PubMed Health⌕ Search

Biomedical subjects

S L Allen

Publications and source records attributed to S L Allen.

At least 37 records · Page 2Linked to original sources

Clonal expansion within the CD4+CD57+ and CD8+CD57+ T cell subsets in chronic lymphocytic leukemia.

The role of T cells in chronic lymphocytic leukemia (CLL) has not been extensively investigated, since the most prominent cellular abnormality in CLL involves the clonal expansion of B cells. In this study we have undertaken a comprehensive analysis of the CD4+ and CD8+ T cell repertoire in a population of CLL patients (n = 19) and age-matched controls (n = 22). The TCR repertoire analysis was performed using a multiplex PCR assay for CDR3 length, an approach that allows for the detection of underlying oligoclonality in complex T cell populations. We established that oligoclonality was substantially more frequent in both the CD4+ and CD8+ T cell populations of CLL patients than in the age-matched controls (p < 0.001). Using three-color FACS analysis with a panel of TCRV segment-specific mAbs, we also established that oligoclonal expansions are predominantly found in the CD57+ subset of both the CD4+ and CD8+ T cell populations. The frequency of the CD57 marker on CD4+ T cells was increased in the setting of CLL (% CD57 = 14.8 +/- 13.0%) compared with that in normal controls (% CD57 = 3.3 +/- 3.0%; p < 0.001). An elevated frequency of CD4+CD57+ T cells was correlated with more advanced disease. Similarly, the most extreme oligoclonal expansions of CD4+CD57+ T cells occurred in CLL patients who had progressed beyond Rai stage 0. These data document profound alterations in the T cell repertoire of CLL patients and point to a role for clonal T cell populations in the pathogenesis of this disease.

Adult↗

Examples of in vivo isotype class switching in IgM+ chronic lymphocytic leukemia B cells.

Chronic lymphocytic leukemia (CLL) usually involves the expansion of a clone of CD5+ B cells synthesizing IgM antibodies. These B cells appear to be blocked at the antigen receptor-expressing stage of B cell differentiation and are thought not to undergo an isotype class switch to IgG or IgA production. In vivo and in vitro studies suggest, however, that in some instances terminal differentiation and isotype switching can occur. To test the hypothesis that in vivo isotype class switching occurs in IgM+ B-type CLL cells, we analyzed the PBMC of 19 CLL patients for the presence of transcripts encoding the rearranged CLL V(H)DJ(H) associated with either gamma or alpha H chains. The molecular data indicate that approximately 50% of B-CLL patients have amplifications of IgM+ B cells that undergo an isotype class switch. Switching to IgA appears to occur more often than to IgG; also, switching can involve different IgG subclasses in individual patients. In many instances, these CLL-related gamma and alpha transcripts are much more plentiful than those of normal B cells that produce the same isotype. These switched transcripts do not reveal evidence for the accumulation of significant numbers of new V(H) gene mutations. The cellular data indicate that B cells with lesser amounts of surface membrane IgD and higher IgM/IgD ratios are more likely to undergo this switching process. Furthermore, B cells expressing IgG and IgA of the same idiotype or V(H) family and the same CDR3 length as those of the CLL IgM+ clone can be identified in the blood of patients studied using multiparameter immunofluorescence analyses. Collectively, these data suggest that not all members of a B-CLL clone are frozen at the surface membrane Ig-expressing stage of B cell maturation, and that some members can switch to the production of non-IgM isotypes. The occurrence of switching without the accumulation of V gene mutations indicates that the processes of differentiation and diversification are not linked.

Adult↗

Evidence for progenitors of chronic lymphocytic leukemia B cells that undergo intraclonal differentiation and diversification.

