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Biomedical subjects

R L Edelson

Publications and source records attributed to R L Edelson.

At least 37 records · Page 2Linked to original sources

Systemic chemotherapy and extracorporeal photochemotherapy for T3 and T4 cutaneous T-cell lymphoma patients who have achieved a complete response to total skin electron beam therapy.

PURPOSE: To evaluate the impact of systemic adjuvant therapies on relapse-free (RFS) and overall survival (OS) of cutaneous T-cell lymphoma (CTCL) patients treated with total skin electron beam therapy (TSEBT). METHODS AND MATERIALS: Between 1974 and 1990, TSEBT (36 Gy at 1 Gy/day; 9 weeks; 6 MeV electrons) was administered with curative intent to a total of 163 CTCL (mycosis fungoides) patients using six fields supplemented by orthovoltage boosts (120 kvp, 1 Gy x 20) to the perineum, soles of feet, and apical scalp (120 kvp, 2 Gy x 3). In this group, all patients who achieved a clinical complete response or a good partial response were offered one of two competing regimens of either adjuvant doxorubicin/cyclophosphamide or adjuvant extracorporeal photochemotherapy (ECP). RESULTS: When the results for the group who achieved a complete response (CR) to TSEBT were analyzed, OS for T1 and T2 patients was excellent (85-90% at 5-10 years) and not improved by either adjuvant regimen. However, T3 and T4 patients who received either adjuvant doxorubicin/cyclophosphamide (75% at 3 years) or adjuvant ECP (100% at 3 years) had better overall survival than those who received neither adjuvant regimen (approximately 50% at 5 years). The difference between the OS curves for those who received ECP vs. those who received no adjuvant therapy approached statistical significance (p < 0.06), while a significant survival benefit from the addition of chemotherapy for TSEBT complete responders was not observed. Neither adjuvant therapy provided benefit with respect to relapse free survival after TSEBT. CONCLUSIONS: These results suggest that an adjuvant nontoxic regimen of extracorporeal photochemotherapy may prolong survival in advanced stage CTCL patients who have achieved a complete remission after TSEBT. The combination of doxorubicin/cyclophosphamide had no significant impact on overall survival in those patients who achieved CR to TSEBT, and neither adjuvant therapy had an impact on relapse free survival for all T-stages. Such results are the basis for the current development of a prospective, randomized trial studying the impact of ECP after TSEBT in patients with advanced stage CTCL.

Adult↗

T-cell responses in photoimmune therapy.

The extracorporeal inactivation of a lymphocyte rich buffy coat suspension with ultraviolet A light and 8 methoxypsoralen can lead to dramatic clinical improvements following reinfusion of the damaged cells. This therapy is reviewed in the context of the disease it is most commonly used for: cutaneous lymphoma. Studies with cutaneous lymphoma patients have shown an active immune response against purified tumor cells. In addition a mouse model for an impact of therapy on a T-cell lymphoma has demonstrated results that parallel those from clinical studies in humans. The impact of photoimmune therapy on in vivo and in vitro T-cell responses to cutaneous lymphoma is discussed.

Antibody Formation↗

Lymphoproliferative disease of granular lymphocytes.

We report a case of lymphoproliferative disease of granular lymphocytes that was associated with cutaneous manifestations. Marker studies of skin and blood in this patient revealed that the circulating and infiltrating cells were negative for CD3 and T-cell antigen receptor but were positive for CD16, CD56, and CD57, suggesting natural killer cell origin. The patient had a rapidly progressive course and died within 1 month of presentation.

Aged↗

Treatment with 8-MOP and UVA enhances MHC class I synthesis in RMA cells: preliminary results.

The response of psoriasis and cutaneous T-cell lymphoma to treatment with 8-methoxypsoralen (8-MOP) and long wavelength ultraviolet light (UVA) is only partly understood. Psoralens form photoadducts within the DNA after activation by UVA and this damage leads to the inhibition of DNA synthesis. Additionally, it has been shown that different forms of DNA damage can induce a stress response, leading to upregulation of selected products. Among these are the major histocompatibility complex (MHC) class I genes. Thus the aim of the present study was to assess the rate of synthesis of MHC class I proteins in murine T-cell lymphoma cells (RMA) after treatment with 8-MOP and UVA. RMA cells were treated with 8-MOP (50-200 ng ml-1) and UVA (1 J.cm-2) and metabolically labelled with 35S-methionine 4 and 24 h after treatment. MHC class I synthesis was determined by immunoprecipitation of the cell lysates with an anti-Kb monoclonal antibody, Y3. After 4 h, treated and untreated cells demonstrated no differences in the rate of MHC class I synthesis. However, after 24 h a dose-dependent increase in MHC class I synthesis was observed. This increase in MHC class I expression could be responsible, at least partly, for the responses observed in patients treated with photopheresis.

