CD44 expression in human breast cancer cell lines is related to oestrogen receptor (ER) status and confluency in vitro.
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Publications and source records attributed to D Tarin.
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AIM: To evaluate whether increased telomerase activity can be clinically useful for detecting malignant cells in a variety of gynaecological specimens. METHODS: Telomerase activity was examined in frozen tissue samples of histologically confirmed lesions of the endometrium, ovary, and cervix. It was also assessed in exfoliated cells in cervical smears from patients with premalignant and malignant lesions and in ascitic fluid obtained from cases with malignant or non-malignant ovarian tumours. RESULTS: Solid tissues from carcinomas were telomerase positive in all specimens of endometrial (6/6) and cervical (6/6) origin, and in almost all from the ovary (12/13). Normal tissues from the cervix (0/5) and the ovary (0/5) were telomerase negative, but samples from normal endometrium were found to show telomerase activity, possibly due to the cyclical regenerative nature of this tissue. Conversely, dissociated cells in cervical smears from preneoplastic and frankly neoplastic lesions rarely showed detectable telomerase activity. Thus smears from patients with malignant tumours were only positive in one of two patients, whereas those from CIN-2 (0/5) and CIN-3 (1/17) lesions and from normal (0/10) samples were almost all negative. Telomerase activity was also scarcely detectable in cells obtained from ascitic fluid from patients with ovarian tumours. CONCLUSIONS: As in many other organs, telomerase activity is increased in solid tissue specimens from malignant tumours of the female reproductive tract, but it is not yet a reliable indicator of the presence of exfoliated cancerous or precancerous cells in clinical specimens from such lesions. Interpretation should be guarded until more extensive studies have been conducted. The data on solid tissues presented here confirm that activation of this enzyme is a major hallmark of the neoplastic process.
We analysed telomerase activity in normal, benign and malignant breast tissues and in fine needle aspirates by a PCR-based assay. The tissue samples we used in this assay consisted of 20 cryostat sections, 10 microns thick, from each breast biopsy. This method was used to obtain effective extraction from small samples and to confirm the histological identity of the specimen by microscopical examination of serial sections. Fifty-two of 71 breast carcinomas were positive for telomerase activity, and the intensity of this was strong in most cases, whereas all 6 samples of normal breast tissue and 17 of fibrocystic disease were negative and only 1 of 15 fibroadenomas was positive. Invasive ductal carcinomas were more frequently positive than invasive lobular carcinomas. There was no correlation of telomerase activity with tumour size or the occurrence of lymph node metastasis. Evaluation of our assay system showed that a signal of telomerase activity was detectable in extracts from single cryostat sections (< 1 mm2) of a cancer specimen and from as few as 4 cells of a human breast cancer cell line. On the basis of the above data, we applied this assay to fine needle aspirates of breast lesions. Ten of 15 aspirates which had been cytopathologically diagnosed as cancer were strongly positive, while 26 of 29 benign aspirates were totally negative and the remaining 3 showed only borderline activity. In 3 cases, the telomerase result could have helped establish a diagnosis when the cytological observations were inconclusive. Our results indicate that this sensitive assay could become a useful new modality for supplementing microscopic cytopathology in the detection of cancer cells in small tissue biopsies and fine needle aspirates.
