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Biomedical subjects

Ruth Knuechel

Publications and source records attributed to Ruth Knuechel.

33 records · Page 2Linked to original sources

Fluorescence in situ hybridization detects frequent chromosome 9 deletions and aneuploidy in histologically normal urothelium of bladder cancer patients.

Investigation of early urothelial lesions is essential to gain insight into the development of bladder cancer. In order to evaluate if deletions of chromosome arms 9p and 9q are preceding histomorphological changes in the urothelium, histologically normal urothelial samples of patients with previous and/or simultaneous (pre)malignant urothelial lesions were investigated. Dual colour fluorescence in situ hybridization (FISH) was performed on 96 histologically inconspicuous urothelial biopsies from 41 patients. Centromeric probes for chromosomes 9 and 17 were combined with gene locus specific probes for 9p21 (p16/CDKI2), 9q22 (FACC) and 17p (p53). Deletions of chromosome 9 (defined as presence of only one copy of centromere 9 or fewer gene-specific than centromeric signals in at least 40% of evaluated cells) were found in 21% of the samples (18/87). Deletions of chromosome 9p were present in 16% of cases (14/89), whereas deletions of chromosome 9q were encountered in 10% of specimens (9/93). A hemizygous deletion of p53 was found only once. Polysomy in more than 10% of cells was encountered in 16% of cases for both chromosome 9 and chromosome 17. Non-diploidy (defined as polysomy of both chromosomes) was found in 6% of samples (5/80). In summary, chromosome 9 deletions are frequently found in histologically normal urothelium of patients with bladder cancer, although less frequently than in hyperplasias and dysplasias. These findings support the hypothesis of multi-focal development of bladder cancer from histologically inconspicuous but already genetically altered urothelium. FISH analysis of chromosome 9 regions could provide a useful tool to detect potentially premalignant lesions in the follow-up care of patients with bladder cancer.

Aneuploidy↗

Tumor-associated fibroblasts recruit blood monocytes into tumor tissue.

Tumor-associated fibroblasts (TAF) and tumor-associated macrophages are the main stromal components in desmoplastic breast tumors. These host cell types were extensively studied individually with regard to tumor development and progression but little is known about their reciprocal interactions. To elucidate the role of TAF in the recruitment of monocytes (MO) we designed a 3D co-culture system of multicellular fibroblast spheroids of different origin, co-cultured with MO suspensions from healthy donors. Spheroids of tumor-derived but not of normal fibroblasts were extensively infiltrated by MO. A linear correlation between number of infiltrated MO and number of MO applied per spheroid was shown, indicating a distinct migratory MO subpopulation (approximately 15%) within the peripheral blood MO pool. Our data imply that MO migration into fibroblastic tumor areas may partially result from high expression of CCL2 (monocyte chemotactic protein-1), which was regulated by endogenous IL-6 as shown by neutralization experiments. The effect of CCL2 on MO migration was inhibited by CCL2 neutralizing antibody in tumor-derived fibroblast conditioned media in a Boyden chamber migration assay but not in spheroid culture. While this phenomenon needs further evaluation, our data clearly support the concept of fibroblasts as "sentinel cells" relevant for tumor progression.

Breast Neoplasms↗

WIF1, a component of the Wnt pathway, is down-regulated in prostate, breast, lung, and bladder cancer.

