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Biomedical subjects

P J Russell

Publications and source records attributed to P J Russell.

At least 19 recordsLinked to original sources

Androgen decreases osteoprotegerin expression in prostate cancer cells.

Osteoprotegerin (OPG), a key regulator of bone resorption, is hypothesized to have a role in prostate cancer (CaP) bone metastasis. As advanced CaP is treated by androgen ablation, we examined if androgen modulates OPG expression by CaP cell lines in vitro. Basal levels of secreted OPG protein were significantly greater in androgen-independent PC-3 cells compared with androgen-responsive LNCaP-FGC cells (P<0.001); OPG was not detected in the androgen-responsive CaP cell lines LAPC-4 or DuCaP. Treatment with 5alpha-dihydrotestosterone (5alpha-DHT) significantly decreased OPG protein levels in both PC-3 and LNCaP-FGC, with maximal suppression using 10(-9)-10(-7) M 5alpha-DHT in PC-3 (P<0.01; day 3), and using 10(-10)-10(-9) M 5alpha-DHT in LNCaP-FGC cells (P<0.01; day 6). OPG messenger RNA levels were not significantly altered by this 5alpha-DHT treatment. Co-treatment with 10(-6) M flutamide blocked 5alpha-DHT inhibition of OPG protein expression in LNCaP-FGC cells. These data suggest that androgen may modulate OPG protein levels in CaP cell lines in vitro using a post-transcriptional mechanism.

5-alpha-Dihydroprogesterone↗

Over-expression of p53 mutants in LNCaP cells alters tumor growth and angiogenesis in vivo.

This study has investigated the impact of three specific dominant-negative p53 mutants (F134L, M237L, and R273H) on tumorigenesis by LNCaP prostate cancer cells. Mutant p53 proteins were associated with an increased subcutaneous "take rate" in NOD-SCID mice, and increased production of PSA. Tumors expressing F134L and R273H grew slower than controls, and were associated with decreased necrosis and apoptosis, but not hypoxia. Interestingly, hypoxia levels were increased in tumors expressing M237L. There was less proliferation in F134L-bearing tumors compared to control, but this was not statistically significant. Angiogenesis was decreased in tumors expressing F134L and R273H compared with M237L, or controls. Conditioned medium from F134L tumors inhibited growth of normal human umbilical-vein endothelial cells but not telomerase-immortalized bone marrow endothelial cells. F134L tumor supernatants showed lower levels of VEGF and endostatin compared with supernatants from tumors expressing other mutants. Our results support the possibility that decreased angiogenesis might account for reduced growth rate of tumor cells expressing the F134L p53 mutation.

Apoptosis↗

Expression of HER1/EGFR protein in human soft tissue sarcomas.

AIM: To measure epidermal growth factor receptor (HER1/EGFR) expression in a range of soft tissue sarcoma (STS) patient samples. METHOD: HER1/EGFR expression was examined by immunohistochemistry in archival tissues of 46 STS patients. RESULTS: HER1/EGFR was positively expressed in 36/46 of STS samples distributed among different histological types. The levels of HER1/EGFR in STS tumour tissues in positive samples were higher compared to those in nearby normal tissues. CONCLUSION: HER1/EGFR is significantly expressed in soft tissue sarcomas, which is a finding reflected in other series. The significance of this finding for targeted therapy is as yet unknown.

Adolescent↗

Immunohistochemical characterisation of the monoclonal antibody BLCA-38 for the detection of prostate cancer.

