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Christina Kuhn

Publications and source records attributed to Christina Kuhn.

16 recordsLinked to original sources

Expression of the inhibin/activin subunits (-alpha, -betaA and -betaB) in normal and carcinogenic endometrial tissue: possible immunohistochemical differentiation markers.

Inhibins (INH) are dimeric glycoproteins, composed of an alpha-subunit (INH-alpha) and one of two possible beta-subunits (INH-betaA or -betaB), with substantial roles in human reproduction and in endocrine-responsive tumors. The aims of this study were to determine the frequency and tissue distribution of INH-alpha, -betaA and -betaB in normal and malignant endometria. Samples were obtained from normal (n=46), atrophic (n=8) and endometrioid carcinoma tissue (EC; G1=93; G2=32; G3=14). INH-alpha was significantly higher in normal compared to malignant endometrial tissue, showing a cyclical variation throughout the menstrual cycle. EC G3 did not express this subunit. INH-betaA and -betaB showed specific staining reactions within the tumor cells. The highest intensity of INH-betaA was observed in the normal secretory phase compared to adenocarcinomas (p<0.05). For INH-betaB, the significantly highest expression was noted in EC G3 compared to EC G2 (p<0.05) and atrophic endometrial tissue. In conclusion, INH-alpha, -betaA and -betaB were immunolabeled in normal and malignant endometria. INH-alpha was expressed in a declining relationship in the transition from normal to tumor tissue, suggesting a tumor suppressive function in EC. A high expression of INH-betaB was observed in EC G3 compared to G2, suggesting an important role in the progression of endometrial carcinogenesis. However, the utilization of these subunits as specific tumor markers still remains unclear.

Biomarkers, Tumor↗

Members of RTP and REEP gene families influence functional bitter taste receptor expression.

Functional characterization of chemosensory receptors is usually achieved by heterologous expression in mammalian cell lines. However, many chemoreceptor genes, including bitter taste receptors (TAS2Rs), show only marginal cell surface expression. Usually, these problems are circumvented by using chimeric receptors consisting of "export tags" and the receptor sequence itself. It seems likely that chemoreceptor cells express factors for cell surface targeting of native receptor molecules in vivo. For TAS2Rs, however, such factors are still unknown. The present study investigates the influence of RTP and REEP proteins on the functional expression of human TAS2Rs in heterologous cells. We expressed hTAS2Rs in HEK 293T cells and observed dramatic differences in responsiveness to agonist stimulation. By immunocytochemistry we show accumulation of the bitter beta-glucopyranoside receptor hTAS2R16 in the Golgi compartment. Coexpression of RTP and REEP proteins changed the responses of some hTAS2Rs upon agonist stimulation, which is likely due to efficient cell surface localization as demonstrated by cell surface biotinylation experiments. The coimmunoprecipitation of hTAS2R16 and RTP3 or RTP4 suggests that the mechanism by which these cofactors influence hTAS2R16 function might involve direct protein-protein interaction. Finally, expression analyses demonstrate RTP and REEP gene expression in human circumvallate papillae and testis, both of which are sites of TAS2R gene expression.

Animals↗

Binding of galectin-1 (gal-1) to the Thomsen-Friedenreich (TF) antigen on trophoblast cells and inhibition of proliferation of trophoblast tumor cells in vitro by gal-1 or an anti-TF antibody.

Galectin-1 (gal-1), a member of the mammalian beta-galactoside-binding proteins, recognizes preferentially Galbeta1-4GlcNAc sequences of several cell surface oligosaccharides. We demonstrate histochemically that the lectin recognizes appropriate glycotopes on the syncytiotrophoblast and extravillous trophoblast layer from second trimester human placenta and on BeWo chorion carcinoma cells. Gal-1 binding to BeWo cells was diminished by the Thomsen-Friedreich (TF)-disaccharide (Galbeta1-3GalNAc-) conjugated to polyacrylamide (TF-PAA). Gal-1 also inhibited BeWo cell proliferation in a concentration-dependent manner. Similar antiproliferative effects were also observed with an anti-TF monoclonal antibody (mAb, A78-G/A7). Therefore, we conclude that ligation of Galbeta1-4GlcNAc and Galbeta1-3GalNAc epitopes on BeWo cells may have regulatory effects on cell proliferation.

