Search PubMed⌕ Search

Biomedical subjects

M D Ringel

Publications and source records attributed to M D Ringel.

32 records · Page 2Linked to original sources

Cytotoxic activity of 2',2'-difluorodeoxycytidine (gemcitabine) in poorly differentiated thyroid carcinoma cells.

Poorly differentiated and anaplastic thyroid cancers are aggressive and usually fatal neoplasms, despite aggressive treatment. We performed an in vitro study to assess the activity of gemcitabine (2',2' difluorodeoxycytidine), a new fluorinated nucleoside analogue, against three poorly differentiated human thyroid carcinoma cell lines (ARO, WRO, and NPA). Each cell line was exposed to increasing concentrations of gemcitabine (0.0003 to 3000 mumol/L) for 24, 48, and 72 hours. Maximal reduction in cell viability was seen after 72 hours of gemcitabine for all three cell lines as measured by 3-(4,5-dimethyl thiazolyl-2)-2,5-diphenyl tetrazolium bromide (MTT) assay. NPA cells were more sensitive than the other two lines after 24 and 48 hours of exposure, but all cell lines were similarly sensitive at 72 hours. A cytotoxic effect was confirmed by DNA assay of adherent cells. IC50 concentrations for reduction in cell viability ranged from 0.731 and 0.986 mumol/L for each cell line after 72 hours of exposure. These concentrations are lower than serum levels in phase 1 clinical trials of gemcitabine for other malignancies. In summary, gemcitabine has activity against poorly differentiated thyroid cancer cell lines in vitro. In vivo studies using xenograft models are warranted to confirm these promising observations.

Antimetabolites, Antineoplastic↗

The role of radioactive iodine in salivary gland dysfunction.

The use of radioactive iodine has become an important adjunct to the treatment of thyroid cancer. Many normal tissues--including salivary glands, gastrointestinal mucosa, gonads, and lactating breast tissue--have the ability to concentrate radioactive iodine under normal circumstances. Although the mechanism is just beginning to be elucidated, it is this ability that might contribute to the immediate and long-term complications associated with radioactive iodine treatment. In some patients, the salivary complications can be permanent and might compromise daily functioning. In this article, we examine the salivary gland complications associated with radioactive iodine therapy, and we suggest potential protective mechanisms to circumvent these problems.

Cytoprotection↗

Quantitative reverse transcription-polymerase chain reaction of circulating thyroglobulin messenger ribonucleic acid for monitoring patients with thyroid carcinoma.

Patients with thyroid cancer are monitored for disease recurrence by measurement of serum thyroglobulin (Tg) and iodine-131 (131I) scanning. To enhance sensitivity and to circumvent antibodies that interfere with Tg immunoassays, we have developed RT-PCR assays that detect circulating thyroid messenger RNA (mRNA) transcripts. We now report results using a sensitive quantitative Tg mRNA assay (Taqman; ABI, Foster City, CA) in comparison with immunoassay in patients previously treated for thyroid cancer. We evaluated 107 patients: 84 during T4 therapy, 14 after T4 withdrawal, and 9 at both time points. All patients had near-total thyroidectomy, and 92% received postoperative 131I. Serum TSH, Tg protein, and Tg mRNA were measured. Patients were grouped based on most recent 131I scan or pathologically confirmed disease as having no detectable thyroid tissue (n = 33), thyroid bed uptake (n = 37), cervical/regional adenopathy (n = 21), or distant metastases (n = 16). During T4 therapy, median (range) Tg mRNA values (pg Tg Eq/microg thyroid RNA) for the groups were 1.5 (0-26.8), 9.4 (0.5-90.0), 15.4 (0.2-92), and 12.4 (1.9-16.6), respectively. Using a value of 3 pg Tg Eq/microg thyroid RNA as cut-point, Tg mRNA was positive in 38% of patients with no uptake, 75% with thyroid bed uptake, 84% with cervical/regional disease, and 94% with distant metastases. The median Tg mRNA value for patients with no uptake was lower than the median values for patients with thyroid bed uptake (P = 0.009) or with detectable thyroid tissue at any site (P = 0.010). Patients with negative 131I whole body scans were also less likely to have detectable Tg mRNA levels than were patients with thyroid bed uptake (P < 0.001) or any detectable thyroid tissue at any location (P < 0.001). Similar differences between these groups were seen after T4 withdrawal and for the 23 patients with circulating anti-Tg antibodies, when analyzed separately. Eight of the nine patients studied with low and high TSH concentrations displayed greater amounts of circulating Tg mRNA after T4 withdrawal. In three patients followed prospectively, the amount Tg mRNA correlated with the presence and absence of cervical metastases. In conclusion, we have demonstrated that a quantitative Tg mRNA assay can identify thyroid cancer patients with recurrent or residual thyroid tissue with greater sensitivity and similar specificity to Tg immunoassay during T4 therapy. The assay was unaffected by anti-Tg antibodies, responded to TSH-stimulation, and was reduced after surgical removal of metastases. These data suggest that this quantitative Tg mRNA assay may be a sensitive marker of tumor recurrence or response to therapy, particularly in patients with anti-Tg antibodies.

