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M Sensi

Publications and source records attributed to M Sensi.

At least 55 records · Page 3Linked to original sources

D-lysine reduces the non-enzymatic glycation of proteins in experimental diabetes mellitus in rats.

D-Lysine, the non-physiological isomer of L-lysine, can competitively reduce protein non-enzymatic glycation in vitro. To study the effect of D-lysine in vivo, 6-8-week old Sprague-Dawley rats with streptozotocin-induced diabetes mellitus were treated from diagnosis for 45 days with two daily subcutaneous injections of D-lysine (0.5 g.ml-1.day-1). Another group of diabetic rats was only injected with equal volumes of physiological saline (0.9% NaCl). Glycated haemoglobin was measured by ion exchange chromatography, and glycated serum and lens proteins by boronate affinity gel chromatography. Serum and urinary creatinine concentrations were evaluated by the alkaline-picrate reaction. Urinary lysine concentrations at mid- and end-study were evaluated by cation exchange chromatography. Blood glucose concentrations, serum creatinine levels and creatinine clearances, measured at the end of the study, were similar in both diabetic groups (> 22.0 mmol/l, < or = 106 mumol/l and approximately 0.02 ml/s, respectively). Urinary lysine concentration in D-lysine-treated diabetic animals was more than 50-fold higher than in placebo-treated diabetic rats. In D-lysine-treated vs placebo-treated diabetic animals, a statistically significant reduction was found in the levels of glycated haemoglobin (stable HbA1; mean +/- SD = 3.00 +/- 0.74% vs 4.02 +/- 0.46%, p < 0.05; labile HbA1 = 3.92 +/- 0.89% vs 5.84 +/- 0.61%, p < 0.005), glycated serum proteins (1.40 +/- 0.47% vs 2.52 +/- 1.15%, p < 0.05) and glycated lens proteins (4.90 +/- 0.96% vs 5.98 +/- 0.65%, p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A charge selectivity impairment in protein permselectivity is present in type 2 diabetes.

A possible loss in kidney charge permselectivity of proteins before any manifestation of nephropathy has been sought in type 2 (non-insulin-dependent) diabetes by assessing the clearances of proteins differing in charge and/or size (anionic and cationic immunoglobulins, albumin). Eighty-five consecutive outpatients with type 2 diabetes were studied and compared with 101 normal subjects. Of the patients, 14.1% were microalbuminuric and 2.3% macroalbuminuric. A significant increase in protein clearances was observed in diabetic patients in comparison with normal subjects: the median of albumin clearance was 0.09 ml/min, interquartile range (IR) 0.04-0.31 (P < 0.01 vs normals); that of anionic immunoglobulins (IgG4) 0.02 ml/min, IR 0.04-0.05 (P < 0.005 vs normals); and that of neutral/cationic immunoglobulins (IgG) 0.13 ml/min, IR 0.07-0.19 (P < 0.01 vs normals). The anionic/cationic immunoglobulin ratio median was 0.22, IR 0.11-0.43, and exceeded the upper limit of normal values in 29.4% of all patients. IgG4 clearance was positively correlated with albumin clearance (r = 0.72) and with IgG clearance (r = 0.98). Nevertheless anionic immunoglobulin clearance was increased in a number of patients (17.3%) with normal IgG excretion and even in patients (15.1%) with normal albumin clearance. Clearances of IgG4 and IgG, but not that of albumin, were correlated with the duration of diabetes. Thus, an increased anionic/cationic IgG ratio in type 2 diabetes highlights a charge selectivity defect in protein permselectivity; this selective proteinuria may reflect more accurately than does microalbuminuria an early kidney abnormality in this form of diabetes.

Adult↗

Pancreatic gangliosides delay the onset of insulitis and hyperglycaemia in the low-dose streptozotocin mouse model.

Gangliosides have been shown to modulate autoimmune phenomena in experimental diabetes. The effects of a pancreatic ganglioside preparation or of a commercial brain ganglioside mixture on the insulitis and blood glucose levels in the low-dose streptozotocin mouse model of diabetes have been investigated. Fifty-five C57BL/6J male mice were grouped as follows: Group 1 (n = 20) was injected intraperitoneally with repeated low doses of streptozotocin; Group 2 (n = 10) received streptozotocin as above but was also injected with a pancreatic ganglioside preparation equivalent to 2 micrograms sialic acid 2 h before each streptozotocin dose; Group 3 (n = 15) received streptozotocin and brain-derived gangliosides in the same dose as that of pancreatic gangliosides; Group 4 (n = 10) consisted of normal animals. Half of the mice were killed on day 12 and the others on day 24 from the beginning of treatment. On day 12, among the streptozotocin-injected animals only those treated with pancreatic gangliosides remained normoglycaemic, whereas on day 24 all streptozotocin mice were hyperglycaemic. Such a result paralleled the data pertaining to insulitis scores. In conclusion, pancreatic gangliosides have a short-term protective role on the development of diabetes in the low-dose streptozotocin model, an effect therefore linked to tissue-related differences in the glycosphingolipid composition.