Antibodies↗

Expression of estrogen receptor-alpha, estrogen receptor-beta and placental endothelial and inducible NO synthase in intrauterine growth-restricted and normal placentals.

BACKGROUND: Nitric oxide seems to play important roles in the physiology of placental blood circulation, although their expression in pathological placentas and their role is still unclear. Therefore, the aim of this study was to investigate the expression of estrogen receptor alpha (ERalpha), estrogen receptor beta (ERbeta) and the endothelial NO synthase (eNOS) and inducible NO synthase (iNOS) in intrauterine growth-restricted (IUGR) placentas, hemolysis, elevated liver enzymes, low platelets (HELLP) placentas and in normal healthy control placentas. METHODS: Slides of paraffin-embedded placental tissue were obtained after delivery from patients diagnosed with IUGR, HELLP and normal term placentas and analyzed for eNOS and iNOS, as well as ERalpha/beta expression. Intensity of immunohistochemical reaction was analyzed using a semi-quantitative score, and statistical analysis was performed. In addition, Western blot experiments were performed for comparison of staining intensities obtained by immunohistochemistry and Western blot. RESULTS: Expression of eNOS and iNOS is significantly reduced in trophoblast cells of placentas with HELLP. However, ERbeta expression in HELLP placentas demonstrated a significantly elevated expression intensity compared to normal controls. ERalpha expression was not significantly different in all three pathologies investigated. CONCLUSIONS: We speculate that the increased ERbeta expression in both syncytiotrophoblast and extravillous trophoblast cells represents accelerated proliferation of placental tissue or can be seen as a compensatory effect in HELLP placentas.

Estrogen Receptor alpha↗

Glycodelin A is expressed differentially in normal human endometrial tissue throughout the menstrual cycle as assessed by immunohistochemistry and in situ hybridization.

OBJECTIVE: To [1] evaluate glycodelin A immunolabeling in normal endometrium with specific monoclonal (mAb) and polyclonal peptide (pAb) antibodies, [2] to assess glycodelin messenger RNA (mRNA) by in situ hybridization, and [3] to conduct deglycosylation experiments to evaluate the recognized epitope of the mAb vs. pAb. DESIGN: Retrospective immunohistochemical analysis. SETTING: University institute and hospital in Germany. PATIENT(S): Normal human endometrial tissue from the proliferative (PP), early secretory, and late secretory phases were obtained from patients undergoing surgery for benign diseases. INTERVENTION(S): Generation of a pAb in rabbit, immunohistochemistry, and in situ hybridization. MAIN OUTCOME MEASURE(S): Semiquantitative and computerized analysis. RESULT(S): A statistically significant increase of the glycodelin A immunolabeling in the late secretory phase compared with PP was demonstrated by using the mAb. Polyclonal-peptide antibody immunolabeling also showed a rise between the PP and late secretory phases, but without statistical significance. In situ hybridization demonstrated a statistically significantly higher mRNA content during the early secretory phase compared with during PP. CONCLUSION(S): Glycodelin was demonstrated in normal endometrium at the protein and mRNA levels. The mAb may be more useful in assessing glycodelin expression in endometrium, because it probably can bind to glycodelin A-unique glycan structures, in contrast to the peptide pAb. This is of major interest because it may reveal possible structural and functional relationships in different parts of this molecule and elucidate possible functions of this glycoprotein in human endometrial tissue.

Adult↗

Expression of the proliferation marker Ki-67 and of p53 tumor protein in trophoblastic tissue of preeclamptic, HELLP, and intrauterine growth-restricted pregnancies.