Peripheral blood mononuclear cells from five patients with IgG+ B-type chronic lymphocytic leukemia (B-CLL) were analyzed for the presence of clone-specific Ig H chain variable region gene mRNA transcripts linked to C mu and/or C alpha. This was assessed by (1) comparing the lengths of portions of the VHDJH of the IgG+ CLL clones with those of the mu and alpha isotype-expressing B cells, (2) performing clone-specific endonuclease digestion studies, and (3) determining the DNA sequences of the mu and alpha isotype-expressing cDNA. Thus, when B-cell mRNA from these five patients were reverse transcribed with C gamma-specific primers and then amplified by polymerase chain reaction, dominant cDNA were found with lengths corresponding to those of the IgG+ CLL B cell. In addition, in four cases, cDNA of lengths identical to those of the CLL B cell were detected when mRNA was reverse transcribed and amplified using c mu- and/or C alpha-specific primers, strongly suggesting clonal relatedness. These CLL-related mu- and alpha-expressing cDNA were present in greater amounts that unrelated (non-CLL) mu- and alpha-expressing cDNA from normal B cells that used genes of the same VH family. When the sequences of these CLL-related C mu- and C alpha-expressing cDNA were compared with those of the IgG+ CLL clones, it was clear that they were derived from the same ancestral gene as the IgG-expressing CLL B cell, thus documenting their common origin. Finally, nucleotide point mutations were observed in the mu- and alpha-expressing cDNA of certain patients, indicating divergence with the CLL. These data suggest that IgM+ B cells, which are precursors of the leukemic B cells, exist in increased numbers in the blood of most patients with IgG+ B-CELL and that these cells may differentiate, accumulate V genes mutations, and undergo isotype switching in vivo. In addition, the data are consistent with a sequential-hit model for the evolution of CLL.

Base Sequence↗

Phase II study of elsamitrucin (BMY-28090) for the treatment of patients with refractory/relapsed non-Hodgkin's lymphoma.

PURPOSE: To determine the response rate of patients with refractory/relapsed non-Hodgkin's lymphoma to treatment with elsamitrucin and to further characterize the toxic effects of elsamitrucin in this group of patients. PATIENTS AND METHODS: Eligibility required pathologically verified relapsed or refractory non-Hodgkin's lymphoma with no more than two prior chemotherapy regimens for patients with tumors classified by the International Working Formulation (IWF) as A-C and no more than one prior chemotherapy for those with IWF grades D-G. Patients were entered with either normal or impaired bone marrow function, but normal liver function tests were required unless clearly related to lymphomatous involvement of the liver. Elsamitrucin 25 mg/m2 was administered intravenously over 5-10 minutes weekly. RESULTS: Thirty-one patients entered the study and were treated for a median of six weeks (range 1-42). All patients were evaluable for toxicity and 30 for response. Mild nausea and/or vomiting and asthenia were the most frequently reported adverse events. Four (13%, 95% Cl 4.4-31.6%) partial responses were seen along with two (7%) minor responses while 9 (30%) patients had stable disease. CONCLUSION: Elsamitrucin showed modest activity in patients with relapsed or refractory non-Hodgkin's lymphoma. Toxicity was relatively mild, consisted mainly of asthenia, nausea and vomiting and did not include myelosuppression. The activity of elsamitrucin in this group of patients and its lack of myelosuppression suggest utility in this disease especially when combined with other proven agents.

Adult↗

Interobserver variability in the classification of neonatal seizures based on medical record data.

This population-based, retrospective cohort study of neonatal seizures included all 16,428 neonates born to residents of Fayette County, Kentucky, from 1985 to 1989. Eighty potential cases were ascertained by computer search of hospital-based medical record systems, birth certificate data files, and multiple-cause-of-death mortality data files. Medical records for potential cases were abstracted, and relevant portions were reviewed independently by three neurologists using prospectively determined criteria. Both unweighted and weighted kappa statistics were used to measure agreement between each pair of observers in the classification of potential cases as seizures, possible seizures, or not seizures, adjusting for the proportion of agreement expected by chance. Agreement in the classification of potential cases was excellent (kappa = 0.72-0.79, average = 0.76; weighted kappa = 0.85-0.88, average = 0.87). The kappa extension statistic of Kraemer was used to assess agreement in the classification of seizure types by a simplification of the classification scheme of Volpe. This documented excellent agreement between raters in the classification of seizure types (kappa e = 0.72). Experienced raters can reliably classify potential cases of neonatal seizures using seizure descriptions transcribed from medical records.

Cohort Studies↗

Mapping three classical isozyme loci in tetrahymena: meiotic linkage of EstA to the ChxA linkage group.