Animals↗

Involvement of somatically acquired ecotropic viruses in the immunogenicity of nude-transplanted NIH/3T3 transformed cell lines.

Immunogenic tumor variants were previously derived after transplantation in vivo into nude mice of NIH/3T3-transformed cell lines. Nude-passaged cell lines were rejected by immunocompetent H-2q NIH mice, were recognized by specific CTL clones, and expressed new retroviral Ag. The aim of the present work was to investigate whether somatically acquired proviral sequences were present in the genome of nude-passaged cells and to test directly for a causative relationship between murine leukemia virus (MuLV) expression and immunogenicity. Southern blot analysis of PstI-digested DNA indicated that in contrast to the parental NIH/3T3 transformed cell lines (pT, T12N/5a, NS-1) all the nude-passaged immunogenic variants (pT-nude, T12N/5a-nude, NS-1-nude) contained newly acquired ecotropic-related proviruses. Immediately after in vitro establishment, these tumors displayed multiple integration sites as assessed by analysis of 3' proviral-cellular junctions. Long term in vitro culture of one of the cell lines (pT-nude) resulted in a cell line (pT-nude/vitro) that was clonal or oligo-clonal with respect to viral integration. Northern blot analysis established that the new proviruses were actively transcribed in all the immunogenic variants. To assess whether the somatically acquired ecotropic proviral sequences encode for target structures recognized by specific CTL, obtained after immunization of NIH mice with pT-nude, the parental cell line pT was transfected with plasmids containing the entire AKV MuLV genome, the cloned AKV gag or env genes. Screening of transfectants for their ability to stimulate the production of TNF by anti-pT-nude effectors indicated that cells transfected with the entire ecotropic virus or with MuLV-env gene products could be recognized by an NIH anti-pT-nude CTL line and NIH anti-pT-nude Kq-restricted CTL clones as well as the immunizing target pT-nude.

3T3 Cells↗

Expansion of major histocompatibility complex-restricted antimelanoma cytotoxic T-cell lymphocyte clones with identical T-cell receptor from tumor-infiltrating lymphocytes.

Tumor-infiltrating lymphocytes (TILs) were isolated from a subcutaneous metastasis of melanoma and cytotoxic T-cell lymphocyte (CTL) lines were obtained by sensitizing in vitro four separate aliquots of TILs with autologous tumor cells and recombinant interleukin-2. All CTL lines were predominantly WT31+, CD3+, and CD8+ and displayed a preferential cytotoxic activity against the autologous tumor. T-cell receptor (TCR) composition was analyzed by using the polymerase chain reaction with 5' variable region (V alpha or V beta)-specific primers and 3' constant (C alpha or C beta) primers. The entire repertoire of the V alpha and V beta gene families tested was present in fresh TILs and in the CTL lines, although, in the latter, consistent quantitative variations in transcripts of several V alpha and V beta occurred. CTL clones that exhibited CD3-dependent and major histocompatibility complex-restricted killing of the autologous melanoma were isolated from the four TIL cultures. TCR analysis indicated that, independently from the culture of origin, only two combinations of V alpha and V beta gene families were present in the majority of these CTL clones. These V alpha and V beta gene families were not found in a panel of CTL clones that did not lyse the autologous tumor. This study indicates that recognition of melanoma antigens can strongly select for certain types of TCR-bearing T-lymphocytes.

Base Sequence↗

Can oncogene (RAS) activation predict susceptibility of human melanoma to activated lymphocytes and, therefore, the clinical response of such neoplasms to adoptive immunotherapy?