BACKGROUND: Monoclonal antibodies (MAbs) can be used to detect, image and treat cancers. This study aimed to characterise the binding of BLCA-38 MAbs to human prostate cancer cell lines, human prostate cancer biopsy samples and normal tissues to enable future targeted studies. METHODS: BLCA-38 antigen expression on cancer lines was determined by flow cytometry; that on patient specimens from normal tissues and cancers was tested by immunohistochemistry using fresh frozen tissues or paraffin-embedded tissues that had undergone antigen retrieval. RESULTS: Cell surface BLCA-38 antigen expression was seen on DU-145, PC-3, PC-3 M and PC-3 M-MM2 prostate cancer lines, but LNCaP, MDA PCa 2a or MDA PCa 2b lines were negative. Other human lines, including 8/12 bladder cancer and A431 vulval epidermoid cells, but not breast cancer lines, expressed BLCA-38 antigen. Staining occurred in glandular epithelial cells in the majority of frozen, and paraffin-embedded prostate cancer tissues and was occasionally seen in prostatic intraepithelial neoplasia (PIN). No staining was observed in normal cadaver tissues or in benign areas from various other cancer tissues. CONCLUSIONS: The BLCA-38 antibody binds to the majority of human prostate cancers but not to normal cells, and has potential for targeting novel therapies in patients with this disease.

Animals↗

Preclinical evaluation of a prostate-targeted gene-directed enzyme prodrug therapy delivered by ovine atadenovirus.

Gene-directed enzyme prodrug therapy (GDEPT) based on the Escherichia coli enzyme, purine nucleoside phosphorylase (PNP), provides a novel strategy for treating slowly growing tumors like prostate cancer (CaP). PNP converts systemically administered prodrug, fludarabine phosphate, to a toxic metabolite, 2-fluoroadenine, that kills PNP-expressing and nearby cells by inhibiting DNA, RNA and protein synthesis. Reporter gene expression directed by a hybrid prostate-directed promoter and enhancer, PSMEPb, was assayed after plasmid transfection or viral transduction of prostate and non-CaP cell lines. Androgen-sensitive (AS) LNCaP-LN3 and androgen-independent (AI) PC3 human CaP xenografts in nude mice were injected intratumorally with an ovine atadenovirus vector, OAdV623, that carries the PNP gene under PSMEPb, formulated with cationic lipid for enhanced infectivity. Fludarabine phosphate was then given intraperitoneally for 5 days at 75 mg/m2/day. PNP expression was evaluated by enzymic conversion of its substrate using reverse phase HPLC. OAdV623 showed excellent in vitro transcriptional specificity for CaP cells. In vivo, expression of PNP persisted for > 6 days after OAdV623 injection and a single treatment provided 100% increase in tumor doubling time and > 50% inhibition of tumor growth for both LNCaP-LN3 and PC3 lines, with increased tumor necrosis and apoptosis and decreased tumor cell proliferation. OAdV623 significantly suppressed the growth of AS and AI human CaP xenografts in mice.

Adenine↗

Regulation of epidermal growth factor receptor in human colon cancer cell lines by interferon alpha.

BACKGROUND AND AIM: The biology of growth factor receptor expression has implications for receptor specific cancer therapy. In this study, we examined: (a) regulation of epidermal growth factor receptor (EGFR) expression in a panel of 10 human colon cancer cell lines using interferon alpha (IFN-alpha); (b) ability of IFN-alpha to inhibit cell proliferation; and (c) sensitivity of IFN-alpha pretreated cells to EGF. METHODS: Cell proliferation was measured both by crystal violet colorimetric and clonogenic assays. Cell surface, intracellular, and/or total cell protein expression of EGFR was assessed by indirect immunofluorescence flow cytometry and/or fluorescein isothiocyanate (FITC)-EGF binding and internalisation flow cytometric assay. RESULTS: IFN-alpha treatment upregulated expression of cell surface EGFR in seven of 10 colon cancer cell lines within 16 hours, reaching a peak within 48-96 hours; this was accompanied by transient elevation of intracellular EGFR and marked growth inhibition. IFN-alpha treated cancer cells were still sensitive to EGF proliferative stimulation. CONCLUSIONS: Our results indicate that cytostatic concentrations of IFN-alpha can enhance cell surface and intracellular EGFR expression in a proportion of human colon cancer cells. The antiproliferative action of IFN-alpha could not block the signal transduction of the EGF-EGFR pathway. This may have clinical implications for improving treatment based on targeting of EGFR.

