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J Zedenius

Publications and source records attributed to J Zedenius.

35 records · Page 2Linked to original sources

Thymic carcinoids in multiple endocrine neoplasia type 1.

OBJECTIVE: To study the clinical, pathologic, and genetic features of thymic carcinoids in the setting of multiple endocrine neoplasia type 1 (MEN1) and to study means for detection and prevention of this tumor in patients with MEN1. SUMMARY BACKGROUND DATA: Thymic carcinoid is a rare malignancy, with approximately 150 cases reported to date. It may be associated with MEN1 and carries a poor prognosis, with no effective treatment. Its underlying etiology is unknown. METHODS: Ten patients with MEN1 from eight families with anterior mediastinal tumors were included in a case series study at tertiary referring hospitals. Clinicopathologic studies were done on these patients, with a review of the literature. Mutation analysis was performed on the MEN1 gene in families with clusterings of the tumor to look for genotype-phenotype correlation. Loss of heterozygosity was studied in seven cases to look for genetic abnormalities. RESULTS: Histologic studies of all tumors were consistent with the diagnosis of thymic carcinoid. Clustering of this tumor was found in some of the families-three pairs of brothers and three families with first- or second-degree relatives who had thymic carcinoid. All patients described here were men, with a mean age at detection of 44 years (range 31 to 66). Most of the patients had chest pain or were asymptomatic; none had Cushing's or carcinoid syndrome. All tumors were detected by computed tomography (CT) or magnetic resonance imaging (MRI) of the chest. The results of octreoscans performed in three patients were all positive. Histopathologic studies were consistent with the diagnosis of thymic carcinoid and did not stain for ACTH. Mutation analysis of the families with clustering revealed mutations in different exons/introns of the MEN1 gene. Loss of heterozygosity (LOH) studies of seven tumors did not show LOH in the MEN1 region, but two tumors showed LOH in the 1p region. CONCLUSIONS: MEN1-related thymic carcinoids constitute approximately 25% of all cases of thymic carcinoids. In patients with MEN1, this is an insidious tumor not associated with Cushing's or carcinoid syndrome. Local invasion, recurrence, and distant metastasis are common, with no known effective treatment. We propose that CT or MRI of the chest, as well as octreoscanning, should be considered as part of clinical screening in patients with MEN1. We also propose performing prophylactic thymectomy during subtotal or total parathyroidectomy on patients with MEN1 to reduce the risks of thymic carcinoid and recurrence of hyperparathyroidism. Its male predominance, the absence of LOH in the MEN1 region, clustering in close relatives, and the presence of different MEN1 mutations in these families suggest the involvement of modifying genes in addition to the MEN1 gene. A putative tumor suppressor gene in 1p may be involved.

Adult↗

Re-operative surgery for recurrent or persistent primary hyperparathyroidism.

BACKGROUND: While initial surgery for primary hyperparathyroidism, in experienced hands, will result in a cure in 98% of cases, re-operative surgery remains a significant challenge. Because attitudes as to who should perform initial exploration for hyperparathyroidism are significantly different around the world, the approach to re-operative surgery may also vary. The aim of the present study was to examine a local experience of re-operative surgery for recurrent or persistent primary hyperparathyroidism. METHODS: Information on indications for surgery, the procedure performed, pathology and complications of all re-operative procedures for primary hyperparathyroidism in the period January 1962 to December 1996 were obtained from a prospective database. RESULTS: Sixteen patients with persistent (n = 12) or recurrent (n = 4) primary hyperparathyroidism were treated in the unit over the study period. Eight patients had their initial operation within the unit at Royal North Shore Hospital and eight were referred from elsewhere for re-operation. Nine of the 12 patients with persistent hyperparathyroidism were cured by re-operation with failures due to spillage at first operation (n = 1) or failure to find any additional pathology (n = 2). All four patients with recurrent hyperparathyroidism were cured. All the failures occurred early in the learning phase of the unit, with a 100% cure rate for re-operative procedures performed in the last 15 years. The most common finding in patients referred from elsewhere with a failed initial operation was a missed inferior adenoma in association with the thymus. Localization studies had a variable sensitivity, with sestamibi scintigraphy, selective venous sampling and ultrasonography providing the most reliable information. CONCLUSIONS: Re-operative surgery for persistent or recurrent hyperparathyroidism is an uncommon procedure in Australia when compared to major centres in the USA. Successful surgery depends upon experience and an accurate knowledge of the embryology and anatomy of the parathyroid glands.

