Search PubMed⌕ Search

Biomedical subjects

M Goldman

Publications and source records attributed to M Goldman.

At least 271 records · Page 15Linked to original sources

Genetic analysis of Proteus mirabilis mutants defective in swarmer cell elongation.

Swarmer cell differentiation is a complex process involving the activity of many gene products. In this report, we characterized the genetic locus of Tn5 insertion in each of 12 mutants defective in swarmer cell elongation. The mutations fell into four categories affecting either flagellar biosynthesis or energetics, lipopolysaccharide and cell wall biosynthesis, cellular division, or proteolysis of peptides.

Amino Acid Sequence↗

Effects of prenatal ultrasound exposure on adult offspring behavior in the Wistar rat.

An ultrasound exposure tank was specifically designed for experimental bioeffects studies. Thirty-six pregnant rats were anesthetized, immersed to the axilla in a water tank, and exposed on Day 15, 17, and 19 of gestation. Twelve rats were exposed to 5.0 MHz pulsed ultrasound of effective pulse duration equal to approximately 0.170 microseconds, pulse repetition rate (PRF) 1 kHz, and a spatial peak, temporal peak intensity (lsptp) of 500 W/cm2, representing a clinically appropriate exposure level. The spatial peak pulse average (lsppa), spatial peak temporal average (lspta), and instantaneous maximum (lm) intensities were determined to be 100 W/cm2, 24 mW/cm2, and 230 W/cm2, respectively. The maximum rarefraction pressure, pr, was measured as 12.5 x 10(5) Pa, and the total power was 2.5 mW. Twelve other rats were exposed to 1500 W/cm2, lsptp, and 12 were sham insonified. Since the focal area was about 0.05 cm2, computer controlled stepper motors moved the rats through the ultrasound field to ensure uniform exposure of the abdominal/pelvic region. Total exposure time was 35 min. A miniature thermocouple was implanted in a few rats to verify that no significant temperature increase took place due to exposure. A total of 278 offspring were maintained until postnatal Day 60 when they were subjected to two of four behavioral tests in random order within sexes. The results indicate no consistently observed dose-related alterations in adult behavior due to prenatal fetal exposure to 5.0 MHz ultrasound below an intensity (lsptp) of 1500 W/cm2.

Animals↗

Role of defective monocyte interleukin-10 release in tumor necrosis factor-alpha overproduction in alcoholics cirrhosis.

Monocytes of patients with alcoholic cirrhosis produce higher amounts of tumor necrosis factor-alpha (TNF-alpha) after lipopolysaccharide (LPS) stimulation. The mechanisms of the overproduction remain undefined. IL-10 (IL-10) is an antiinflammatory cytokine known to downregulate TNF-alpha secretion by monocytes. The present study analyzes IL-10 production by monocytes and its control on TNF-alpha secretion in alcoholic cirrhosis. LPS-stimulated monocytes from alcoholic cirrhotics (n = 13) showed decreased IL-10 (median, 240 pg/mL [40 to 500] upsilon 513 pg/mL [152 to 1,335]; P = .01) compared with controls (n = 13). Cells from cirrhotic patients were normally responsive to recombinant IL-10, which induced a dose dependent decrease of TNF-alpha secretion. On the other hand, preincubation with anti-IL-10 monoclonal antibodies led to significant increase in TNF-alpha secretion in controls (median, 7,325 to 16,800 pg/mL; P = .002) but not in cells from cirrhotic patients (16,535 to 20,450 pg/mL; P = .14), abolishing the difference in TNF-alpha production between cirrhotic patients and controls. It is concluded that defective IL-10 secretion by monocytes from alcoholic cirrhotic patients could be involved in the characteristics TNF-alpha overproduction observed in this disease.

Adult↗

Mesangial cell-derived interleukin-10 modulates mesangial cell response to lipopolysaccharide.