We generated DNA probes for CD44 variable region exons 11 (v6) to 14 (v9) and also for intronic sequences and examined the expression of aberrant CD44 transcripts in digestive tract carcinomas, colorectal adenomas and intestinal metaplasia of the stomach. The study used the reverse transcription-polymerase chain reaction/Southern blot technique. Among the probes generated, the CD44 intron 9 probe was the best for distinguishing cancer tissue from normal tissue in adenocarcinomas of the colorectum or stomach. All the colorectal adenocarcinomas revealed overexpression of CD44 variants containing the intron 9 sequence compared with the corresponding normal colorectal mucosa. The overexpression of such abnormal CD44 variants was observed from an early stage in colorectal cancer and did not correlate with nodal or distant metastatic status. In intestinal metaplasia of the stomach, aberrant CD44 transcripts with characteristic 2 or 3 peaks containing intron 9 were observed. On the other hand, in oral and esophageal squamous cell carcinomas and corresponding normal squamous epithelia, overexpression of CD44 variants with variable exons and retained intron 9 sequence was frequently observed in both cancer tissue and corresponding normal mucosa. Examination of the expression of CD44 variants in a screening panel of normal tissues from the whole body revealed that overexpression of transcripts containing exon 11 and 14 as well as of the intron 9 sequence was constantly observed in tissues with squamous epithelia like skin, oral mucosa, esophagus and uterine cervix. Expression of these variants was also found in urinary bladder, respiratory tract, pancreas and salivary glands. Our results overall indicate that detecting the overexpression of abnormal CD44 transcripts, especially ones containing the intron 9 sequence, could be a powerful indicator for the presence of adenocarcinomas in the digestive tract. However, it is not applicable for the diagnosis of malignancies originating from squamous epithelia.
Background: Abnormal expression of CD44 variant RNA has been detected in a variety of human tumors and has been shown to be a potential diagnostic marker. To date, such analysis requires time-consuming gel electrophoresis, blotting, and autoradiographic procedures, and this approach may not be suitable for routine laboratory examinations. We have developed a rapid and semiquantitative reverse transcription-polymerase chain reaction enzyme-linked immunosorbent assay (RT-PCR ELISA) method and used it to analyze CD44 expression in colon carcinoma tissues and exfoliated cancer cells in colon luminal washings. Methods and Results: RNA was extracted from sample cells and tissues and converted to cDNA. PCR amplification products, labeled by incorporation of digoxigenin-11-dUTP, were hybridized with biotinylated probes complementary to CD44 exon 12 or to exons in the standard portion (CD44s) of the gene. Hybridized DNA complexes were immobilized on streptavidin-coated microtiter plates, and the bound PCR products were detected with a peroxidase-conjugated antibody to digoxigenin. CD44-derived PCR products were quantified by absorbance of a chromogenic reaction. Elevated expression of CD44 variant exon 12 was detected initially by Southern blot analysis in all of the 9 colon carcinoma tissues, while weak expression was observed in only 3 of 9 normal mucosas. This tumor-related differential expression was confirmed by the newly developed PCR-ELISA method. Elevated expression of CD44 exon 12 was also detected in exfoliated colonic epithelial cells from 10 of 13 carcinoma cases but not in exfoliated cells from 4 patients with inflammatory bowel disease. Conclusions: Raised expression of CD44 variant exon transcripts can be detected reliably in colonic tumor tissue and in exfoliated colonic cancer cells by a semiquantitative RT-PCR ELISA method. This was shown to be as sensitive as conventional RT-PCR using chemiluminescent detection. Therefore, CD44-based RT-PCR ELISA could facilitate detection of neoplasia in clinical specimens including colon washings and naturally micturated urine.
Background: Disorderly expression of the CD44 gene is a characteristic feature of many common types of human malignancy. The explanation for the diversity, abundancy, and abnormally large size of the resulting transcripts is under investigation. Methods and Results: This study used reverse transcription-polymerase chain reaction (RT-PCR)/Southern blot hybridization to examine the expression of the CD44 gene in fresh tissue samples from 21 breast cancers and 11 matched non-neoplastic breast tissue specimens from the same patients. Using probes for several exons and for a noncoding region (intron 9) of the gene, it was found that the previously described elevated levels of CD44 transcripts in malignant tumors of this organ include many unusual, alternatively spliced isotypes as well as immature forms that retain this intron and probably several others. All of the exons that were tested were involved in the disorderly overexpression of this gene observed in all of the cancer tissues, and we were able to detect retention of the intron 9 sequence in 14 (67%) of the 21 tumor samples. In contrast, it was possible to detect signals in only 3 (27%) of the 11 samples from nonmalignant breast tissue with this probe, and these were extremely faint. Conclusions: These findings imply that there is a profound disorder in the regulation of production, splicing, and processing of CD44 pre-mRNA in breast cancer tissues comparable to that described in tumors of many other organs. The clinical implication of this information is that analysis of tissue samples containing borderline or suspected premalignant lesions for the presence of these molecular abnormalities, which appear to be characteristic of neoplasia, may in due course help assessment of individual patient prognosis and optimization of treatment.