Adenocarcinoma, Follicular↗

Quantitative reverse transcription-PCR measurement of thyroglobulin mRNA in peripheral blood of healthy subjects.

BACKGROUND: Thyroglobulin mRNA can be detected qualitatively in the peripheral blood of patients with metastatic thyroid cancer, thyroid cancer patients with residual thyroid bed uptake, and individuals with no known thyroid disease with intact thyroid glands by use of a lengthy, highly sensitive extraction technique. To improve and broaden the clinical usefulness of this assay, we developed a quantitative reverse transcription (RT)-PCR assay for thyroglobulin mRNA, using RNA recovered from whole blood with a simplified extraction technique. METHODS: Whole blood was drawn from 32 healthy subjects in standard EDTA blood collection tubes. Total RNA was extracted from whole blood, using the PUREscript RNA Isolation Kit. RT-PCR using intron-spanning primers was used to quantitatively amplify thyroglobulin mRNA, using the ABI PRISM 7700 Sequence Detection System with a fluorescent-labeled, thyroglobulin-specific oligonucleotide probe. Thyroid RNA calibration curves were created using total RNA recovered from a single nondiseased thyroid gland. RESULTS: Qualitative RT-PCR demonstrated the presence of thyroglobulin mRNA in the whole blood sample of each healthy subject. The mean concentration of thyroglobulin mRNA detected in these subjects was 433 +/- 69 ng of total thyroid RNA per liter of whole blood (range, 26-1502 ng/L). Overall assay imprecision (CV) was 24% for five samples analyzed 10 times each in separate analytical runs on different days. CONCLUSIONS: Thyroglobulin mRNA can be accurately detected and quantified in peripheral blood from healthy subjects. This new quantitative technique may improve the clinical utility of circulating thyroglobulin mRNA detection in patients with thyroid disease.

Humans↗

Molecular diagnosis of residual and recurrent thyroid cancer by amplification of thyroglobulin messenger ribonucleic acid in peripheral blood.

Serum thyroglobulin measurement by immunoassay is used to detect residual or recurrent thyroid cancer after thyroid ablation. However, the usefulness of immunoassay is limited by both the requirement for thyroid hormone withdrawal to attain optimal test sensitivity and interference by antithyroglobulin antibodies. To circumvent these problems, we amplified thyroglobulin messenger ribonucleic acid (mRNA) in peripheral blood using RT-PCR and compared the accuracy of this test to serum thyroglobulin immunoassay in patients with thyroid cancer. Thyroglobulin mRNA was amplified from peripheral blood of 77 patients who had undergone thyroidectomy for well differentiated thyroid cancer, 68 of whom while taking thyroid hormone for TSH suppression. Patient staging was based on the most recent radioiodine scan after thyroid hormone withdrawal. Ten normal control subjects were also studied. Among patients taking T4, thyroglobulin mRNA was detected in 26 of 33 patients with either thyroid bed or metastatic iodine-avid tissue on most recent withdrawal scan (79%), whereas serum thyroglobulin was detected in 12 of these 33 patients (36%; P < 0.001). Thyroglobulin mRNA was detected in 7 of 35 patients (20%) with negative radioiodine scans, 12 of 19 patients (63%) with radioiodine uptake in the thyroid bed, and all 14 patients with metastases, including 2 patients with antithyroglobulin antibodies. Thyroglobulin mRNA was detected in all 10 normal subjects. Epithelioid cells that stained strongly with antithyroglobulin antibodies were identified in blood. Detection of circulating thyroglobulin mRNA is a more sensitive marker of residual thyroid tissue or cancer than immunoassay for serum thyroglobulin, particularly in patients treated with thyroid hormone or who have circulating antithyroglobulin antibodies.