Animals↗

Increased surface expression of class I MHC molecules on immunogenic cells derived from the xenogenization of P815 mastocytoma cells with 8-methoxypsoralen and long-wavelength ultraviolet radiation.

In a previous study we demonstrated that the treatment of the highly tumorigenic cell line, P815, with 8-methoxypsoralen and long-wavelength ultraviolet radiation resulted in the production of several immunogenic clones (tum-). Mice inoculated with the tum- cells survived much longer than mice inoculated with the original tumorigenic cells (tum+). It was suggested that the increased survival of mice treated with the tum- clones arose as a result of an increased antigenicity derived from the phototreatment. In this report we show that the tum- cells have a greater density of class I MHC molecules on their surface (50-157% compared to P815). Class I MHC density on the cell surface is required to elicit targeted cytotoxic responses. These results can be considered in terms of human class I MHC assays which show that many human tumor cells have a reduced expression of class I MHC. Because other DNA damaging agents have also been shown to enhance class I expression, it is suggested that in addition to the cytotoxic effects of these agents, other pleiotropic effects must be considered. Photochemotherapy may phenotypically alter cells so that the enhanced expression of class I MHC molecules on the surface of phototreated cells may be associated with the clinical responses observed in cutaneous T cell lymphoma patients.

Animals↗

Photopheresis for the treatment of cutaneous T-cell lymphoma.

Since its introduction in 1987, photopheresis has provided an additional modality in the treatment of patients with CTCL; it should probably be considered as the first line of treatment for patients with the erythrodermic stage disease. It is clear that in the responders, significant improvement in the quality of life can be achieved. The toxicity is minimal. As compared with historical control groups, patients treated with photopheresis have a prolonged survival. Although the precise therapeutic mechanism is yet to be fully elucidated, substantial evidence implicates increased immunogenicity of class I associated peptides specific for the malignant cells. Additional issues to be resolved include the role of adjunctive therapy, cost effectiveness of this treatment modality, and applicability to nonerythrodermic stages of CTCL.

Humans↗

The specific effects of 8-methoxypsoralen photoadducts on cell growth: HPLC analysis of monoadduct and crosslink formation in cells exposed to split-dose treatment.

The effects of 8-methoxypsoralen (8-MOP) monoadducts and crosslinks on growth and viability of mastocytoma cells were investigated. To induce monoadduct formation (4',5'-monoadducts and 3,4-monoadducts), the cells were incubated with 8-MOP (1 microgram ml-1) and exposed to 419 nm radiation, resulting in the formation of more than 96% monoadducts. After washing and resuspension, the cells were exposed to a small dose of long-wavelength UV radiation (UVA, 2 J cm-2) to convert monoadducts into crosslinks. Similar adduct levels were obtained after either 8-MOP plus visible light treatment or 8-MOP plus split-dose protocol. Cells treated with 419 nm light resumed normal growth rates more rapidly than cells which also received the UVA dose. High performance liquid chromatography (HPLC) analysis of DNA obtained from each group of cells showed that the UVA step resulted in an increase in crosslinks from 3.2% after 419 nm radiation to 56.5% after UVA irradiation.

Animals↗

Cardiogenic shock due to progression of cutaneous T-cell lymphoma.

We describe a patient with progressive cutaneous T-cell lymphoma (CTCL) and development of subacute cardiac failure. Symptomatic lymphomatous involvement of the heart may be more common in patients with CTCL than in other lymphomas because the former is more likely to be associated with circulating tumor cells and hematogenous spread to the myocardium. No single symptom or sign is highly predictive of cardiac involvement, but unexplained tachyarrhythmias, conduction disturbances, low voltage on ECG, and unexplained cardiac enlargement should arouse clinical suspicion. Although echocardiography may be helpful in suggesting cardiac involvement, endomyocardial biopsy should be considered in patients with a reasonable chance of responding to chemotherapy or radiation.