AIMS: To investigate whether colonic cancer cells exfoliated into the lumen of the organ can be detected by identification of their abnormal CD44 gene products. METHODS: Exfoliated cells were obtained by centrifugation of saline wash-outs of 27 surgically resected colon specimens obtained from 15 patients with carcinoma, seven with ulcerative colitis and five with Crohn's disease. After extracting cellular mRNA, amplification by the reverse transcription-polymerase chain reaction (RT-PCR) technique and analysis by Southern blot hybridisation was carried out to examine the levels and patterns of transcription of exons 11(v6), and 12(v7) and intron 9 of the CD44 gene. The transcription of these CD44 components was also examined by RT-PCR of snap-frozen solid tissue specimens from 11 of the above patients with colorectal carcinoma, seven with ulcerative colitis and five with Crohn's disease. RESULTS: Abnormal expression of exons 11(v6) and 12(v7) was detected in exfoliated cells from 11 (73%) of 15 patients with carcinoma, but not in any patients with inflammatory bowel disease (IBD). The retention of intron 9 in CD44 mRNA transcripts was detected in washings from four (27%) carcinoma specimens but not in washings from non-malignant specimens. It was confirmed that in solid tissue samples from the same carcinomas there was abnormal over-expression of numerous alternatively spliced CD44 species containing transcripts of exons 11 and 12 and retention of intron 9. Low level expression of these exons was detected in tissue from inflammatory lesions from five of seven patients with ulcerative colitis and four of five with Crohn's disease. The retention of intron 9 was not seen in normal mucosa nor IBD. CONCLUSION: Abnormal expression of the variant exons and of intron 9 of the CD44 gene in tumour cells exfoliated into the colonic lumen may be helpful markers for the early, non-invasive, diagnosis of colorectal cancer.
AIM: To study the cellular distribution of CD44 mRNA transcripts in tissue sections of colorectal cancer and corresponding normal colonic mucosa in order to correlate the findings with information from immunohistochemical methods and previous data from analysis by reverse transcription-polymerase chain reaction (RT-PCR). METHODS: In situ hybridisation (ISH) analysis of CD44 standard (CD44s) and variant (CD44v) mRNA in cryostat sections of normal and neoplastic colonic mucosa with 35S-labelled riboprobes. Immunohistochemistry was performed on cryostat sections from the same patients using monoclonal antibodies directed against epitopes encoded by CD44 exon 1 (F.10.44.2), exon 5, (Hermes 3), exon 7 (23.6.1), and exon 11 (2F10). RESULTS: CD44s and CD44v transcripts were both strikingly increased in carcinomas compared with corresponding normal mucosa and the abundant CD44v transcripts in tumour tissues were localised exclusively in the cancer cells. CD44s transcripts were present in cancer, inflammatory and resident stromal cells, but the relative amount in carcinoma cells was greater. Immunohistochemical staining broadly paralleled these results, but some clumps of tumour cells showed clear heterogeneity with regard to CD44 protein content. There were also some scattered focal discrepancies in the quantity and distribution of mRNA transcripts and proteins, respectively. CONCLUSIONS: The ISH technique provides powerful independent corroboration of elevated CD44 gene expression and disproportionately high transcription of CD44v isoforms in carcinoma cells observed in earlier immunohistochemical and RT-PCR studies. It unequivocally localises the abnormally elevated gene transcription within the cancer cells and not in the surrounding inflammatory cells.