To detect novel Wnt-pathway genes involved in tumourigenesis, this study analysed the RNA expression levels of 40 genes of the Wnt pathway by chip hybridization of microdissected matched pairs of 54 primary prostate carcinomas. Eleven genes showed greater than two-fold differential expression in at least 10% of prostate cancers. Three of these genes encode extracellular components of the Wnt pathway (WNT2, WIF1, SFRP4); two are receptors (FZD4, FZD6); two belong to the intracellular signal cascade (DVL1, PPP2CB); one regulates transcription (TCF4); and three represent genes regulated by this pathway (CCND2, CD44, MYC). While SFRP4, FZD4, FZD6, DVL1, TCF4, and MYC are up-regulated, WIF1, WNT2, PPP2CB, CCND2, and CD44 are down-regulated in certain prostate cancer patients. Wnt inhibitory factor 1 (WIF1) and secreted frizzled related protein (SFRP4) showed the most significant aberrant expression at the RNA level. WIF1 was down-regulated in 64% of primary prostate cancers, while SFRP4 was up-regulated in 81% of the patients. Immunohistochemical analysis using a polyclonal antibody revealed strong cytoplasmic perinuclear WIF1 expression in normal epithelial cells of the prostate, breast, lung, and urinary bladder. Strong reduction of WIF1 protein expression was found in 23% of prostate carcinomas, but also in 60% of breast, 75% of non-small cell lung (NSCLC), and 26% of bladder cancers analysed. No significant association between WIF1 down-regulation and tumour stage or grade was observed for prostate, breast or non-small cell lung carcinomas, indicating that loss of WIF1 expression may be an early event in tumourigenesis in these tissues. However, down-regulation of WIF1 correlated with higher tumour stage in urinary bladder tumours (pTa versus pT1-pT4; p = 0.038).

Adaptor Proteins, Signal Transducing↗

Intracellular localization is a cofactor for the phototoxicity of protoporphyrin IX in the gastrointestinal tract: in vitro study.

Photodynamic therapy (PDT) is a new treatment modality for solid tumors as well as for flat lesions of the gastrointestinal tract. Although the use of 5-aminolevulinic acid-induced protoporphyrin IX (PPIX) shows important advantages over other photosensitizers, the main mechanisms of phototoxicity induced are still poorly understood. Three human colon carcinoma cell lines with variable degrees of differentiation and a normal colon fibroblast cell line were used to generate a suitable in vitro model for investigation of photosensitizer concentration as well as the applied light dose. Also, the effects of intracellular photosensitizer localization on efficiency of PDT were examined, and cellular parameters after PDT (morphology, mitochondrial transmembrane potential, membrane integrity and DNA fragmentation) were analyzed to distinguish between PDT-induced apoptosis from necrosis. The fibroblast cell line was less affected by phototoxicity than the tumor cells to a variable degree. Well-differentiated tumor cells showed higher toxicity than less-differentiated cells. After irradiation, cell lines with cytosolic or mitochondrial PPIX localization indicate a loss of mitochondrial transmembrane potential resulting in growth arrest, whereas membrane-bound PPIX induces a loss of membrane integrity and consequent necrosis. Although the absolute amount of intracellular photosensitizer concentration plays the main determining role for PDT efficiency, data indicate that intracellular localization has additional effects on the mode of cell damage.

Adenocarcinoma↗

Molecular genetic analysis excludes implantation metastasis of basal cell carcinomas.

Basal cell carcinoma (BCC) of the skin is the most common tumor in the white population. A 66-year-old man developed 2 BCCs at the left parietal region of the head and at the helix of the left ear. The 2 lesions matched exactly when pressing the ear against the head, suggesting an implantation metastasis mechanism. Molecular genetic techniques were used to confirm or exclude such a mechanism in this rare clinical constellation. Tumor tissues were precisely microdissected for DNA isolation. Exons 5-9 of the p53 tumor suppressor gene were directly sequenced. In addition, loss of heterozygosity analysis of chromosome 9q was performed using 5 polymorphic microsatellite markers. The BCC of the ear revealed a p53 mutation at codon 273, whereas the other one lacked this mutation. In addition, the smaller BCC of the ear showed loss of heterozygosity at 9q33.3, in contrast with the larger BCC. Interestingly, histologically normal skin of the ear distant from the small BCC had the same deletion, indicating a field defect of this skin patch at 9q33.3. Molecular genetic analysis clearly demonstrated different genetic alterations of the two BCCs and therefore most likely excludes a mechanism of implantation metastasis.

Aged↗

Frequent microsatellite instability in sporadic tumors of the upper urinary tract.

