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Biomedical subjects

H Studer

Publications and source records attributed to H Studer.

At least 19 recordsLinked to original sources

Malignant transformation of rat thyroid cells transfected with the human TSH receptor cDNA.

Growth and function of well differentiated FRTL-5 thyroid cells depend on thyrotropin as its main regulatory hormone. We demonstrate here that stable transfection of FRTL-5 cells with the human thyrotropin receptor cDNA results in cellular transformation of these cells with altered cell shape and loss of contact inhibition. The transformed cells replicate in soft agar and form invasive tumors when cell suspensions are implanted onto nude mice. They have lost their thyrotropin dependent growth and their ability to concentrate iodide and synthesize thyroglobulin. But they still express the rat thyrotropin receptor mRNA and accumulate cAMP in response to thyrotropin stimulation. However, although the full length human thyrotropin receptor cDNA is integrated into their genome, transformed cells do not express the human thyrotropin receptor mRNA.

Animals

Effect of human thyroid stimulating autoantibodies on the radioiodine uptake of the mouse thyroid gland.

Administration of sera from patients with active Graves' disease to nude mice bearing human thyroid xenografts provides the opportunity to compare directly the effects of TSAb on thyroid tissue of different species. The results presented in this paper, namely the fact that only one of 8 Graves' sera increased the RAIU of the nu/nu mouse thyroids modestly while all sera increased the RAIU in the transplanted human tissue considerable, clearly show a species specific effect of TSAb.

Animals

Clonal analysis of human tumors with M27 beta, a highly informative polymorphic X chromosomal probe.

The clonality of human tumors can be studied by X inactivation/methylation analysis in female patients heterozygous for X-linked DNA polymorphisms. We present a detailed study on clonal tumor analysis with M27 beta, a highly informative probe detecting a polymorphic X chromosomal locus, DXS255. The polymorphism detected at this locus is due to variable numbers of tandem repeats. The rate of constitutional heterozygosity detected by M27 beta was 88%. Normal tissue from gastrointestinal mucosa and thyroid showed random, hence polyclonal, patterns. Nonrandom clonal X inactivation was detected in all 22 malignant neoplasms that had been shown to be clonal by other DNA markers, such as antigen receptor gene rearrangements or clonal loss of heterozygosity at 17p and other loci. 16/48 normal blood leukocyte samples (33%) showed considerably skewed X inactivation patterns. Comparison of blood leukocytes and normal tissue indicated that in a given individual, X inactivation patterns may be tissue specific. M27 beta was used to study the clonal composition of 13 benign thyroid nodules from 12 multinodular goiters with rapid recent growth, traditionally termed "adenomas." Nine of them were clonal, whereas four nodules and tissue from a case of Graves' goiter were not, indicating that some, but not all, such thyroid nodules may represent true clonal neoplasms. The M27 beta probe permits one to study the clonal composition by the X inactivation approach of a wide variety of solid tumors from most female patients. As a control, normal tissue homologous to the tumor type of interest is preferable to DNA from blood leukocytes, since the latter may show nonrandom X inactivation patterns in a fairly high proportion of cases. M27 beta may, therefore, be of limited use for the clonal analysis of neoplasms derived from hematopoietic cells.

Clone Cells

Acute suppression of albumin synthesis in systemic inflammatory disease: an individually graded response of rat hepatocytes.

The effects of an inflammatory insult on albumin of the rat liver were investigated at the cellular level and were correlated with serum albumin concentration. After SC injection of turpentine, the livers were perfused and fixed in vivo; serial liver sections were stained using a streptavidin-ABC-immunoperoxidase technique with an antibody to rat albumin. Albumin and total protein were measured at intervals after turpentine injection in whole livers and in serum. Fibrinogen was determined in plasma only. Twenty-four hours after turpentine injection serum albumin had dropped by 25% and was at 50% of its initial value at Day 3. Serum fibrinogen increased 2.4-fold within 24 hr and decreased thereafter. Liver homogenates showed no significant changes in albumin concentration. Immunohistochemically, all hepatocytes stained positive for albumin in normal animals. During inflammation, the immunostainable albumin content vanished entirely in a majority of all hepatocytes while remaining unchanged in other cells, thus producing a strikingly patchy staining pattern. No signs of resumption of albumin accumulation in depleted hepatocytes were seen after 8 days, despite a clear trend towards normalization of serum albumin concentration. These results suggest that individual hepatocytes differ widely in their response to agents that suppress albumin synthesis in an acute-phase reaction.

Animals

Histomorphological and immunohistochemical evidence that human nodular goiters grow by episodic replication of multiple clusters of thyroid follicular cells.