We demonstrate a reliable method for mapping conventional loci and obtaining meiotic linkage data for the ciliated protozoan Tetrahymena thermophila. By coupling nullisomic deletion mapping with meiotic linkage mapping, loci known to be located on a particular chromosome or chromosome arm can be tested for recombination. This approach has been used to map three isozyme loci, EstA (Esterase A), EstB (Esterase B), and AcpA (Acid Phosphatase A), with respect to the ChxA locus (cycloheximide resistance) and 11 RAPDs (randomly amplified polymorphic DNAs). To assign isozyme loci to chromosomes, clones of inbred strains C3 or C2 were crossed to inbred strain B nullisomics. EstA, EstB and AcpA were mapped to chromosomes 1R, 3L and 3R, respectively. To test EstA and AcpA for linkage to known RAPD loci on their respective chromosomes, a panel of Round II (genomic exclusion) segregants from a B/C3 heterozygote was used. Using the MAPMAKER program, EstA was assigned to the ChxA linkage group on chromosome 1R, and a detailed map was constructed that includes 10 RAPDs. AcpA (on 3R), while unlinked to all the RAPDs assigned to chromosome 3 by nullisomic mapping, does show linkage to a RAPD not yet assignable to chromosomes by nullisomic mapping.

Animals↗

Clinical pharmacokinetics of amonafide (NSC 308847) in 62 patients.

Amonafide (A) demonstrates dose-related increases in area under the curve (AUC) and Cmax values. Total body clearance for A (ranging from 44.2 to 53.8 L/hr/m2) is relatively constant within the dosing range of this study. The dose-related increase of AUC was also observed for the two identified metabolites, acetylamonafide (AA) and noramonafide (NA). A and NA plasma data could be described by a four-compartmental model (two compartments for A, one compartment each for NA and AA). The fitting for NA was poor owing to its low plasma concentration. The terminal half-lives for A, NA, and AA were in the range of 3-6 hr. No cumulative accumulation of parent compound or metabolites was detected after daily administration, The concentrations of A, NA, and AA 24 hr after dosing were either below or very close to the quantitative limits of the assay. Polymorphic disposition of A was confirmed by a frequency distribution of AUC value versus dose plot.

Adenine↗

Clinical and morphological features of cases of trisomy 13 in acute non-lymphocytic leukemia.

Trisomy 13 has been infrequently reported as a primary non-random karyotypic change in myeloid leukemias. To elucidate its clinical significance we examined the clinical and hematological data in nine ANLL patients in whom we found this change, in a series of 175 cytogenetically abnormal ANLL patients. Morphologically, six of the patients were FAB-M1, two were FAB-M4 and one was FAB-M5. Bone marrow aspirates contained more than 90% blasts in eight of the patients. By immunophenotype, TdT was present in four of the patients, CD34 was present in four of five patients tested and CD5 was present in one of five patients tested. Blast cells in all patients expressed two or more myeloid surface antigens. These data suggest the proliferation of an immature myeloid cell in these patients. Complete remission was achieved in seven patients; however, remissions were short-lived. Eight patients expired between 1 and 13 months from diagnosis (median survival 5 months). Combining our findings with data in the published literature on trisomy 13 in ANLL, a larger data set consisting of 29 patients was established to determine better the clinical significance of this cytogenetic entity in ANLL. We found that this cytogenetic change has been reported in all subsets of FAB classification excepting M6 and M7. Median age at presentation was 60 years and no association with gender was noted. Median WBC was 29.5 x 10(9)/l, the majority of patients were thrombocytopenic (median platelet count 86 x 10(9)/l) and median survival was 5.2 months. This study associates trisomy 13 with malignant transformation of myeloid progenitor cells. These patients respond well to induction therapy, but relapse occurs quickly and the survival duration is poor.

Adult↗

Somatic diversification and selection of immunoglobulin heavy and light chain variable region genes in IgG+ CD5+ chronic lymphocytic leukemia B cells.