Urothelial carcinoma of the renal pelvis and ureter may develop sporadically or as a manifestation of hereditary nonpolyposis colorectal cancer. The majority of hereditary nonpolyposis colorectal cancer is caused by mutation of the human DNA mismatch repair (MMR) genes and is detected by associated microsatellite instability (MSI). Seventy-three unselected urothelial carcinomas of the ureter and/or renal pelvis were screened for MSI using the National Cancer Institute-designated reference panel (plus BAT40). Instability of at least two microsatellite markers (MSI-high) was detected in 15 samples (21%). Immunohistochemical staining of the MMR proteins (hMSH2, hMLH1, or hMSH6) was absent in 13 of 15 (87%) MSI tumors, and alteration of coding sequence microsatellites (TGFbetaRII, Bax, hMSH3, and hMSH6) was found at frequencies of 7-33% in these samples. Tumors with MSI had significantly different clinical and histopathological features including higher prevalence in female patients, low tumor stage and grade, and a papillary and frequently inverted growth pattern. Our results suggest a molecular pathway of tumorigenesis that is similar to MMR-deficient colorectal cancers and consistent with the notion that the site distributions of hereditary or sporadic MSI-high tumors may reflect tissue-specific susceptibility to lesions processed by the MMR machinery.

Adaptor Proteins, Signal Transducing↗

Three-dimensional fibroblast-tumor cell interaction causes downregulation of RACK1 mRNA expression in breast cancer cells in vitro.

Fibroblasts are the most abundant stromal cell type in desmoplastic ductal invasive breast tumors, are a substrate of tumor cell invasion and modify tumor cell behavior. However, the complex interaction between tumor cells and fibroblasts remains incompletely understood. Our aim was to identify candidate genes in tumor cells that are affected by fibroblasts and to reveal new molecules involved in this heterologous interaction. To reflect the in vivo situation, a 3-D multicellular spheroid coculture model of breast tumor cells and fibroblasts was combined with cell separation technology (MACS and FACS) and molecular analyses, including RAP-PCR, semiquantitative RT-PCR and reverse Northern blotting. Three tumor cell lines (BT474, T47D and MCF-7) with different invasive potential were applied in coculture with normal skin and/or breast tumor-derived fibroblasts. With the techniques mentioned, 18 different bands in the tumor cDNA band pattern of mono- as opposed to cocultures were identified. One of the mRNAs is considered worth further analysis: rack1. Rack1 mRNA was reproducibly suppressed in tumor cells following interaction with fibroblasts. Downregulation was recorded in all tumor cell lines and for cocultures with both types of fibroblast. This indicates a general regulatory mechanism between epithelial tumor cells and fibroblasts, which may be an interesting tumor cell differentiation-independent target for therapy.

Base Sequence↗

Role of 5-aminolevulinic acid in the detection of urothelial premalignant lesions.

BACKGROUND: The authors evaluated the role of 5-aminolevulinic acid (5-ALA)-induced fluorescence endoscopy (AFE) in the detection of flat urothelial lesions in light of the suggestions made for flat neoplastic lesions within the 1999 World Health Organization (WHO) classification of urinary bladder tumors. METHODS: From 1995 to 2000, 713 patients underwent 1414 AFE procedures for the detection of transitional cell carcinoma of the bladder (TCCB). Fluorescence imaging was performed with an incoherent light source (D-light; 380-440 nm) that was filtered for efficient protoporphyrin IX excitation and with cystoscopes partially blocking reflected excitation light to enable fluorescence evaluation by a red/blue color contrast 2-3 hours after 50 mL of a 3% solution of 5-ALA was instilled into the bladder. In total, 3834 biopsy specimens (mean, 2.7 specimens per AFE procedure) were taken. RESULTS: Malignant disease was found in 1250 (32.6%) of all biopsies, with 304 biopsies (24.3%) showing carcinoma in situ (cis) and dysplasia II degrees (dys II) according to the previous diagnostic criteria of the WHO. Under prior conventional white-light endoscopy, 30.3% of specimens with dys II and 52.8% of specimens with cis had been missed. CONCLUSIONS: The current results suggest that 5-ALA may be more effective in the detection of flat urothelial lesions than the current diagnostic devices.