The human placenta owns the biochemical machinery to proliferate throughout gestation. The aim of this study was to investigate the expression of the proliferation marker Ki-67 in trophoblastic tissue of intrauterine growth retarded (IUGR) placentas, preeclamptic, HELLP, and in normal trophoblastic tissue. Slides of paraffin-embedded trophoblastic tissue of patients with IUGR, preeclamptic patients, HELLP patients, and normal term placentas were incubated with monoclonal antibodies against Ki-67 and p53. Staining reaction was performed with the ABC reagent. Intensity of immunohistochemical reaction on the slides was analyzed using a semiquantitative score. Identification of Ki-67-expressing cells was done by immunofluorescence double staining with Ki-67 and cytokeratin antibodies. Expression of Ki-67 and p53 are significantly elevated in cytotrophoblastic cells of placentas with HELLP as investigated by immunohistochemistry and double immunofluorescence. However, preeclamptic cytotrophoblastic tissue on the other hand showed no significantly different expression intensity of Ki-67 compared with normal placental tissue controls and no changes in p53 expression compared with controls. In IUGR cytotrophoblastic cells, we found no statistically significant change in Ki-67 expression but a statistically significant down-regulation of p53. An elevated proliferation of cytotrophoblastic cells seems to be related to HELLP, and this enhanced proliferation seems to be controlled by p53.

Antibodies, Monoclonal↗

Expression of endothelial NO synthase, inducible NO synthase, and estrogen receptors alpha and beta in placental tissue of normal, preeclamptic, and intrauterine growth-restricted pregnancies.

In the physiology of placental blood circulation, nitric oxide (NO) synthases seem to play important roles, although their expression in pathological placentas and their role is still unclear. In addition, NO synthase activation seems to be related to estrogen receptor expression. Therefore, the aims of this study were to investigate the expression of estrogen receptors alpha (ERalpha), estrogen receptor beta (ER and the endothelial NO synthase (eNOS), and inducible NO synthase (iNOS) in intrauterine growth-restricted (IUGR) placentas, preeclamptic placentas, and in normal healthy control placentas. Slides of paraffin-embedded placental tissue were obtained after delivery from patients diagnosed with IUGR, preeclampsia, and normal term placentas and analyzed for eNOS, iNOS as well as ERalpha and ERbeta expression. Intensity of immunohistochemical reaction was analyzed using a semiquantitative score and statistical analysis was performed. In addition, Western blot experiments were performed for comparison of staining intensities obtained by immunohistochemistry and western blot. Expression of eNOS, iNOS, and ERbeta is significantly reduced in trophoblast cells of placentas with IUGR. However, preeclamptic placentas demonstrated a significant elevated expression intensity of these proteins compared with normal controls. A different expression of eNOS, iNOS, ERalpha, and ERbeta by human trophoblast cells seems to results in lower NO output and impaired trophoblast invasion. Results obtained in our study provide evidence that reduced expression of the investigated proteins is related to IUGR.

Blotting, Western↗

The molecular basis of individual differences in phenylthiocarbamide and propylthiouracil bitterness perception.

Individual differences in perception are ubiquitous within the chemical senses: taste, smell, and chemical somesthesis . A hypothesis of this fact states that polymorphisms in human sensory receptor genes could alter perception by coding for functionally distinct receptor types . We have previously reported evidence that sequence variants in a presumptive bitter receptor gene (hTAS2R38) correlate with differences in bitterness recognition of phenylthiocarbamide (PTC) . Here, we map individual psychogenomic pathways for bitter taste by testing people with a variety of psychophysical tasks and linking their individual perceptions of the compounds PTC and propylthiouracil (PROP) to the in vitro responses of their TAS2R38 receptor variants. Functional expression studies demonstrate that five different haplotypes from the hTAS2R38 gene code for operatively distinct receptors. The responses of the three haplotypes we also tested in vivo correlate strongly with individuals' psychophysical bitter sensitivities to a family of compounds. These data provide a direct molecular link between heritable variability in bitter taste perception to functional variations of a single G protein coupled receptor that responds to compounds such as PTC and PROP that contain the N-C=S moiety. The molecular mechanisms of perceived bitterness variability have therapeutic implications, such as helping patients to consume beneficial bitter-tasting compounds-for example, pharmaceuticals and selected phytochemicals.