Adenoma↗

RET/PTC and RET tyrosine kinase expression in adult papillary thyroid carcinomas.

The prevalence of RET/PTC rearrangements in papillary thyroid carcinomas (PTCs) varies widely in different studies, and an association of RET/PTC presence with tumor behavior remains to be clarified. A prospective study of 50 adult PTCs examined, using RT-PCR, the prevalence of the 3 main RET rearrangements and also of RET tyrosine kinase (TK) domain sequence expression. The genetic findings were correlated with the MACIS clinical prognostic score and with individual clinical parameters. Three of the patients had been exposed to radiation in childhood or adolescence. Four of the PTCs contained RET/PTC1, confirmed by sequencing, and none contained RET/PTC2 or RET/PTC3. The prevalence of RET rearrangements overall was 8%, but in the subgroup of 3 radiation-exposed patients it was 66.6%. Interestingly, RET tyrosine kinase domain messenger ribonucleic acid was detectable in 70% of PTCs using RET exon 12/13 primers and was detectable in 24% of PTCs using RET exon 15/17 primers. RT-PCR for calcitonin and RET extracellular domain, however, was negative. There was no association between the presence or absence of RET/PTC in the patient's tumor and clinical parameters. We conclude that RET/PTC1 is the predominant rearrangement in PTCs from adults with a history of external irradiation in childhood. RET TK messenger ribonucleic acid expression is common in PTCs, using RT-PCR, and cannot be used to infer the presence of specific RET rearrangements or of RET activation.

Adult↗

Somatic deletions and mutations in the Cowden disease gene, PTEN, in sporadic thyroid tumors.

The majority of familial medullary thyroid neoplasms are associated with germ-line mutations of the RET proto-oncogene, yet very little is known about the mechanisms involved in the pathogenesis of familial and sporadic nonmedullary thyroid tumors. A subset of thyroid tumors have loss of heterozygosity of chromosome 10q22-23, a region harboring the gene responsible for Cowden disease, an autosomal dominant hamartoma syndrome associated with thyroid and breast tumors. PTEN/MMAC1/TEP1 codes for a dual-specificity phosphatase and is likely a tumor suppressor gene. We sought to determine the PTEN status in a series of epithelial thyroid neoplasms. We studied 95 sporadic thyroid tumors, of which 39 were papillary thyroid carcinomas (PTCs), 12 were follicular carcinomas, 9 were anaplastic carcinomas, 5 were Hürthle cell carcinomas, 21 were nonfunctioning follicular adenomas, and 9 were Hürthle cell adenomas. Direct sequencing of PCR-amplified products was performed for all nine exons of PTEN. Two polymorphic markers, one located in intron 8 and another, a dinucleotide repeat marker, AFMa086wg9, located within intron 2, were analyzed in paired blood-tumor DNA samples to assess hemizygous deletions of PTEN. We found a somatic frameshift mutation in one PTC, which was expected to generate a premature stop codon 2 amino acids downstream. Twenty-six % of informative benign tumors (four follicular adenomas and three Hürthle cell adenomas) and only 3 of 49 (6.1%) informative malignant tumors (one PTC, one follicular carcinoma, and one anaplastic carcinoma) showed evidence of hemizygous deletion of PTEN (P = 0.046). We conclude that a subset of thyroid tumors have somatic deletions of the PTEN gene, predominantly the benign forms, and that small intragenic mutations of PTEN are infrequent in thyroid tumors. We speculate that other mechanisms of PTEN inactivation, rather than small intragenic mutations, might occur in the hemizygously deleted samples and act as the "Knudson second hit." Alternatively, other tumor suppressor genes mapping to chromosome 10q22-23 could be the actual targets for such deletions and thus represent the various hits in the pathway of multistep carcinogenesis.

Adenocarcinoma, Follicular↗

Differential loss of heterozygosity in the region of the Cowden locus within 10q22-23 in follicular thyroid adenomas and carcinomas.

