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J M England

Publications and source records attributed to J M England.

At least 19 recordsLinked to original sources

Aberrant expression of a cytokeratin in a subset of hepatocytes during chronic WHV infection.

Chronic infection of woodchucks with woodchuck hepatitis virus (WHV) invariably leads, within 2-4 years, to the appearance of hepatocellular carcinoma (HCC). HCC is preceded by an extended period of chronic liver damage, probably resulting from the immune response to viral antigens. It may be that infection itself also induces changes in the hepatocyte population. To begin to identify some of the changes in the liver prior to the appearance of HCC, monoclonal antibodies (MAbs) were generated from mice immunized with hepatocytes from a woodchuck chronically infected with WHV or with a tumor lysate. Immunofluorescence microscopy was used to select MAbs that reacted with host markers whose patterns of expression would distinguish chronically infected from uninfected liver or from liver tumors. One of these MAbs (2F2) reacted strongly with a subset of hepatocytes in chronically infected liver; a similar staining pattern was not detected in uninfected or transiently infected liver. Evidence is presented that this strong staining reaction reflects the overexpression or accumulation of the hepatocyte-specific intermediate filament protein, cytokeratin K18, a protein previously implicated in cryptogenic cirrhosis of the liver in humans (Ku, N. O. , Wright, T. L., Terrault, N. A., Gish, R., and Omary, M. B. J. Clin. Invest. 99: 19-23, 1997). Double immunofluorescent staining with antibodies to K18 and M-envelope protein of WHV suggested that strong reactivity to K18 was limited to cells expressing high levels of one or both of the large viral-envelope proteins, M and L; however, high expression of these viral proteins was not always associated with a strong K18 staining reaction.

Animals↗

Guidelines for organisation and management of external quality assessment using proficiency testing. Expert Panel on Cytometry of the International Council for Standardization in Haematology.

This document is intended to assist towards the WHO objective that external quality assessment (EQA) schemes be established at national and/or regional levels world-wide. Quality assurance is defined as all steps taken by the director of a laboratory to ensure reliability of laboratory results and to increase accuracy, reproducibility and between-laboratory comparability. This includes the use of internal quality control procedures and participation in external quality assessment. Internal quality control provides the means for evaluation of analytic test results at the time of testing in order to decide whether they are reliable enough to be released to the requesting clinicians. EQA, on the other hand, refers to a system of retrospective and objective comparison of results from different laboratories by means of proficiency testing (PT) organised by an external agency. The main purpose is to establish between-laboratory and between-method (including between-instrument) comparability, and agreement with a reference standard where one exists. Internal quality control and EQA complement each other and must never be considered as alternatives.

Animals↗

Sequence variation in the src gene product affects metastasis formation: the central, but not exclusive, role of the tumor immune response.

Sequence variation in the src gene product could, in principle, influence metastasis formation through either of 2 effects: an alteration in tumor antigenicity or a non-immune-mediated change in one or more src-associated functions. Our present results establish that both mechanisms underlie the difference in relative levels of metastasis formation induced by the v-src vs. the c-src(527) oncogene. A point that emerges from this analysis is the segregation, within a chicken line genotypically uniform at the major histocompatibility (B) complex (MHC), of a phenotype defined by strong resistance to secondary v-src-induced tumor challenge. The pattern of segregation is consonant with the possibility that a gene unlinked to the MHC governs immune response levels to v-src-encoded tumor antigen.

Animals↗

Endogenous c-src as a determinant of the tumorigenicity of src oncogenes.

We have compared the tumorigenicity of two src oncogenes, v-src and c-src(527), whose respective protein products pp60v-src and pp60c-src(527) show a different spectrum of amino acid substitutions vis-à-vis the c-src protooncogene-encoded product pp60c-src. Whereas the extent of primary tumor growth induced by c-src(527) was quite similar in the two chicken lines tested, the extent of v-src-induced tumor growth showed a marked line dependence. As examined with a line of chickens that shows immune-mediated regression of v-src-induced tumors, a weaker tumor immunity, as correlated with a greater level of primary tumor growth, resulted from inoculation of c-src(527) DNA than of v-src DNA. These observations indicated that the v-src-specific amino acid substitutions define a major tumor antigenicity. That a separate src-associated antigenicity is also targetable by the tumor immune response followed from the finding that the level of protective immunity against the growth of c-src(527) DNA-induced tumors was augmented under conditions of the prior regression of v-src DNA-induced tumors. As this latter antigenicity may include one or more c-src(527)-encoded peptides that are equivalent to c-src-encoded self peptides, these observations suggest that a host tolerance to pp60c-src can be broken so as to permit a tumor immune response based on recognition of self peptides of pp60c-src(527).

Animals↗

Major histocompatibility (B) complex control of the formation of v-src-induced metastases.

Previous observations have shown that the major histocompatibility (B) complex is a determinant of the growth of v-src-induced primary tumors. In the present study, we have observed with two chicken lines congenic for B complex alleles that the control of v-src-mediated oncogenesis by the B complex extends to metastasis formation. In addition, our results show that the differences in metastasis frequencies between these two lines are correlated with the relative strengths of their respective tumor immune responses.