Animals↗

Leukaemia inhibitory factor (LIF) is immunohistochemically expressed in normal, hyperplastic and malignant endometrial tissue.

OBJECTIVE: Leukaemia inhibitory factor (LIF) is a pleiotrophic cytokine, which might play an important role in human reproduction and endocrine-responsive tumours. Therefore, the aim of this study was to determine the frequency and tissue distribution of LIF in normal, hyperplastic and malignant endometrium. STUDY DESIGN: Paraffin-fixed endometrial tissue was obtained from normal premenopausal women (n = 15), endometrial hyperplasia (n = 20), endometroid adenocarcinoma (n = 32) and endometrial polyps (n = 9). The LIF expression was demonstrated by immunohistochemical means and evaluated with a semi-quantitative immunoreactive score. The Mann-Whitney U-test was used for statistical evaluation. RESULTS: The lowest expression of LIF was observed in endometrial adenocarcinomas compared to all groups, while endometrial polyps expressed the highest LIF immunostaining. The expression in normal human glandular cells was significantly higher during the late secretory phase than in the proliferative phase. The highest expression of LIF was observed in endometrial polyps. Simple hyperplasia showed a significantly higher LIF expression than proliferative endometrium and adenocarcinoma. Adenomatous hyperplasia (AH) grade I-III had a significantly higher LIF expression than adenocarcinoma. The lowest expression of LIF was observed in adenocarcinoma, being statistically significant compared to all groups. CONCLUSION: LIF was immunohistochemically demonstrated in normal, hyperplastic and malignant endometrial tissue, suggesting a widespread but complex role for LIF in hyperplastic and malignant endometrial growth regulation. AH I-III also expressed LIF with statistically higher immunostaining than adenocarcinoma. Since AH III can be considered as a precursor of endometrial cancer, LIF could be a marker of cell transformation.

Adenocarcinoma↗

Inhibin/activin subunits (inhibin-alpha, -betaA and -betaB) are differentially expressed in human breast cancer and their metastasis.

Inhibins (INH) are dimeric glycoproteins, composed of an alpha-subunit (INH-alpha) and one of two possible beta-subunits (INH-betaA or -betaB). Aims of this study were to determine the frequency and tissue distribution of INH-alpha, -betaA and -betaB in breast cancer tissue. Paraffin-fixed ductal carcinoma in situ (DCIS; n=7), invasive ductal carcinomas without lymph node metastases (IDC; n=8), infiltrating ductal carcinomas with their lymph node metastases (IDC/LN; n=8), primary ductal carcinomas with their subsequent recurrence (n=7) were analyzed by immunohistochemical means with monoclonal antibodies against inhibin-alpha, -betaA and -betaB subunits. INH-alpha was observed in DCIS (5/7), while its expression was significantly higher in DCIS than IDC (1/7; p<0.05) and IDC/LN (0/8; p<0.005) and recurrent breast cancer tissue (0/7; p<0.005). The INH-betaA subunit was also demonstrated in all DCIS cases with a significantly higher intensity compared to IDC (p<0.05), IDC/LN (p<0.01) and primary carcinoma with subsequent recurrence (p<0.05). INH-betaA expression was significant higher in primary tumors with subsequent recurrence compared to IDC/LN (p<0.05). The metastatic lymph nodes expressed the lowest inhibin-betaA compared to all other groups (p<0.01). INH-betaB was also demonstrated in all mammary carcinoma tissues, but without any statistical differences. The differential expression of INH-alpha in DCIS might suggest a function as a tumor suppressor in breast tissue, suggesting a useful marker for recognizing patients with subsequent risk of developing invasive ductal cancer. The higher INH-betaA expression in DCIS than invasive cancer suggests an important role in mammary carcinogenesis. Interestingly, primary breast tumor with a subsequent recurrence expressed a higher intensity of the inhibin-betaA subunit, suggesting an important role in metastatic pathogenesis, and utilization as a tumor marker. The immunoreactivity of inhibin-betaA was significantly higher in DCIS than invasive ductal carcinomas, suggesting an important role in mammary carcinogenesis. The metastatic lymph nodes expressed lower INH-betaA and -betaB than the primary tumor, which might be the cause of less differentiated and aggressive tumor cells within the primary tumor. Therefore, inhibin/activin subunits might be useful prognostic markers for breast cancer.

