to alloantigens that occurs in the absence of CD4+ T cells, and can be reinduced in "tolerant" animals that fail to mount a cellular immune response. Potential mechanisms involved in the development and maintenance of anti-CD4 mAb-induced tolerance are discussed.

Animals↗

N omega -monomethyl-L-arginine inhibits nitric oxide production in murine cardiac allografts but does not affect graft rejection.

Endogenous nitric oxide biosynthesis in mice receiving allogeneic heterotopic heart transplants was monitored as a function of time post-transplant. Nitric oxide production was measured by daily urine nitrate levels and by formation of paramagnetic heme-nitrosyl complexes in the cardiac tissue. Exogenous sources of urine nitrate and EPR signal were minimized by maintaining the animals on a low nitrite/nitrate diet. Urine nitrate peaked on postoperative day 7. A heme-nitrosyl EPR signal also appeared in the cardiac tissue on postoperative day 7 and remained unchanged in size until rejection on postoperative day 9 at which time the peak height of the signal nearly tripled. Some of the animals in the study were treated with the nitric oxide synthase inhibitor, N omega-monomethyl-L-arginine which caused marked inhibition of urinary nitrate excretion and prevented heme-nitrosyl complex formation in beating hearts. However, administration of the inhibitor did not increase graft survival time. Low intensity heme-nitrosyl signals were identified in inhibitor-treated allogeneic hearts after rejection. Syngeneic heart transplants did not induce urinary nitrate excretion nor EPR signal formation. These results show that cytokine induced high output nitric oxide synthesis from L-arginine is a prominent biochemical component of the cell-mediated immune response to cardiac allografts in mice. However, nitric oxide production was not essential for rejection of cardiac allografts mismatched at the major histocompatibility locus.

Amino Acid Oxidoreductases↗

Effects of alloimmune injury on contraction and relaxation in cultured myocytes and intact cardiac allografts.

OBJECTIVES: This study was performed to determine the mechanisms by which allosensitized lymphocytes cause contractile dysfunction in cultured ventricular myocytes and to compare the effects on isolated myocytes with those observed in an intact heart preparation during allograft rejection. BACKGROUND: Allograft rejection may be associated with reversible abnormalities of both systolic and diastolic function. The immunologic mechanisms that cause ventricular dysfunction are poorly understood. METHODS: Vascularized heterotopic abdominal heart transplantation was performed in mice. Contractile function of excised allografts undergoing rejection was assessed using a Langendorff perfusion apparatus and a strain gauge. Spontaneously beating monolayers of cultured ventricular myocytes from donor strain fetal mice were exposed to the allosensitized cytotoxic T lymphocytes, and the effects on myocyte motion, intracellular calcium transients, relaxation half-time, membrane potential and myocyte lysis (chromium-51 release) were measured. RESULTS: In intact hearts, histologically mild rejection without myocyte necrosis was associated with decreased systolic function without slowing of relaxation. In cultured fetal myocytes, sensitized lymphocytes induced a progressive decrease in the amplitudes of myocyte motion and calcium transients, with cessation of beating within 40 min. Also, the diastolic membrane potential and amplitude of the action potential decreased. Relaxation half-time, as estimated by measurement of cell motion, was unchanged. The effect was allospecific and was reversible with early removal of lymphocytes from the myocyte monolayer. Pretreatment of lymphocytes with the degranulation inhibitor 4,4'-diisothiocyano-2,2'-disulfonic acid stilbene blocked both the negative inotropic effect and myocyte lysis. CONCLUSIONS: We conclude that impaired relaxation is not a prominent feature of contractile dysfunction caused directly in myocytes by alloimmune injury from cytotoxic lymphocytes. Allosensitized lymphocytes can cause reversible systolic dysfunction in myocytes by means of a direct cell-cell interaction. This effect may be in part responsible for the reversible systolic dysfunction associated with allograft rejection.

Animals↗

Histoincompatibility-associated differences in the phenotypes of murine cardiac allograft infiltrating T cells.

Mechanisms of graft rejection may be governed in part by the kind and degree of histocompatibility differences between donor and recipient. Cardiac allograft rejection was studied in three murine models selected to provide disparity at different major histocompatibility complex (MHC), minor lymphocyte stimulating (Mls) and other minor histocompatibility loci. Graft survival for the A.TL to A.TH combination (M3) was significantly longer (median day of rejection 15.0 days) than both the B10.A to AKR (M2) or the C57BL/6 to C3H/HeN (M1) donor-recipient combinations (median days of rejection: 9.0 days and 9.0 days respectively; P < 0.001). The infiltration of grafts by T cells was examined by removal of grafts serially post-transplantation and culturing mechanically disrupted graft tissue with interleukin-2 (IL-2). Recovery of T cells by this method revealed highly reproducible characteristics (kinetic and phenotypic), unique to each donor-recipient combination. Cultures from M1 and M2 grafts had differing CD4/CD8 T-cell ratios at days 2 (1.8 versus 0.7, respectively) and 4 (1.6 versus 0.1, respectively) post-transplantation. The M3 model differed from M2 (at days 4, 8 and 10) and from M1 (at days 8 and 10). At these times, cultures of M3 grafts contained a significantly increased percentage of CD4 cells and significantly decreased percentage of CD8 cells (CD4/CD8 ratios 0.9-1.3) by comparison with M1 (CD4/CD8 ratios 0.02-0.04) and M2 (CD4/CD8 ratios 0.1-0.02). Long-surviving M3 grafts (greater than 30 days post-transplantation) were compared with grafts removed immediately upon cessation of graft function (days 14, 15 and 18 post-transplantation). There was a significant difference between these groups in the ratios of CD4/CD8 T-cell ratios (1.1 versus 0.4, respectively). This study suggests that the cellular rejection mechanism of a graft is a variable process driven by the individual histocompatibility antigen disparity between donor and recipient. These findings may have diagnostic and therapeutic applications in organ transplantation.

Animals↗

Administration of dehydroepiandrosterone to burned mice preserves normal immunologic competence.

Burned individuals display a reduced ability to elicit cellular and humoral immune responses and a depression in the vitro production of certain T-cell lymphokines. Treatment of burned mice with 100 micrograms of dehydroepiandrosterone within 1 hour after injury resulted in preserving a completely normal capacity to produce T-cell-derived lymphokines and to generate cellular immune responses. In addition, dehydroepiandrosterone-treated thermally injured mice demonstrated an above-normal ability to resist an induced infection with the intracellular pathogen, Listeria monocytogenes. Dehydroepiandrosterone-treated animals also did not exhibit the sustained plasma levels of interleukin 6 that normally accompany thermal injury and infection. Because of its antiglucocorticoid effects and positive immunoregulatory influences, we believe dehydroepiandrosterone to be a beneficial form of therapy for thermally injured individuals.

Animals↗