Aminolevulinic Acid↗

Three-dimensional tissue structure affects sensitivity of fibroblasts to TGF-beta 1.

Transforming growth factor-beta (TGF-beta) is known to induce alpha-smooth muscle actin (alpha-SMA) in fibroblasts and is supposed to play a role in myofibroblast differentiation and tumor desmoplasia. Our objective was to elucidate the impact of TGF-beta1 on alpha-SMA expression in fibroblasts in a three-dimensional (3-D) vs. two-dimensional (2-D) environment. In monolayer culture, all fibroblast cultures responded in a similar fashion to TGF-beta1 with regard to alpha-SMA expression. In fibroblast spheroids, alpha-SMA expression was reduced and induction by TGF-beta1 was highly variable. This difference correlated with a differential regulation in the TGF-beta receptor (TGFbetaR) expression, in particular with a reduction in TGF-betaRII in part of the fibroblast types. Our data indicate that 1) sensitivity to TGF-beta1-induced alpha-SMA expression in a 3-D environment is fibroblast-type specific, 2) fibroblast type-independent regulatory mechanisms, such as a general reduction/loss in TGF-betaRIII, contribute to an altered TGFbetaR expression profile in spheroid compared with monolayer culture, and 3) fibroblast type-specific alterations in TGFbetaR types I and II determine the sensitivity to TGF-beta1-induced alpha-SMA expression in the 3-D setting. We suggest that fibroblasts that can be induced by TGF-beta1 to produce alpha-SMA in spheroid culture reflect a "premyofibroblastic" phenotype.

Actins↗

Clonality of multifocal urothelial carcinomas: 10 years of molecular genetic studies.

Multifocal occurrence and frequent recurrence are characteristic features of urothelial carcinomas of both the urinary bladder and the upper urinary tract. To describe the clonal nature of these tumors, 2 theories have been proposed. The monoclonality hypothesis describes the multiple tumors as descendants of a single genetically transformed cell spreading throughout the urothelium. In contrast, field cancerization caused by carcinogen exposure of the urothelium may lead to independent development of synchronous or metachronous nonrelated tumors at different sites of the urothelial tract. In the last 10 years, a multitude of molecular genetic studies have investigated the clonality of multifocal urothelial carcinomas. The majority of studies revealed a monoclonal origin of the multiple tumors. However, most of these studies investigated advanced invasive carcinomas. A small but significant proportion of multifocal urothelial carcinomas appear to arise from different clones, supporting the field-cancerization hypothesis. Oligoclonal tumors might be more common in precursor lesions and early tumor stages. The frequent monoclonality found in patients with advanced tumors could be due to outgrowth of 1 tumor cell clone with specific genetic alterations. Two important mechanisms appear to be important for the spread of malignant cells: intraluminal seeding and intraepithelial migration. Investigation of the entire urothelial lining in patients with urothelial tumors should provide further insight into the development of multifocal urothelial carcinomas.

Animals↗

Occurrence of chromosome 9 and p53 alterations in multifocal dysplasia and carcinoma in situ of human urinary bladder.

