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J D Hoyer

Publications and source records attributed to J D Hoyer.

At least 19 recordsLinked to original sources

Interphase fluorescence in situ hybridization with an IGH probe is important in the evaluation of patients with a clinical diagnosis of chronic lymphocytic leukaemia.

Translocations involving IGH are common in some lymphoid malignancies but are believed to be rare in chronic lymphocytic leukaemia (CLL). To study the clinical utility of fluorescence in situ hybridization (FISH) for IGH translocations, we reviewed 1032 patients with a presumptive diagnosis of CLL. Seventy-six (7%) patients had IGH translocations. Pathology and clinical data were available for the 24 patients evaluated at the Mayo Clinic. Ten (42%) patients had IGH/cyclin D1 fusion and were diagnosed with mantle cell lymphoma (MCL). The immunophenotype was typical of MCL in three of these patients and atypical for MCL in seven patients. One patient had biclonal disease with typical MCL and CLL with IGH/BCL-2. Eleven (46%) patients had IGH/BCL-2 fusion including the patient with biclonal disease. Two of these patients had leukaemic phase follicular lymphoma and nine patients had CLL. The median progression-free survival of patients with CLL and IGH/BCL-2 translocation was 20.6 months. The two patients with IGH/BCL-3 fusion (one of these also had IGH/BCL-11a) had rapid disease progression. The IGH partner gene was not identified in two patients. We conclude that use of an IGH probe in FISH analysis of monoclonal B-cell lymphocytosis improves diagnostic precision and could have prognostic value in patients with CLL.

B-Cell Lymphoma 3 Protein↗

Use of multiple displacement amplification to amplify genomic DNA before sequencing of the alpha and beta haemoglobin genes.

AIMS: To evaluate the technique of multiple displacement amplification (MDA) for whole genome amplification from small volume blood samples before sequencing in a clinical test to identify haemoglobin gene mutations. METHODS: Phage phi29 DNA polymerase was used to perform MDA, starting with either 1 micro l of blood or 1 ng of previously isolated blood DNA from 23 patients. The amplified products were then evaluated using a clinical test that involves sequencing the haemoglobin genes to detect mutations. The results were compared with the current clinical test method that uses genomic DNA isolated using column based technology. RESULTS: The MDA technique produced large quantities (theoretically approximately 2 mg) of DNA. The amplification procedure was extremely easy and took about four hours (less than one hour of hands on technician time and three hours for amplification). When MDA products were used in the same clinical test protocol as genomic DNA isolated using column technology, there was 100% concordance for detection of a variety of point mutations in the alpha1, alpha2, and beta globin genes. CONCLUSIONS: The MDA technique is useful for overcoming the problem of insufficient genomic DNA in clinical specimens requiring haemoglobin gene sequencing and could be useful for other clinical applications.

Base Sequence↗

A bone marrow report of absent stainable iron is not diagnostic of iron deficiency.

The absence of stainable iron in a bone marrow aspirate is widely considered to be diagnostic of iron deficiency anemia (IDA). We re-evaluated this concept by studying a cohort of 108 consecutive bone marrow specimens from an unselected series of patients who were seen at a hematology clinic and in whom iron stores were reported as being absent. A review of the pathologic reports revealed 19 inadequate specimens and 15 with decreased, but not absent, iron stores. Thus, only 74 of the 108 cases had been accurately reported. In 37 of these cases, adequate clinical and laboratory data were available and allowed further analysis. In 18 patients, careful review of patient history, physical examination, results of endoscopic procedures, and follow-up information failed to suggest the presence of IDA (group A). The review process in the remaining 19 patients suggested the possibility of IDA (group B). Significant differences between groups A and B were observed in serum ferritin (P = 0.001) and red blood cell mean corpuscular volume (P = 0.004). In contrast, the two groups did not differ significantly in hemoglobin concentration, serum iron, total iron-binding capacity, transferrin saturation, or erythrocyte sedimentation rate. These observations suggest that a pathology report of absent bone marrow hemosiderin may be inaccurate in more than 30% of cases and, even when accurate, may not necessarily signify the presence of IDA. Measurement of the serum ferritin level is needed to confirm a clinical diagnosis.

Aged↗

Hb Dartmouth [alpha66(E15)Leu-->Pro (alpha2) (CTG-->CCG)]: a novel alpha2-globin gene mutation associated with severe neonatal anemia when inherited in trans with Southeast Asian alpha-thalassemia-1.

