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Biomedical subjects

D Wallach

Publications and source records attributed to D Wallach.

At least 19 recordsLinked to original sources

Selective decrease in cell surface expression and mRNA level of the 55-kDa tumor necrosis factor receptor during differentiation of HL-60 cells into macrophage-like but not granulocyte-like cells.

Expression of the two known receptors for TNF was studied in the promyelocytic leukemia cell line HL-60 before and after differentiation of the cells along the granulocyte lineage (induced by incubation with retinoic acid), or along the macrophage lineage (induced by incubation with the phorbol diester, PMA). The extent of inhibition of TNF binding by receptor-specific antisera, as well as the size of the complexes formed after cross-linking TNF to its receptors on intact cells, indicated that both receptor species were expressed on the surface of the undifferentiated HL60 cells. Differentiation into granulocyte-like cells resulted in some increase in TNF binding. The increase was apparently due to enhanced expression of the 75-kDa TNF-R, whereas the amounts of the 55-kDa TNF-R did not change significantly. In contrast, in HL-60 cells induced to differentiate into macrophage-like cells, expression of the 55-kDa TNF-R species was completely abolished. The pattern of TNF-R expression in the differentiated HL-60 cells was similar to that observed in leukocytes isolated from peripheral blood: on granulocytes, there were about equal amounts of both receptor species, whereas on monocytes the 75-kDa receptor was predominant. The loss of 55-kDa receptors during differentiation of HL-60 cells into macrophage-like cells was accompanied by a pronounced decrease in the level of the mRNA for that receptor, suggesting that at least part of the change in TNF-R expression is due to mechanisms that control the amounts of receptor mRNA. Although little is yet known regarding the functional differences between the two receptor species, marked changes in the pattern of their expression, as observed during HL-60 cell differentiation, are likely to alter the kind of response of the cells to TNF and may therefore play an important role in the coordination of TNF effects in the organism.

Cell Differentiation

Stabilization of the bioactivity of tumor necrosis factor by its soluble receptors.

The receptors for tumor necrosis factor (TNF) exist in cell-associated as well as soluble forms, both binding specifically to TNF. Since the soluble forms of TNF receptors (sTNF-Rs) can compete with the cell-associated TNF receptors for TNF, it was suggested that they function as inhibitors of TNF activity; at high concentrations, the sTNF-Rs indeed inhibit TNF effects. However, we report here that in the presence of low concentrations of the sTNF-Rs, effects of TNF whose induction depend on prolonged treatment with this cytokine are augmented, reflecting an attenuation by the sTNF-Rs of spontaneous TNF activity decay. Evidence that this stabilization of TNF activity by the sTNF-Rs follows from stabilization of TNF structure within the complexes that TNF forms with the sTNF-Rs is presented here, suggesting that the sTNF-Rs can affect TNF activity not only by interfering with its binding to cells but also by stabilizing its structure and preserving its activity, thus augmenting some of its effects.

Cell Count

Increased levels of soluble tumor necrosis factor receptors in the sera and synovial fluid of patients with rheumatic diseases.

OBJECTIVE: Recently, 2 classes of cytokine inhibitors have been defined at the molecular level. The largest group comprises the extracellular domains of cell surface cytokine receptors, and includes both tumor necrosis factor receptors (TNF-R). The present study was conducted to investigate the role of TNF inhibitors in arthritis. METHODS: We measured p55 and p75 soluble TNF-R (sTNF-R) in serum and synovial fluid (SF) samples from patients with rheumatic diseases and compared their levels with levels of soluble interleukin-2 receptors (sIL-2R). Sensitive enzyme-linked immunosorbent assays (ELISA), specific for p55 and p75 sTNF-R and for sIL-2R, were used. RESULTS: Serum levels of p75 sTNF-R were 3-4-fold higher than levels of p55 sTNF-R, and both were significantly elevated in patients with osteoarthritis (OA) and rheumatoid arthritis (RA) compared with healthy controls. RA SF levels of sTNF-R were 4-5-fold higher than levels in serum, suggesting local production in the joint, and were significantly higher than levels in the SF of patients with seronegative arthropathy or OA. Furthermore, levels of p55 and p75 sTNF-R, but not sIL-2R or TNF alpha measured by ELISA, were increased in the SF of patients with clinically active RA. The soluble TNF-R in RA and OA SF were functional since they inhibited TNF activity in a cytotoxicity assay in proportion to the levels of inhibitor present. Evaluation of serially obtained serum samples suggested that sTNF-R may be a useful parameter for monitoring RA disease activity. CONCLUSION: Biologically active soluble TNF-R are up-regulated in patients with rheumatic disease and are produced locally in the joints. Measurement of serum levels of TNF-R may be useful for monitoring of disease, and determination of SF levels could be of diagnostic value.