Cell Division↗

Knee muscular response strategies differ by developmental level but not gender during jump landing.

The purpose of this investigation was to determine differences between pre- and post-pubescent males and females in quadriceps (vastus medialis; VM) and hamstrings (medial hamstrings and biceps femoris; HAMS) muscular activation patterns via the root mean square of surface electromyography (SEMG) during self-initiated vertical jump landing. Fifty-eight subjects, divided into age and gender groupings, were compared on kinematic variables during pre-landing (100 msec preceeding initial ground contact), post-landing (100 msec following initial ground contact), and initial-contact-to-maximum-knee-flexion stages. Kinematic variables investigated were (1) SEMG values during each stage of the vertical-jump landing; (2) Co-contraction ratios (CCR), which represented the ratio of normalized hamstrings' activity to normalized quadriceps' activity; and, (3) knee angle at initial contact. Results indicated (1) no significant gender differences in variables measured; and, (2) significant developmental level differences. Post-pubescent subjects displayed greater HAMS acitivity and CCR values in the pre-landing stage relative to post-landing stages, indicating that post-pubescent subjects had a greater level of hamstrings co-contraction prior to landing than pre-pubescent subjects. Conversely, pre-pubescent subjects displayed greater post-landing and initial-contact-to-maximum-knee-flexion ratios, indicating a greater level of hamstrings' co-contraction during post-landing stages than post-pubescent subjects. There were no significant differences in knee angle at initial contact. The greater level of hamstrings' co-activation prior to landing by post-pubescent subjects indicated that they used a strategy of pre-tuning the hamstrings prior to landing (more CNS pre-activation) to control the ground reaction forces and anterior tibial displacement experienced by the knee during landing. On the other hand, pre-pubescent subjects controlled these forces by having a greater level of hamstrings' co-activation during landing, which represents more of a reflexive activation in response to ground impact.

Adult↗

Characterization of expression of matrix metalloproteinases and tissue inhibitors of metalloproteinases in prostate cancer cell lines.

Stromal expression of some matrix metalloproteinases (MMPs) has been associated with increasing tumour burden in prostate cancer. We investigated the expression of mRNA (by RT-PCR) and protein (by zymography and western blotting) of MMPs and endogenous inhibitors (tissue inhibitors of metalloproteinases, TIMPs) in two parent epithelial prostate cancer cell lines and sublines of increasing invasive/metastatic potential. Expression of membrane type MMPs, MT1-MMP and MT3-MMP mRNA was higher in PC3-derived than in LNCaP-derived lines, whereas MT2-MMP mRNA expression was higher in the LNCaPderived than in PC3-derived cell lines. Active MT1, MT2 and MT3-MMP protein levels were similar in all lines, but processed MT-MMPs, indicative of latent MMP activation, were increased in more aggressive sublines. Expression of MMP-1, MMP-13 and TIMP-1 was higher in the more aggressive sublines and may be implicated in invasive/metastatic ability. Regulation of MMP-1 and MMP-13 expression may offer important therapeutic options for treating patients with prostate cancer.

Biomarkers, Tumor↗

Downregulation of KAI1 mRNA in localised prostate cancer and its bony metastases does not correlate with p53 overexpression.

