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Biomedical subjects

F Lampert

Publications and source records attributed to F Lampert.

At least 37 records · Page 2Linked to original sources

Trisomy 21 is a recurrent secondary aberration in childhood acute lymphoblastic leukemia with TEL/AML1 gene fusion.

TEL/AML1 gene fusion is the most frequent genetic lesion in pediatric acute lymphoblastic leukemia (ALL). It occurs as a consequence of the cryptic chromosomal translocation t(12;21)(p13;q22). In a cohort of 50 RT-PCR-positive TEL/AML1 patients, karyotype examination by GTG banding and fluorescence in situ hybridization (FISH) allowed us to identify chromosome anomalies in addition to the already existing t(12;21). Secondary aberrations were found in 29 out of 41 patients (71%) at initial diagnosis and in all 9 patients with relapse. Structural rearrangements affected chromosome arms 2p, 2q, 5q, 9p, 12p (n = 2), 6q, 11p (n = 3), and 21q (n = 4). An extra chromosome 21 was found to be the most frequent anomaly. It was detected in 6 out of 41 patients at initial diagnosis (15%) and in 7 out of the 9 patients at relapse. No karyotype with trisomy 21 exceeded 47 chromosomes. Gain of chromosome 21 was the sole anomaly in GTG-banding analysis in 2/41 patients at initial diagnosis and in 4/9 at relapse. Notably, chromosome painting analysis performed in 11 out of the 13 patients with an extra chromosome 21 revealed duplication of the normal chromosome 21 in 8, and duplication of der(21)t(12;21) in 3 patients. Furthermore, gain of der(21)t(12;21) chromosome was confined exclusively to the relapse patients.

Child↗

Philadelphia chromosome-positive (Ph+) childhood acute lymphoblastic leukemia: good initial steroid response allows early prediction of a favorable treatment outcome.

Among 4,760 acute lymphoblastic leukemia (ALL) patients enrolled from 1986 to 1995 in two subsequent trials of the BFM and AIEOP study group, 61 patients were found to have Philadelphia chromosome-positive (Ph+) ALL. These patients were analyzed for presenting features and treatment outcome to identify specific prognostic factors. Treatment stratification was based on initial cell mass and early response as determined by blast count in peripheral blood after a 7-day induction prephase with prednisone and one dose of intrathecal methotrexate on day 1. All patients were treated by similar intensive Berlin-Frankfurt-Münster (BFM) protocols. The median age of Ph+ patients was 7.5 years, the median white blood cell count (WBC) was 75 x 10(9)/L, 77% of patients had common ALL, and 29% coexpressed myeloid markers. After a median observation time of 4.2 years, 29 of 61 patients are alive (survival probability [pSUR] at 4 years, 0.49; standard error [SE], 0.06), and 24 of 61 are in first complete remission (CR1; probability of event-free survival [pEFS] at 4 years, 0.38; SE, 0.06). Twenty (35%) of 57 evaluable patients had >/=1,000 leukemic blasts per microliter of blood on day 8 of induction (defined as prednisone-poor-response [PPR]). These patients were older (10.0 v 6.88 years; P = .02) and had a higher WBC (144 v 29 x 10(9)/L; P = .0016) as compared with patients with prednisone good response (PGR; <1,000 blasts/microL at day 8). Only 2 of 20 patients (10%) with PPR remained in CR1 and alive: 6 patients with PPR did not survive after allogeneic bone marrow transplantation (BMT) due to recurring disease (n = 3) and toxicity (n = 3), and 12 nontransplanted patients died due to progression (n = 5) or relapse (n = 7). In contrast, 26 (70%) of the 37 patients with PGR are alive. Of 18 patients transplanted by allo-BMT, 1 relapsed (now in CR2) and 4 died after BMT. Among the 19 patients with PGR treated by chemotherapy alone, 8 remained in CR1 and 11 relapsed, of which 4 are in CR2 or CR3. The prednisone response emerged as the only independent prognostic factor for survival in Cox regression analysis. Thus, two thirds of Ph+ childhood ALL cases can be identified early by PGR, which, when treated with intensive BFM chemotherapy, with or without BMT, have a significantly lower risk of treatment failure. With a median continuous complete remission (CCR) time of 4.1 years, pEFS for PGR is 0.55 (SE, 0.08) compared with 0.10 (SE, 0.07) in patients with PPR (P = .0001). PGR is also an indicator for treatment responsiveness and durable second remission after relapse, which in turn may provide a second chance for BMT.