Adult

Cytoplasmic truncation of the p55 tumour necrosis factor (TNF) receptor abolishes signalling, but not induced shedding of the receptor.

The mechanistic relationship between the signalling for the TNF effects by the human p55 TNF receptor (hu-p55-TNF-R) and the formation of a soluble form of the receptor, which is inhibitory to these effects, was explored by examining the function of C-terminally truncated mutants of the receptor, expressed in rodent cells. The 'wild-type' receptor signalled for a cytocidal effect when cross-linked with specific antibodies and exhibited spontaneous shedding. Shedding of the receptor was not affected by TNF but was markedly enhanced by 4 beta-phorbol-12-myristate-13-acetate (PMA). Receptor mutants with 53%, 83% and 96% C-terminal deletions could not signal for the cytocidal effect. Furthermore, they were found to associate with the endogenous rodent receptors, interfering with their signalling. Yet even the deletion of 96% of the intracellular domain did not abolish shedding of the receptor in response to PMA. These findings suggest that signalling and shedding of the p55 TNF-R are mechanistically distinct.

3T3 Cells

Efficacy and safety of calcipotriol (MC 903) ointment in psoriasis vulgaris. A randomized, double-blind, right/left comparative, vehicle-controlled study.

BACKGROUND: The biologically active form of vitamin D3, calcitriol, may offer a new therapeutic approach to psoriasis. Calcipotriol, a new vitamin D3 analogue, is at least 100 times less calcemic than calcitriol. OBJECTIVE: Our purpose was to study the efficacy and safety of calcipotriol in the treatment of psoriasis vulgaris. METHODS: In a right/left comparative, double-blind study, treatment with calcipotriol ointment (50 micrograms/gm) twice daily and placebo was given for 4 weeks. The preferred treatment was continued, without opening the code, for another 4 weeks. Efficacy, as measured by the Psoriasis Area and Severity Index and by the investigator's and patient's global assessment, and safety were assessed every 2 weeks. RESULTS: The mean Psoriasis Area and Severity Index fell in 4 weeks from 14.2 to 6.3 with calcipotriol and from 14.1 to 9.2 with placebo (p < 0.001; 95% confidence interval for difference: 1.78-->3.94). Local side effects were equally common with calcipotriol and placebo. The mean serum calcium remained unchanged. CONCLUSION: Topical application of up to 50 gm of calcipotriol ointment per week was found to be an effective and safe treatment of psoriasis vulgaris.

Adult

Intraepidermal IgA pustulosis.

Since 1979, 29 patients with intraepidermal IgA detected by direct immunofluorescence have been reported. A review shows that they have a cutaneous disease clinically similar to subcorneal pustular dermatosis, or Sneddon-Wilkinson disease. The pustules may be subcorneal or intraepidermal. IgA deposits are usually found on the intercellular substance of the epidermis, although a subcorneal linear pattern has also been described. Circulating IgA class antiepidermal autoantibodies may be present. The disease usually responds to dapsone. In six cases, a monoclonal IgA gammopathy was present. Although little is known about the pathogenesis of this condition, we believe that it represents a distinct entity among the group of the neutrophilic dermatoses. Various diagnostic terms have been used; we propose intraepidermal IgA pustulosis.

Adolescent

Induction of soluble tumour necrosis factor receptors during treatment with interleukin-2.

Interleukin-2 (IL-2) treatment induces other cytokines such as tumour necrosis factor (TNF) TNF may mediate some of the anti-tumour activity of IL-2, but conversely, may contribute to its dose limiting toxicities. Cleaved extracellular domains of the p55 and the p75 TNF receptors (sTNF-R1 and R2) bind to and inhibit the biological activity of TNF in vitro, but may also act as carrier molecules. We have assayed TNF and sTNFR-1 and 2 in the plasma of advanced cancer patients, before and during treatment with IL-2. Plasma levels of TNF in 22 patients were not significantly different from 25 normal controls, but levels of sTNFR-1 and sTNFR-2 were higher (P < 0.001). Levels of TNF and both its soluble receptors were significantly increased in 13 patients receiving IL-2 therapy. Maximum induced levels of sTNFR-1 and sTNFR-2 correlated closely with maximum induced levels of TNF (P < 0.001), but peak levels of sTNFR-1 and two were achieved 24-48 h after peak TNF. Levels of TNF and sTNF-Rs did not correlate with toxicity. Treatment with IL-2 leads not only to induction of TNF but also soluble binding proteins at levels which may modulate its biological activity.