The expression of activated ras oncogenes was found to be associated with that of tumour-specific transplantation antigens in mouse tumours, which can be cured by adoptive immunotherapy with T lymphocytes and interleukin-2 (IL-2). A similar association is here proposed to exist between RAS oncogene activation (mutation) in human melanoma and susceptibility of these tumours to the lytic action of activated lymphocytes (both lymphokine-activated killers and cytotoxic T cells) which have been used, along with IL-2, in the adoptive immunotherapy of advanced melanomas. The limited clinical response (15-25%) of melanoma patients to different immunological therapies is, therefore, considered to be due to a similar frequency of immunogenic, RAS+ melanomas. The authors thus suggest that RAS activation might be a marker of immunogenicity and that only the subset of melanoma cells expressing activated RAS will in turn possess tumour antigens which can be the target of immunotherapeutic, activated lymphocytes. It is then predicted that RAS+ melanomas will be more susceptible to adoptive immunotherapy than RAS-counterparts.

Animals↗

Use of the V delta 1 variable region in the functional T-cell receptor alpha chain of a WT31+ cytotoxic T lymphocyte clone which specifically recognizes HLA-A2 molecule.

We report here the molecular characterization of the T-cell receptor (TCR) expressed by a human HLA-A2 specific cytotoxic T-cell clone named CTL 49. Flow cytometry analysis with a panel of anti-TCR antibodies revealed an OKT3+, WT31+, A13+, BB3-, TCR delta-, delta TCS1-, TCR gamma/delta 1-, OKT4-, and OKT8+ phenotype, suggesting that, in CTL 49, the V delta 1-encoded A13 epitope could be included in its alpha beta TCR. Northern blot analysis confirmed the presence of C alpha, C beta and V delta 1 specific transcripts while no hybridization signal was detected by a C delta specific probe. Polymerase chain reaction (PCR) amplification of the first strand cDNA from CTL 49 with TCR-specific primers and sequence analysis revealed that V delta 1 region is productively rearranged to J alpha and to C alpha regions. This alpha chain pairs with a beta chain composed of V beta 13.2/D beta/J beta 2.3/C beta 2 leading to the expression of a functional TCR complex. These results, in addition to providing further evidence for the sharing of V delta 1 by alpha/beta and gamma/delta TCR, indicate that an alpha/beta T-cell receptor which includes the V delta 1 variable region can be involved in alloreactive recognition.

Amino Acid Sequence↗

Immunological and non-immunological influence of H-2Kb gene transfection on the metastatic ability of B16 melanoma cells.

The H-2b-negative B78HI clone (derived from B16 melanoma) was transfected with the H-2Kb gene; 4 cell clones expressing membrane H-2Kb antigens and 2 control clones (transfected with pSV2neo alone) were used for studies of metastatic ability, immunogenicity, NK sensitivity and homotypic adhesion. The experimental metastatic capacity of H-2Kb transfectants in syngenic mice was greatly diminished in comparison with control and parent cells. Both immune-mediated and intrinsic properties of transfectants correlated with their lower metastatic ability. A cell-mediated cytotoxic response was induced by repeated in vivo immunizations of syngeneic mice followed by in vitro restimulation of effectors when transfectants (but not controls) were used as immunizers and as targets. Moreover, homotypic adhesion of H-2Kb transfectants was significantly lower than that of controls. Sensitivity to NK cells of transfectants was not decreased in comparison to H-2-negative controls. It is known that in vitro treatment with IFN-gamma of H-2-positive B16 melanoma cells induces a simultaneous increase in H-2 expression and in experimental metastasis; treatment of H-2Kb transfectants with IFN-gamma induced a higher Kb expression, but no increase in metastatic ability, thus suggesting that the IFN-sensitive component that mediates enhancement of metastasis is not H-2Kb.

Animals↗

Advanced nonenzymatic glycation endproducts (AGE): their relevance to aging and the pathogenesis of late diabetic complications.

Several studies in the last decade have highlighted the importance of the hexose sugars and especially glucose, as being responsible for alterations to living protein and other molecules. The phenomenon of nonenzymatic glycation--by which the carbonyl group of glucose can directly condense with a free amino group--may be relevant for the process of aging and for the pathogenesis of late diabetic complications. Thus life-long exposure to normoglycemia in non diabetic subjects or a shorter exposure but continued association with a hyperglycemic milieu, as in diabetes mellitus, have both been shown to lead to the formation and accumulation of irreversible and highly reactive advanced glycation endproducts (AGE) over long-lived, fundamental molecules such as the constituents of arterial wall collagen, basement membranes, nerve myelin, DNA and others. For example, the introduction of foreign AGE groups into proteins might alter their tertiary structure and therefore modify their function or activity. By increasing protein-to-protein cross-links AGE could reduce protein turnover, with consequential increases in levels of modified and thus less reactive molecules. Moreover, AGE could initiate an immune response with the production of specific antibodies. Reducing the extent of nonenzymatic glycation could effectively reduce the accumulation of AGE. Many authors are experimenting with methods to achieve this aim. Amongst the products tested are aspirin and aminoguanidine which compete with glucose for the same protein amino group. D-lysine is also being investigated on the principle that by reacting with glucose in circulation, it could effectively prevent it from reaching the amino group on the protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Recombinant interferon-gamma differently affects DQA and DRA gene expression in two human melanoma clones: transcriptional and posttranscriptional regulation.

