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N Hoosein

Publications and source records attributed to N Hoosein.

7 recordsLinked to original sources

N-methyl-D-aspartate receptor in human prostate cancer.

Expression of the N-methyl-D-aspartate receptor (NMDAr) and its involvement in cellular proliferation is well-known in tumors of neuronal tissue, such as glioma and neuroblastoma. We have investigated NMDAr expression in the normal, hyperplastic and neoplastic human prostate by immunohistochemistry. Low stromal NMDAr immunostaining was observed in 2 of 12 (17%) normal prostate specimens, but epithelial NMDAr staining was not seen. Of 18 benign prostatic hyperplasia (BPH) specimens, none had stromal NMDAr staining, but 2 had low and 1 had high epithelial NMDAr immunoreactivity. Moderate to high NMDAr immunostaining was observed in the stroma of 60 of 145 (41%) prostate cancer (PCa) specimens. Epithelial NMDAr staining was low in 26 (18%) and moderate to high in 36 (25%) of 145 PCa specimens. We have also examined the effects of the NMDAr antagonist memantine on the growth of ten human cancer cell lines: four prostate, two breast and four colon. The NMDAr antagonist memantine inhibited in-vitro growth of all ten cell lines, with half-maximal growth-inhibition at 5 to 20 microg/ml (23 to 92 microM) memantine. An NMDA agonist, L-cysteinesulfinic acid, stimulated cellular proliferation of all ten cell lines, with maximal growth-stimulation (30% to 75%, depending on the cell line) observed between doses of 33 to 66 microM. Our data provide evidence for the expression and activity of NMDAr in prostate cancer.

Breast↗

Changes in beta-2 microglobulin expression in prostate cancer.

Increased shedding of beta-2 microglobulin (B2m, 11.8 kDa), a component of the major histocompatibility complex class I (MHC I), by tumor cells has significance with regard to escape from immune-surveillance, cellular proliferation, and tumor development and progression. Aberrant expression of MHC I is known to occur in prostate cancer (PCa) but not in benign prostatic hyperplasia. We have determined B2m released by PCa cells in culture and in the urine of 101 patients with advanced PCa by Western blotting and radioimmunoassay. B2m levels in the conditioned medium of human PCa cell lines and primary cultures derived from distant metastasis as well as in the urine of patients with bone and visceral metastasis were higher than normal and also higher than those from patients with local/regional extensions of the disease. In the group of patients with bone metastasis (66 patients), high urine B2m was associated with significantly shortened survival. In addition to the 11.8 kDa B2m, a high molecular weight B2m immunoreactivity of approximately 38 kDa was found in highly tumorigenic PC-3 cell line, but not in the relatively indolent DU-145 and LNCaP human PCa cell lines. The approximately 38 kDa B2m was found in the urine of several PCa patients but not of healthy controls examined by Western analysis. The conditioned medium of a prostatic small cell carcinoma cell line, NCI-H660, had high levels of chromogranin A and B2m, but prostate specific antigen was absent. In conclusion, increased B2m shedding was associated with distant metastasis of PCa and an abnormal B2m immunoreactivity was found in PCa.

Journal Article↗

Differences in the expression and effects of interleukin-1 and -2 on androgen-sensitive and -insensitive human prostate cancer cell lines.

The presence of interleukin-1 (IL-1) and IL-2 mRNA in five human prostate cancer (PCa) cell lines and their effects on cellular proliferation and prostate-specific antigen (PSA) levels were examined. IL-1 was found in androgen-unresponsive PC-3 and DU-145 but not in the androgen-responsive LNCaP, MDA-PCA-2a and MDA-PCA-2b cell lines. IL-2 message was absent while that of GAPDH (positive control) was present in all five cell lines. IL-1 decreased while IL-2 increased PSA levels of near-confluent LNCaP cells after 24 h of treatment. IL-1 inhibited whereas IL-2 stimulated the growth of sub-confluent LNCaP cells (72 h). Neither cytokine affected the proliferation of DU-145 or PC-3 cells.

Androgens↗

Modulation of neuroendocrine differentiation in prostate cancer by interleukin-1 and -2.

Neuroendocrine differentiation in prostate cancer has received much attention recently because it has been found to be associated with androgen independence and shortened patient survival in some studies. We have investigated the effect of the cytokines interleukin-1 (IL-1), IL-2, and IL-6 on the expression of the neuroendocrine marker chromogranin A in human prostate cancer cell lines. Chromogranin A was measured by fluorescence-immunoassay, as well as by immunoblotting. We find that IL-1beta and IL-6 increase the cellular content and chromogranin A secretion by LNCaP and DU-145 cells. By contrast, IL-2 decreases the cellular and secreted chromogranin A levels in the two cell lines. Our results suggest that these proinflammatory cytokines can influence neuroendocrine differentiation in prostate cancer and be involved in disease progression.