We report a novel mutation at alpha66(E15)Leu-->Pro (alpha2) (CTG-->CCG), that we have named Hb Dartmouth for the medical center at which the patients were cared for, in monozygotic twins who also inherited the Southeast Asian alpha-thalassemia-1 deletion. The mother, of Khmer ancestry, is heterozygous for alpha-thalassemia-1. The father, who is of Scottish-Irish ancestry, is a silent carrier of the codon 66 mutation. The twins had severe neonatal anemia requiring transfusion.

Adult↗

Hereditary red blood cell disorders in middle eastern patients.

Hereditary disorders of erythrocytes are common in many areas of the world, including the Middle East. In some regions of the Middle East more than 10% of the population are carriers of a gene for one of these conditions. When patients from the Middle East seek medical care in the West, an unrecognized but clinically important erythrocyte disorder can result in serious complications during routine medical care, such as a drug-induced hemolytic crisis. This article reviews the most important and most common inherited red blood cell disorders in Middle Eastern patients, including glucose-6-phosphate dehydrogenase deficiency, the thalassemias, and sickle cell disorders. We discuss when to suspect such conditions, how to determine their presence, and how to avoid potential complications related to them. Although a detailed discussion of treatment of erythrocyte disorders is beyond the scope of this article, some general management principles are described.

Anemia, Hemolytic, Congenital↗

The (11;14)(q13;q32) translocation in multiple myeloma. A morphologic and immunohistochemical study.

We identified 24 cases of multiple myeloma with the t(11;14)(q13;q32). In 22 cases, the t(11;14)(q13;q32) was part of a complex karyotype, and in 2 cases it was an isolated abnormality. All patients had clinical and laboratory features consistent with multiple myeloma. The median degree of plasma cell involvement in the bone marrow was 60%, and in 10 cases, the plasma cells had a lymphoplasmacytoid appearance. Of the 24 cases, 21 had intermediate or high proliferative rates based on labeling index studies. Immunohistochemical studies performed on all bone marrow biopsy specimens showed strong cyclin D1 nuclear positivity in 19 cases. There also was strong cyclin D1 nuclear positivity found in 6 of 30 additional cases without the t(11;14)(q13;q32) demonstrated by routine cytogenetics. The t(11;14)(q13;q32) in multiple myeloma results in overexpression of the cyclin D1 protein, which can be demonstrated by immunohistochemical stain. The cyclin D1 stain results in the additional cases of multiple myeloma suggest that the t(11;14)(q13;q32) may be more common than previously thought and may be missed by routine cytogenetics, particularly if the proliferative rate is low.

Adult↗

Fish demonstrates treatment-related chromosome damage in myeloid but not plasma cells in primary systemic amyloidosis.

Conventional cytogenetic analysis is limited in the evaluation of plasma cell disorders because, relative to normal hematopoietic elements, plasma cells divide slowly. Moreover, it is difficult to know whether abnormal metaphases originate from malignant plasma cells or myeloid cells harboring other abnormalities. We studied a patient with primary systemic amyloidosis who had previously been treated with an alkylating agent. Bone marrow cells were analyzed by cytoplasmic-immunoglobulin fluorescent staining combined with fluorescent in situ hybridization (cIg-FISH). Both chromosome enumeration probes for chromosome 1 and 7 and loci-specific probes for the short and long arm of chromosome 7 were used. Cytogenetic analysis disclosed the following abnormality: +der(1;7)(q10;p10). On cIg-FISH, the myeloid cells had fusion signals between chromosome enumeration probes for chromosomes 1 and 7, whereas plasma cells had the normal appearance of two pairs of signals. There was a second clone of abnormal myeloid cells with monosomy of chromosome 7. The bone marrow did not show any evidence of myelodysplasia. Interphase cIg-FISH is a useful technique for assigning the lineage of chromosomal abnormalities in plasma cell disorders.

Amyloidosis↗

Immunophenotypic analysis of peripheral blood and bone marrow in the staging of B-cell malignant lymphoma.