Recent data have proposed that transcription of the KAI1 metastasis suppressor gene is directly mediated by p53 and that loss of KAI1 expression in advanced prostate cancer is simply due to loss of p53 function after mutation. To investigate this possibility, we have examined KAI1 mRNA (by in situ hybridisation) and p53 protein expression (by immunohistochemistry) as an indicator of wildtype or mutant p53, in a series of 77 paraffin-embedded prostate tissue samples, including post-mortem normal prostates (2), benign prostatic hyperplasia (10), localised cancer (grades 4-6, 25; grades 7-9, 21) and prostate-derived bony metastases (19). Overall, we confirmed that expression of KAI1 mRNA decreased from normal tissue, through localised cancer to bony metastases (P=0.055, tending to significance), while levels of p53 staining significantly increased with cancer progression (P=0.046). These were consistent with the possibility that loss of p53 function might be responsible for loss of KAI1 mRNA. However, by close examination of KAI1 and p53 in adjacent tissue sections, we found no correlation between decreased levels of KAI1 mRNA and overexpression of p53 protein (P=0.497). In addition, high levels of KAI1 mRNA could be identified in samples irrespective of p53 staining. Our data suggest that mutation of p53 is independent of the loss of KAI1 mRNA, and do not support a role for p53 in regulating the expression of KAI1.

Adult↗

Gene therapy for prostate cancer delivered by ovine adenovirus and mediated by purine nucleoside phosphorylase and fludarabine in mouse models.

A gene-directed enzyme pro-drug therapy (GDEPT) based on purine nucleoside phosphorylase (PNP), that converts the prodrug, fludarabine to 2-fluoroadenine, has been described, but studies are limited compared with other GDEPTs. We investigated the in vitro and in vivo efficacies of PNP-GDEPT for treating androgen-independent (AI) prostate cancer. The PNP gene controlled by Rous sarcoma virus (RSV) constitutive promoter was delivered using a recombinant ovine adenovirus vector (OAdV220) that uses a different receptor from human adenovirus type 5. In vitro, OAdV220 provided increased transgene expression over a comparable human Ad5 vector in infected AI, murine RM1 prostate cancer cells. Subsequent in vivo testing was therefore confined to OAdV220. Transduction of RM1 cells with OAdV220 before implantation in immunocompetent mice dramatically inhibited subcutaneous (s.c.) tumor growth when fludarabine phosphate was administered systemically and increased mouse survival in a dose-dependent manner. In tumor-bearing C57BL/6 mice, a single intratumoral injection of OAdV220 produced detectable PNP activity for at least 6 days and with prodrug, retarded the growth of aggressive RM1 s.c. tumors by 35% at day 14. There was a consistent trend to reduction of pre-established intraprostatic RM1 tumors. A similar regimen induced significant therapeutic efficacy in human PC3 xenografts. Thus, ovine adenovirus-mediated GDEPT using the PNP system was effective in vivo against AI prostate cancers, the aggressive murine RM1, and the human PC3 lines. Methods that improve viral dissemination and stimulate the immune system in vivo may further improve efficacy.

Adenine↗

A tissue-specific enhancer of the prostate-specific membrane antigen gene, FOLH1.

Prostate-specific membrane antigen (PSMA) is an integral membrane protein that is highly expressed on the surface of prostate epithelial cells. It is also expressed on the vascular endothelium of a number of tumor types. We have used an enhancer trap approach with randomly cleaved overlapping DNA fragments from an approximately 55-kb P1 cosmid insert encompassing the 5' half and upstream sequences of the PSMA gene (FOLH1) to isolate an enhancer that strongly activates the FOLH1 core promoter region. The enhancer (PSME) is located in the third intron about 12 kb downstream from the start site of transcription and is characterized by a 72-bp direct repeat within a 331-bp core region. The PSME activates transcription from its own and heterologous promoters in prostate cell lines; enhancement is greatest in the PSMA-expressing cell line LNCaP (>250-fold). The PSME shows essentially no activity in five nonprostate cell lines. PSME-enhanced expression is repressed in the presence of androgen, mimicking the repression of the endogenous FOLH1 gene. The data demonstrate that both cell-type specificity and androgen regulation are intrinsic properties of the enhancer. These properties make the PSME an excellent candidate for regulation of gene expression in gene therapy approaches to prostate cancer.

Androgens↗

Genetic markers of survival and liver recurrence after resection of liver metastases from colorectal cancer.