This study was aimed at dissecting the cellular mechanisms that underly the growth of actively expanding human goiter nodules. Thirty-two nodules from different patients, all removed because of steady recent growth, were serially sectioned and screened for 1) histomorphological signs of cell proliferation and 2) in situ expression of the immunohistochemically stained p21ras protooncogene product. Bovine, porcine, and rat thyroid glands (the latter from both T4- and perchlorate-treated animals) were used as controls. In normal glands, only a few follicular cells contain substantial amounts of stainable p21ras. Some of these cells are unusually large, but do not proliferate. In contrast, all goiter nodules contain areas where the epithelial cells are morphologically grossly altered and heavily loaded with p21ras. Cells of this type are mostly clustered in large cohorts coating whole follicles or entire groups of follicles. Only a small fraction of these activated cells actually proliferates at any one point in time. Actively replicating cells are scattered in tiny foci all over the nodules. The earliest proliferating buds are solid, but soon begin to generate microfollicles that enlarge by adding new cells to the follicular epithelium. Regionally heterogeneous p21ras content in morphologically identical cells suggests that growth occurs in bursts and waves. We conclude that goiter nodules grow by episodic proliferation of heterogeneous cohorts of epithelial cells from which new follicles are generated. Only a tiny fraction of all goiter cells proliferate at any one point in time. The molecular mechanisms governing these growth processes are unknown.

Adolescent

Autonomous growth and function of cultured thyroid follicles from cats with spontaneous hyperthyroidism.

Spontaneous feline hyperthyroidism is a unique experimental model of toxic nodular goiter. To determine whether feline toxic goiter is caused by extrathyroidal stimulating factors or by the intrinsic autonomy of follicular cells, primary cultures of enzymatically dissociated follicles from 15 hyperthyroid cat goiters and from 3 normal cat thyroid glands were embedded in collagen gels. Growth and function in chemically defined media were assessed by autoradiography after double labeling with 3H-thymidine and 131I-Na. Iodine organification in follicles from normal glands was TSH dependent, but intense radioiodine organification occurred in follicles from hyperfunctioning goiters even in the absence of TSH. Similarly, twice as many follicular cells of hyperfunctioning thyroid tissue, maintained without TSH in the medium, were labeled after exposure to 3H-thymidine than in follicles from normal glands. The results strongly suggest that intrinsic alterations of cell function lead to autonomy of follicular growth and function and subsequently to the development of hyperplastic nodules, causing thyrotoxicosis. The reason for the focal nature of the disease remains an unresolved challenge. Further investigation using this model may further understanding of the growth of autonomous endocrine tumors.

Animals

Comparison of FRTL-5 cell growth in vitro with that of xenotransplanted cells and the thyroid of the recipient mouse.

The present work was designed to compare in vitro cell growth kinetics with in vivo growth under conditions as similar as possible using labeling with [3H]thymidine. To this purpose, FRTL-5 cells were cultured as monolayers and as three-dimensional spheroids embedded in collagen gels and transplanted simultaneously into nude mice treated with perchlorate and a low iodine diet. The growth of the transplants was compared to that of the thyroids in host mice. In the intact thyroid, the fraction of [3H]thymidine-labeled follicular cells (FLC; 24-h labeling) increased sluggishly to a maximum of 10% after 3 weeks of goitrogen exposure, with a subsequent autoregulatory decrease to 3% at 7 weeks. A 4-fold higher FLC was found in six adenomas, indicating focal failure of growth-restraining mechanisms. In nonconfluent monolayer cultures the FLC was as high as 90%, even within large individual clusters where cells are in tight mutual contact. Solid, highly cellular grafts growing from transplanted monodispersed cells showed an average FLC of 20%, which is 5 times higher than the FLC in the identically stimulated mouse thyroid. In collagen-embedded cells, forming three-dimensional spheroids, the mean FLC decreased from 70% at 1 week in vitro (40% in vivo) to 20% at 3 weeks both in vitro and in vivo, suggesting effective auto-regulation of excessive growth in both conditions. However, these FLC were again much higher than the 3% FLC in simultaneously assessed host thyroids. The difference remained throughout the 45-day period studied. We conclude that FRTL-5 cells growing as monolayers and as three-dimensional spheroids in vitro or after xenotransplantation in vivo invariably show much higher proliferation rates under comparable environmental conditions than the normal follicular epithelium in the thyroids of host mice. The one exception is the confluent monolayer with near-zero growth, while densely packed three-dimensional transplants still grow intensively. Although growth-retarding cell to cell interactions are also clearly operative in growing FRTL-5 cells, they are less effective than those dampening the replication rate of the thyrocytes within the monolayer hull of normal follicles. A local failure of these mechanisms, allowing growth rates comparable to those of grafted FRTL-5 cells results in adenoma formation in normal thyroids. These observations call for caution in the transfer of in vitro growth studies with FRTL-5 cells to in vivo conditions prevailing in the normal thyroid.