Animals↗

Tumor cells induced by the v-src oncogene are heterogeneous for expression of markers of mesenchyme differentiation.

The observation that v-src-induced tumors contain tumor cells of differing morphology, notably fibroblastoid or polygonal, raised the question as to whether the tumor cells are also heterogeneous with respect to expression of markers of cellular differentiation. Of the markers tested here, consistent reactivity for tumor tissue was noted only for antibody probes reactive to muscle actin (HHF35, alpha sm-1) or to procollagen type I (SP1. D8); for any given tumor, whether induced by v-src DNA or by Rous sarcoma virus, each of these markers was found only in a subpopulation of tumor cells. The observation of marker heterogeneity in the one v-src DNA-induced tumor examined here that typed as monoclonal suggests that v-src-induced transformation is consonant with a degree of plasticity in the phenotypes of the clonal progeny of a single transformant.

Actins↗

Immune-based resistance to the formation of v-src-induced distal tumors.

Although v-src, the oncogene of Rous sarcoma virus, has been shown to be capable of inducing lethal tumors at visceral sites distal to the primary tumor mass, the mechanisms opposing visceral tumor formation remain to be elucidated. In the present study, we show that visceral tumors, many of which represent a metastasis spawned by the primary mass, are found only in hosts exhibiting reduced levels of tumor immunity. We conclude that it is the weakness of the tumor immune response, rather than a lack of expression of tumor antigen on visceral tumor cells, that is a major underpinning of the formation of v-src-induced visceral tumors.

Animals↗

Major histocompatibility (B) complex control of the growth pattern of v-src DNA-induced primary tumors.

Observations that the major histocompatibility (B) complex is a determinant of the growth pattern of Rous sarcoma virus (RSV)-induced tumors raised the question as to whether control is exerted at the level of a v-src-determined, i.e., transformation-specific, function. To investigate this point, the tumor size scores and tumor profile indices of v-src-induced tumors were compared in two lines of chickens congenic for B complex genotypes. The finding that the growth patterns of tumors, induced by v-src DNA inoculation at 6 weeks posthatch, differ in these two lines establishes that the B complex exerts control over tumor growth at the level of a v-src-determined function. The potential importance of this control, in terms of the naturally occurring case of an avian sarcoma virus infection, is suggested by the observation that the patterns of tumor growth in a given congenic line are similar whether the tumors are induced by v-src DNA or by RSV.

Animals↗

A comparison of differential white cell counting on the Coulter VCS and the Technicon H1 using simple and multiple regression analysis.

This study uses the statistical methods of simple and multiple regression to compare the differential white blood count on the Coulter VCS and Technicon H1 analysers. The results demonstrate that both are good at distinguishing lymphocytes, neutrophils and eosinophils. Monocyte differential counts show disappointing correlation, both by simple and multiple regression techniques. Basophils, though less frequently a clinical problem, also correlated poorly in this study.

Basophils↗

The selection of laboratory equipment.

The last few years have seen dramatic changes in laboratory haematology. Technological developments with increasing levels of automation have resulted in a plethora of new instruments. The choice of which to buy, often confused by conflicting advice and persuasive salesmanship, must be balanced by the need for cost containment. This calls for an understanding of the principles of selection to ensure that the system that is chosen will provide reliable results in the most efficient manner at the lowest possible cost. Most of the instruments which are currently available perform their intended tasks reasonably well albeit with some inter-instrument differences, usually due to different operating procedures and different methods of calibration. The task is to find a system that performs the required tests correctly and reliably, fits into the work requirements of the laboratory and is accepted by the staff who will operate it, whilst its cost both capital and recurrent, should be within the department's financial constraints. The selection of laboratory equipment is thus a complex and time consuming task.

Cost-Benefit Analysis↗

Rapid resolution of duck hepatitis B virus infections occurs after massive hepatocellular involvement.

A study was carried out to determine some of the factors that might distinguish transient from chronic hepadnavirus infection. First, to better characterize chronic infection, Pekin ducks, congenitally infected with the duck hepatitis B virus (DHBV), were used to assess age-dependent variations in viremia, percentage of DHBV-infected hepatocytes, and average levels of DNA replication intermediates in the cytoplasm and of covalently closed circular DNA in the nuclei of infected hepatocytes. Levels of viremia and viral DNA were found to peak at about the time of hatching but persisted at relatively constant levels in chronically infected birds up to 2 years of age. The percentage of infected hepatocytes was also constant, with DHBV replication in virtually 100% of hepatocytes in all birds. Next, we found that adolescent ducks inoculated intravenously with a large dose of DHBV also developed massive infection of hepatocytes with an early but low-level viremia, followed by rapid development of a neutralizing antibody response. No obvious quantitative or qualitative differences between transiently and chronically infected liver tissue were detected in the intracellular markers of viral replication examined. However, in the adolescent duck experiment, DHBV infection was rapidly cleared from the liver even when up to 80% of hepatocytes were initially infected. In all of these ducks, clearance of infection was accompanied by only a mild hepatitis, with no evidence that massive cell death contributed to the clearance. This finding suggested that mechanisms in addition to immune-mediated destruction of hepatocytes might make major contributions to clearance of infections, including physiological turnover of hepatocytes in the presence of a neutralizing antibody response and/or spontaneous loss of the capacity of hepatocytes to support virus replication.