In a previous study, two human melanoma HLA class-II-negative clones have been shown to respond differently to recombinant interferon gamma (rINF-gamma). In fact, in clone 9229/18, rINF-gamma treatment led to a coordinate expression of both DR and DQ genes, whereas in clone 9229/5, a high increase in steady-state mRNA levels and cell surface antigen expression could be observed for DR but not for DQ genes. The molecular mechanism underlying such a different behavior was investigated and DQA gene regulation was studied both at the transcriptional and posttranscriptional level. Nuclear run-on experiments were performed on 9229/5 and 9229/18 clones. Treatment with rINF-gamma at 1,000 U/ml for 24 h led to a coordinate transcriptional activation of DRA and DQA genes in 9229/18 clone, whereas in clone 9229/5 it strongly augmented the rate of transcription of DRA but not DQA genes. For all class II genes studied, both melanoma clones showed a basal rate of transcription that never led to a mature cytoplasmatic mRNA. To study whether posttranscriptional mechanisms could affect DQA mRNA stability, a comparison was performed between mRNA turnover in 9229/18 cells treated with actinomycin D and actinomycin D plus cyclohexamide following rINF-gamma treatment. In the absence of protein synthesis, the t1/2 of specific DQA mRNA was largely reduced, showing that a short-lived protein is required to stabilize human DQA mRNA in melanoma cells. Our results indicate that DQA gene is subjected to a tight regulation, acting both at the transcriptional and posttranscriptional levels and that DQA and DRA genes can be differentially regulated at the transcriptional level by rINF-gamma in a melanoma clone such as 9229/5.

Base Sequence↗

Eradication of a disseminated mouse lymphoma by 1,3-bis(2-chloroethyl)-1-nitrosourea is immunologically mediated and accompanied by de novo generation of anti-tumor cytotoxicity.

The anti-tumor effect of 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU) was examined in BALB/c mice bearing increasing burdens of a syngeneic lymphoma (YC8). A single i.p. injection of the drug resulted in over 75% of cures when given at day 3, 5, 7 or 10 after an i.v. inoculum of 10(4) YC8 cells. The efficacy of BCNU on mice bearing large tumor burdens (from day 5 on) was not only due to its tumoricidal activity, but was immunologically mediated. Residual tumorigenic cells could be recovered in the livers of 5-day tumor bearers (TB) up to 2 weeks after BCNU treatment and only a low percentage of cures could be achieved when BCNU was administered to nude mice. In addition, BCNU-cured mice specifically rejected a lethal YC8 challenge and their splenocytes developed anti-tumor cytotoxicity in response to in vitro stimulation with YC8 cells. During kinetic experiments a 2-week period elapsed after BCNU injection before an anti-tumor cytotoxic T-lymphocyte (CTL) response could be generated by spleen cells of BCNU-treated 5-day TB. This period was characterized by immunosuppression as evaluated from impairment in the generation of lymphokine-activated killer (LAK) cells or of allospecific primary CTL responses by spleen cells from BCNU-treated 5-day TB and BCNU-treated normal mice. LAK cells first recovered and could be generated 7 days later, whereas primary allospecific CTL responses could only be detected by day 14, concomitantly with the generation of anti-tumor cytotoxicity by 5-day TB. The development of secondary in vitro CTL responses, however, was permanently abrogated. Spleen cells from BALB/c mice immunized either with YC8 or with DBA/2 minor histocompatibility antigens and treated with BCNU 1 week after the last immunization failed to mount an in vitro CTL response to their immunizing antigen, even when the cultures were supplemented with recombinant interleukin-2.

Animals↗

T lymphocytes can mediate lysis of autologous melanoma cells by multiple mechanisms: evidence with a single T cell clone.