Adolescent↗

Plasma neuropeptide Y of children with neuroblastoma in relation to stage, age and prognosis, and tissue neuropeptide Y.

The objective of this study was to relate plasma neuropeptide Y (NPY) concentrations of patients with neuroblastoma with the stage of the disease, the patients' age, the prognosis, the tumor mRNA expression and with the effect on tumor cell proliferation. Plasma NPY of 85 patients with neuroblastoma was measured by radioimmunoassay. The patients' median age was 18 months (range, three weeks-12 years). Ten children with childhood tumors that did not affect neurological or neuroendocrine structures and ten healthy children served as control groups. NPY mRNA expression in neuroblastoma tissue was assessed by Northern blot analysis. Proliferation of neuroblastoma cells (SK-N-MC and CHP 234) was evaluated by 5-bromo-2'-deoxyuridine incorporation during DNA synthesis in vitro. Plasma NPY levels were significantly higher in stage 3 (p < 0.05), 4 (p < 0.001) and 4S (p < 0.05) patients than in both control groups. Plasma levels above 8 pmol/l were only seen in stages 2 (17%), 3 (32%), 4 (45%) and 4S (44%). Seven of the 12 patients (58%) who died had NPY levels above 8 pmol/l (vs. 29% in survivors; p = 0.05). In patients with longer follow-up monitoring, relapse coincided with increasing NPY levels. There was no relationship between the patients' age and their plasma NPY concentrations (r = 0.08; p = 0.49). No relation was found between NPY mRNA expression in tumor tissue and NPY plasma concentrations of the ten patients (r = 0.08; p = 0.81). NPY in the supernatant of neuroblastoma cells did not alter the 5-bromo-2'-deoxyuridine incorporation during DNA synthesis. In summary, NPY plasma concentrations in patients with neuroblastoma relate to the stage of the disease. The relation to the prognosis is at the threshold of significance. No relation between tissue and plasma NPY, nor any effect of NPY on proliferation of tumor cells was found.

Age Factors↗

Effects of Nd:YAG-laser irradiation on monolayer cell cultures.

BACKGROUND AND OBJECTIVE: The clinical applications of Nd:YAG lasers on oral soft tissues include a wide field of surgical and periodontal procedures. This in vitro study focuses on the histological effects of Nd:YAG-laser irradiation on a fibroblast monolayer cell culture especially with regard to thermal damage and cell necrosis. The results of this basic research study provide us with clear power settings for a safe soft tissue laser treatment. STUDY DESIGN/MATERIALS AND METHODS: Two hundred forty multiwell cell cultures and 24 micro-slide Leighton tubes were laser treated. Laser irradiation was performed with a commercial free-running pulse Nd:YAG laser and a quartz fiber with a diameter of 200 microns on L-929 fibroblast cell cultures. The variable parameters were pulse energy (30-120 mJ), pulse rate (20-100 Hz), power output (1.5-3.0 W), and time of irradiation (10-60 s). The cultures were analyzed with help of vital staining, autoradiography, and cytomorphology examination. RESULTS: Depending on the different settings the laser irradiation caused inhibitions of the DNA metabolism rate and the cell division rate, a degeneratively changed cytomorphology up to cell pyknosis. An increasing pulse energy, pulse rate, or an increased time of irradiation created an extended diameter of the pyknotic cell zone. CONCLUSIONS: The laser beam creates an exactly bordered damage between cells. The cells had a very good inherent mobility, but the border between eliminated and unloaded cell zone was sharp, even after an incubation of 24 h. These stable results prove that the laser can be applied up to a micrometer distance. With the help of cell clusters it was proved that the laser beam is also able to eliminate exactly one monolayer. Cells which had been covered by another cell layer (in a cluster) were not eliminated.

Autoradiography↗

Comparative genomic hybridization and telomerase activity analysis identify two biologically different groups of 4s neuroblastomas.