Biomarkers, Tumor↗

Expression of glycodelin protein and mRNA in human ductal breast cancer carcinoma in situ, invasive ductal carcinomas, their lymph node and distant metastases, and ductal carcinomas with recurrence.

Glycodelin, previously known as PP14, has been localized in endometrial, ovarian and cervical carcinoma cells. Recently, glycodelin was demonstrated to be expressed in cancerous human breast tissue. In this study, paraffin-embedded slides of carcinoma in situ, invasive carcinomas without metastases, invasive carcinomas with corresponding lymph node metastases, invasive carcinomas with corresponding recurrence and invasive carcinomas with corresponding distant metastases were investigated for glycodelin protein and mRNA expression. Protein expression was found in all cases of carcinoma in situ, in invasive carcinoma without lymph node metastases in 90% of cases, in breast cancer with lymph node metastases in 50% of cases, in breast cancer with recurrence in 38% of cases and in breast cancer with distant metastases in 40% of cases. Results were confirmed by in situ hybridization showing reduced glycodelin expression as lymph node metastasis progressed, compared to carcinoma in situ. Glycodelin mRNA expression is not further reduced in carcinomas with distant metastasis and recurrence compared to carcinoma in situ. Results demonstrate that invasive breast carcinomas without metastases are more likely to express glycodelin. In contrast, cases of breast cancer with metastatic infiltration and recurrence show weak expression of glycodelin. On the basis of these results, we speculate that glycodelin could be used as a prognostic marker for breast cancer.

Adult↗

Bitter taste receptors for saccharin and acesulfame K.

Weight-conscious subjects and diabetics use the sulfonyl amide sweeteners saccharin and acesulfame K to reduce their calorie and sugar intake. However, the intrinsic bitter aftertaste, which is caused by unknown mechanisms, limits the use of these sweeteners. Here, we show by functional expression experiments in human embryonic kidney cells that saccharin and acesulfame K activate two members of the human TAS2R family (hTAS2R43 and hTAS2R44) at concentrations known to stimulate bitter taste. These receptors are expressed in tongue taste papillae. Moreover, the sweet inhibitor lactisole did not block the responses of cells transfected with TAS2R43 and TAS2R44, whereas it did block the response of cells expressing the sweet taste receptor heteromer hTAS1R2-hTAS1R3. The two receptors were also activated by nanomolar concentrations of aristolochic acid, a purely bitter-tasting compound. Thus, hTAS2R43 and hTAS2R44 function as cognate bitter taste receptors and do not contribute to the sweet taste of saccharin and acesulfame K. Consistent with the in vitro data, cross-adaptation studies in human subjects also support the existence of common receptors for both sulfonyl amide sweeteners.

Aristolochic Acids↗

Inhibin/activin subunits alpha, beta-A and beta-B are differentially expressed in normal human endometrium throughout the menstrual cycle.