Electrocardiography↗

Superantigenic staphylococcal exotoxins induce T-cell proliferation in the presence of Langerhans cells or class II-bearing keratinocytes and stimulate keratinocytes to produce T-cell-activating cytokines.

Several staphylococcal toxins are among a growing number of immunostimulatory molecules called "superantigens" because of their ability, when presented by appropriate major histocompatibility complex class II+ accessory cells, to activate essentially all T cells bearing particular T-cell receptor V beta gene segments. We have examined the ability of murine epidermal Langerhans cells and/or keratinocytes to act as accessory cells in the T-cell response to the superantigens staphylococcal enterotoxin B and exfoliative toxin, also known as epidermolysin. Purified murine splenic T cells were stimulated with staphylococcal enterotoxin B or exfoliative toxin in the presence of Langerhans cells--enriched epidermal cells from normal mice or epidermal cells isolated from mice pretreated with recombinant interferon-gamma, a procedure that induces the expression of major histocompatibility complex class II molecules on keratinocytes. The data show that both Langerhans cells and class II-bearing keratinocytes can act as accessory cells in the T-cell response to staphylococcal enterotoxin B and exfoliative toxin. We also observed that both human and murine keratinocytes cultured in the presence of staphylococcal enterotoxin B or exfoliative toxin produce increased amounts of cytokine(s) capable of stimulating thymocytes and D10 cells, and that this toxin activity is independent of the level of expression of class II on keratinocytes. Studies by enzyme-linked immunosorbent assay showed that staphylococcal enterotoxin B stimulates keratinocytes to produce tumor necrosis factor-alpha but not interleukin-1, suggesting tumor necrosis factor-alpha and perhaps other cytokines are responsible for the T-cell proliferative activity. These results demonstrate that two distinct epidermal constituents (i.e. Langerhans cells and keratinocytes) can serve as accessory cells in the responses of T cells to superantigenic bacterial toxins. It is possible that such toxins contribute to the pathogenesis of a variety of skin diseases by either locally activating T cells bearing particular V beta genes and/or enhancing keratinocyte production of immunomodulatory cytokines.

Animals↗

Cutaneous cryptococcosis in a patient with cutaneous T cell lymphoma receiving therapy with photopheresis and methotrexate.

Photopheresis is being used with increasing frequency as therapy for patients with neoplastic and dermatologic diseases and is being evaluated as therapy for patients with AIDS. We describe a patient with advanced cutaneous T cell lymphoma who developed pulmonary and cutaneous cryptococcosis after receiving therapy with photopheresis and biweekly methotrexate. We consider the potential roles of cutaneous T cell lymphoma, methotrexate, and photopheresis as predisposing factors in the development of serious cryptococcal infections.

Aged↗

Skin-selective lymphocyte homing mechanisms in the pathogenesis of leukemic cutaneous T-cell lymphoma.

The concept of skin-associated lymphoid tissue embraces those cells and functions that are integrated in the cutaneous host defense. Recently, it has been possible to identify those circulating T-cells that are skin associated. These cells display the cell-surface phenotype of memory T cells (CD45RO+) and express the cutaneous lymphocyte antigen, a tissue-selective homing receptor involved in directing T-cell traffic to inflamed skin. To investigate the participation of this skin-associated T-cell subset in the pathogenesis of cutaneous T-cell lymphoma, we studied 16 patients with erythrodermic cutaneous T-cell lymphoma for the presence of these surface proteins on circulating cells. Results were compared with eight patients in remission and eight with minimal patch-plaque cutaneous T-cell lymphoma. The mean expression of both CD45RO and cutaneous lymphocyte antigen were significantly greater in the erythrodermic patients than in the other two patient groups. Expression of these markers was shown to be on the cells of the malignant clone by two-color flow cytometry. These results demonstrate that the malignant cells of cutaneous T-cell lymphoma express the markers of skin homing lymphocytes and that their levels are increased in the erythrodermic cutaneous T-cell lymphoma patients. Moreover, the findings suggest a critical role for the skin-selective homing receptor cutaneous lymphocyte antigen in the pathogenesis of cutaneous T-cell lymphoma.