Chromosomal aberrations of 20 stage 4s neuroblastomas were analysed by comparative genomic hybridization (CGH). In a subset of 13/20 tumours, telomerase activity was evaluated by the telomeric repeat amplification protocol (TRAP). The CGH data were compared with the CGH results of ten stage 1 and 2 (stage 1/2) and 22 stage 3 and 4 (stage 3/4) neuroblastomas. A total of 17/20 stage 4s neuroblastomas did not progress clinically, whereas tumour progression with lethal outcome occurred in 3/20 cases. The CGH data of clinically non-progressing stage 4s tumours revealed a high rate of whole-chromosome aberrations (73.4%) with an overrepresentation of mainly chromosomes 2, 6, 7, 12, 13, 17, 18 and an underrepresentation of mainly chromosomes 3, 4, 11, 14. MYCN amplification or 1p deletion was observed in only 1/27 or 2/17 clinically non-progressing stage 4s tumours respectively, whereas all three progressive stage 4s neuroblastomas showed MYCN amplification, 1p deletion and, in 2/3 cases, distal 17q gains. Except for one case, telomerase activity was not observed in non-progressing stage 4s neuroblastomas. In contrast, 4s tumours with lethal outcome revealed elevated telomerase activity levels. Our data suggest that stage 4s neuroblastomas belong to two biologically different groups, one of which displays the genetic features of localized stage 1/2 tumours, whereas the other mimics advanced stage 3/4 neuroblastomas.

Blotting, Southern↗

Detection of hyperdiploid karyotypes (>50 chromosomes) in childhood acute lymphoblastic leukemia (ALL) using fluorescence in situ hybridization (FISH).

ALL patients with a hyperdiploid karyotype of more than 50 chromosomes (high hyperdiploidy) carry a better prognosis in contrast to patients presenting with other cytogenetic features, and an appropriate less intensive therapy protocol should be developed for these patients. For this reason it is desirable to have a quick screening method identifying those with this type of hyperdiploidy. We therefore studied the bone marrow and/or blood cells of 278 children with ALL using double target fluorescence in situ hybridization (FISH) on interphase. A combination of DNA probes (repetitive, centromere specific) was applied detecting chromosomes which are most frequently overrepresented in patients with hyperdiploidy (>50), at chromosomes 6, 10, 17 and 18. All patients showing hybridization signals differing from the normal signal distribution of two spots for each tested chromosome were analyzed cytogenetically as well. 102 children (102/278; 36.7%) were found to have a clone with aberrant FISH results. In 80 patients (80/278, 28.8%) the cytogenetic analysis detected a hyperdiploid karyotype >50 chromosomes, whereas the remaining patients (n=12) could be related to other ploidy subgroups, ie hyperdiploidy with 47-50 chromosomes, haploidy, triploidy/tetraploidy. Comparison of the FISH results with the measurements of the DNA content showed good agreement for 88.8% (208/234) of the investigated patients. The detected rate of 28.8% patients with a high hyperdiploid karyotype in our investigated cohort is comparable to the frequency of other studies. Only one patient was not identified as having a hyperdiploid karyotype with our combination of DNA probes. Our results indicate that FISH is a feasible and quick screening method for the detection of hyperdiploid karyotypes (>50 chromosomes) and other ploidy subgroups.

Aneuploidy↗

Down's syndrome in childhood acute lymphoblastic leukemia: clinical characteristics and treatment outcome in four consecutive BFM trials. Berlin-Frankfurt-Münster Group.

Clinical characteristics, treatment response and outcome were evaluated in children with Down's syndrome (DS) and acute lymphoblastic leukemia (ALL) as compared to other children with ALL (NDS). Sixty-one DS and 4049 NDS patients, receiving intensive antileukemic treatment during four consecutive trials (ALL-BFM 81, 83, 86 and 90) of the Berlin-Frankfurt-Münster Group (BFM), were retrospectively analyzed. DS and NDS children did not differ with respect to sex, leukocyte count, CNS leukemia and cytogenetic translocations. The DS cohort was slightly older (P=0.04), presented predominantly with the common while lacking the T immunophenotype (P=0.005), had a lower frequency of hyperdiploidy (P=0.004) and tended to have a better initial steroid response (P=0.057). Therapy-associated morbidity especially during high-dose methotrexate and a subsequent need for treatment modification occurred in 43% of all DS patients. Event-free survival (EFS) was slightly worse in children with DS (58+/-8% vs 70+/-1%, P=0.14), mainly due to rather late bone marrow recurrences. However, EFS in DS patients was comparable to the NDS group once they either received treatment with no major modifications (65+9% vs 70+/-1%, P=0.66) or were <6 years of age, irrespectively of therapy modifications (73+/-9% vs 74+/-1%, P=0.7). Cox regression analysis revealed that DS was an adverse prognostic factor for patients having completed therapy (P=0.0107), but was not prognostic at diagnosis (P=0.103). Age > or = 6 years, suboptimal treatment and infectious problems contributed to the slight inferior EFS in children with ALL and Down's syndrome. Therefore, most of these patients can be successfully treated if receiving intensive antileukemic treatment with no major modifications, but they require more sophisticated management of toxicity.