The specificity analysis of a CD3+, WT31+, CD8+ cytotoxic T lymphocyte (CTL) clone (CTL 49), isolated from peripheral blood lymphocytes of a melanoma patient (no. 665) after mixed lymphocyte culture with an HLA-A2+ allogeneic lymphoblastoid cell line (VSKB-LCL), revealed that CTL 49 could lyse, in addition to HLA-A2+ lines, autologous HLA-A2- melanoma (Me665/2) and K562 targets. Killing of VSKB-LCL, but not of Me665/2, could be inhibited by anti-CD3 and by anti-HLA-A2 antibodies or by modulation of the CD3 complex. Cold-target competition studies showed that K562, but not VSKB-LCL, could compete with Me665/2 for lysis by CTL 49. However, unlike K562, Me665/2 could be lysed by CTL 49 in a Ca2(+)-independent fashion in 4 h and 18 h assays. CTL 49 expressed mRNA specific for tumor necrosis factor (TNF alpha) and, to a lesser extent, for lymphotoxin (TNF beta). Exposure of the clone to anti-CD3 antibodies induced the expression of interferon(IFN)-gamma-specific mRNA. Antibodies to TNF alpha, TNF beta and IFN reduced the lysis of Me665/2, but not of K562, by CTL 49 in 18-h cytotoxic assays. Antibodies to TNF alpha and to IFN gamma almost completely inhibited the lysis seen on Me665/2 (but not on K562), in 96-h assays, by supernatants isolated from VSKB-LCL- or anti-CD3-stimulated CTL 49 cells. Taken together, these data indicate that major-histocompatibility-complex-independent lysis of autologous tumor cells and of natural killer reference targets by the same alloreactive T cell clone are activities related at the level of target recognition but distinct at the level of the lytic hit. Thus, efficient lysis of autologous tumor cells results from a complex mechanism based upon direct effector-target interaction as well as on cytokine-mediated cytolytic effects.

Calcium↗

Mouse tumors are heterogeneous in their susceptibility to syngeneic lymphokine-activated killer cells and delineate functional subsets in such effectors.

We have analyzed whether lymphokine-activated killer (LAK) cells, generated from C57BL/6J (B6) spleen cells at different times after recombinant interleukin-2 (rIL-2) culture, could be heterogeneous in their ability to lyse a variety of tumor targets. When tested 3 days after exposure to 250 U/ml rIL-2 (day-3 LAK cells) a significant lysis was detected with the natural-killer(NK)-sensitive YAC lymphoma, the NK-resistant P815 mastocytoma, three different syngeneic melanomas and a syngeneic fibrosarcoma (group 1 targets), whereas no lysis was observed with a reticulum cell sarcoma, two different lymphomas or concanavalin A blasts, all of B6 origin (group 2 targets). LAK cells cultured for 5 days, however, lysed group 2 targets and showed a parallel increase of cytotoxic activity against group 1 targets. At day 7, LAK activity declined on all targets examined. In cold-target inhibition studies, the lysis of group 1 tumor targets by day-3 or day-5 LAK cells could be inhibited only by group 1 and not by group 2 unlabelled tumor cells. All group 1 tumors could effectively compete each other. Conversely, the lysis of group 2 tumor targets by day-5 LAK cells was inhibited by both group 1 and group 2 targets. These data indicate the presence of separate LAK effectors that appear to arise with different time kinetics and have different recognition structures. In vitro antibody depletion at the effector level showed that day-3 LAK cells with cytotoxic activity against group 1 tumors were ASGM1+. Day-5 LAK cells included both ASGM1+ and Lyt2+ effectors and both populations, although to a different extent, contributed to the lysis of all targets. Our results indicate that LAK cells are functionally heterogeneous. This heterogeneity is defined by their susceptible target cells and cannot be ascribed to different (Lyt2+ versus ASGM1+) lineages.

Animals↗

Adoptive immunotherapeutic treatments with interleukin 2 and lymphocytes in a mouse colonic adenocarcinoma model.

This article reports the results of adjuvant immunotherapy studies carried out in an experimental tumor model system. A transplantable murine BALB/c colonic adenocarcinoma (C-26) was used to evaluate the therapeutic potential of treatment with recombinant interleukin 2 (rIL-2) at high and low dosage in combination with or without lymphokine activated killer cells (LAK) or tumor-specific immune lymphocytes, either as an adjuvant treatment in mice bearing spontaneous post-surgical metastases or in mice bearing artificial metastases. Moreover the in vivo LAK activation and circulation pattern have been examined during or after treatment. These results show that cytotoxic lymphocytes from tumor-immunized donors are more active than LAKs when given in combination with rIL-2 as an adjuvant treatment, while all treatment modalities exerted a strong but generally transient inhibition on the formation of artificial lung metastases by C-26 cells. Alteration of host lymphocyte responsiveness to rIL-2 was shown to occur in early-tumor-resected and large-tumor-bearing animals in both in vitro and in vivo experiments. Moreover, no evidence of homing or preferential localization of the adoptively transferred LAK cells to the site of tumor growth was observed.