Adult↗

Absence of activating mutations of the genes encoding the alpha-subunits of G11 and Gq in thyroid neoplasia.

Activating mutations of the TSH receptor and alpha-subunit of Gs (G alpha s) that increase adenylyl cyclase activity have been identified in a subset of hyperfunctioning benign thyroid follicular adenomas and, less commonly, in hypofunctioning adenomas and carcinomas. In addition some thyroid tumors exhibit inappropriate activation of phospholipase C (PLC), a signaling pathway that has been implicated in the growth and dedifferentiation of thyroid cells. We therefore hypothesized that some thyroid tumors might be caused by somatic mutations in the genes encoding the alpha-chain of Gq or G11 that result in constitutive activation of the PLC pathway. We amplified regions of the alpha q and alpha 11 genes that encode amino acids, Q209 and R183, and we screened the DNA for mutations by sequence analysis and denaturing gradient gel electrophoresis. No mutations were identified after analysis of DNA from 38 thyroid tumors and 2 poorly differentiated thyroid carcinoma cell lines, including: 13 follicular adenomas, 10 follicular carcinomas, 5 papillary carcinomas, and 10 hyperplastic nodules from multinodular goiters. We conclude that activating mutations of alpha q and alpha 11 are absent or rare in hypofunctioning thyroid neoplasms and that other mechanisms must explain the elevated PLC activity reported in thyroid carcinoma.

Adenocarcinoma, Follicular↗

Determination of transgene copy number and expression level using denaturing gradient gel electrophoresis.

Transgenic mice and cell lines are frequently developed to study human disease. Accurate determination of transgene copy number and levels of mRNA are necessary to understand the phenotypic changes observed in these models. Currently, transgene copy number and expression are estimated by Southern blot analysis of genomic DNA and Northern blot analysis of mRNA. We report a novel PCR-based method for determining transgene copy number and levels of transgene expression using competitive PCR between endogenous genomic genes and mutant transgenes followed by denaturing gradient gel electrophoresis (DGGE). We are able to accurately quantify a range of 1-10 copies of transgene incorporated per diploid genome. After reverse-transcribing RNA to cDNA, we are able to quantify levels of transgene mRNA that correlate with biochemical and histological evidence of transgene activity. In conclusion, resolving PCR and reverse transcription-PCR products by DGGE is a rapid and reproducible method that allows for accurate determination of transgene copy number and expression. This technique provides a more complete understanding of transgene effects.

Animals↗

Hodgkin's disease treated with neck radiation is associated with increased antibody-dependent cellular cytotoxicity against human extraocular muscle cells.

