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Biomedical subjects

H L Grierson

Publications and source records attributed to H L Grierson.

At least 19 recordsLinked to original sources

Immunoglobulin class and subclass deficiencies prior to Epstein-Barr virus infection in males with X-linked lymphoproliferative disease.

Patients with X-linked lymphoproliferative (XLP) disease are characterized by extreme vulnerability to Epstein-Barr virus (EBV). Following infection with EBV, affected males develop fatal infectious mononucleosis (IM), hypogammaglobulinemia (H), or non-Hodgkin's lymphoma (NHL). In addition, hyper IgM, red cell aplasia, necrotizing lymphoid vasculitis (NLV), and aplastic anemia occur rarely. The recent use of DNA restriction fragment length polymorphism (RFLP) probes in linkage with the XLP gene now permit detection of affected males prior to primary EBV infection. We have measured immunoglobulin class and subclass levels in sera from EBV-negative males who were either positive or negative for the XLP genotype by RFLP analysis. Elevated IgA or IgM and/or variable deficiency of IgG, IgG1, and IgG3 occurred in the sera of 13/13 RFLP-positive, EBV-negative males. No consistent abnormalities were noted in 14 RFLP-negative, EBV-negative males. We conclude that the immune defect in XLP is not solely EBV-specific, although EBV is responsible for most of the morbidity and all of the mortality. Further, serial measurement of Ig levels may provide information regarding status of EBV-negative males at risk where RFLP analysis is uninformative or in families where sporadic cases of fatal IM, acquired hypogammaglobulinemia or NHL have occurred, but wherein the genotype of XLP cannot be documented.

Genetic Linkage

Methods of detection of new families with X-linked lymphoproliferative disease.

During the past decade, 240 males with X-linked lymphoproliferative disease (XLP) within 59 unrelated kindreds have been identified worldwide. One half of the patients have developed fatal infections mononucleosis, about one third have acquired hypogammaglobulinemia, and another one fourth have developed malignant lymphoma. Less commonly occurring phenotypes include hyperimmunoglobulinemia M, bone marrow hypoplasia, and necrotizing lymphoid vasculitis. The fatal infectious mononucleosis phenotype occurs at about 2.5 years of age, and median survival is only 33 days following onset of illness. The acquired hypogammaglobulinemia and malignant lymphoma phenotypes are associated with longer survivals, but to date no patient has been documented as living into the fifth decade of life. We summarized recent research findings and technological advances that permit accurate diagnosis of carrier females and detection of males with the XLP gene before Epstein-Barr virus infection.

Child

Expression of Epstein-Barr virus-encoded proteins and B-cell markers in fatal infectious mononucleosis.

We assessed 33 lymphoid tissues from 15 patients, including 7 with X-linked lymphoproliferative disease (XLP) and 8 patients with sporadic fatal infectious mononucleosis (IM), to determine whether the cellular infiltrate had the immunophenotype and expressed Epstein-Barr virus (EBV)-encoded proteins characteristic of either EBV-immortalized lymphoblastoid cell lines (LCL) or EBV-carrying Burkitt lymphoma (BL) cells. The results of these studies revealed that in 13 cases the proliferating B cells were polyclonal, LCL-like, and in 2 cases they were monoclonal, malignant lymphoma-like.

Adult

Low proliferative activity is associated with a favorable prognosis in peripheral T-cell lymphoma.

Peripheral T-cell lymphoma (PTCL) consists of a diverse group of post-thymic tumors bearing a mature T-cell phenotype and, excluding mycosis fungoides, comprises approximately 10-20% of the non-Hodgkin's lymphomas in the United States. This category of non-Hodgkin's lymphomas exhibits considerable morphological, immunological, and clinical diversity and is generally considered to be a high-grade malignancy. In the present study, paraffin-embedded biopsy specimens of lymph nodes from 31 patients with PTCL who were treated with curative intent were evaluated by flow cytometry for DNA ploidy and proliferative activity (PA). DNA ploidy was not predictive of the clinical outcome. However, low PA, defined by less than or equal to 10% of cells in S + G2M phase of cell cycle, was associated with a favorable prognosis. Patients with tumors having low PA had a significantly higher complete remission rate (100%) as compared to those with high PA (55%; P less than 0.02), and the predicted actuarial 4-year survival of those with low PA was 85% versus only 50% for those with high PA (P less than 0.04). This is the first report of the effects of PA and DNA ploidy in patients with PTCL who were treated with curative intent. Additional studies of similar patients are needed to confirm these findings.

