| Literature DB >> 14760381 |
A Choudhury1, N Moniaux, A B Ulrich, B M Schmied, J Standop, P M Pour, S J Gendler, M A Hollingsworth, J-P Aubert, S K Batra.
Abstract
MUC4 is highly expressed in human pancreatic tumours and pancreatic tumour cell lines, but is minimally or not expressed in normal pancreas or chronic pancreatitis. Here, we investigated the aberrant regulation of MUC4 expression in vivo using clonal human pancreatic tumour cells (CD18/HPAF) grown either orthotopically in the pancreas (OT) or ectopically in subcutaneous tissue (SC) in the nude mice. Histological examination of the OT and SC tumours showed moderately differentiated and anaplastic morphology, respectively. The OT tumour cells showed metastases to distant lymph nodes and faster tumour growth (P<0.01) compared to the SC tumours. The MUC4 transcripts in OT tumours were very high compared to the undetectable levels in SC tumours. The SC tumour cells regained their ability to express MUC4 transcripts after in vitro culture. Immunohistochemical analysis using MUC4-specific polyclonal antiserum confirmed the results obtained by Northern blot analysis. Interestingly, the OT tumours showed expression of TGFbeta2 compared to no expression in SC, suggesting a possible link between MUC4 and TGFbeta2. The MUC4 expression, morphology, and metastasis of human pancreatic tumour cells are regulated by a local host microenvironment. TGFbeta2 may serve as an interim regulator of this function.Entities:
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Year: 2004 PMID: 14760381 PMCID: PMC2409611 DOI: 10.1038/sj.bjc.6601604
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Tumorigenicity and production of spontaneous metastases in CD18/HPAF cells
| SC | 11±0.64 | 980±125.53 | 1.0±0.42 | 9/10 | 0/4 |
| OT | 7±0.40 | 2552±582.97 | 1.8±0.52 | 9/10 | 4/4 |
10 × 106 viable tumour cells were injected into the pancreas or subcutis of two groups of 10 mice/group.
Days post-injection (±SE), when the tumours could be palpated.
Tumour volume (mm3±s.e.) on day 20 Tumour size was measured with a caliper.
Average of the weight (in grams±s.e.) of the tumours isolated from different mice.
Number of mice with tumours/number of injected mice.
Lymph node (LN) metastases include mediastinal lymph node, mesenteric lymph node, iliac lymph node, and inguinal lymph node metastases.
Figure 1Northern blot of total cellular RNA (20 μg) separated in a 1% agarose/formaldehyde gel from the normal human pancreas tissues, CD18/HPAF cultured cells, and the CD18/HPAF cells grown as SC and OT tumours. (A) Blot was probed with a 32P-labelled MUC4 tandem repeat cDNA probe, and the same membrane was stripped and hybridised with a GAPDH cDNA probe. (B) Densitometric values (±s.e.) for the bands above in three different experiments were determined by using Molecular Dynamics ImageQuant software program. Values obtained for the MUC4 smear were divided by the densitometic values for the GAPDH band.
Figure 2Tumour of CD18/HPAF cells grown in nude mice. (A) OT tumour showing a moderately differentiated tumour with glandular structures filled with mucin. (B) The same cells grown in SC tissue, showing an amorphous mass of tumour cells with no signs of differentiation. Original × 32.
Figure 3Immunohistochemical staining of CD18/HPAF cells grown in the pancreas of the nude mouse (A) and in SC tissues (B). The CD18/HPAF tumours in the pancreas show immunoreactivity to anti-MUC4 antiserum (1 : 100 dilution (A)), whereas the pancreatic tissue of the nude mouse remains unstained, as do the tumours grown in SC tissue (B). Original × 50 (A, B).
Figure 4(A) Northern blot of total cellular RNA (20 μg) extracted from SC tumour cells, OT tumour cells at different passages and CD18/HPAF cell line, separated in a 1% agarose/formaldehyde gel. (a) Probed with 32P-labelled MUC4 tandem repeat cDNA probe. (b) The same membrane as shown in (a), probed with a GAPDH cDNA probe. (B) Densitometric values (±s.e.) for the bands in three different experiments were determined by using Molecular Dynamics ImageQuant software program. Values obtained for the MUC4 smear were divided by the densitometric values for the GAPDH band.
Figure 5(A) Analysis of TGFβ1 and TGFβ2 expression in CD18/HPAF cells, OT tumours, and SC tumours. Total RNA was isolated; TGFβ and GAPDH mRNA are coamplified in each reaction by RT–PCR. (B) The band intensity of the amplified products was quantified for each sample using the gel expert™ 3.5 software suite. The densitometric values (±s.e.) for the bands in three different experiments were calculated for a gene-specific product and GAPDH for each reaction. The value for a gene-specific product is expressed per unit of GAPDH to account for any differences in the starting amounts of RNA. OT, orthotopic tumour; SC, subcutaneous tumour; S, serum; SF, serum-free.
RT–PCR expression analysis of mucin genes expression
| CD18/HPAF | +++ | + | − | +++ | +/− | ++ | − | − |
| OT tumour | +++ | − | − | +++ | + | ++ | − | − |
| SC tumour | +++ | − | − | − | + | ++ | +/− | − |
| Pancreas | ++ | − | − | − | +/− | ++ | ++ | − |
Three orthotopic (OT), three subcutaneous (SC), and seven normal human pancreas were analysed. +++, high; ++, moderate; +, low; −, undetectable; ND, not determined.