Chronic lymphocytic leukemia (CLL) is characterized by the clonal expansion of CD5-expressing B lymphocytes. Most studies have found that these leukemic CD5+ B cells, like their normal counterparts, use immunoglobulin (Ig) variable (V) region genes that exhibit minimal, if any, somatic diversity. These and other observations have suggested that CD5+ B cells may be incapable of generating Ig V gene diversity, and therefore may not be able to develop higher affinity binding sites that could be selected by antigen. However, most of the studies of CLL and normal CD5+ B cells have focused on IgM-producing cells. Since somatic mutations are most often seen in B cells that have undergone an isotype class switch, we analyzed the Ig heavy (H) and light (L) chain variable region genes of seven IgG+CD5+ CLL B cells to determine if somatic diversification and antigen selection had occurred. The data derived provide evidence for skewed use, somatic diversification, and antigenic selection of the Ig V region genes. Nonrandom use of both H and L chain V region genes was manifested by an overrepresentation of VH4 and VKI family genes and the underrepresentation of the JH4 gene segment. Furthermore, VH4 gene use was restricted to only two family members (4.21 and 4.18). In four of the seven cases, the VH and VL genes displayed > or = 5% difference from the most homologous known germline counterparts. Polymerase chain reaction and Southern blot analyses performed in two of these patients demonstrated that their unique VH CDR2 and adjacent sequences were not present in their germline DNA. In addition, a significant level of diversity was seen in the rearranged DJH segments and at the VL-JL junctions of every patient that occurred both at the time of recombination and subsequently. The localization of replacement changes to complementarity determining regions of some patients suggested that antigen selection had occurred. Furthermore, the mutations identified in the VH and VL genes of each individual patient were strikingly similar, both in number and location. Collectively, the data indicate that a subset of CD5+ CLL B cells can display Ig V region gene mutations. In addition, they are consistent with the notions that in some cases antigen selection of these mutations may have occurred, and that antigen stimulation may be a promoting factor in the evolution of certain CLL clones.

Amino Acid Sequence↗

Chromosomal mapping of members of the cdc2 family of protein kinases, cdk3, cdk6, PISSLRE, and PITALRE, and a cdk inhibitor, p27Kip1, to regions involved in human cancer.

Orderly progression through the cell cycle requires sequential activation and inactivation of cyclin-dependent kinases (cdks). This is achieved in part through the association of cdks with positive regulators called cyclins and inactivation of cyclin-cdk complexes by a rapidly growing number of cyclin-cdk inhibitors. Recently, the role of cell cycle control proteins both as primary effectors and as mediators of tumorigenesis has become a subject of increased interest. Here we report the chromosomal mapping of two cdks, cdk3 and cdk6, two putative cdks, PISSLRE and PITALRE, and one cyclin-dependent kinase inhibitor, p27, to chromosomal regions which may be altered in human tumors and examine their possible involvement in some of these malignancies. In particular, two of the kinases, cdk3 and PISSLRE and PITALRE, the cdc2-related kinases recently cloned by us, map to regions previously shown to exhibit loss of heterozygosity in breast and other tumors.

Base Sequence↗

Perioperative nursing interventions for intravascular stent placements.

Keeping abreast of changing surgical technologies is among the more challenging aspects of perioperative nursing. Because peripheral vascular disease is a leading cause of lower extremity disabilities that require surgical interventions, new procedures and techniques are being developed continually. These procedures involve the insertion of intraluminal structural supports into patients who have had mixed or unsuccessful results from angioplasty. Perioperative nurses are an integral part of vascular surgery teams performing the insertion of intravascular stents. To function effectively, perioperative nurses must understand the concepts of intravascular stent procedures, nursing diagnoses, and nursing interventions that promote optimal patient outcomes.

Angioplasty, Balloon↗

Population pharmacodynamic study of amonafide: a Cancer and Leukemia Group B study.