This study investigated CD44 gene expression at both the RNA and protein level in well differentiated superficial and in deeply invasive bladder carcinomas. Proteins were studied by immunohistochemistry using antibodies against standard (CD44s) and variant (CD44v) isoforms. mRNA was analyzed by reverse transcriptase polymerase chain reaction/Southern blotting and in situ hybridization. Immunostaining with antibodies against CD44s and CD44v2, -5 and -6 (exons 7, 10, and 11, respectively) showed that carcinoma cells in all papillary tumors expressed strong signals throughout the epithelium but especially in the basal layer, which abuts on the stroma. However, invasive tumors, which are believed to originate mainly from flat urothelial tumors or, less frequently, from papillary carcinomas, progressively lost CD44 proteins as they penetrated deeper and became less differentiated. This change was paralleled at the mRNA level, by the gradual loss of expression of CD44s and CD44v transcripts in deeply invasive tumors until they were virtually undetectable. Conversely, papillary tumors contained multiple higher molecular weight transcripts, suggesting that the loss of CD44 proteins in the more aggressive tumors is due to a disturbance in transcription. This concept was confirmed by in situ hybridization studies with a probe showing that substantial variant CD44 mRNA is located in the urothelium in papillary carcinomas but is absent from deeply invasive carcinomas. These results indicate that initially there is a striking increase in CD44 gene expression in early bladder carcinomas, relative to normal urothelium, but that this diminishes as the tumors acquire a more aggressive phenotype.
Many studies have now demonstrated disorganized overexpression of the CD44 gene in various types of human malignant tumors, and this abnormality has emerged as an interesting candidate marker for early cancer diagnosis. The purpose of this work was to analyze and compare the patterns of transcription and translation of this gene in human breast (ZR75-1; MDAMB-435 clone 4A4) and colon (HT29) tumor cell lines and in tumors of the breast, bladder, and colon, with the aim of identifying the most suitable analyte for diagnostic purposes. Transcription was studied by reverse transcription-polymerase chain reaction using CD44-specific primers and probes complementary to exons in the standard (exons 3 to 5 and 16 to 18) and variably expressed regions of this gene (exons 7, 8, 10, 11, and 15). Translation was investigated by Western blot analysis and immunohistochemistry using monoclonal antibodies specific to the standard form of CD44 and to the products of the same variant exons. Southern blot hybridization analysis of the reverse transcription-polymerase chain reaction products showed a large number of CD44 transcripts in tumor cells. Direct comparison of these Southern blots with Western blots on matched tumor-cell-line extracts indicated that most of the diverse mRNA isoforms did not detectably translate into proteins. However, immunohistochemistry of normal and malignant breast (n = 17 and 23, respectively), bladder (n = 5 and 19), and colon (n = 19 and 19) tissue specimens showed increased staining of CD44 standard and CD44 variant proteins in the carcinoma cells. Combination of this information with the data from reverse transcription-polymerase chain reaction and Western blot analysis indicates that the overexpression at the protein level involves only a minority of the aberrant RNA transcripts. We conclude that the development of methods for the accurate quantitation of over-abundant CD44 RNA species in clinical samples offers the most promising approach to improved early diagnosis of malignancy using this new marker.
We have recently identified a new exon of the CD44 gene and demonstrated abnormal retention of a noncoding section, intron 9, in mRNA from bladder carcinomas. To analyze this further, the present study examined CD44 gene expression in cell lines from 14 esophageal, 3 colonic, and 4 breast carcinomas and in fresh samples from 20 colorectal carcinomas and corresponding normal colonic mucosa, using reverse transcriptase followed by the polymerase chain reaction (RT-PCR). This confirmed that there was abnormal assembly of several exons of the gene in cell lines and in tumor tissues from these organs. However, the most striking new finding was that intron 9 was present in RNA from 11 esophageal, 3 colon, and 1 breast carcinoma cell line, respectively. This was confirmed by RNase and DNase digestion analysis. Moreover, it was detected both in nuclear and cytoplasmic mRNA fractions, indicating that abnormal splicing of pre-mRNA occurs in cancer cells. The abnormal retention of intron 9 in CD44 gene transcripts was also demonstrated in tumor tissues from 16 (80%) of 20 patients with colon carcinoma, but there was no correlation with Dukes' stage. The biological significance of these observations is not yet understood. However, it is clear that, as with the abnormal expression pattern of CD44 variant exons, intron 9 retention is a good-candidate molecular diagnostic tool for colorectal carcinomas.