Breast Neoplasms

Elevated serum levels of soluble tumour necrosis factor receptors (sTNF-R) in patients with HIV infection.

Serum levels of the soluble form of tumour necrosis factor receptor type II (p75) (sTNF-R) were determined in HIV-infected individuals and risk groups and were then correlated with the course of infection and prognosis. sTNF-R levels were determined by an ELISA with MoAbs and polyclonal antibodies to urine-derived sTNF-R proteins. The mean +/- s.e. levels of sTNF-R in the sera of 49 HIV+ male homosexuals, 34 HIV- male homosexuals and 44 matched controls were 6.1 +/- 0.3 ng/ml, 4.4 +/- 0.3 ng/ml and 3.4 +/- 0.2 ng/ml, respectively. All these values were significantly different between each of the groups (P less than 0.001-0.05). Sequential studies of sTNF-R revealed higher levels following seroconversion in 5/8 individuals, remained persistently high during the asymptomatic phase of the infection and became even more elevated in some ARC and AIDS patients. At the same time TNF-alpha was undetectable in sera obtained from HIV+ male homosexuals and from healthy controls. This was independent of stage of HIV infection, serum sTNF-R level and type of ELISA kit used. These findings suggest that TNF-alpha/TNF-R system is turned on before and during HIV infection and raise the possibility that sTNF-R, the natural inhibitor of TNF, may be of importance in determining the course and probably prognosis of the disease.

Enzyme-Linked Immunosorbent Assay

Variation in serum levels of the soluble TNF receptors among healthy individuals.

Soluble forms of the two receptors for tumor necrosis factor (TNF) are present in human sera at concentrations that increase greatly in various disease states as well as varying among healthy individuals. Measurements of the soluble TNF receptor (sTNF-R) concentrations in healthy individuals at time lapses of 3 months (17 individuals) or 1 year (51 individuals) showed a significant correlation between the first and the second measurements from each individual, implying that individual differences are stable. Since the sTNF-Rs are believed to function as physiological attenuators of TNF activity, these steady individual differences may contribute to differences in the severity of the harmful effects of TNF in disease states.

Enzyme-Linked Immunosorbent Assay

[Pustular dermatoses in the neonatal period].

The diagnosis of pustular dermatosis occurring during the first months of life is usually based on clinical findings. However, some cases may require a few simple investigations including cytological studies, cultures, and skin biopsies. The most common causes of infectious pustular skin lesions include bacterial infections, which may be septicemic (with Listeria as the leading causative agent) or initially localized (staphylococcus); viral infections (varicella, herpes); fungal infections, i.e., candidiasis (congenital or neonatal) or the very recently described form of pustulosis due to Malassezia furfur; or parasitic (scabies). The main benign transient neonatal forms of pustulosis include infantile acropustulosis (for which the relationship with scabies is discussed), toxi-allergic erythema, transient pustular melanosis, and neonatal acne. Lastly, rare causes of neonatal pustulosis are reviewed. The need for investigating every neonate with skin pustules for an infectious disease, especially due to a bacterium, is emphasized.

Biopsy

Increased serum levels of soluble receptors for tumor necrosis factor in cancer patients.

Soluble forms of the two molecular species of the cell surface receptors for tumor necrosis factor (TNF) have been detected in normal urine. Using enzyme-linked immunosorbent assays for these soluble receptors, we determined their levels in the sera of 40 healthy subjects and 59 patients with solid tumors. The mean +/- SD concentrations of both the soluble type I (p55) and type II (p75) receptors were significantly higher in the cancer patients than in the healthy controls: 1.96 +/- 1.19 versus 0.79 +/- 0.19 ng/ml (P less than 0.001) and 6.43 +/- 4.8 versus 3.2 +/- 0.6 ng/ml (P less than 0.001), respectively. The incidence and the extent of the increase correlated with the staging of disease. Sera of the cancer patients had a marked inhibitory effect on the in vitro cytocidal activity of TNF. This inhibition was proportional to the content of soluble TNF receptors and could be fully abolished by the addition to the sera of specific antibodies against the receptors. Among the cancer patients, the incidence of increase in the concentrations of soluble TNF receptors (about 70%) greatly exceeded that of the serum carcinoembryonic antigen (about 26%), a commonly used cancer marker. The origin of the serum soluble TNF receptors in cancer patients and the physiological implications of their effect on TNF function remain to be elucidated.