This study evaluated the contributing roles of flow cytometric immunophenotyping of blood and bone marrow and immunohistochemical paraffin section staining of bone marrow biopsies in the staging of B-cell malignant lymphoma. Flow immunophenotyping was performed on a marrow specimen in 175 cases; a corresponding blood specimen was also immunophenotyped in 135 of these cases. Morphologic marrow involvement by lymphoma was found in 59 cases; flow immunophenotyping identified 54 cases with a monoclonal B-cell process: morphology-positive/flow-positive (n = 49), morphology-positive/flow-negative (n = 10), morphology-negative/flow-positive (n = 5), and morphology-negative/flow-negative (n = 111). The 10 morphology-positive/flow-negative cases included 5 follicular and 5 large-cell lymphomas with minimal marrow involvement. All 5 morphology-negative/flow-positive cases were from patients with large-cell lymphomas and bulky clinical disease. Because the blood contained the same B-cell clone in 2 of 2 morphology-negative/flow-positive cases studied, blood contamination of marrow may account for these findings. Blood flow cytometric immunophenotyping studies were positive in 32 cases; 30 had marrow involvement by morphology and were from patients with follicular, mantle cell, lymphoplasmacytic, small lymphocytic, or marginal zone lymphomas. From our results, we conclude that (1) bone marrow flow cytometric immunophenotyping is not a cost-effective replacement for good morphologic evaluation in lymphoma staging and that (2) a positive peripheral blood flow cytometric immunophenotyping study when performed in low-grade lymphomas correlates with marrow involvement.

Adult↗

Chronic lymphocytic leukaemia with symptomatic diffuse central nervous system infiltration responding to therapy with systemic fludarabine.

B-cell chronic lymphocytic leukaemia is an indolent disease characterized by the insidious accumulation of small mature-appearing lymphocytes in the peripheral blood, bone marrow and lymphoid tissues. Direct symptomatic invasion of the central nervous system is exceedingly rare and, to our knowledge, only three cases histologically confirmed as true chronic lymphocytic leukaemia have been reported in the literature. We describe the first case of early Rai stage B-cell chronic lymphocytic leukaemia presenting with symptomatic infiltration of the brain and spinal cord which could be demonstrated radiographically by magnetic resonance imaging. The diagnosis was confirmed by examination of peripheral blood, cerebrospinal fluid, brain and bone marrow biopsies, both morphologically and immunophenotypically by means of flow cytometric analysis. The patient demonstrated a complete response to therapy with standard-dose systemic fludarabine and remains in complete remission 6 months after completion of therapy.

Antineoplastic Agents↗

Isolated isochromosome 17q: a distinct type of mixed myeloproliferative disorder/myelodysplastic syndrome with an aggressive clinical course.

A clinicopathologic study was performed on 15 patients with haematological malignancies in which isochromosome 17q [i(17q)] was the sole structural chromosome abnormality identified in bone marrow. The data indicated that an isolated i(17q) is associated with a distinct type of mixed chronic myeloproliferative/myelodysplastic disorder with an aggressive clinical course. The patients ranged in age from 37 to 83 years (median 60) with a M:F ratio of 3:1. All cases were chronic myeloid disorders with mixed proliferative and dysplastic features, making classification difficult. 11 patients tested for BCR/ABL gene fusion were normal. A low bone marrow blast count (<5%) at presentation was a typical finding. All cases had severe myeloid dysplasia which included non-segmented neutrophils and an increase in the monocyte/macrophage lineage. Fluorescence in situ hybridization (FISH) analysis of one case showed the i(17q) to involve all myeloid lineages, but not the lymphocytes. For cases with complete follow-up (n = 11) the median survival was 2.5 years (range 0.83-5.25) and 64% progressed to AML prior to death. The following features were identified which defined the haematological disorder associated with an isolated i(17q): (1) adult patient, (2) chronic myeloid disorder with clonal involvement of all myeloid lineages, (3) mixed chronic myeloproliferative/myelodysplastic features, (4) severe hyposegmentation of neutrophil nuclei, (5) prominence of the monocyte/macrophage lineage, (6) high risk for progression to AML, and (7) median survival of 2.5 years.

Adult↗

Clinical significance of the translocation (11;14)(q13;q32) in multiple myeloma.

The most common chromosomal translocation in multiple myeloma (MM) is t(11;14)(q13;q32). Here, we describe the clinical characteristics of patients with MM who have this translocation. We have identified 24 patients at our institution who had t(11;14)(q13;q32) as determined by standard cytogenetic analysis (CC). Seven patients had the translocation detected at the time of original diagnosis and 17 at the time of relapse. Median survival in all patients after original diagnosis was 43 months; median survival after the translocation was detected was 11.9 months. Four patients had a clinical diagnosis of plasma cell leukemia. Most patients had an elevated beta2-microglobulin (13/20 had >4 microg/ml). The bone marrow (BM) labeling index (LI) of patients, at the time of translocation detection, was elevated in most (median 1.4%, 17/23 patients had BMLI > or = 1%). Of the 24 patients, 19 (79%) died of disease progression and 5 (21%) were alive with disease at last follow-up. Lytic lesions, bone pain, or compression fractures eventually developed in all patients. Patients with MM who have t(11;14)(q13;q32) detected by standard cytogenetics seem to have an aggressive clinical course.