Antineoplastic Combined Chemotherapy Protocols↗

A new fingerprint method for sequence analysis of chromosomal translocations at the genomic DNA level.

Chromosomal rearrangements constitute a significant feature of leukemogenesis and malignant transformation in general. Nucleotide patterns in the immediate vicinity of the break point may provide important information about the underlying causalities, eg illegitimate recombination events mediated by topoisomerase II, Alu repeats, or VDJ recombinase. In order to facilitate the determination of those DNA patterns, we developed a new fingerprint approach. In a first step, two DNA fragments were independently amplified by long distance PCR: the genomic region carrying the break point and the normal nonrearranged counterpart. Subsequently, both PCR products were digested with restriction enzymes, end-labelled with a fluorescent dye, and subjected to high resolution polyacrylamide gel electrophoresis. By comparing the restriction patterns of the rearranged and the nonrearranged PCR fragments, the break points could be easily localized within a size range coverable by a single sequencing reaction. Finally, the exact DNA sequence across the break point was directly determined. The 'fingerprint' technique is fast, reliable and enables the assay of multiple samples in parallel.

Base Sequence↗

Incidence of TEL/AML1 fusion gene analyzed consecutively in children with acute lymphoblastic leukemia in relapse.

The translocation t(12; 21)(p13; q22) is difficult to detect by classic cytogenetics. However, using fluorescence in situ hybridization (FISH) and by screening for the TEL/AML1 rearrangement by the polymerase chain reaction (PCR), it has been demonstrated to be the most frequent known structural chromosomal abnormality in childhood acute lymphoblastic leukemia (ALL). It is closely correlated with a B-cell precursor (BCP) phenotype and is considered a favorable prognostic factor. However, little is known about the incidence of the translocation in relapsed patients and the duration of complete remission (CR) in children expressing the TEL/AML1 fusion gene. We therefore examined 49 bone marrow samples from children with ALL at first or second relapse that were consecutively mailed to our laboratory to test for the presence of t(12; 21) using reverse transcriptase (RT)-PCR. The TEL/AML1 rearrangement could be identified in nine of 44 (20%) of the patients, a result similar to the reported incidence at diagnosis. Most of the TEL/AML1-positive children showed no adverse clinical features at diagnosis (eg, white blood cell [WBC] count <100 x 10(9)/L or age <10 years), and regarding these data, there were no differences versus children who were negative for the fusion gene. However, the period of remission was about 1 year longer in children expressing TEL/AML1 (P = .046), and the majority of relapses in this group appeared late (<2 years after diagnosis). Our findings therefore reinforce the urgent need for further prospective studies with a long follow-up period to determine the true prognostic significance of t(12; 21) and to avoid premature changes of treatment strategies.

Adolescent↗

Incidence and clinical relevance of TEL/AML1 fusion genes in children with acute lymphoblastic leukemia enrolled in the German and Italian multicenter therapy trials. Associazione Italiana Ematologia Oncologia Pediatrica and the Berlin-Frankfurt-Münster Study Group.