Patients with Hodgkin's disease have higher a prevalence of thyroid function abnormalities and, perhaps, orbitopathy than the general population, but the pathophysiology of this association and its relationship to Hodgkin's disease treatment remain unclear. We analyzed the frequency of thyroid function abnormalities, autoantibodies against thyroid antigens, and autoimmunity against extraocular muscle cell antigens by Western blot analyses and antibody-dependent cellular cytotoxicity (ADCC) assays in patients with Hodgkin's disease (n = 20) and controls (n = 10). Hodgkin's disease patients were subdivided into those treated with thyroidal external beam radiation therapy (XRT, n = 15) or chemotherapy (MOPP/ABVD, n = 5). The ADCC assay against extraocular muscle cells was increased in patients with Hodgkin's disease (5.5% vs. <1.0%, p = .026) when compared with controls. In addition, Hodgkin's disease patients treated with XRT (with or without chemotherapy) had significantly higher ADCC tests than controls (9.7% vs. <1.0%, p = .010), In contrast, ADCC assays were not different between Hodgkin's disease patients treated with chemotherapy alone and controls (<1.0% vs. <1.0%, p = .53). Hodgkin's patients treated with XRT had higher ADCC assays than those treated with chemotherapy alone (p = .087), although this difference did not achieve statistical significance. Serum measurements of antithyroid peroxidase (TPO) antibodies, antithyroglobulin (Tg) antibodies, thyroid binding inhibitory immunoglobulins (TBII), and thyroid stimulating immunoglobulin (TSI) were similar in all groups. Antibodies against the 64 kDa orbital antigen were detected in 1 patient and 1 control subject. Excluding patients already treated with L-thyroxine for hypothyroidism (n = 5), free T3, but not free T4, was lower in the Hodgkin's disease group than in controls (2.2 pg/mL vs. 2.7 pg/mL, p = .008). Thyrotropin (TSH) concentrations were not statistically different between these groups. In summary, these data show: (1) ADCC against human orbital muscle cells is increased in patients with Hodgkin's disease compared with controls: (2) these differences were noted among Hodgkin's disease patients treated with thyroidal XRT, with or without chemotherapy, and not among those patients treated with chemotherapy alone; and (3) no statistically significant differences in the frequency of thyroid autoantibodies were found. These data suggest that patients with Hodgkin's disease display altered antibody-dependent immune function toward extraocular muscle cells that may possibly be related to by XRT. Larger, prospective studies assessing thyroid and orbital-related immunologic abnormalities in Hodgkin's disease are warranted.

Adult↗

Augmented hepatic and skeletal thyromimetic effects of tiratricol in comparison with levothyroxine.

A thyroid hormone analog with organ-selective effects could have therapeutic application for disorders such as hyperlipidemia and osteoporosis. We performed a randomized clinical trial to determine the specific thyromimetic effects of tiratricol. Twenty-four athyreotic patients underwent detailed metabolic and physiological evaluation after a 2-month baseline period, taking TSH-suppressive doses of L-T4. They were then randomized to blinded treatment with either tiratricol (24 micrograms/kg twice daily) or L-T4 (1.9 micrograms/kg daily). The dose of hormone was increased until the TSH level was less than 0.1 mU/L, and the metabolic and physiological testing was repeated. Comparing the change from baseline to the study drug periods, when serum TSH levels were equivalently suppressed, there were no significant differences between the two groups in resting metabolic rate, weight, urea nitrogen excretion, or symptom score. Plasma total and low density lipoprotein cholesterol levels declined 13 +/- 4% and 23 +/- 6% in the tiratricol group compared with 2 +/- 2% and 5 +/- 3% in the L-T4 group (P = 0.015 and P = 0.0066, respectively). Serum sex hormone-binding globulin levels increased 55 +/- 13% with tiratricol compared with a 1.7 +/- 4% decline with L-T4 (P = 0.0006), indicating an augmented hepatic response to tiratricol. Skeletal metabolic activity was enhanced, with increased levels of serum osteocalcin and urinary excretion of calcium and pyridinium cross-links. Tiratricol and L-T4 had comparable effects on cardiovascular function. Tiratricol has distinct augmented hepatic and skeletal thyromimetic actions of potential therapeutic value.

Adult↗

Unusual types of thyroid neoplasms.