The susceptibility gene for Cowden disease (CD), an autosomal dominant inherited cancer syndrome, has recently been mapped to an approximately 6-cM interval on chromosome subband 10q22-23 between the markers D10S541 and D10S564. CD is characterized by hamartomas of many organ systems, including the thyroid, breast, skin, and gastrointestinal tract, as well as carcinoma of the thyroid and breast. Follicular thyroid adenomas and carcinomas are significant component tumors in CD; thus, we sought to examine their sporadic counterpart tumors for loss of heterozygosity (LOH) of microsatellite markers in the 20-cM region within and flanking the Cowden critical interval. In all, 38 sporadic thyroid tumors were analyzed. LOH within the CD interval was observed in 5 of 19 (26%) follicular thyroid adenomas and 1 of 9 (11%) Hürthle cell adenomas. Furthermore, of these adenomas with LOH, 3 of 4 (75%) were atypical follicular adenomas, whereas 2 of 15 (13%) were typical follicular adenomas. Surprisingly, no LOH was detected in this region in 10 follicular carcinomas. The shortest region of overlap includes the markers D10S1735 and D10S1739. If the LOH observed in these sporadic tumors is related to the CD gene, then the Cowden critical interval can be revised to lie within the interval defined by D10S579 and D10S564. LOH in this narrow interval implicates the CD gene, or another gene in that interval, in follicular thyroid tumorigenesis. However, this does not explain the lack of LOH in follicular carcinomas. Taken together, it may instead be evidence against a stepwise progression from atypical adenomas to carcinomas. Alternatively, sporadic thyroid adenoma formation may be independent of that locus, but loss of this region could prevent carcinoma formation, thus implying that the CD gene may be an oncogene or growth promoter.

Adenoma↗

The relationship between specific RET proto-oncogene mutations and disease phenotype in multiple endocrine neoplasia type 2. International RET mutation consortium analysis.

OBJECTIVE: Multiple endocrine neoplasia type 2 (MEN 2) is an autosomal dominant disorder. The 3 recognized subtypes include MEN 2A, characterized by medullary thyroid carcinoma (MTC), pheochromocytoma (pheo), and hyperparathyroidism (HPT); MEN 2B, by MTC, pheo, and characteristic stigmata; and familial MTC (FMTC), by the presence of MTC only. The purpose of this study was to establish the relationship between specific mutations and the presence of certain disease features in MEN 2 which could help in clinical decision making. DESIGN: Correlative survey study of 477 MEN 2 families. SETTING: Eighteen tertiary referral centers worldwide. PATIENTS: A total of 477 independent MEN 2 families. MAIN OUTCOME MEASURES: Association between the position and type of germline mutation in the RET proto-oncogene and the presence or absence of MTC, pheo, HPT, and/or other features in a family. RESULTS: There is a statistically significant association between the presence of any mutation at a specific position (codon 634) and the presence of pheo and HPT. The presence of a specific mutation, CGC at codon 634, has yet to be associated with FMTC. Conversely, mutations at codons 768 and 804 are thus far seen only with FMTC, while codon 918 mutation is MEN 2B--specific. Rare families with both MEN 2 and Hirschsprung disease were found to have MEN 2-specific codon mutations. Patients with Hirschsprung disease presenting with such mutations should be monitored for the possible development of MEN 2 tumors. CONCLUSIONS: This consortium analysis suggests that genotype-phenotype correlations do exist and, if made reliably absolute, could prove useful in the future in clinical management with respect to screening, surveillance, and prophylaxis, as well as provide insight into the genetic effects of particular mutations.

Carcinoma, Medullary↗

Deletions of the long arm of chromosome 10 in progression of follicular thyroid tumors.

Previous studies of follicular thyroid tumors have shown loss of heterozygosity (LOH) on the short arm of chromosome 3 in carcinomas, and on chromosome 10 in atypical adenomas and carcinomas, but not in common adenomas. We studied LOH on these chromosomal arms in 15 follicular thyroid carcinomas, 19 atypical follicular adenomas and 6 anaplastic (undifferentiated) carcinomas. Deletion mapping of chromosome 10 using 15 polymorphic markers showed that 15 (37.5%) of the tumors displayed LOH somewhere along the long arm. Thirteen of these tumors showed deletions involving the telomeric part of chromosome 10q, distal to D10S187. LOH on chromosome 3p was found in 8 (20%) cases. Seven of these also showed LOH on chromosome 10q. In eight cases LOH was seen on chromosome 10q but not 3p. In comparison, the retinoblastoma gene locus at chromosome 13q showed LOH in 22% of the tumors. Most of these also had deletions on chromosome 10q. The results indicate that a region at the telomeric part of 1Oq may be involved in progression of follicular thyroid tumors.