Inhibins are dimeric glycoproteins composed of an alpha (alpha) subunit and one of two possible beta (beta-) subunits (betaA or betaB). The aims of this study were to assess the frequency and tissue distribution patterns of the inhibin subunits in normal human endometrium. Samples from human endometrium from proliferative phase (PP; n=32), early secretory phase (ES; n=10) and late secretory phase (LS; n=12) were obtained. Immunohistochemistry, immunofluorescence and a statistical analysis were performed. All three inhibin subunits were expressed by normal endometrium by immunohistochemistry and immunofluorescence. Inhibin-alpha was primarily detected in glandular epithelial cells, while inhibin-beta subunits were additionally localised in stromal tissue. Inhibin-alpha staining reaction increased significantly between PP and ES (P<0.05), PP and LS (P<0.01), and ES and LS (P<0.02). Inhibin-betaA and -betaB were significant higher in LS than PP (P<0.05) and LS than ES (P<0.05). All three inhibin subunits were expressed by human endometrium varying across the menstrual cycle. This suggests substantial functions in human implantation of inhibin-alpha subunit, while stromal expression of the beta subunits could be important in the paracrine signalling for adequate endometrial maturation. The distinct expression in human endometrial tissue suggests a synthesis of inhibins into the lumen and a predominant secretion of activins into the stroma.

Blotting, Western↗

The human taste receptor hTAS2R14 responds to a variety of different bitter compounds.

The recent advances in the functional expression of TAS2Rs in heterologous systems resulted in the identification of bitter tastants that specifically activate receptors of this family. All bitter taste receptors reported to date exhibit a pronounced selectivity for single substances or structurally related bitter compounds. In the present study we demonstrate the expression of the hTAS2R14 gene by RT-PCR analyses and in situ hybridisation in human circumvallate papillae. By functional expression in HEK-293T cells we show that hTAS2R14 displays a, so far, unique broad tuning towards a variety of structurally diverse bitter compounds, including the potent neurotoxins, (-)-alpha-thujone, the pharmacologically active component of absinthe, and picrotoxinin, a poisonous substance of fishberries. The observed activation of heterologously expressed hTAS2R14 by low concentrations of (-)-alpha-thujone and picrotoxinin suggests that the receptor is sufficiently sensitive to caution us against the ingestion of toxic amounts of these substances.

Bicyclic Monoterpenes↗

Immunohistochemical analysis of estrogen receptor alpha, estrogen receptor beta and progesterone receptor in normal human endometrium.

The endometrium expresses estrogen (ER) and progesterone receptors (PR), which are involved in autocrine and paracrine regulation processes in response to estrogen and progesterone. The aim of the present study was to evaluate immunohistochemical distribution patterns of estrogen receptor alpha (ER alpha), estrogen receptor beta (ER beta) and PR in normal human endometrial tissue with the use of monoclonal antibodies. Human endometria were obtained from 17 premenopausal patients undergoing surgery for non-malignant diseases and were classified to be in proliferative, early secretory and late secretory phases by histological and anamnestical means. Distribution patterns of the steroid receptors were evaluated using the IRS-score and the Mann-Whitney rank-sum test was used to compare the means. Correlation was assessed with the Spearman factor and linear regression analysis. ER alpha and PR expression decreased significantly (p<0.05) in glandular epithelium from the proliferative to the late secretory phase. ER beta expression showed a similar significant decrease (p<0.05), although staining intensity was lower than that of ER alpha. A significant correlation between expression of all three steroid receptors was observed (p<0.001). Distribution patterns of ER alpha, ER beta and PR in normal human endometrium showed a cyclic variation during the menstrual cycle. A significant correlation between expression of ER alpha, ER beta and PR was also demonstrated using regression analysis, indicating dependence of expression of these three steroid receptors. The present study shows the presence of steroid receptors in human endometrial epithelium, indicating that these cells respond to estrogen and progesterone and thus playing a significant role in endometrial physiology.

Endometrium↗