Bone Marrow

Partial Xq25 deletion in a family with the X-linked lymphoproliferative disease (XLP)

X-linked lymphoproliferative disease (XLP) results in exquisite vulnerability to EBV infection: fatal infectious mononucleosis (IM), acquired hypogammaglobulinemia and/or malignant lymphoma occur invariably following infection with the virus. We have identified the XLP locus using the DXS42 DNA probe having restriction length polymorphisms (RFLP). We report an interstitial deletion involving a portion of the Xq25 region in the X chromosome of an affected male, one sister, and their mother. Concordance has been established between the presence of a deletion and RFLP linkage analysis with the DXS42 probe in the kindred. This finding will contribute substantially to the mapping, cloning, and sequencing of the gene responsible for XLP.

Adult

Immunovirological studies of fatal infectious mononucleosis in a patient with X-linked lymphoproliferative syndrome treated with intravenous immunoglobulin and interferon-alpha.

We have studied a 19-year-old male with X-linked lymphoproliferative syndrome (XLP) and infectious mononucleosis (IM) who was treated with high-dose immunoglobulin (500 mg/kg/day) and recombinant interferon (IFN)-alpha (2 x 10(6) IU/m2/day). Fulminant hepatitis was delayed; however, virus-associated hemophagocytic syndrome, cholestatic jaundice, and renal failure occurred terminally. Initially, nonspecific natural killer (NK) cell activity against K562 cells was normal but it gradually decreased. Although reactive T cells were markedly increased in his blood during the acute phase, spontaneous EBV-positive cell lines were easily established. Additionally, his mononuclear cells produced IFN-gamma but not IFN-alpha prior to treatment. Based on results of in vitro studies, we conclude that both IFN-alpha and IFN-gamma production are likely necessary for inhibiting EBV immortalization in vitro. Both IFN-alpha and -gamma were produced in cultures of B95-8 EBV-infected mononuclear cells from EBV-seropositive healthy individuals. These results suggest that defective EBV-specific cytotoxic T cell activity accompanied with defective or discordant IFN-alpha and -gamma production permitted the development of fatal IM in this patient. Combined treatment with immunoglobulin and IFN-alpha appeared to be partially effective during the early stage of this disease.

Adult

Immune deficiency as a risk factor in Epstein-Barr virus-induced malignant diseases.

Epstein-Barr virus (EBV) is a ubiquitous DNA virus that normally infects silently, establishing lifelong latency. Substantial empirical observations support the view that immunodeficiency is permissive in EBV-induced lymphoproliferative diseases (LPD). Primary immune deficient patients such as those with X-linked lymphoproliferative disease and individuals with acquired immune deficiency secondary to immunosuppressive drugs for organ transplantation or individuals infected with human immunodeficiency virus are also at very high risk for lethal LPD. The importance of immunodeficiency and EBV in the development of head and neck carcinomas and uterine cervical carcinoma is less clear. Methods are available for detecting immunodeficiency and EBV genome and thus preventive strategies are being developed to preclude LPD from occurring.

B-Lymphocytes

Chromosome deletion of Xq25 in an individual with X-linked lymphoproliferative disease.

High resolution chromosome analysis was done on lymphoblastoid cell lines, established during the past decade from affected males with X-linked lymphoproliferative disease (XLP) or from obligate female carriers, from 14 families. One cell line, from a male with XLP, has a partial deletion of band Xq25. The constitutional nature of the deletion is confirmed in chromosome studies of peripheral blood from the affected individual and represents the first such structural defect to be described in this disorder. Cell lines from the remaining 13 families do not have cytogenetically detectable deletions. This observation will facilitate precise localization, cloning and sequencing of the gene causing XLP.

Chromosome Banding

Interferon-gamma in a family with X-linked lymphoproliferative syndrome with acute Epstein-Barr virus infection.

A 20-month-old male with fulminant infectious mononucleosis and the X-linked lymphoproliferative syndrome (XLP) was studied. Epstein-Barr virus (EBV)-determined nuclear antigen (EBNA) and EBV DNA were detected in various tissues. Despite a combined treatment with acyclovir, immunoglobulin, and methylprednisolone, the patient deteriorated rapidly. Following treatment with recombinant interferon-gamma (IFN-gamma), defervescence occurred and circulating EBNA-positive cells markedly decreased. IFN-gamma prior to treatment ranged from 10.8 to 24.5 U/ml in the patient's serum and increased linearly post exogenous IFN-gamma treatment. His natural killer (NK)-cell activity remained in the normal range throughout his illness but autologous EBV-infected cells were not killed in vitro by his peripheral blood lymphocytes (PBL). These results suggest that patients with the fatal infectious mononucleosis phenotype of XLP may produce endogenous IFN-gamma. Defective cytotoxic T cells against EBV-infected cells seem to be responsible for the fulminant infectious mononucleosis in this patient.

Acute Disease

Detection of X-linked lymphoproliferative disease using molecular and immunovirologic markers.