To define the genetic changes of flat urothelial lesions, carcinoma in situ (CIS) and moderate dysplasias (DII) were investigated for alterations in the two chromosomal regions most frequently involved in bladder cancer. Overall, 33 CIS and 16 DII from 21 patients were used to microdissect urothelium. Dual color fluorescence in situ hybridization (FISH) using gene locus probes of 9q22 (FACC), 9p21 (CDK), 17p13 (p53), and related centromeric probes was applied on interphase nuclei. In parallel, preamplified DNA of these samples was used for loss of heterozygosity (LOH) analyses with eight microsatellite markers on chromosomes 9p, 9q and 17p, and for sequencing of exons 5-9 of p53. Data indicated nearly identical deletion frequencies for chromosomes 9 and 17 for CIS (chromosome 9, 86%; p53, 84%). DII showed a lower deletion rate in comparison with CIS (chromosome 9, 75%; p53, 53%). A very high correlation between the results of FISH and LOH analyses was found. p53 mutations were detected in 12 of 15 patients (CIS, 72%; DII, 67%). In three of 16 patients with multifocal tumors, oligoclonal lesions were identified by LOH analyses, a finding further supported by sequencing of p53, by which two different p53 deletions were detected in two cases. In conclusion, data from microdissected flat urothelial lesions indicate that chromosome 9 deletions cannot be regarded as indicators of papillary growth, because they are found frequently in both types of flat lesions of the urothelium: those associated with papillary tumors and those that are not. The similar distribution and lower amount of genetic changes in DII render DII a possible precursor lesion of CIS.

Aged↗

Histologic-genetic mapping by allele-specific PCR reveals intraurothelial spread of p53 mutant tumor clones.

Common and clinically important features of urothelial carcinomas are multifocality and a high rate of recurrence. Molecular studies demonstrated that multifocal tumors are frequently composed of one tumor clone spreading throughout the urothelial tract. A combination of histologic and genetic mapping of cystectomy specimens from bladder cancer patients is a valuable tool to study bladder carcinogenesis and tumor cell spread by correlating urothelial morphologic features and defined genetic alterations. In the present study, the primary tumors of 14 cystectomy specimens were investigated for p53 protein overexpression by immunohistochemistry and p53 gene mutation by genomic sequencing. Seven tumors showed a strong nuclear staining for the p53 protein. In six of seven tumors, a p53 gene mutation was detected. Allele-specific PCR of defined p53 mutations was established in five of six cases with a p53 mutation. Subsequent screening of the entire urothelial lining of each cystectomy specimen by allele-specific PCR revealed p53-mutant cell clones in urothelial patches with carcinoma in situ and dysplasia, but also frequently in histomorphologically normal urothelium adjacent to the tumor. The pattern of tumor cell spread indicated a continuous intraurothelial growth of the p53-mutant clone. P53 immunohistochemistry visually confirmed the presence of mutant cells in most of these samples. We conclude that allele-specific PCR is a highly sensitive and reliable method for tracking specific p53 mutant clones in the urothelium. Moreover, the detection of p53-mutant cells in histologically normal or preneoplastic urothelial areas in four patients with invasive bladder cancer indicates an extensive intraurothelial tumor cell spread. The excellent correlation of immunohistochemically positive urothelial patches with the presence of a specific mutation highlights the biologic significance of p53-positive cells in the urothelium of tumor patients.

Aged↗

Metabolic characterization of tumor cell-specific protoporphyrin IX accumulation after exposure to 5-aminolevulinic acid in human colonic cells.

5-Aminolevulinic acid (ALA)-induced protoporphyrin IX (PPIX) fluorescence has been shown to have high tumor cell selectivity in various organs, including the gastrointestinal (GI) tract. To better understand and to possibly find new approaches to therapeutic application, we investigated the uptake kinetics and consequent metabolism of ALA and PPIX, respectively. Three colon carcinoma (CaCo2, HT29, SW480) and a stromal cell line (fibroblast, CCD18) were chosen to mimic important aspects of malignant mucosa of the GI tract. Because differential PPIX concentrations in these cell lines represented the in vivo observations (ratio tumor vs normal 10:1-20:1), we analyzed the ALA uptake, mitochondrial properties and key molecules of PPIX metabolism (porphobilinogen deaminase [PBGD], ferrochelatase [FC], iron content, transferrin receptor content). The tumor-preferential PPIX accumulation is strongly influenced, but not solely determined, by activity differences between the PPIX-producing PBGD and the PPIX-converting FC, when compared with fibroblasts. Tumor-specific PPIX accumulation is generated by ALA conversion rather than by initial ALA uptake because no significant overall difference in uptake (about 0.6 microg ALA/mg protein) of ALA is seen. In conclusion, further research of tumor cell selectivity of PPIX fluorescence should focus on the mechanisms responsible for an altered PPIX metabolism to find tumor-specific target molecules, thus leading to an improved clinical practicability of ALA application and consequent endoscopy.