The molecular approach for the analysis of leukemia associated chromosomal translocations has led to the identification of prognostic relevant subgroups. In pediatric acute lymphoblastic leukemia (ALL), the most common translocations, t(9;22) and t(4;11), have been associated with a poorer clinical outcome. Recently the TEL gene at chromosome 12p13 and the AML1 gene at chromosome 21q22 were found to be involved in the translocation t(12;21)(p13;q22). By conventional cytogenetics, however, this chromosomal abnormality is barely detectable and occurs in less than 0.05% of childhood ALL. To investigate the frequency of the molecular equivalent of the t(12;21), the TEL/AML1 gene fusion, we have undertaken a prospective screening in the running German Berlin-Frankfurt-Münster (BFM) and Italian Associazione Italiana Ematologia Oncologia Pediatrica (AIEOP) multicenter ALL therapy trials. We have analyzed 334 unselected cases of pediatric ALL patients consecutively referred over a period of 5 and 9 months, respectively. The overall incidence of the t(12;21) in pediatric ALL is 18.9%. The 63 cases positive for the TEL/AML1 chimeric products ranged in age between 1 and 12 years, and all but one showed CD10 and pre-B immunophenotype. Interestingly, one case displayed a pre-pre-B immunophenotype. Among the B-lineage subgroup, the t(12;21) occurs in 22.0% of the cases. Fifteen of 61 (24.6%) cases coexpressed at least two myeloid antigens (CD13, CD33, or CDw65) in more than 20% of the gated blast cells. DNA index was available for 59 of the 63 TEL/AML1 positive cases; a hyperdiploid DNA content (> or = 1.16) was detected in only four patients, being nonhyperdiploid in the remaining 55. Based on this prospective analysis, we retrospectively evaluated the impact of TEL/AML1 in prognosis by identifying the subset of B-lineage ALL children enrolled in the closed German ALL-BFM-90 and Italian ALL-AIEOP-91 protocols who had sufficient material for analysis. A total of 342 children were investigated for the presence of TEL/AML1 fusion gene and 99 cases (28.9%) were positive. The patients expressing the TEL/AML1 fusion mRNA appeared to have a better event-free survival (EFS) than the patients who lacked this chimeric product. Whereas three of the TEL/AML1 positive cases (3.0%) have relapsed to date, 27 patients without TEL/AML1 rearrangement (11.1%) suffered from relapse. To date, the only subset of B-lineage ALL with a favorable prognosis has been the hyperdiploid group (DNA index > or = 1.16 < 1.6). Our findings reinforce the need to include the molecular screening of the t(12;21) translocation within ongoing prospective ALL trials to prove definitively its prognostic impact.

Adolescent↗

Cloning and characterization of AFX, the gene that fuses to MLL in acute leukemias with a t(X;11)(q13;q23).

We report the cloning and characterization of the entire AFX gene which fuses to MLL in acute leukemias with a t(X;ll)(q13;q23). AFX consists of two exons and encodes for a protein of 501 amino acids. We found that normal B- and T-cells contain similar levels of AFX mRNA and that both the MLL/AFX as well as the AFX/MLL fusion transcripts are present in the cell line and the ANLL sample with a t(X;11)(q13;q23). The single intron of the AFX gene consists of 3706 nucleotides. It contains five simple sequence repeats with lengths of at least 12 bps, a chi-like octamer sequence (GCA/TGGA/TGG) and several immunoglobulin heptamer-like sequences (GATAGTG) that are distributed throughout the entire AFX intron sequence. In the KARPAS 45 cell line the breakpoints occur at nucleotides 2913/2914 of the AFX intron and at nucleotides 4900/4901 of the breakpoint cluster region of the MLL gene. The AFX protein belongs to the forkhead protein family. It is highly homologous to the human FKHR protein, the gene of which is disrupted by the t(2;13)(q35;q14), a chromosome rearrangement characteristic of alveolar rhabdomyosarcomas. It is noteworthy that the t(X;11)(q13;q23) in the KARPAS 45 cell line and in one acute nonlymphoblastic leukemia (ANLL) disrupts the forkhead domain of the AFX protein exactly at the same amino acids as does the t(2;13)(q35;q14) in case of the FKHR protein. In addition, the 5'-part of the AFX protein contains a conserved hexapeptide motif (QIYEWM) that is homologous to the functionally important conserved hexapeptide QIYPWM upstream of the homeobox domain in Hox proteins. This motif mediates the co-operative DNA binding of Pbx family members and Hox proteins and, therefore, plays an important role in physiologic and oncogenic processes. In acute leukemias with a t(X;11)(q13;q23), this hexapeptide motif is separated from the remaining forkhead domain within the AFX protein. The predicted amino acid sequence of AFX differs significantly from the partial AFX protein sequence published previously (Genes, Chromosomes and Cancer, 1994, 11, 79-84). This discrepancy can be explained by the occurrence of two sequencing errors in the earlier work at nucleotide number 783 and 844 (loss of a cytosine residue or guanosine residue, respectively) that lead to two reading frame shifts.