Adenocarcinoma, Follicular↗

Stromal fibroblasts adjacent to invasive thyroid tumors: expression of gelatinase A but not stromelysin 3 mRNA.

Thyroid tumors vary widely in biologic behavior, they range from benign adenomas to rapidly growing anaplastic carcinomas. Among thyroid neoplasms, the follicular tumor is especially suited as a model for studies of tumor cell invasion; the distinction between adenomas and carcinomas relies mainly on the presence of capsular and vascular invasion. Matrix metalloproteinases play an important role in tumor cell invasion, as they are able to degrade basement membrane and extracellular matrix components. Twenty-nine thyroid tumors of varying type and aggressiveness were selected for analysis of relative molecular weight 72,000-dalton type IV collagenase (gelatinase A) expression by mRNA in situ hybridization. Strong gelatinase A mRNA expression was seen in 10 of 14 follicular carcinomas, in none of six follicular adenomas, in all four anaplastic carcinomas, and in four of five papillary carcinomas. The expression was restricted to fibroblasts in the stroma adjacent or close to invading tumor cells. Twelve of the tumors were also investigated for expression of stromelysin 3 mRNA, no expression of which was detected in any tumor. The findings suggest that gelatinase A contributes to the invasive process and spread of aggressive thyroid tumors.

Adenocarcinoma↗

Alterations of p53 and expression of WAF1/p21 in human thyroid tumors.

We have investigated p53 expression in 178 thyroid tumors from 162 patients by immunohistochemistry using two antibodies, DO1 and CM1. In addition, 35 tumors were analyzed for expression of WAF1/p21, one of the downstream mediators of p53. Only 15 tumors (8.4%) had greater than 10% of tumor cell nuclei positively stained for p53. Six of 14 Hürthle tumors and three of 34 papillary thyroid carcinomas showed staining of p53 in the cytoplasm. A total of 40 tumors, including all p53 positive tumors, and all anaplastic and poorly differentiated tumors were screened for mutations in exons 5-8 of the TP53 gene by constant denaturing gel electrophoresis and subsequent sequence analysis. A mutation was detected in five tumors only: one anaplastic carcinoma, one poorly differentiated follicular carcinoma (negative by p53 immunohistochemistry), one atypical follicular adenoma, and two papillary thyroid carcinoma metastases, of which the primary tumors had no detectable mutation. We conclude that p53 immunohistochemistry cannot be used for diagnostic and prognostic purposes in thyroid tumors. The tumors with TP53 mutation showed a markedly reduced WAF1/p21 expression. Three anaplastic carcinomas with highly expressed p53, but with no detectable mutation, also showed high expression of WAF1/p21. This may be explained by overexpression of wild-type p53, possibly due to the patients' preoperative treatment, including external radiation of the neck region. The results indicate that WAF1/p21 immunohistochemistry contributes to the information of the functional status of p53, and may facilitate the interpretation of results from p53 immunohistochemistry in these tumors.

Base Sequence↗

Allelotyping of follicular thyroid tumors.

To elucidate further the genetic mechanisms for follicular thyroid tumor development and progression, we allelotyped follicular thyroid tumors and other thyroid lesions from 92 patients. In general, a low frequency of loss of heterozygosity (LOH) was found, the highest being for chromosomes 3q, 10q, 11p, 11q, 13q, and 22q (10%-15%). However, detailed study of LOH of these chromosome arms with regard to the different histopathological diagnoses indicates that a locus on chromosome 10q may be involved in follicular thyroid tumor progression. In addition, the majority of Hürthle cell adenomas showed LOH on either chromosome 3q or 18q, in contrast to the other tumor types. This discrepancy in genetic alterations may contribute to the divergent clinical features occurring in these tumors.

Adenocarcinoma, Follicular↗

Genotype-phenotype correlation in multiple endocrine neoplasia type 2: report of the International RET Mutation Consortium.