Interleukin (IL)-10 is a novel cytokine produced by a variety of cells, including monocytes/macrophages, upon exposure to lipopolysaccharide (LPS). Recent observations indicate that, in turn, IL-10 exerts suppressive effects on macrophage response to LPS. Because mesangial cells are also a target for LPS, we have examined the potential role of IL-10 in the regulation of mesangial cell response to LPS. To this aim, we have studied the synthesis and the autocrine/paracrine function of IL-10 in cultured mouse mesangial cells. IL-10 mRNA expression and IL-10 protein secretion were determined by a reverse transcription polymerase chain reaction technique and a specific enzyme-linked immunosorbent assay, respectively. No IL-10 mRNA expression was detectable in unactivated cells. LPS induced IL-10 mRNA expression in a dose-dependent fashion (1 to 100 micrograms/ml). In addition, LPS induced IL-10 protein release that was both dose dependent (1 to 100 micrograms/ml) and time dependent (24 to 72 hours). We have also studied the effect of IL-10 on the production of inflammatory mediators by LPS-activated mouse mesangial cells. Whereas recombinant IL-10 inhibited the generation of tumor necrosis factor-alpha (TNF-alpha) and IL-1 beta by 90 and 60%, respectively, it did not affect the formation of nitric oxide-derived nitrite (NO2-) and nitrate (NO3-). As shown by the use of anti-IL-10 monoclonal antibody, endogenously produced IL-10 affected the generation of TNF-alpha but neither that of IL-1 beta nor that of NO2- and NO3-. Finally, we have examined whether conditions known to also reduce the generation of TNF-alpha modified the expression of IL-10. Of all the conditions tested, only the addition of desferrioxamine and transforming growth factor-beta were found to increase IL-10 release. Together, these data demonstrate that mesangial cell-derived IL-10 has important regulatory effects on the inflammatory response of these cells to LPS because of its capacity to blunt TNF-alpha generation.

Animals↗

Detection of blood chimerism after lung and heart-lung transplantation. The superiority of nested as compared with standard polymerase chain reaction amplification.

Migration of donor cells from the graft to various tissues of the recipient has been demonstrated after different types of solid organ transplants. Currently, the detection of donor cells in the recipient's tissues is most simply performed by polymerase chain reaction (PCR) amplification of a donor-specific gene. In the present study, we first determined in vitro the sensitivity of standard and nested PCR amplification with sequence-specific primers (PCR-SSP) of a donor-specific allele of the HLA-DRB1 gene and then used this technique to assess prospectively blood chimerism in two single-lung (SLT) and one heart-lung (HLT) transplant recipients. Standard PCR-SSP consisted in a single amplification round with sequence-specific primers for the donor-specific DRB1 allele. Nested PCR-SSP consisted in a first round of generic amplification of exon 2 of the DRB1 gene, followed by a second amplification round with primers specific for the donor allele. In vitro, nested PCR-SSP of the donor-specific allele was 1000-fold more sensitive than standard PCR-SSP and allowed the detection of 1 donor cell in 10(5) recipient cells. In vivo, standard PCR-SSP detected donor cells among the recipients' peripheral blood mononuclear cells (PBMCs) only during the first postoperative days, whereas nested PCR-SSP demonstrated their presence until the end of the first postoperative month in patients 1 and 2 and until 3 months after transplantation in patient 3. We conclude that donor cells can be detected in the peripheral blood of SLT and HLT recipients during the first postoperative months and that nested PCR-SSP amplification of a donor-specific HLA-DRB1 allele is much more sensitive than standard PCR-SSP to demonstrate such chimerism.

Adult↗

Systemic release and protective role of IL-10 in staphylococcal enterotoxin B-induced shock in mice.

Staphylococcal enterotoxin B (SEB) is a bacterial superantigen that induces the production of several pro-inflammatory cytokines, leading to a self-limited shock. In the present study, we show that SEB also triggers the systemic release of IL-10, an anti-inflammatory and immunosuppressive cytokine. Serum IL-10 was undetectable (< 1000 pg/ml) in control BALB/c mice and rose to 8500 +/- 2850 pg/ml (mean +/- SEM) 4 h after injection of 100 micrograms SEB. Cell depletion experiments and analysis of IL-10 mRNA expression indicated that CD4+ cells played a major role in SEB-induced IL-10 production. Pretreatment of mice with neutralizing anti-IL-10 mAb before SEB challenge did not modify the release of TNF but led to increased and sustained IL-2 and IFN-gamma serum levels. Furthermore, although no lethality occurred in mice injected with SEB and control mAb, injection of anti-IL-10 mAb before SEB resulted in a 30% lethality (p < 0.05). This lethality was completely prevented by anti-IFN-gamma mAb injection, indicating that IFN-gamma plays a crucial role in the increased toxicity of SEB in anti-IL-10 mAb-injected mice. We conclude that SEB induces the production of IL-10 by CD4+ cells in vivo and that endogenous IL-10 plays an important immunoregulatory role in this model by down-regulating IL-2 and IFN-gamma production.

Animals↗

IFN-gamma prevents Th2 cell-mediated pathology after neonatal injection of semiallogenic spleen cells in mice.