Acute Disease↗

CNS late effects after ALL therapy in childhood. Part II: Conventional EEG recordings in asymptomatic long-term survivors of childhood ALL--an evaluation of the interferences between neurophysiology, neurology, psychology, and CNS morphology. German Late Effects Working Group.

Monitoring of therapy-related late effects after acute lymphoblastic leukemia (ALL) therapy in childhood has become an increasingly important area in posttherapeutic patient surveillance. The usefulness of conventional electro-encephalographic (EEG) investigations as part of these attempts is controversially discussed. However, EEG recordings have become a popular approach for judgement on the functional integrity of the central nervous system in this subject group. The present report focuses on this problem and discusses the question whether and to what extent conventional EEG recordings were correlated with further measures of central nervous system (CNS) integrity and therapeutic differences. EEGs were recorded in 110 subjects, asymptomatic long-term survivors of ALL in childhood, during a large retrospective multicenter study evaluating CNS late sequelae following antileukemic therapy in Germany and Austria. EEG findings were correlated with demographic data, illness- and treatment-related parameters, as well as with data on the morphological, neurological and psychological status of the participating subjects. At the time of follow-up the EEG was abnormal in 47 cases (42.7%). The most frequent EEG abnormalities observed were disturbances of the background activity (n = 45, 95.8%), followed by hypersynchrone activities (n = 1.0, 21.3%) and interhemispheric differences/focal slowing (n = 6, 12.8%). With exception of age at diagnosis, none of the observed EEG abnormalities showed a correlation with any of the aforementioned illness- or treatment-related parameters. Eighty percent of the observed EEG abnormalities were found in children younger than 5 years at diagnosis. Children less than 2 years of age as well as those above 5 years at onset of disease showed a significantly reduced prevalence of EEG disturbances compared to subjects between 2 and 5 years at diagnosis. Neither the degree of illness nor therapy-specific differences showed any relationship to EEG outcome. There was no specific EEG finding for a specific morphological substrate, neurological or psychological deficiency and vice versa. Overall, there was no beneficial effect of routine EEG testing in children following therapy for ALL. According to our data, the evaluation of conventional EEG recordings of otherwise asymptomatic ALL long-term survivors is not a very helpful measure for predicting the degree of behavioral deficiencies, neurological disturbances, or morphological CNS abnormalities, which may be present or will develop in this special subject group.

Adolescent↗

Comparative genomic hybridization (CGH) analysis of neuroblastomas--an important methodological approach in paediatric tumour pathology.

Comparative genomic hybridization (CGH) was applied to 35 neuroblastomas to obtain a global view of genetic imbalances. Results were validated by means of Southern blot hybridization (detection of N-myc amplification), loss of heterozygosity (LOH) studies (detection of deletion 1p), and interphase cytogenetics [dual labelling fluorescence in situ hybridization (FISH) of centromeric 17 and erbB-2]. CGH allowed sensitive detection of N-myc amplification and chromosome 1p deletion, representing the most established prognostic markers of neuroblastoma. In addition, a high rate of chromosome 17 aberrations (63 per cent) with possible prognostic relevance was observed. Previously unreported high level copy number increases indicating oncogene amplification were mapped to chromosome subbands 2p13-14 and 3q24-26. Other recurrent regional chromosomal aberrations were localized on 11q, 12q, 13q, 14q, and 15q. CGH results were fully consistent with data of Southern blot analysis and LOH study, as well as interphase cytogenetics. These results show that CGH is a sensitive method for the detection of all prognostically relevant genetic alterations in neuroblastomas; that CGH considerably simplifies the detection of these alterations, resulting in a single methodological approach; and that CGH is a powerful tool to elucidate previously unknown genetic changes in neuroblastomas.

Blotting, Southern↗

The use of a 16s rDNA directed PCR for the detection of endodontopathogenic bacteria.

The study evaluates a 16S rDNA directed polymerase chain reaction (PCR) to detect and differentiate bacteria in necrotic root canal samples. The examination focused on species that are fastidious concerning culture or are difficult to differentiate after culturing by biochemical methods. In the described PCR assay, a universal 16S rDNA directed forward primer in combination with a highly specific reversed one was used to amplify taxon specific gene fragments of 230 to 950 bp length. A similar PCR reaction using a universal 16S rDNA reversed primer was also established to demonstrate bacteria in root canal specimens in general. A first application of this method revealed the presence of Actinomycetales-species, Fusobacterium nucleatum, "Streptococcus milleri," and, presumably for the first time described in infected root canals, Bacteroides forsythus. The identity of amplificons was confirmed by generating sequence information and comparison to gene databanks.