The International RET Mutation Consortium was first convened as part of the Fifth International Workshop on Multiple Endocrine Neoplasia, Stockholm, Sweden, in an attempt to analyse the relationship of RET mutation and disease phenotype in the autosomal dominantly inherited multiple endocrine neoplasia type 2 (MEN 2) syndromes. Out of 361 families studied, 41% had MEN 2A, 17.7% MEN 2B, 6.4% FMTC and the remaining subjects were unclassified. RET mutations were detected in 87.3% of families overall. Over 93% of MEN 2B families had the RET 918 ATG-->ACG mutation, while the most frequent mutation detected in MEN 2A families was cysteine codon 634 (87% of all mutations).

Carcinoma, Medullary↗

Mutations of codon 918 in the RET proto-oncogene correlate to poor prognosis in sporadic medullary thyroid carcinomas.

The hereditary multiple endocrine neoplasia syndromes types 2A and B (MEN 2A and B) were recently linked to germline mutations in the RET proto-oncogene, altering one of five cysteine residues in exon 10 or 11 (MEN 2A), or substituting a methionine for a threonine at codon 918 in exon 16 (MEN 2B). The latter mutation also occurs somatically in some sporadic medullary thyroid carcinomas (MTC), and has in a previous study been correlated with a less favorable clinical outcome. In the present study, 46 MTCs were selected for investigation of the codon 918 mutation. The mutation was found in 29 tumors (63%), and was significantly correlated with a poor outcome, with regard to distant metastasis or tumor recurrence (p < 10(-4)). Two tumors showed multifocal growth and C-cell hyperplasia, and these patients were therefore also investigated for germline mutations in exons 10, 11 and 16. The codon 918 mutation was found only in the tumors, thus of somatic origin. The RET codon 918 mutation may have prognostic impact, and therefore preoperative assessment may influence decision-making in the treatment of patients suffering from MTC.

Base Sequence↗

Decreased expression of Ras GTPase activating protein in human trophoblastic tumors.

The normally developing placenta undergoes extensive but regulated noninvasive cellular proliferation. Various proto-oncogenes and growth factors have been associated with the regulation of trophoblastic placental growth. Activation of some oncogenes and altered expression of growth factors have been demonstrated in trophoblastic tumors (hydatidiform mole and choriocarcinoma). The ras proto-oncogene plays a key role in the signal transduction cascade of activated growth factors, and is known to be activated or overexpressed in multiple tumor types. Ras GTPase activating protein (RasGAP), a major down-regulator of ras activity, is present at high levels in placenta. To assess the role that Ras-GAP plays in the development of trophoblastic tumors, we performed immunohistochemical analyses with anti RasGAP antibodies of normal placentas, hydatidiform moles, invasive moles, and malignant choriocarcinomas. Normal placentas and noninvasive hydatidiform mole displayed intense positive staining confined to trophoblasts, whereas no staining was observed in the trophoblasts of invasive moles or choriocarcinomas. Thus, there was an inverse correlation between expression levels of RasGAP protein and the invasive potential and malignant phenotype in human trophoblastic tumors. The data indicate that RasGAP may play a regulatory role in trophoblast proliferation and that abolishing its activity may be associated with malignant transformation of these cells.

Cell Transformation, Neoplastic↗

The phospholipase C beta 3 gene located in the MEN1 region shows loss of expression in endocrine tumours.

Oncogenesis of tumours related to multiple endocrine neoplasia type 1 (MEN1) is associated with somatic deletions involving the MEN1 locus, suggesting inactivation of a tumour suppressor gene in this region. Identification of meiotic cross-overs in MEN1 families has placed the MEN1 locus centromeric of D11S807. An extended deletion mapping was performed in 27 primary parathyroid tumours, and identified D11S427 as the closest centromeric flanking marker. Through physical mapping using newly isolated cDNA clones, we estimated the distance between the flanking markers D11S807 and D11S427 to be less than 900 kb. One of these cDNA clones showed expression of a 4.4 kb message in multiple tissues, including those affected in MEN1, while in five endocrine tumours no transcript was detected. Sequence characterization showed that this gene encodes for the phospholipase C beta 3, a key enzyme in signal transduction.

Blotting, Northern↗

Somatic and MEN 2A de novo mutations identified in the RET proto-oncogene by screening of sporadic MTC:s.