BALB/c mice injected at birth with 10(8) (A/J X BALB/c)F1 hybrid spleen cells develop an autoimmune host-vs-graft (HVG) disease as a result of activation of donor B cells by host CD4+ cells. The antidonor CD4+ cells seem to be Th2-like cells, inasmuch as they are profoundly deficient in IL-2 and IFN-gamma production, but secrete high levels of IL-4 and IL-10. As IFN-gamma is known to inhibit the development of TH2 cells, we attempted to modulate HVG disease by injecting rIFN-gamma. First, we found that 10 micrograms of rIFN-gamma given on days 1 and 3 after birth reduced the serum hyper-IgE of HVG mice by 90% and the serum hyper-IgG1, by 70%. In addition, rIFN-gamma administration significantly decreased the anti-DNA IgG1 titers and prevented the occurrence of anti-glomerular basement membrane and anti-laminin IgG1 Abs as well as the formation of immune deposits in renal glomeruli. These effects were not caused by the abrogation of chimerism, as indicated by the persistence of donor-type B cells in lymph nodes and of Igs bearing donor allotype in serum. MLC experiments indicated that the major effect of early rIFN-gamma administration was to restore the production of IL-2 and IFN-gamma by donor-specific T cells while these cells still secreted significant amounts of IL-4 and IL-10. Unresponsiveness of antidonor cytolytic T cells was not influenced by rIFN-gamma. We conclude that rIFN-gamma prevents the TH2-type response induced by the neonatal injection of semiallogeneic spleen cells and the associated pathology.

Animals↗

The protective role of endogenously synthesized nitric oxide in staphylococcal enterotoxin B-induced shock in mice.

Nitric oxide (NO) synthesis during experimental endotoxemia has been shown to have both deleterious and beneficial effects. In the present study, we analyzed the in vivo production and the regulatory role of NO in the shock syndrome induced by staphylococcal enterotoxin B (SEB) in mice. First, we found that intraperitoneal administration of 100 micrograms SEB in BALB/c mice induced a massive synthesis of NO as indicated by high serum levels of nitrite (NO2-) and nitrate (NO3-) peaking 16 h after SEB injection. The inhibition of NO2- and NO3- release in mice injected with anti-tumor necrosis factor (TNF) and/or anti-interferon gamma (IFN-gamma) monoclonal antibody (mAb) before SEB challenge revealed that both cytokines were involved in SEB-induced NO overproduction. In vitro experiments indicated that NO synthase (NOS) inhibition by N-nitro-L-arginine methyl ester (L-NAME) enhanced IFN-gamma and TNF production by splenocytes in response to SEB. A similar effect was observed in vivo as treatment of mice with L-NAME resulted in increased IFN-gamma and TNF serum levels 24 h after SEB challenge, together with persistent expression of corresponding cytokine mRNA in spleen. The prolonged production of inflammatory cytokines in mice receiving L-NAME and SEB was associated with a 95% mortality rate within 96 h, whereas all mice survived injections of SEB or L-NAME alone. Both TNF and INF-gamma were responsible for the lethality induced by SEB in L-NAME-treated mice as shown by the protection provided by simultaneous administration of anti-IFN-gamma and anti-TNF mAbs. We conclude the SEB induces NO synthesis in vivo and that endogenous NO has protective effects in this model of T cell-dependent shock by downregulating IFN-gamma and TNF production.

Amino Acid Oxidoreductases↗

In vivo T cell activation by anti-CD3 monoclonal antibody induces soluble TNF receptor release in mice. Effects of pentoxifylline, methylprednisolone, anti-TNF, and anti-IFN-gamma antibodies.

Injection of anti-CD3 is accompanied by an increase in systemic TNF, a mediator of the physiologic changes induced by anti-CD3 injection. Various mechanisms have been reported to be responsible for TNF inactivation and clearance. Recently, it has become evident that circulating soluble TNFRs (P55 and P75), which are known to increase in response to TNF inducers such as LPS, represent a natural protection mechanism against circulating TNF. Here we show that triggering the TCR by anti-CD3 injection results in a strong induction of both systemic TNF and soluble TNFR release. Maximal levels of TNF were reached after 2 h (10 ng/ml). Maximum levels of P55 (450 pg/ml) were reached between 0.5 and 8 h, whereas the highest levels of P75 were reached after 2 h (28 ng/ml). Because TNF and IFN-gamma are supposed to be involved in the pathophysiology of the anti-CD3 response, we investigated the influence of in vivo neutralization of TNF and IFN-gamma. Injection of mAb to TNF and IFN-gamma significantly reduced systemic TNF levels and both soluble TNFR levels. Two inhibitors of anti-CD3 induced TNF release; steroids and pentoxifylline both reduced TNF levels and P75 levels without affecting P55 levels. The results show that T cell activation induces both systemic TNF release and release of both soluble TNFRs. Although TNF and IFN-gamma are involved in this mechanism, their role does not seem to be crucial.

Animals↗