Adenoma

Thyroid cell lines in research on goitrogenesis.

Thyroid cell lines have contributed a lot to the understanding of goitrogenesis. The cell lines mostly used in thyroid research are briefly discussed, namely the rat thyroid cell lines FRTL and FRTL-5, the porcine thyroid cell lines PORTHOS and ARTHOS, The sheep thyroid cell lines OVNIS 5H and 6H, the cat thyroid cell lines PETCAT 1 to 4 and ROMCAT, and the human thyroid cell lines FTC-133 and HTh 74. Chinese hamster ovary (CHO) cells and COS-7 cells, stably transfected with TSH receptor cDNA and expressing a functional TSH receptor, are discussed as examples for non-thyroidal cells, transfected with thyroid genes.

Animals

Generation of intercellular heterogeneity of growth and function in cloned rat thyroid cells (FRTL-5).

The most characteristic hallmarks of human nodular goiters are nodular growth and heterogeneity of structure and function between different areas of the same goiter. In search of the earliest detectable stage of thyroid heterogeneity we have observed doubling times, TSH dependency, and thyroglobulin production in colonies formed from individual FRTL-5 cells growing as monolayers in slide flasks. Single cells and the colonies derived thereof were followed on photographs taken daily until confluence. We observed that each cell had its individual stable multiplication rate throughout the observation period. This was true for all TSH doses tested (0.625-10 mU/ml). A wide range of doubling times (20 h to almost infinite) in the individual cells was observed. The mean growth velocity of subcloned cell lines was highly reproducible in consecutive passages, although a minority of cells escaped this rule. Cells with either high or low thyroglobulin content occurred in clusters, indicating again that specific traits tend to remain stable in the offspring. We conclude that a highly individual growth program, unrelated to mutation, appears to be switched on at the very moment a cell is generated and that this program is passed on to the majority of the offspring, with a minority of cells acquiring qualities differing from those of their sister cell. Therefore, goiter heterogeneity may be the in vivo amplification of a natural phenomenon occurring in all growing cells. Monoclonal adenomas in vivo and nontransformed immortal cell lines in vitro may represent the far end of the large spectrum of individual growth potency among normal thyrocytes.

Animals

Intercellular propagation of individually programmed growth bursts in FRTL-5 cells. Implications for interpreting growth factor actions.

Five methods are commonly used to quantify FRTL-5 cells' and other thyrocytes' growth in vitro and the impact of growth inhibiting or stimulating maneuvers: Total cell count, mitotic index, DNA measurement, total [3H]thymidine incorporation, and the fraction of [3H]thymidine labeled cells. All of them assess cell growth as though all cells were homogeneous with an identical response to growth factors. We demonstrate here that this assumption is not valid. Rather, some intrinsically growth-prone cells appear to pass a growth signal to neighboring cells so that variably sized colonies of synchronized cells within each cluster growing from monodispersed cells are formed. This is true for FRTL-5 cells growing in vitro in monolayers and in three-dimensional, collagen embedded spheroids. The pattern is the same when cell suspensions or collagen-embedded spheroids are implanted onto nude mice. Patches with alternating high and low growth become particularly prominent in the large tumor-like organoids grown from monodispersed cells in nude mice. The pattern much reminds of similar observations in growing intact thyroids. Since there is no significant correlation between the fraction of [3H]thymidine labeled cells and the size of two- or three-dimensional clusters in any experiment, growth of signal-spreading cells is assumed to occur in leaps and bounds. Growth velocity in each subclone of a cell population depends on the mean interval between bursts of replications and on the number of cells synchronized by cell-to-cell diffusion of the growth signal emanating from one dividing cell. Thus, growth-promoting and growth-inhibiting factors may not only act on the mean interval between successive growth bursts, but they may also change cell-to-cell spreading of growth signals.

Animals

Cold follicles in a multinodular human goiter arise partly from a failing iodide pump and partly from deficient iodine organification.

To investigate whether the common cold follicles in human multinodular goiters are the consequence of a functional defect of the apical membrane peroxidase, a failure of the iodide transport system, or both deficiencies, we studied iodide accumulation and iodine organification in 30 fragments of a large multinodular goiter transplanted to nude mice and labeled with 125I. Transplants were frozen to -80 C immediately after removal to avoid diffusion of inorganic iodide. Autoradiographic assessment of over 1000 cryosections (exposed either at -20 C or after thawing and washing out unbound iodide) showed two types of cold follicles, namely those that failed to accumulate iodide and, therefore, did not organify iodine, and those that readily accumulated iodide but failed to bind it, suggesting a failure of apical membrane peroxidase. The two types of pathogenetically different cold follicles coexisted in an apparently randomly intermingled fashion throughout the whole goiter.