PURPOSE, PATIENTS, AND METHODS: Detection of males affected with the X-linked lymphoproliferative disease (XLP) was sought using immunovirologic and molecular genetic linkage techniques. The study population consisted of 20 males in six families with XLP. RESULTS: Concordance for detection of affected males was 100% when linkage analysis using DXS42 and DXS37 DNA probes and antibody responses to challenge with bacteriophage phi X174 were both determined. Most affected males showing IgG subclass immune deficiency could not produce antibodies to Epstein-Barr virus nuclear antigen and had deficient responses to challenge with bacteriophage phi X174. CONCLUSION: Use of only one of the techniques described can fail to lead to the diagnosis of XLP, because problems can prevail with each individual determination.

Adolescent

Association of DNA content and proliferative activity with clinical outcome in patients with diffuse mixed cell and large cell non-Hodgkin's lymphoma.

Formalin-fixed and paraffin-embedded lymph node biopsy specimens from 52 untreated patients with newly diagnosed diffuse large cell (n = 48) or mixed cell (n = 4) non-Hodgkin's lymphoma (NHL) were analyzed for DNA content and proliferative activity (PA) by flow cytometry. The results obtained by flow cytometry were compared with the results of cytogenetic studies performed on 28 of the specimens. The median age of the patients was 65 years (range, 15-84 years) and the male to female ratio was 3 to 2. All patients were uniformly staged and uniformly treated with cyclophosphamide, doxorubicin, procarbazine, bleomycin, vincristine, and prednisone. The flow cytometric results were compared statistically by univariate analysis with the rate and duration of complete remission and survival. Tumors with low PA (greater than or equal to 80% of cells in G0/G1 phase) were found in 65% of the patients; 74% of those with low PA versus only 44% of those with high PA achieved an initial complete remission (P less than 0.02). DNA aneuploidy was detected in tumors of 56% of the patients and was associated with a significantly longer duration of complete remission (P less than 0.01). Both low PA and aneuploidy independently predicted longer survival. The predicted 2-year actuarial survival for patients with tumors with low PA was 68% versus 10% for those with high PA (P less than 0.01). Similarly, the 2-year survival of patients with aneuploid tumors was 60% versus 36% for those with diploid tumors (P less than 0.01). The combination of PA and DNA content categorized the patients into four groups with decreasing 2-year survivals: low PA/aneuploid (n = 20), 77%; low PA/diploid (n = 14), 57%; high PA/aneuploid (n = 9), 32%; high PA/diploid (n = 9), 0%. The flow cytometric results correlated well with those of the cytogenetic studies. We conclude that low PA and DNA aneuploidy, both separately and in combination, predict a favorable clinical outcome for patients with diffuse mixed cell and large cell NHL.

Adolescent

Epstein-Barr virus and human diseases: recent advances in diagnosis.

Since the discovery of Epstein-Barr virus (EBV) from a cultured Burkitt's lymphoma cell line in 1964, the virus has been associated with Burkitt's lymphoma, nasopharyngeal carcinoma, and infectious mononucleosis. During the recent decade, EBV has been etiologically implicated in a broad spectrum of human diseases. The precise role of this virus in these diseases is not well understood, but clearly, defective immunosurveillance against the virus may permit an uncontrolled proliferation of EBV-infected cells. As a result, a growing number of cases of EBV-associated B-cell proliferative diseases or lymphoma have been noted in patients with primary and acquired immunodeficiencies. These lymphoproliferative diseases and others, such as chronic mononucleosis syndrome, are leading to new areas of investigation which are providing information regarding the pathogenetic mechanisms of EBV-induced diseases. The early accurate diagnosis of EBV infection can be achieved by performing EBV-specific serology, detecting for EBV-determined nuclear antigen in tissues, establishing spontaneous lymphoid cell lines, and using molecular hybridization techniques for demonstrating the presence of viral genome in affected lesions.

Burkitt Lymphoma

Acute leukemia expressing the normal human hematopoietic stem cell membrane glycoprotein CD34 (MY10).