Adenocarcinoma↗

No evidence for involvement of beta-catenin and APC in urothelial carcinomas.

The wnt pathway plays an important role in embryonal patterning and cell fate determination, involving stabilization of nuclear and cytoplasmic beta-catenin (CTNNB1) mediated by APC, axin, and other proteins. Uncomplexed beta-catenin binds to TCF/LEF transcription factors and activates the expression of growth regulatory target genes such as c-myc or cyclin D1. In colorectal and other cancers, constitutive wnt signaling results frequently from mutations in one or more pathway components, e.g. APC and beta-catenin, resulting in nuclear and/or cytoplasmic accumulation of beta-catenin. In the present study, the most frequent alterations in the CTNNB1 and APC genes were investigated in primary urothelial bladder tumors and cell lines. Snap-frozen bladder tumors (n=99) of different stages and grades and 4 cell lines (RT4, RT112, J82, UROtsa) were investigated for APC allelic deletions by loss of heterozygosity (LOH) analysis. The most frequent mutated regions of CTNNB1 (degradation box in the third exon) and APC (mutation cluster region) were directly sequenced. Beta-catenin expression was analyzed by immunofluorescence in the cell lines. LOH at the APC gene locus on chromosome 5q21 was found in 7 of 72 (10%) of the informative cases. No mutations were found in either CTNNB1 or APC. A previously described polymorphism at codon 1493 of the APC gene was detected in 8 tumors and 3 cell lines. All cell lines showed normal membranous beta-catenin staining without evidence for nuclear or cytoplasmic accumulation. Alteration of APC and beta-catenin, which are the most frequent wnt pathway alterations in many tumor types, are rare events in urothelial carcinomas. Other wnt pathway members, such as axin, may play an important role in urothelial carcinogenesis.

Adenomatous Polyposis Coli Protein↗

Clinically relevant improvement of recurrence-free survival with 5-aminolevulinic acid induced fluorescence diagnosis in patients with superficial bladder tumors.

PURPOSES: Fluorescence diagnosis induced by 5-aminolevulinic acid enables more thorough transurethral resection of superficial bladder carcinoma compared with conventional white light. We performed a prospective, single institution, randomized trial to investigate whether the residual tumor rate and long-term tumor recurrence can be decreased by fluorescence diagnosis. MATERIALS AND METHODS: A total of 301 patients underwent transurethral resection of bladder tumors with white light or fluorescence diagnosis. Transurethral resection was repeated 5 to 6 weeks later to evaluate the residual tumor rate. To determine recurrence-free survival patient followup was performed every 3 months by white light cystoscopy and urine cytology. Recurrence-free survival was analyzed via Kaplan-Meier methods and multivariable Cox regression analysis. RESULTS: A total of 191 patients with superficial bladder carcinoma were available for efficacy analysis. The residual tumor rate was 25.2% in the white light arm versus 4.5% in the fluorescence diagnosis arm (p <0.0001). Median followup in the white light arm in 103 cases was 21.2 months (range 4 to 40) compared with 20.5 (range 3 to 40) in the 88 in the fluorescence diagnosis arm. Recurrence-free survival in the fluorescence diagnosis group was 89.6% after 12 and 24 months compared with 73.8% and 65.9%, respectively, in the white light group (p = 0.004). This superiority proved to be independent of risk group. The adjusted hazard ratio of fluorescence diagnosis versus white light transurethral resection was 0.33 (95% confidence interval 0.16 to 0.67). CONCLUSIONS: Fluorescence diagnosis is significantly superior to conventional white light transurethral resection with respect to the residual tumor rate and recurrence-free survival. The differences in recurrence-free survival imply that fluorescence diagnosis is a clinically relevant procedure for decreasing the number of tumor recurrences.

Administration, Intravesical↗