Increased and disorganised expression of CD44 variant exons has been demonstrated in biopsy samples of several types of human malignancy by many groups. This abnormality can be used to detect exfoliated tumour cells in the urine of bladder cancer patients. The present report demonstrates that the deranged activity of this gene in neoplasia also results in the accumulation of immature mRNA transcripts containing non-coding sequences (introns) from this gene in cancer tissues and cells. There is simultaneous overexpression of a newly identified 437 bp exon (coding sequence) located in the variably active region of the gene and of many abnormal variant exon combinations. This is the first report describing the specific retention of introns in gene transcripts in clinical diagnostic samples of tumour tissues and cells. The phenomenon was seen repeatedly in samples from cancer patients and in a cancer cell line, and thus could form the basis for a unique new and specific method of cancer diagnosis.
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OBJECTIVE: To investigate non-invasive detection of cancer by testing for unusual CD44 gene activity in a clinical sample as an indicator of exfoliated tumour cells. DESIGN: Case-control study. SUBJECTS: 44 unselected, consecutive patients with bladder cancer and 46 people with no evidence of neoplasia. MAIN OUTCOME MEASURE: Presence or absence of large CD44 gene products containing exon 6 derivatives in urine samples. RESULTS: Novel abnormalities in the pattern of expression of this gene, seen specifically in tumour tissue, led to cloning of a newly recognised coding region in it (exon 6). This was tested as a probe for detection of exfoliated malignant cells in naturally voided urine. CD44 gene products extracted from the urine and amplified with polymerase chain reaction contained predicted electrophoretic band of 735 base pairs in 40 of the 44 patients with bladder cancer (sensitivity 91%). Products from 38 of the 46 people with no evidence of neoplasia showed no such band (specificity 83%). CONCLUSIONS: Unusual activity of the CD44 locus in neoplasia and malignancy is confirmed, and techniques for the analysis of such activity can enable non-invasive investigation of patients for primary or recurrent bladder cancer or for other tumours that shed neoplastic cells into body fluids.
The co-injection of extracellular matrix components, such as Matrigel, with human tumour cells into nude mice has been reported to facilitate tumour formation and growth, but it is unknown whether such components exert similar effects on tumour progression and metastasis. Metastatic behaviour is known to be enhanced when tumour cells are implanted orthotopically, and it is inferred that full and efficient expression of this phenotype may involve some interactions with local connective tissue matrix. It was therefore decided to investigate whether manipulation of the mesenchymal environment by co-injection of extracellular matrix components, in the form of Matrigel, with human breast cancer cells into orthotopic or ectopic sites could augment their metastatic performance, as well as their growth at the site of inoculation. Standard aliquots of 10(6) cells of the polyclonal human breast carcinoma cell line MDA-MB-435, and of four clonal cell lines, two metastatic and two non-metastatic derived from it, were injected with and without Matrigel, orthotopically or subcutaneously into nude mice. The latent period of tumour formation at the inoculation site as well as final tumour size and metastatic performance at autopsy, 140 days after inoculation, were then assessed. The prevalence of metastasis of the parent, polyclonal, cell line and of its metastatic clones was increased if the cell inoculum was mixed with Matrigel. Non-metastatic clones were not induced to become metastatic by this treatment, but local tumour growth at the site of inoculation was enhanced in all experimental groups receiving Matrigel. Orthotopic inoculation acted synergistically with Matrigel to maximise both tumour growth and metastatic behaviour. The composition of the local extracellular matrix at the site of tumour growth influenced expression of the metastatic phenotype by cells which are constitutionally capable of this behaviour, but did not induce it in ones which are not. Previous reports that local tumour growth is facilitated by enrichment of the mesenchymal matrix are confirmed. The mechanisms by which such effects are exerted are worthy of study, to ascertain whether they might be subject to clinical manipulation designed to retard tumour growth and dissemination.
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