A significant number of patients with liver metastases from colorectal cancer (CRC) achieve 5-year survival after liver resection. Increased expression of genetic markers in the primary tumor are known to predict outcome after colonic resection, but the predictive value of such markers after resection of hepatic metastases is unknown. The objective of this study was to evaluate whether DNA content and multiple genetic markers, separately or expressed together, can predict patient outcome (liver recurrence and survival) after resection of hepatic metastases. We studied the paraffin-embedded liver tissue of 71 consecutive patients who had undergone a potentially curative resection of hepatic metastases from CRC. Using DNA flow cytometry and immunohistochemical staining techniques we determined the DNA content and the level of co-expression of seven tumor-associated proteins: proliferating cellular nuclear antigen (PCNA), epidermal growth factor receptor (EGFr), p53, c-erbB-2, H-ras, c-myc, and nm23. Three endpoints (liver recurrence, cancer specific, overall survival) were correlated with these tumor markers. The 5-year overall survival of the group was 31.2%. There was no correlation detected between the DNA aneuploidy and overall or cancer-specific survival. Similarly, expression of the individual tumor-associated proteins did not predict survival. Patients whose tumors co-expressed multiple markers had survivals similar to those whose tumors expressed fewer markers. However, a significant difference in hepatic recurrence was found between the p53-positive and p53-negative patients (p = 0.007), with marker-negative tumors having decreased recurrence. In conclusion, this study demonstrates that the DNA content and genetic markers c-myc, c-erbB-2, EGFr, H-ras, p53, PCNA, and nm23 do not predict survival after potentially curative resection of hepatic metastases from CRC. However, the immunoreactivity of p53 may be an important marker of local recurrence in the liver, which may be useful if re-resection of metastatic liver tumors is considered a viable management option in this disease.

Adult↗

Urokinase-type plasminogen activator and its receptor in colorectal cancer: independent prognostic factors of metastasis and cancer-specific survival and potential therapeutic targets.

Urokinase-type plasminogen activator (uPA) and its receptor (uPAR), plasminogen (Plg), and plasminogen activator inhibitors-1 and -2 (PAI-1 and PAI-2) have been observed in many cancers and may contribute to progression and metastasis. In our study, we examined the expression of the 5 proteins by immunohistochemistry in 59 consecutive primary colorectal cancers (CRC) and correlated the protein expression with patient outcome. In addition, we determined the effect of down-regulation of uPAR on the invasive/metastatic capability of CRC cells, by measuring antisense-uPAR transfected HCT116 and control cell lines, in terms of uPAR expression, uPA-binding activity, invasiveness through Matrigel in vitro and metastasis after cecal orthotopic implantation in nude mice in vivo. We found that higher expression of uPA or uPAR in primary tumor tissues was positively correlated with distant metastasis of CRC (Mann-Whitney, p < 0.02) and negatively correlated with both patient overall survival (OS) and cancer-specific survival (CSS; Cox model, p < 0.04). The prognostic value of uPA and uPAR for both OS and CSS was independent of other variables (multivariate Cox model, p < 0. 007). Antisense-uPAR transfected HCT116 cells, which expressed significantly lower levels of total cellular and cell surface uPAR proteins and uPA-binding activity compared with either wild-type or cells transfected with vector alone (Bonferroni, p < 0.05/3), consistently showed decreased invasiveness through Matrigel (Bonferroni, p < 0.05/3) and decreased metastasis formation in nude mice (Fisher, p < 0.05). Our data suggest that uPAR and uPA are independent prognostic factors in CRC; anti-uPAR treatment, which affects both uPAR and uPA levels, may have potential for new treatment of the disease.

Adult↗

Methylation of a CpG island within the promoter region of the KAI1 metastasis suppressor gene is not responsible for down-regulation of KAI1 expression in invasive cancers or cancer cell lines.