Adenocarcinoma↗

Retinol binding protein: a short half life determinant of protein non enzymatic glycation in diabetes.

The non enzymatic glycation of circulating and structural proteins is the main biochemical consequence of the chronic hyperglycaemia of diabetes mellitus. Retinol binding protein (RPB) is a 21K plasma globulin with an half life of 12 hr; its non enzymatic glycation may reflect the variation of short term metabolic control (1-4 days). In this study two blood samples were withdrawn at four days interval from 24 non insulin dependent diabetic patients. Glycated RBP was measured by a two-site immunoradiometric assay and its variations correlated with the correspondent changes in the blood glucose level. A significant correlation (r = 0.471; p less than 0.02) was found between the time 4/time 0 ratios of glycated RBP and the time 4/time 0 ratios of blood glucose. These data suggest that measurement of non-enzymatically glycated RBP may be a useful tool to evaluate the short term state of non enzymatic glycation in diabetes.

Biomarkers↗

H-2 class I gene analysis in 3-methylcholanthrene-induced murine fibrosarcomas.

The objective of our study was to determine whether and how frequently MHC class I gene alterations occur in fibrosarcomas induced in BALB/c mice by the carcinogen 3-methylcholanthrene (3-MCA). Southern blot was performed to analyze the genomic organization of class I genes in a panel of twenty tumors of different immunogenic strength used at early in vivo passages. Our results rule out the presence of gross rearrangements or deletions in the H-2 class I genes of the tumors tested and indicate that the frequency of detectable class I alterations giving rise to restriction fragments length polymorphism (RFLP) should be very low.

Animals↗

Loss of heterozygosity of DQ alpha gene in human malignant melanoma.

DNAs from human melanoma cells, used at early in vitro passage, were evaluated by Southern blot analysis for somatic loss of heterozygosity at the DQ alpha gene. A total of 7 melanomas, 3 primary and 4 metastatic derived from 5 different patients were studied; in one case (pt 665) cell lines were derived from two anatomically different subcutaneous metastasis, whereas in a second case (pt 9923) both the primary tumor and a lymph node metastasis were available. Restriction length polymorphism (RFLP) analysis, performed on autologous peripheral blood lymphocyte (PBL) DNA digested with different enzymes, showed a pattern of bands compatible with the constitutional heterozygous typing at DQ alpha gene in 4 cases whereas 1 case revealed an homozygous typing. When melanoma DNAs were analysed, 1 out of the 4 informative cases (pt 1007) showed a loss of a diagnostic fragment for DQ alpha gene when digested with both Taq I and Bgl I enzymes. These results indicate that class II allelic losses detectable by RFLP can be found on malignant melanoma and add further complexity on the involvement of chromosome 6 whose cytogenetic abnormality are the most consistent in this human neoplasia.

DNA, Neoplasm↗

Expression of retrovirus-related, cytotoxic T lymphocyte- and transplantation-defined antigens in NIH/3T3 transfectants after a single passage in nude mice.

Transfection of T24c-Ha-ras oncogene into NIH/3T3 fibroblasts resulted in the establishment of a transformed cell line (pT) that was tumorigenic when injected s.c. both into Swiss outbred nude mice and normal NIH inbred mice. The passage into nude mice, however, led to the development of a tumor variant (pT-nude) able to subsequently grow into sublethally x-irradiated but not into immunocompetent NIH mice. NIH mice immunized with this tumor variant developed a strong specific CTL response against the immunizing cell line, whereas the parental transformed pT cell line was not lysed. Clones were derived by limiting dilution from anti-pT-nude bulk population and were tested on a panel of transformed NIH/3T3 lines before and after their growth as tumor into nude mice. All of these lines were lysed by the Lyt-2+ CTL clones as a sole consequence of one in vivo passage into nude mice. The cross-reactive Ag were shown to be related to endogenous retroviral products as assessed by 1) immunoprecipitations of gp70, p15E, and p30 viral proteins in the nude variants but not in parental lines, and 2) by the ability of retroviruses from irradiated pT-nude cells to infect NIH/3T3 or pT lines making them susceptible to lysis by anti-pT-nude CTL clones. These results show that a single passage in nude mice can induce retrovirus-related, cell-surface Ag in transplanted neoplastic cells.

Animals↗