PURPOSE: To determine if variability in toxicity of amonafide during phase II trials could be correlated with pharmacokinetic variability. PATIENTS AND METHODS: Seventy-three patients enrolled onto three Cancer and Leukemia Group B (CALGB) phase II trials of amonafide (300 mg/m2 daily for 5 days) were studied, using a limited sampling strategy (45 minutes and 24 hours) to estimate the amonafide area under the plasma concentration-time curve (AUC). Concentrations of N-acetyl-amonafide, an active metabolite, were also determined. RESULTS: The primary determinant of toxicity at a fixed dose of amonafide was the extent of N-acetylation. Fast acetylators (36% of patients) had significantly greater toxicity than slow acetylators (64% of patients), with median WBC nadirs of 500/microL and 3,400/microL, respectively (P < or = .001). In a multivariate analysis, lower pretreatment WBC count, lower albumin level, and nonwhite race were also independently associated with toxicity. Further analysis of interracial differences demonstrated that minority women had slower clearance of amonafide (P = .026) and a higher incidence of grade 4 leukopenia (P = .042). CONCLUSION: The highly variable toxicity of amonafide is primarily due to genetic differences in N-acetylation. Other genetic (race) and acquired factors (baseline WBC count and albumin level) also appear to influence the extent of toxicity observed following administration of this agent.

Acetylation↗

A phase II trial of didemnin B in myeloma. A Cancer and Leukemia Group B (CALGB) study.

Didemnin B is a member of a class of compounds, derived from a marine source, undergoing phase II study. Twenty-two patients with relapsed myeloma were treated with didemnin B at an initial dose of 4.9 mg/m2, given once every 28 days. All were evaluable for toxicity, and 15 were evaluable for myeloma response. No tumor regressions occurred in the 15 patients evaluable for response. Vomiting was the major toxicity, occurring in 73% of patients despite vigorous pre- and post-treatment medication with at least three intravenous antiemetics. Two instances of grade 4 hypersensitivity reaction occurred. We conclude that didemnin B has no activity at this dose and schedule in myeloma that has relapsed after one or two prior therapeutic regimens.

Antineoplastic Agents↗

Evaluation of the neurotoxic potential of chemicals in animals.

This review provides a scientific view on how to evaluate effectively the neurotoxic potential of chemicals in order to provide adequate safeguards for human health. Detection of compounds that may cause direct, persistent, adverse effects on the nervous system should be given the most critical attention. Evaluation of the neurotoxic potential of a chemical should include descriptions of functional and morphological effects as well as the determination of the dose response, no-observed-effect level, time course and reversibility of effects. Evaluation of the nervous system in the context of standard toxicity studies that use a variety of species and study durations are appropriate screening tests (Tier 1) for the detection of potential neurotoxicity. Studies specifically designed to assess neurotoxicity (Tier 2) should be performed with chemicals for which there is an indication of neurotoxic potential and where the available data are inadequate for risk assessment. Tier 2 studies should evaluate the function and structure of the nervous system by comprehensive clinical examinations and neuropathological assessment. These studies may be conducted in conjunction with standard toxicity studies so that any potential neurotoxicity can be interpreted in the context of other systemic toxicity. More specific neurotoxicity tests (Tier 3) may be necessary for advanced characterization of discovered neurotoxicants.

Animals↗

Phase I evaluation of a water-soluble etoposide prodrug, etoposide phosphate, given as a 5-minute infusion on days 1, 3, and 5 in patients with solid tumors.

PURPOSE: To determine the toxicities, maximum-tolerated dose (MTD), and pharmacology of etoposide phosphate, a water-soluble etoposide derivative, administered as a 5-minute intravenous infusion on a schedule of days 1, 3, and 5 repeated every 21 days. PATIENTS AND METHODS: Thirty-six solid tumor patients with a mean age of 63 years, performance status of 0 to 1, WBC count > or = 4,000/microL, and platelet count > or = 100,000/microL, with normal hepatic and renal function were studied. Doses evaluated in etoposide equivalents were 50, 75, 100, 125, 150, 175, and 200 mg/m2/d. Etoposide in plasma and urine and etoposide phosphate in plasma were measured by high-performance liquid chromatography (HPLC). Eleven of 36 patients were treated with concentrated etoposide phosphate at 150 mg/m2/d. RESULTS: Grade I/II nausea, vomiting, alopecia, and fatigue were common. Leukopenia (mainly neutropenia) occurred at doses greater than 75 mg/m2, with the nadir occurring between days 15 and 19 posttreatment. All effects were reversible. Hypotension, bronchospasm, and allergic reactions were not observed in the first 25 patients. The MTD due to leukopenia was determined to be between 175 and 200 mg/m2/d. In 11 patients treated with concentrated etoposide phosphate, no local phlebitis was noted, but two patients did develop allergic phenomena. The conversion of etoposide phosphate to etoposide was not saturated in the dosages studied. Etoposide phosphate had peak plasma concentrations at 5 minutes, with a terminal half-life (t1/2) of 7 minutes. Etoposide reached peak concentrations at 7 to 8 minutes, with a t1/2 of 6 to 9 hours. Both etoposide phosphate and etoposide demonstrated dose-related linear increases in maximum plasma concentration (Cmax) and area under the curve (AUC). CONCLUSION: Etoposide phosphate displays excellent patient tolerance in conventional dosages when administered as a 5-minute intravenous bolus. The suggested phase II dose is 150 mg/m2 on days 1, 3, and 5. The ability to administer etoposide phosphate as a concentrated, rapid infusion may prove of value both in the outpatient clinic and in high-dose regimens.