Antineoplastic Combined Chemotherapy Protocols↗

Spontaneous remission of anemia associated with a myelodysplastic syndrome with disease evolution into a myeloproliferative state.

A red cell transfusion-dependent patient with a myelodysplastic syndrome had progression into a myeloproliferative state with thrombocytosis. At the same time, the patient became transfusion independent, and a subsequent bone marrow examination revealed a previously undetected loss of chromosome 7. The patient remains well with control of thrombocytosis by anagrelide therapy.

Anemia↗

Hb Chile [beta28(B10)Leu-->Met]: an unstable hemoglobin associated with chronic methemoglobinemia and sulfonamide or methylene blue-induced hemolytic anemia.

Among the causes of life-long cyanosis are congenital methemoglobinemia due to M hemoglobins, congenital methemoglobinemia due to methemoglobin reductase deficiency, a small number of low oxygen affinity hemoglobins, and a small number of unstable hemoglobins that spontaneously form methemoglobin in vivo at an accelerated rate. We report an unstable hemoglobin with these characteristics that was observed in a family of indigenous (native American) origin living near Santiago, Chile. This variant has the substitution beta28(B10)Leu-->Met, unambiguously corresponding to the DNA mutation of CTG-->ATG in beta-globin gene codon 28.

Anemia, Hemolytic↗

Multiple myeloma and the translocation t(11;14)(q13;q32): a report on 13 cases.

Complex cytogenetic abnormalities have been described in patients with multiple myeloma (MM). To better understand the significance of the most frequent translocation observed in MM, we studied the clinical characteristics of patients with MM and the t(11;14)(q13;q32) abnormality. A search of the cytogenetic database at the Mayo Clinic identified patients with MM and t(11;14)(q13;q32). The medical records were reviewed for the clinical characteristics of these patients. We identified 13 patients with MM and t(11;14)(q13;q32) determined by standard cytogenetic analysis: in 10 patients the abnormality was detected at the time of relapse (three with previously normal results of cytogenetic examination). At the time the translocation was detected, plasma cell (PC) leukaemia was clinically diagnosed in two patients. The median number of circulating PCs, as determined by the cytoplasmic immunofluorescence of T-cell-depleted peripheral blood mononuclear cells, was 1.1x10(9)/l (mean 1.74; range 0.0017-6.26x10(9)/l). On linear regression analysis there was a strong correlation between the number of circulating PCs and the number of bone marrow PCs. The median survival after demonstration of the translocation was 8.1 months. Of all patients, 10 died of disease progression and three were alive. Patients with MM who have t(11;14)(q13;q32) seem to have an aggressive clinical course, even when the abnormality is detected at the time of diagnosis, with evidence of many circulating PCs.

Adult↗

Acute myeloid leukemia with minimal differentiation. A multiple parameter study.

Acute myeloid leukemia with minimal differentiation (AML-M0) is a recently described entity, and few large studies are available to characterize its clinical and pathologic features. We reviewed blood and bone marrow morphology, cytochemistry, immunophenotyping, and cytogenetics, as well as the clinical findings, of 17 patients with AML-M0. Most patients were male, with a median age of 62 years. Minimal background myelodysplastic features were identified in only 5 of 15 patients. Cytochemical stains for myeloperoxidase and alpha-naphthyl butyrate esterase were negative in the leukemic blasts of all specimens. Positivity for one or both myeloid-associated antigens, CD13 and CD33, was seen in all patients. Both CD34 and HLA-DR were positive in all tested cases. Lymphoid-associated antigens were identified in seven patients; these antigens were typically dim or weak in intensity. Terminal deoxynucleotidyltransferase positivity was seen in 14 of 14 tested patients; monoclonal anti-myeloperoxidase reactivity was seen in the blasts of 2 patients. Abnormal clonal karyotypes were found in 6 of 14 patients. Abnormalities of chromosomes 7 and 13 were the most common findings, most frequently manifested by monosomy 7 and trisomy 13. The median follow-up was 8 months. Eight patients died of their disease, three are alive with disease, and six are in first or second remission (including three patients treated with bone marrow transplantation). When narrowly defined, AML-M0 appears to be a homogeneous entity that affects older and predominantly male patients. It has no single karyotypic abnormality, but complex karyotypes with monosomy 7 and trisomy 13 are commonly found. Acute myeloid leukemia with minimal differentiation is relatively resistant to chemotherapy; however, bone marrow transplantation may provide a better outcome for eligible patients.

Adult↗