Since germline mutations in the RET proto-oncogene (RET) predisposing to tumor development in Familial Medullary Thyroid Carcinoma (FMTC), Multiple endocrine neoplasia type 2A (MEN 2A), and Multiple endocrine neoplasia type 2B (MEN 2B) were reported, it has become possible to identify gene carriers with a very high degree of accuracy. Mutations in FMTC and MEN 2A exclusively affect cysteine residues in exon 10 and 11 of RET, whereas in MEN 2B codon 918 in exon 16 is involved. This latter mutation has also been described in a subset of apparently sporadic medullary thyroid carcinomas (MTC). Mutations in MEN 2B often occur as de novo germline mutations, whereas de novo mutations have not yet been described in FMTC or MEN 2A. We analyzed ten MTC:s and ten pheochromocytomas, all clinically judged to be sporadically occurring, by direct DNA sequencing of exons 10, 11, and 16 of RET. This analysis revealed a de novo germline mutation of codon 634 in exon 11 in a patient with MTC. In addition, somatic mutations of codon 918 in exon 16 in six of the remaining MTC:s were found. Interestingly, the presence of this somatic mutation was associated with a significantly less favorable clinical outcome.

Adult↗

Addition of nuclear DNA content to the AMES risk-group classification for papillary thyroid cancer.

BACKGROUND: The purpose of this study was to prospectively assess whether nuclear DNA content added prognostic value to existing risk factors in patients with papillary thyroid cancer. METHODS: Nuclear DNA content was measured both on the fine needle aspiration material and the surgical specimen in 73 patients with primary or recurrent papillary thyroid cancer. We modified the existing age of patient, presence of distant metastases, extent and size of the tumor (AMES) risk-group classification to include DNA ploidy with AMES (DAMES). Patients with euploid tumors that were AMES low risk were considered to be DAMES low risk; patients with euploid tumors that were AMES high risk became intermediate risk, and patients with aneuploid tumors that were AMES high risk became DAMES high risk. RESULTS: Forty-eight patients were in the DAMES low-risk group. Recurrences and/or distant metastases developed in only four (8%) of these patients. Twenty-two patients were in the DAMES intermediate-risk group. Twelve (55%) of the intermediate-risk group had residual, recurrent, or distant metastatic disease, with one death from cancer at 120 months. Three patients were in the DAMES high-risk group. Distant metastases developed in all three patients, who died within 24 months from thyroid cancer. A statistically significant difference existed in the development of recurrence/metastases or death from cancer in the DAMES high-risk group compared with the other risk groups combined. CONCLUSIONS: Nuclear DNA content adds prognostic value to the existing AMES risk-group classification. Because DNA analysis on fine needle aspiration correlated well with the surgical specimen DNA analysis, this modified classification can be used perioperatively to further individualize the treatment of patients with papillary thyroid cancer.

Adult↗

Follicular tumors of the thyroid gland: diagnosis, clinical aspects and nuclear DNA analysis.

From 1985 to 1990, 169 patients underwent surgery for follicular thyroid tumors at the Department of Surgery, Karolinska Hospital, Stockholm, Sweden. Nine of the patients had tumors which were diagnosed as follicular carcinoma, 4 of whom had recurrences in the neck region. In 6 of the patients the carcinomas were diagnosed as widely invasive and in 3 patients as minimally invasive. Of the 160 patients with follicular adenomas, 21 adenomas were of oxyphil type ("Hürthle" adenomas), 17 adenomas were diagnosed as "atypical", and 6 adenomas were classified as being both "atypical" and having oxyphil cell differentiation. The nuclear DNA content was measured with image cytometry and/or flow cytometry. Six of the 9 carcinomas were euploid and 3 were aneuploid. In the adenoma group, 32 (20%) were aneuploid. Thus 38% of all adenomas showed atypical cellular features, oxyphil cell differentiation, and/or aneuploid nuclear DNA pattern. None of the patients with adenomas have shown any sign of recurrence. In the present prospective study, the nuclear DNA content could not discriminate between a benign and a malignant follicular tumor, and was of limited value in predicting prognosis in the patients with follicular carcinoma. Still, the best way to establish a diagnosis and to predict prognosis is to surgically remove the follicular tumor for a proper histopathological examination.

Adenocarcinoma↗