Adult↗

IgG+, CD5+ human chronic lymphocytic leukemia B cells. Production of IgG antibodies that exhibit diminished autoreactivity and IgG subclass skewing.

Several questions exist regarding CD5+ B cells. These include the ability of these cells, as compared to CD5- B cells, to undergo an Ig isotype class switch, the subclasses utilized, and the effects that switching may have on antigen binding. To address these issues, ten patients with chronic lymphocytic leukemia (CLL) whose CD5+ leukemic B cell clones produced IgG were studied. Monoclonal IgG was collected from PMA-stimulated CLL cells and from heterohybridomas constructed with these cells, and then analyzed for IgG subclass utilization, autoreactivity, and DNA idiotype expression. The monoclonal B cells from 80% of the CLL patients produced IgG1 and those from 20% produced IgG3. None produced IgG2. In contrast to the known autoreactivity of IgM-producing CD5+ CLL cells (> 50% autoreactive), none of these IgG antibodies reacted significantly with the autoantigens tested. However, three did react significantly with autoantigen after artificially increasing antibody valency by crosslinking. Whereas five of the IgG molecules expressed a cross reactive idiotypic (CRI) marker characteristic of non-mutated kappa anti-DNA antibodies, three expressed a CRI displayed primarily on mutated IgG anti-DNA antibodies. Thus, some CD5+ human B cells can undergo an isotype class switch that for these CLL cells is biased against IgG2 and in favor of the IgG1 and IgG3. In their native state the IgG molecules secreted by these isotype-switched CD5+ cells have diminished autoreactivity, as compared to IgM-producing CLL cells. Since some of the IgG antibodies could be made auto- and poly-reactive by increasing antigen-binding valency, while others expressed idiotypic markers of mutated antibodies, certain of these CD5+ B cells probably utilize non-mutated Ig V genes coding for polyreactive antibodies, whereas others may use genes that have undergone somatic mutation and that code for more restricted specificities. Therefore, both valency and VH gene mutation may account for the diminished autoreactivity of these CD5+ B cell-derived IgG antibodies.

Adult↗

Induction of trimethyltin neurotoxicity by dietary administration.

Groups of 12 male and 12 female rats were fed diets containing 0 or 8ppm trimethyltin chloride for up to 25 days. All the animals were observed prior to the study start and daily throughout the study for any changes in clinical condition. In addition, detailed clinical observations, including quantitative assessments of landing foot splay, sensory perception, muscle weakness and locomotor activity were monitored during the study. At the end of the study, the rats were killed and subjected to a full Post-mortem. Selected nervous system tissues were removed, processed and examined microscopically. Clinical signs typical of trimethyltin neurotoxicity (e.g. aggression, shaking and convulsions) were seen in rats receiving diets containing 8ppm trimethyltin chloride for as little as 22 days. Neuropathological lesions consisting of extensive neuronal cell necrosis in the limbic region of the brain, vacuolar degeneration of ventral horn cells of the spinal cord and a marginal increase in Wallerian-type degeneration were seen. The study demonstrates that trimethyltin neurotoxicity can be induced by dietary administration and that both male and female rats are equally sensitive.

Animals↗