This article discusses several unusual forms of primary thyroid neoplasms. The TCV of PTC and insular thyroid carcinoma appears to have a more aggressive clinical behavior than DTC in most patient groups and may respond to thyroid hormone suppression and radioiodine. Anaplastic thyroid carcinoma, which may develop from differentiated thyroid tumors, has a poor prognosis which may be altered by surgery and radiation therapy but not typically by radioiodine and thyroid hormone suppression. Primary squamous cell carcinoma of the thyroid is an unusual entity that may be associated with a clinical syndrome that includes leukocytosis, fever, and hypercalcemia. Primary thyroid lymphoma is frequently associated with Hashimoto's thyroiditis and should be considered especially in older patients with rapidly enlarging thyroid masses. Although there are no studies assessing this issue, it seems reasonable that patients who have undergone thyroidectomy for neoplasms of thyroid cells that are poorly differentiated and do not concentrate radioiodine (e.g., squamous cell, anaplastic) should receive sufficient thyroid hormone suppression, if tolerated, to reduce TSH (third-generation assay) to approximately 0.1 to 0.3 mu U/mL, because TSH may be a growth factor. If, however, the tumor concentrates or responds to radioiodine, suggesting more differentiated cells (e.g., TCV, insular carcinoma), the target TSH level (third-generation assay) should range from 0.01 to 0.1 mu U/mL, as tolerated. Patients with primary thyroid neoplasms arising from cells other than thyrocytes (e.g., lymphoma) can be maintained at a TSH level of 0.5 to 1.5 mu U/mL. Our conclusions and analyses are often based upon small, retrospective, poorly controlled reports, and further studies are required to allow a better understanding of the evaluation and treatment of these neoplasms.

Adenomatous Polyposis Coli↗

Clinical implications of genetic defects in G proteins. The molecular basis of McCune-Albright syndrome and Albright hereditary osteodystrophy.

Inactivating and activating mutations in the gene encoding G alpha s (GNAS1) are known to be the basis for 2 well-described contrasting clinical disorders, Albright hereditary osteodystrophy (AHO) and McCune-Albright syndrome (MAS). AHO is an autosomal dominant disorder due to germline mutations in GNAS1 that decrease expression or function of G alpha s protein. Loss of G alpha s function leads to tissue resistance to multiple hormones whose receptors couple to G alpha s. By contrast, MAS results from postzygotic somatic mutations in GNAS1 that lead to enhanced function of G alpha s protein. Acquisition of the activating mutation early in life leads to a more generalized distribution of the mosaicism and is associated with the classic clinical triad of polyostotic fibrous dysplasia, endocrine hyperfunction, and café au lait skin lesions described in MAS. Acquisition of a similar activating mutation in GNAS1 later in life presumably accounts for the restricted distribution of the gsp oncogene, and is associated with the development of isolated lesions (for example, fibrous dysplasia, pituitary or thyroid tumors) without other manifestations of MAS. Tissues that are affected by loss of G alpha s function in AHO are also affected by gain of G alpha s function in MAS, thus identifying specific tissues in which the second messenger cAMP plays a dominant role in cell growth, proliferation, or function. Further investigations of the functions of G alpha s and other members of the GTPase binding protein family will provide more insight into the pathogenesis and clinical manifestations of human disease.

Adolescent↗

Diagnostic accuracy of 131I scanning with recombinant human thyrotropin versus thyroid hormone withdrawal in a patient with metastatic thyroid carcinoma and hypopituitarism.

The diagnostic and therapeutic use of radioactive iodine in patients with thyroid cancer requires a sufficient serum concentration of thyrotropin (TSH) for efficient thyroid tissue uptake of radioiodine. Recombinant human TSH (rhTSH) is a promising new agent, which appears to facilitate radioiodine scanning with similar efficacy to thyroid hormone withdrawal without the immunologic side-effects of bovine TSH (bTSH) administration. Patients with thyroid cancer and concomitant secondary hypothyroidism are particularly difficult to treat because of their inability to elevate endogenous TSH and the limitations of bTSH administration. We describe a patient with metastatic thyroid carcinoma and secondary hypothyroidism with metastases visible only after administration of rhTSH previously unappreciated on thyroid hormone withdrawal scans. This patient exemplifies the usefulness of rhTSH administration before radioactive iodine for this group of patients.

Carcinoma, Papillary↗