The molecular basis for downregulation of the KAI1 metastasis suppressor gene in invasive and metastatic human cancers is unknown. We have used bisulphite methylation analysis of DNA from paraffin-embedded invasive bladder tumour samples and from bladder cancer cell lines to determine if hypermethylation of a CpG island within the KAI1 promoter is responsible for this effect. Representative invasive tumour cell lines were also exposed to 5-aza-2-deoxycytidine. We found no evidence for hypermethylation of the CpG island and suggest that mechanisms other than promoter hypermethylation are responsible for reduced KAI1 expression in invasive bladder tumours and tumour cell lines.

Antigens, CD↗

Inverse correlation between KAI1 mRNA levels and invasive behaviour in bladder cancer cell lines.

We have previously shown that levels of KAI1 mRNA are dramatically reduced in invasive human bladder cancers. To further investigate the role of KAI1 in bladder cancer, we have examined the relationship between KAI1 mRNA levels and cell behaviour in 18 bladder cancer cell lines and a virus-transformed uro-epithelial cell line. We found that low KAI1 mRNA levels correlated with increased in vitro invasive ability, reduced Ca(2+)-dependent and -independent cell-cell adhesion and reduced adhesion to fibronectin. These data support the idea that loss of KAI1 expression is an important factor in tumour cell invasive behaviour.

Anticarcinogenic Agents↗

Genomic alterations (LOH, MI) on chromosome 17q21-23 and prognosis of sporadic colorectal cancer.

Genomic alterations at the long arm of chromosome 17, and in particular at the nm23 locus, are still controversial in colorectal cancer (CRC). Our aim was to investigate the possible relationship of loss of heterozygosity (LOH) and microsatellite instability (MI), at 4 microsatellite loci spanning the 17q21-23 region, to the risk of liver metastasis and nm23 protein expression. Genomic DNA extracted from 58 primary and 54 liver secondary formalin-fixed and paraffin-embedded CRCs was obtained from 82 patients. A fluorescent PCR coupled with an automated DNA sequencer was applied. Increasing fraction of loci showing LOH was positively associated with risk of liver metastases (logrank test for trend, p = 0.005); this remained independent after adjusting to T-stage (Cox regression, p = 0.022), N-stage (p = 0.007), or Dukes' stage (p = 0.012). Conversely, increasing frequency of MI was associated with a reduced risk of liver metastases in Dukes' B tumours (logrank test for trend, p = 0.032). When comparing 30 primary and matched liver secondary lesions, we found concordant genomic alteration in 72% (NME1) to 43% (D17S579). Finally, we observed a trend in association between the proportion of loci with LOH and nm23 positivity (chi2 test for trend, p = 0.024). Our findings suggest that genomic alterations in the 17q21-23 region may affect prognosis of CRC as well as regulation of the nm23 protein expression via an unknown underlying mechanism.

Adult↗

Evidence for post-transcriptional down-regulation of the apoptosis-related gene bcl-2 in human colorectal cancer.

This retrospective study was undertaken to investigate the expression of bcl-2 protein and messenger RNA in colorectal cancer (CRC). Immunohistochemical analysis using a monoclonal mouse antibody to the bcl-2 protein and in situ hybridization using a digoxigenin-labelled bcl-2 cRNA probe were carried out on formalin-fixed and paraffin-embedded specimens from 53 colorectal adenocarcinomas, 27 liver secondaries, and 60 adenomas with various degrees of dysplasia. Normal human tonsil sections were used as positive controls. Expression of bcl-2 protein and of messenger RNA was evaluated semiquantitatively. The expression of bcl-2 protein was gradually and significantly lost during the progression from moderately dysplastic adenoma to primary CRC (moderate/severe dysplasia: Mann-Whitney U-test, p=0.0001; severe dysplasia/primary CRC: p=0.027), whereas the cellular expression of bcl-2 mRNA was gradually increased during the dysplasia/adenoma-carcinoma neoplastic sequence. These observations suggest that in a proportion of colorectal cancer cases, the bcl-2 proto-oncogene expression may be down-regulated at a post-transcriptional level.

Adenoma↗