Cell Differentiation↗

Expression of urokinase and its receptor in invasive and non-invasive prostate cancer cell lines.

We previously reported that extracellular matrix invasion by the prostate cancer cell lines, PC-3 and DU-145 was contingent on endogenous urokinase being bound to a specific cell surface receptor. The present study was undertaken to characterize the expression of both urokinase and its receptor in the non-invasive LNCaP and the invasive PC-3 and DU-145 prostate cells. Northern blotting indicated that the invasive PC-3 cells, which secreted 10 times more urokinase (680 ng/ml per 10(6) cells per 48 h) than DU-145 cells (63 ng/ml per 10(6) cells per 48 h), had the most abundant transcript for the plasminogen activator. This, at least, partly reflected a 3 fold amplification of the urokinase gene in the PC-3 cells. In contrast, urokinase-specific transcript could not be detected in the non-invasive LNCaP cells previously characterized as being negative for urokinase protein. Southern blotting indicated that this was not a consequence of deletion of the urokinase gene. Crosslinking of radiolabelled aminoterminal fragment of urokinase to the cell surface indicated the presence of a 51 kDa receptor in extracts of the invasive PC-3 and DU-145 cells but not in extracts of the non-invasive LNCaP cells. The amount of binding protein correlated well with binding capacities calculated by Scatchard analysis. In contrast, the steady state level of urokinase receptor transcript was a poor predictor of receptor display. PC-3 cells, which were equipped with 25,000 receptors per cell had 2.5 fold more steady state transcript than DU-145 cells which displayed 93,000 binding sites per cell.

Blotting, Northern↗

The inhibition of the paracrine progression of prostate cancer as an approach to early therapy of prostatic carcinoma.

The prevalence of neural elements in prostatic carcinoma and their effects on the behavior of the lesion have recently been recognized. Recent reports suggest that chromogranin-A- and neuron-specific enolase-expressing tumors have an earlier progression and a lower response rate to hormonal therapy. The extreme presentation of this tumor is presumed to be small cell carcinoma of the prostate. This bombesin-secreting tumor, which has a characteristic clinical picture of early visceral involvement, wide-ranging metastases, and a relatively low rate of expression of PSA and PAP, is highly responsive to chemotherapy. The relatively high rate of expression of neural elements in primary prostatic carcinoma is discordant with the low frequency of clinical small cell carcinoma of the prostate. In order to account for these differences, one can assume that neural elements may play a role in the progression of this disease by either developing their own neoplastic process (small cell carcinoma of the prostate) or, in the majority of cases, causing paracrine progression of the tumor. Bombesin is typically secreted by small cell carcinoma of the lung and possibly by the prostate. It has been shown to be a growth factor mediating the progression of this disease in a number of experiments. Preclinical data demonstrate increased invasiveness and increased proliferation associated with bombesin in the treatment of prostatic carcinoma. Based on the hypothesis that neural peptides may be important mediators of androgen-independent growth of prostatic carcinoma as well as predicting poor prognosis, inhibition of these factors may represent a therapeutic strategy of relevance for the treatment of patients with prostatic carcinoma.

Animals↗

Inhibition by anticonvulsants of prostate-specific antigen and interleukin-6 secretion by human prostate cancer cells.

BACKGROUND: Anticonvulsants/antiepileptics inhibit high-frequency firing of action potentials that occur during an epileptic seizure, by mechanisms such as blocking sodium and calcium ion conductances. High sodium channel expression has been previously associated with aggressive behavior of prostate cancer (PCa) cell lines. The anticonvulsant phenytoin is known to inhibit the secretory activity and growth of human osteoblastic cells. MATERIALS AND METHODS: The effect of four anticonvulsants on the secretion of prostate-specific antigen (PSA) and interleukin-6 (IL-6) by human PCa cell lines (LNCaP, DU-145 and PC-3) was studied using immunoanalysis. RESULTS: Phenytoin and carbamazepine, which inactivate voltage-gated sodium channels, inhibited the secretion of PSA by LNCaP and IL-6 by DU-145 and PC-3 cell lines. Valproate and ethosuximide, which block calcium channels, had somewhat lower antisecretory effects. The growth of the three PCa cell lines in Matrigel was inhibited by all four anticonvulsants, at clinically-relevant doses. CONCLUSION: Further study of the usefulness of anticonvulsants in PCa therapy is warranted.

Anticonvulsants↗