Adult↗

The current contribution of molecular factors to risk estimation in neuroblastoma patients.

The association of molecular characteristics with prognosis has been reported, but not their relationship with each other and their impact in the context of known clinical risk factors. In this study, data of 1249 consecutive intent-to-treat-neuroblastoma patients with more than 1 year follow-up were examined by multivariate analysis using loglinear and Cox proportional hazard regression models on a stage-related basis (stages 1-3: 600, 4S: 116, 4: 533). In a first step, risk factors were identified from 18 selected clinical variables, and risk groups defined. The second step investigated whether molecular characteristics (MYCN, LOH 1p, del 1p, CD44, N-ras, NGF-R, bcl-2, APO-1 (CD95)) contributed additional prognostic information to the model. The loglinear model demonstrated several interactions between clinical factors. By the Cox regression model, seven independent clinical risk factors were found for stages 1-3, seven for stage 4 and two for stage 4S. By subsequent introduction of all molecular variables, MYCN amplification only added significant prognostic information to the clinical factors in localised and stage 4 neuroblastoma. The models allowed the definition of risk groups for stages 1-3 patients by age (e beta = 5.09) and MYCN (e beta = 4.26), for stage 4 by MYCN (e beta = 2.78) and number of symptoms (e beta = 2.44) and for stage 4S by platelet count (e beta = 3.91) and general condition (e beta = 2.99). Molecular factors and in particular MYCN contribute significantly to risk estimation. In conjunction with clinical factors, they are powerful tools to define risk groups in neuroblastoma.

Adolescent↗

Disseminated neuroblastomas under 1 year of age: cell biology and prognosis.

Tumor specimens of 203 infants with neuroblastomas of different clinical stages-registered in successive multicenter clinical trials of the German Society of Pediatric Oncology-could be examined for N-myc amplification, chromosome 1-ploidy and-structure, CD44 std. expression (in tumor tissue, and also in patient's sera). Eighty-seven (= 43%) of these infants had a non-localized, disseminated neuroblastoma, mainly involving sympathetic nerve tissue, lymph nodes, liver, skin, bone marrow and bones (46 patients were classified into the 4 group, 41 patients in the true 4 group). If the clinical classification between stage 4 and stage 4s was neglected, then 17 of these infants (= 20%) had N-myc amplification (4-64 copies) with 16 already dead. Seven of 9 examined patients with true stage 4- had chromosome 1p aberrations (with N-myc amplification in 5), and among the dead there were 2 with CD44 negative expression. In another series, serum CD44 std. was measured by ELISA, and the highest (significantly different) Kruskal-Wallis mean rank values (147.8) were found in infants (n = 6) with stage 4s compared to the low mean-rank-value of 71.9 in patients with stage 4 (n = 65). Stage 1-3 patients (n = 42) had values of 99.8-88.6. Thus, infants with disseminated neuroblastomas, showing non-diploidy, normal chromosome 1p structure, non-N-myc amplification and high CD44 std. expression in tumor tissue, and also high CD44 std. values in serum, will have the highest chance of survival due to tumor-non-progression. On the other hand, N-myc amplification in the tumor cells was found to be characteristic for stage 4s neuroblastoma patients with tumor progression (n = 6). Therefore, 4s neuroblastoma-patients with N-myc amplified tumors should be aggressively treated like true stage 4 tumor patients.

Enzyme-Linked Immunosorbent Assay↗

Treatment of hypersensitive teeth using neodymium:yttrium-aluminum-garnet lasers: a comparison of the use of various settings in an in vivo study.

The spectrum of the methods available to treat hypersensitive teeth is very great. The chances for success in the use of these different therapies are equally variable. Faced with the already successful effort of the Nd:YAG laser in the treatment of exposed tooth necks, the effectiveness of the use of different settings of the Nd:YAG laser on exposed dentine was examined in this clinical study. In the case of comparison of the therapy success of the laser settings amongst one another, no significant difference could be found. This leads us to a conclusion, that laser irradiation is therapeutically effective at very low settings.

Adult↗