Antigens, Differentiation, T-Lymphocyte↗

Modulation of 8-methoxypsoralen-DNA photoadduct formation by cell differentiation, mitogenic stimulation and phorbol ester exposure in murine T lymphocytes.

The effects of cell differentiation and mitogen and phorbol ester stimulation on the formation of 8-methoxypsoralen (8-MOP)-DNA photoadducts in murine T lymphocytes were examined using 3H-8-MOP. While there were no significant differences in 8-MOP photoadduct formation among BALB/c thymocytes, splenocytes, splenic T cells and MRL/lpr lymph node cells, BALB/c bone marrow cells showed fewer photoadducts than did the lymphocytes. This suggested that proliferating progenitor cells may be resistant to 8-MOP photoadduct formation. Incubation of purified splenic T cells with lectin mitogens for 2 h or with phorbol 12-myristate 13-acetate (PMA) for 2-43 h resulted in reduction of 8-MOP photoadduct formation in the DNA, whereas 64 h cultivation with these agents augmented the photoadduct formation. The reduction of photoadduct formation induced by phytohemagglutinin was restored by the further addition of a protein kinase C (PKC) inhibitor, H-7, to the culture. Thus, it is assumed that the reduction of adduct formation evoked by mitogens and PMA is mediated in part by the activation of PKC in the cells. On the other hand, the augmentation of the adduct formation induced by the longer-period cultures with mitogens and PMA appeared to be caused by down-regulation of PKC. The present study showed that the stimulatory signals in which PKC is presumably involved affect the ability of cells to form 8-MOP-DNA photoadducts.

Animals↗

Suppression of anti-skin-allograft response by photodamaged effector cells--the modulating effects of prednisolone and cyclophosphamide.

Using a murine model of skin allotransplantation, we have demonstrated previously that inhibition of specific response to alloantigen is inducible by immunization of the host with intravenously administered photoinactivated antigraft effector T cells. This hyporesponsiveness, which was demonstrated by specific inhibition of mixed leukocyte culture (MLC), inhibition of cytotoxic T lympholysis (CTL), specific suppression of the delayed type hypersensitivity (DTH) response, and prolongation of specific skin allograft survival, was adoptively transferable by CD8+ radiosensitive T lymphocytes. In this study, we extend those results to evaluate the effects of an immunosuppressive agent (prednisolone) and an alkylating drug (cyclophosphamide) on the induction of this specific suppressive cellular response. Our results reveal that the administration of prednisolone reduces the induction of the specific hyporesponsiveness to alloantigen, as demonstrated by maintenance of the DTH response to alloantigen and continued accelerated rejection of skin allografts. In contrast, the administration of cyclophosphamide augmented this specific suppressive response to alloantigen in the DTH assay and in prolongation of specific skin allograft survival. These results indicate that adjuvant immunomodulating chemotherapy alters the immune response to photoinactivated effector T cells.

Animals↗

Induction of a cell-transferable suppression of alloreactivity by photodamaged lymphocytes.

We have reported previously that splenocytes from BALB/c mice acutely rejecting CBA/j skin allografts were exposed to 8-methoxypsoralen (8-MOP) and ultraviolet A light and infused several times intravenously into naive BALB/c recipients; the recipients were hyporesponsive to CBA/j alloantigens in skin graft and delayed-type hypersensitivity assays, as well as in mixed leukocyte culture and cytotoxicity assays. We currently expand on this work by showing that donor-specific tolerance can be transferred adoptively to naive syngeneic animals via unfractionated splenocytes from mice rendered tolerant by the previous protocol. This suppressed response to alloantigen was transferred optimally with splenocytes taken from mice on the sixth day after the final treatment with PET cells. We further demonstrate that the cells that are adoptively transferring suppression are radiosensitive, Thy-1+, Lyt-2+, L3T4- T lymphocytes.

Animals↗

Stimulation of cutaneous T-cell lymphoma cells with superantigenic staphylococcal toxins.