Aged

[The transformation of Basedow's struma into nodular goiter: a reason for recurrence of hyperthyroidism].

Graves' disease is characterized by a diffuse and homogeneously hyperfunctioning goiter, presumably caused by thyroid stimulating, TSH-receptor directed antibodies (TRAB). However, in many patients the serum concentration of TRAB is in no way parallel to the severity of the clinical course of Graves' hyperthyroidism. In particular, hyperthyroidism may persist or repeatedly relapse over many years despite the absence of high TRAB titers. The present study summarizes the existing evidence that this course of Graves' disease may be due to gradually evolving autonomously growing and functioning micro- or macronodules within the originally diffuse goiter.

Adult

Slow growth but intense hypertrophy of thyrocytes in long-standing Grave's goitres.

In order to evaluate the relative contribution of true cell replication, in comparison to mere cell hypertrophy, to the notoriously slow growth of toxic Graves' goitres persistently exposed to TSH receptor antibodies and requiring continuous thyrostatic treatment for more than one year, we have determined the fraction of dividing cells in 8 such goitres, using the monoclonal antibody Ki-67. This antibody identifies cells in late G1-, S-, G2- and M-phase. The fraction of Ki-67 positive cells ranged from 0.1 to 4.1% with a mean of 2.3 +/- 1.6. The apparently low absolute number of dividing cells is in full accordance with growth rates observed in multinodular goitres and in benign tumours of thyroidal and non-thyroidal origin. It is compatible with continuous, intense growth stimulation of the gland, particularly since thyrocytes may down-regulate their growth response when exposed to chronic stimulation. The observations account for the clinical observation that goitres, and in particular Graves' goitres, may take years to double their total mass of thyrocytes, whereas cell hyperplasia and functional overactivity (if untreated) continue unabated.

Adult

Autonomous growth, but not autonomous function, in embryonic human thyroids: a clue to understanding autonomous goiter growth?

Thyroid glands from six 8- to 10-week-old fetuses obtained at the time of legal abortion were cryopreserved in liquid nitrogen and transplanted into nude nu/nu mice. Histological and autoradiographic studies of the grafts labeled with [3H]thymidine and [125I]iodine showed proliferation and functional differentiation of the fetal thyroid tissue. Despite T4-mediated suppression of host TSH secretion, up to 36% of the follicular cell nuclei incorporated the thymidine label, reflecting autonomous proliferation, while iodine organification was almost entirely obliterated. Methimazole-induced TSH hypersecretion readily stimulated both growth and function of the transplanted tissue. Thus, during early development, the human thyroid largely depends on TSH for function, but not for growth. Similar findings were obtained in newborn mice, in whom 58% of the thyroid follicular cells proliferated autonomously, i.e. in the absence of TSH. The number of autonomously proliferating cells gradually declined with increasing age to about 1% in 60-day-old animals and, as reported previously, in xenotransplanted normal human thyroid tissue, whereas the number of autonomously proliferating cells was previously found to be several times higher in xenotransplanted human multinodular goiters. We, therefore, hypothesize that the rapidly and autonomously replicating cells that initiate nodule formation in human multinodular goiters reflect the persistence in the adult gland of cells with fetal growth potential.

Age Factors

Can serum thyroglobulin predict the effect of thyroid hormone therapy on goitre growth?

Serum thyroglobulin and goitre size were followed in 22 patients with simple goitre or single thyroid nodules during 9 months of thyroxine therapy, to see whether alterations in serum thyroglobulin correlated with changes in goitre size. In the case of such a correlation serum thyroglobulin could be used to predict which goitres respond to thyroxine therapy and which require surgery. Pretreatment serum thyroglobulin was elevated in 11 patients. It normalized in one of 7 patients whose goitre did not shrink and in none of the 4 patients whose goitre shrank during thyroxine treatment. Thus no simple correlation exists between alterations in serum thyroglobulin and goitre size during short-term thyroxine therapy. Since other studies suggest that increased serum thyroglobulin indicates ongoing goitre growth, thyroxine treatment might have been unsuccessful in all patients with persistently elevated serum thyroglobulin with a longer follow-up. The presence of predominantly thyroxine responsive tissue together with some autonomously growing, thyroglobulin-releasing areas in the same goitre could explain the failure of serum thyroglobulin to normalize in patients whose goitre shrank during therapy. The study shows that after eradication of iodine deficiency, thyroxine treatment is rarely successful in the Swiss goitre population and that surgical treatment is usually required.

Adult