Age Factors↗

Etoposide treatment suppresses atherosclerotic plaque development in cholesterol-fed rabbits.

To study the mechanisms by which monocytes/macrophages and smooth muscle cells contribute to atherosclerotic lesions, we studied atherosclerotic plaque formation in cholesterol-fed rabbits treated with etoposide, a drug that has been shown to have several effects that could interfere with the proposed interactions between these two cell types (M.W. Aarnoudes et al, Virchows Arch B 1984;47:211-216 and M. Rozencweig et al, Cancer 1977;40:334-342). Our results show that long-term etoposide treatment of New Zealand White rabbits maintained on a high-cholesterol diet decreases the extent of fatty streak formation in the aortic intima. Moreover, the plaques formed in the presence of etoposide are thinner and at least focally have less fibrous tissue and fewer smooth muscle cell-derived foam cells than do plaques in control rabbits. These effects are independent of the extent of the diet-induced hyperlipemia or an effect of etoposide on blood cell count and may be related to the inhibition of intimal cell proliferation by etoposide.

Animals↗

Regression of v-src DNA-induced sarcomas is under host genetic control.

Previous results have established that subcutaneous inoculation of chickens (line SC) with a v-src(+) subviral DNA fragment induces the formation of progressor sarcomas at the wing web site of inoculation. Because the sarcoma cells are incompetent for production of exogenous progeny virus, this system is a useful model of tumor expansion by sarcoma cell division, in the absence of infection-mediated recruitment of new tumor cells. The present study was undertaken to define conditions that modulate the pattern of growth (regression vs progression) of v-src DNA-induced sarcomas. These conditions were found to include the line of chicken or the presence on the subviral v-src(+) DNA fragment of a viral replication-specific sequence that includes env.

Animals↗

Induction of a diffuse mesothelioma in chickens by intraperitoneal inoculation of v-src DNA.

The presence of peritoneum-based, cytokeratin-positive tumor cells, as detected under conditions of intravenous inoculation of chickens with a v-src-positive DNA fragment, raised the possibility that such DNA may be inductive for diffuse mesothelioma. To investigate this possibility, chickens were inoculated intraperitoneally with v-src DNA, and the resultant peritoneum-based tumor tissue was subjected to histopathological analysis. On the basis of (i) morphology, (ii) immunohistochemistry/histochemistry, and (iii) ultrastructure, we concluded that this tissue represents a diffuse mesothelioma.

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Tumor immunity generated in the course of regression of v-src-induced sarcomas.

Previous studies have indicated that the regression versus progression of v-src-DNA-induced sarcomas is dependent on chicken line. As a first step in analyzing the role of tumor immunity as a determinant of this line dependence, experiments were undertaken to ascertain whether an antisarcoma immune response is generated in the course of sarcoma growth in TK chickens, a regressor line. To assay for this response, test TK chickens in which v-src-induced wing web sarcomas had regressed, as well as control TK chickens that had not been exposed to v-src, were challenged in protocols known to yield v-src-dependent sarcoma formation and monitored for challenge sarcoma growth. Compared with the control chickens, the test chickens showed a significant resistance to the sarcomagenic challenge. These results raise the possibility that the antisarcoma response that is inducible in regressor lines, as demonstrated here in terms of a protective effect against a subsequent sarcomagenic challenge, may also underlie the regression of v-src-induced primary sarcomas.

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Wing web or intravenous inoculation of chickens with v-src DNA induces visceral sarcomas.

We have previously found that sarcomas localized to visceral organs frequently arise following wing web inoculation of Rous sarcoma virus. This observation prompted an investigation of whether visceral sarcomas are also inducible by wing web inoculation of a subgenomic viral DNA fragment (v-src DNA) that includes v-src but lacks genes encoding viral structural protein. For this analysis, line SC chickens were inoculated with v-src DNA at 1-2 days posthatch and monitored for 9 weeks. Ninety percent of the chickens developed wing web (primary) tumors at the site of inoculation and, of these, about 30% exhibited visceral tumors. All tumors were histologically identifiable as sarcomas, and both the primary and visceral sarcoma cells were specifically reactive with two monoclonal antibodies elicited to different peptide fragments of pp60v-src. In a separate set of experiments, visceral sarcomas were also observed in about half of the line SC chickens that had been inoculated intravenously with v-src DNA. These results indicate that exogenous progeny virus production is not required for v-src-induced, visceral sarcoma formation. In addition, they demonstrate that intravenous inoculation of v-src DNA is a means to achieve rapid and widespread, disseminated sarcoma growth.

Animals↗