Stimulation of T cells by superantigenic bacterial toxins is selective for cells bearing particular B chain variable (VB) gene segments of T-cell receptor (TCR). In humans, staphylococcal exfoliating toxin (ExT) and toxic shock syndrome toxin-1 (TSST-1) are known to stimulate VB 2-bearing T cells and staphylococcal enterotoxin B (SEB) does not activate VB 2-bearing T cells. We examined the proliferative response of cutaneous T-cell lymphoma (CTCL) cells to ExT, TSST-1, and SEB. Leukemic VB 2.1-bearing CTCL cells were reactive to ExT and TSST-1, but not SEB. In addition, two leukemia CTCL-VB 2- cell samples (one of which was VB 8) showed no substantial response to ExT. Thus, it was shown that Sezary cells proliferate in response to bacterial superantigens in a manner that is restricted by their VB usage. The addition of interleukin-1 (IL-1) in combination with ExT enhanced the stimulative response of VB 2.1-bearing CTCL cells that were pre-cultured with ExT for 7 d, suggesting that IL-1 can be a co-factor for the stimulation. The present study indicates that the superantigen reaction occurs with CTCL cells and implies a possible involvement of bacterial toxins in the pathogenesis of CTCL.

Antigens, Bacterial↗

Retinoid augmentation of bioactive interleukin-1 production by murine keratinocytes.

The effect of retinoids on the production of interleukin-1 (IL-1) by murine epidermal keratinocytes was investigated. Freshly isolated keratinocytes were cultured in the presence of etretinate, acitretin, all-trans retinoic acid or 13-cis retinoic acid at concentrations of 8 x 10(-9)-8 x 10(-6) mol/l. Exposure of keratinocytes to retinoids increased IL-1 bioactivity in culture supernatants and cell extracts at concentrations as low as 8 x 10(-9) mol/l, as assessed by T-cell proliferation. Prolongation of the culture period enhanced the augmentative effect of retinoids. All-trans retinoic acid and 13-cis retinoic acid had a greater ability to induce IL-1 production than the two aromatic retinoids, etretinate and acitretin. Treatment with 8-methoxypsoralen plus ultraviolet A radiation and treatment with triamcinolone acetonide both reduced the effect of retinoids on the production of bioactive IL-1.

Acitretin↗

DNA associated with the cell membrane is involved in the inhibition of the skin rejection response induced by infusions of photodamaged alloreactive cells that mediate rejection of skin allograft.

Cell membrane DNA (cmDNA) is a form of DNA located on the surface of human and murine T-cells. It has recently been characterized as a target for photomodification by 8-methoxypsoralen (8-MOP) and long-wave ultraviolet light (UV-A). Whereas 8-MOP itself is biologically inert, photoactivated 8-MOP is covalently bound to pyrimidine bases in DNA. We have investigated the possible involvement of cmDNA photomodification in the induction of the suppression of skin allograft rejection in BALB/c mice preimmunized with 8-MOP/UV-A photodamaged alloreactive cells which mediates this allograft rejection. This suppression is demonstrated by inhibition of delayed-type hypersensitivity (DTH) and mixed leukocyte culture (MLC) responses. Splenocytes from BALB/c mice undergoing rejection of CBA/j skin graft which contained an expanded population of the effector T lymphocytes that mediate the rejection were treated with DNAse to remove cmDNA before or after treatment with 8-MOP and UV-A prior to infusion into naive BALB/c recipients. Mice that received pretreated effector cells were tested for MLC responses to CBA/j or B10 alloantigens before and after the DTH response. The DTH response of all groups of pretreated BALB/c mice to the relevant alloantigen was specifically suppressed as compared with the response of control mice. However, adoptive transfer of the suppression of the DTH response was optimally demonstrable only in syngeneic recipients of cells from donor mice treated with photodamaged alloreactive cells. Also, splenocytes from BALB/c mice immunized with photodamaged alloreactive cells demonstrated highly significant hyporesponsiveness and suppression of the MLC response of naive mice to the relevant alloantigen in the case of the primary MLC response, and to both alloantigens in the secondary MLC response which was totally eliminated by prior pretreatment of these effector cells with DNAse. Therefore, it appears that the suppression of the DTH response can be induced by pretreatment of the effector cells with DNAse and/or 8-MOP and UV-A but is adoptively transferable optimally only from mice which are recipients of photodamaged alloreactive cells. Moreover, the effectiveness of this treatment is decreased by prior removal of cmDNA from these cells. The presence of cmDNA is necessary for induction of suppression of the primary and secondary MLC responses in mice treated with photodamaged cells of allograft rejection.

Animals↗