Thirty-one cases of acute leukemia with blast cells greater than or equal to 70% positive for the hematopoietic stem cell Ag, CD34 (MY10, HPCA-1), were identified from the University of Nebraska Medical Center and The Johns Hopkins Oncology Center over an 18-month period. Fourteen of the cases were classified as early B-lineage ALL, 3 cases were other ALL subtypes, and 14 of the cases were ANLL. Five of the 17 cases of ALL expressed one or more myeloid-associated surface Ags, 3 ANLL cases expressed CD10 (CALLA, J5), and T-lymphoid Ags were present in 12 of 31 cases (1 T-cell ALL, 3 of 16 B-lineage ALL cases, and 8 of 14 ANLL cases). Eleven of 12 CD34+ ALL cases studied had abnormal karyotypes; only 7 of 12 CD34+ ANLL cases studied had abnormal karyotypes, and 3 of these were CD10+ ANLL. Six cases were Ph1 positive, including the one mature B cell ALL, 4 early B-lineage ALL, and 1 CD10+ ANLL case. Good and poor prognosis subgroups of high frequency of expression of CD34 leukemias could be identified, generally, as would have been predicted by previously defined criteria. Thus, of the 10 Ph1-negative early B-lineage ALL patients, 9 achieved CR (90%). At the other extreme, the CR rate of CD10- ANLL was 4 of 11 (36%). The leukemias characterized by greater than or equal to 70% of cells positive for CD34 form a relatively undifferentiated subset of the leukemias which may show features associated with more than one lineage, and if CD10- and myeloid morphology, may respond poorly to therapy.

Antigens, CD34

Hepatitis in fatal infectious mononucleosis.

A detailed clinicopathologic analysis of 30 patients with sporadic fatal infectious mononucleosis and 31 males with fatal infectious mononucleosis and the X-linked lymphoproliferative syndrome was performed to determine the extent of hepatic dysfunction in these cases. At death, the median age of patients with sporadic infectious mononucleosis was 10.7 yr vs. 2.4 yr for X-linked lymphoproliferative syndrome. The median survival time was 8 wk for sporadic infectious mononucleosis and only 4 wk for X-linked lymphoproliferative syndrome. The male to female ratio was 3:2 in sporadic infectious mononucleosis; all patients with X-linked lymphoproliferative syndrome were males. Fever, sore throat, lymphadenopathy, hepatomegaly, and splenomegaly were prominent findings. Hepatic dysfunction was uniformly present and caused death in 13 of 30 sporadic infectious mononucleosis cases and 18 of 31 X-linked lymphoproliferative syndrome cases. Diagnosis of infectious mononucleosis was confirmed by heterophile antibody titers or Monospot, Epstein-Barr virus antibody studies, viral culture, molecular hybridization studies, clinical and histologic findings, and pedigree analysis.

Child

Thymic lesions in fatal infectious mononucleosis.

Thymic lesions were studied in 35 patients with fatal infectious mononucleosis (FIM) including 21 males with the X-linked lymphoproliferative syndrome (XLP) and 14 non-XLP patients. Six patterns based on the lymphocyte content and status of Hassall's bodies were observed: massive lymphoproliferation effaced the architecture and Hassall's bodies (HB) in 6 cases. Epstein-Barr virus (EBV)-laden B cells surrounded by cytotoxic T cells and natural killer cells were found in one of these cases. Only 5 of the 35 thymuses contained normal-appearing HB. Seven showed a moderate reduction in HB. Rarely, multinucleated giant cells and hyaline globules were seen where one might expect HB to reside. Plasma cells and macrophages were generally abundant. Eight displayed a marked depletion of HB. In 7, no HB were recognized. Massive necrosis was seen in one of these cases. Stress involution was encountered in only two patients, both of whom had sporadic fatal IM. Thymic lesions and alterations were similar but less extensive in sporadic FIM. These morphological studies, taken in context with clinical and experimental reports, suggest that destruction of thymic epithelium may contribute to the progression of immune defects seen in XLP following EBV infection. The destruction of HB that we observed was similar in appearance to lesions in several other immune deficiency disorders.

Age Factors

X-linked lymphoproliferative syndrome provides clues to the pathogenesis of Epstein-Barr virus-induced lymphomagenesis.

X-linked lymphoproliferative disease (XLP) is a rare genetic syndrome that continues to serve as a useful model to understand more broadly the role of immunodeficiency and the pathogenetic mechanisms for the spectrum of Epstein-Barr virus (EBV)-induced diseases to which XLP is predisposed. Apart from XLP, EBV infection is related to the high frequency of non-Hodgkin's lymphoma in children with various primary immune deficiency diseases and in allograft recipients. More recently, EBV has been implicated in several lymphoproliferative diseases in individuals with acquired immune deficiency syndrome. Studies thus far on patients with XLP suggest that immune deficiency is a major determinant of these diseases. Additional molecular aberrations must be necessary in the pathogenesis of lymphoma to convert polyclonal to monoclonal disease.

Female

New developments in AIDS.

At the present time there is no effective therapy for the HIV infection itself, nor for the opportunistic infections, malignancies, immune perturbations, and other manifestations of AIDS. However, as a result of knowledge gained regarding the modes of transmission of HIV, public health officials have made recommendations which, if followed, would slow or even halt further spread of the virus. Thus it is hoped that educational efforts directed at individuals in high-risk groups will be effective in stopping transmission of this disease and that ongoing research efforts will soon provide therapeutic agents to cure it or slow its progression.

Acquired Immunodeficiency Syndrome