Adult

Human neutrophil elastase releases a ligand-binding fragment from the 75-kDa tumor necrosis factor (TNF) receptor. Comparison with the proteolytic activity responsible for shedding of TNF receptors from stimulated neutrophils.

To localize the protease(s) involved in shedding of tumor necrosis factor receptors (TNF-R) from activated neutrophils (PMN) (Porteu, F., and C. Nathan (1990) J. Exp. Med. 172, 599-607), we tested subcellular fractions from PMN for their ability to cause loss of TNF-R from intact cells. Exposure of PMN to sonicated azurophil granules at 37 degrees C resulted in inhibition of 125I-TNF binding; 50% inhibition ensued when PMN were treated for approximately 1 min with azurophil granules equivalent to 2-3 PMN per indicator cell. The TNF-R-degrading activity in azurophil granules were identified as elastase by its sensitivity to diisopropyl fluorophosphate (DFP), alpha 1-antitrypsin and N-methoxysuccinyl-Ala-Ala-Pro-Val chloromethyl ketone (MSAAPV-CK), and by the ability of purified elastase to reproduce the effect of azurophil granules. Elastase preferentially acted on the 75-kDa TNF-R, reducing by 85-96% the binding of 125I-TNF to mononuclear cells expressing predominantly this receptor, while having no effect on endothelial cells expressing almost exclusively the 55-kDa TNF-R. Elastase-treated PMN released a 32-kDa soluble fragment of p75 TNF-R that bound TNF and reacted with anti-TNF-R monoclonal antibodies. In contrast, fMet-Leu-Phe-activated PMN shed a 42-kDa fragment from p75 TNF-R, along with similar amounts of a 28-kDa fragment from p55 TNF-R. Shedding of both TNF-Rs by intact activated PMN was more extensive than shedding caused by elastase and was completely resistant to DFP and MSAAPV-CK. Thus, the TNF-R-releasing activity of azurophil granules is distinct from that operative in intact stimulated PMN and could provide an additional mechanism for the control of cellular responses to TNF at sites of inflammation.

Adult

Induction of hyporesponsiveness to an early post-binding effect of tumor necrosis factor by tumor necrosis factor itself and interleukin 1.

Modulation of cellular responsiveness to tumor necrosis factor (TNF) was studied in the human SV-80 cells. A marked cytocidal effect is exhibited by these cells at about 4 to 8 h after application of TNF together with protein synthesis inhibitors. Sensitivity of the cells to TNF toxicity was shown to be markedly decreased following their pretreatment with TNF itself or with interleukin (IL) 1 in the absence of protein synthesis inhibitors. The SV-80 cells respond to TNF also with enhanced phosphorylation of the small heat-shock protein, HSP27. This TNF effect is much more rapid than the cytocidal effect; it is observed within minutes of TNF application. The response to this effect, just like the response to the cytocidal effect, is markedly decreased following preexposure of the cells to either TNF or IL 1. Responsiveness to both effects of TNF is regained at the same time, about 15 to 20 h following removal of TNF or IL 1. The decrease in responsiveness after pretreatment with TNF or IL 1 does not reflect an inability of the pretreated cells to bind TNF. Although there is an initial decrease in TNF binding after such pretreatment, it is fully reversed already about 5 h following removal of the cytokines. The rate of uptake of TNF by the pretreated cells is also normal. In view of the rapidity of the effect of TNF on the phosphorylation of HSP27, it seems likely that the observed hyporesponsiveness reflects impairment of an early step in a signaling pathway, perhaps common to both the stimulation of phosphorylation and the induction of cell death by TNF. By restricting the duration of the effects of TNF this desensitization mechanism may safeguard against harmful consequences of these effects.

Cell Line

The gene for the type II (p75) tumor necrosis factor receptor (TNF-RII) is localized on band 1p36.2-p36.3.

The gene encoding the type II (p75) tumor necrosis factor receptor (TNF-RII) has been localized on human chromosome 1, band 1p36.2 by nonradioactive in situ hybridization. The gene encoding the type I (p55) TNF-R, which is structurally homologous to the type II (p75) TNF-R, has been previously localized on chromosome 12 band 12p13. Thus, despite their probable common ancestry, the genes for the two TNF-Rs are localized on different chromosomes.

Base Sequence