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Biomedical subjects

D Banerjee

Publications and source records attributed to D Banerjee.

At least 91 records · Page 5Linked to original sources

Higher levels of thymidylate synthase gene expression are observed in pulmonary as compared with hepatic metastases of colorectal adenocarcinoma.

PURPOSE: It has been observed previously that the pulmonary metastases of colorectal adenocarcinoma are less responsive to therapy with fluorouracil (FUra) as compared with other sites of metastasis (liver, local). To investigate the basis of this chemoresistance, the levels of thymidylate synthase (TS) mRNA and protein were measured, as TS expression has been shown to be predictive of response to therapy in colorectal cancer. MATERIALS AND METHODS: Tumors were obtained from 19 patients with metastatic colorectal cancer (12 hepatic and seven pulmonary). TS expression was measured by quantitative reverse-transcriptase polymerase chain reaction (RT-PCR) and TS protein levels were measured by Western blotting. The presence of TS amplification was assessed by Southern blotting. Levels of p53 protein were determined using immunohistochemistry. RESULTS: TS mRNA expression was shown to be significantly higher in the pulmonary metastases (mean TS/beta-actin ratio, 19.7; n = 7) as compared with the hepatic metastases (mean TS/beta-actin ratio, 4.7; n = 11) of colorectal cancer. Lower TS expression was observed in patients with hepatic metastases who had received prior FUra versus patients who had not been treated. High levels of TS expression in some samples was associated with low-level (two to three gene copies) increases in TS gene copy numbers and this was observed more frequently in the pulmonary metastatic samples. The increased gene copy numbers occurred both in samples with wild-type p53 and those with mutant p53 tumor-suppressor gene as determined by immunohistochemistry. CONCLUSION: High levels of TS enzyme may be the basis of the lack of response of pulmonary metastases to FUra treatment.

Adenocarcinoma↗

The prognostic role of p53, metallothionein, P-glycoprotein, and MIB-1 in muscle-invasive urothelial transitional cell carcinoma.

Tissue from primary tumors was analyzed for 118 patients with urothelial cancer who subsequently received cisplatin-based chemotherapy. Immunohistochemical staining was performed for nuclear p53 reactivity; for two proposed mediators of drug resistance, metallothionein (MT) and P-glycoprotein; and for the cell proliferation marker MIB-1. For each marker, immunoreactivity was expressed as a percentage of positively staining cells, and overall intensity of staining was graded on a scale from 0 to 3. The product of these two measurements was calculated to generate a percentage-intensity index. Clinical data were obtained independently via retrospective chart review. Chemotherapy regimens containing cisplatin (cisplatin, methotrexate, and vinblastine or methotrexate, vinblastine, doxorubicin, and cisplatin) were administered for metastatic disease (n = 64), for locally advanced disease (n = 45), or as an adjuvant treatment (n = 9). The overall response rate was 56% among 99 evaluable patients, and median survival was 12.7 months. By univariate analysis, Eastern Cooperative Oncology Group performance status (P = 0.0025), tumor grade (P = 0.03), percentage of MT staining (P = 0.01), and percentage-intensity index of MT staining (P = 0.04) were significant predictors of response to chemotherapy. The first three of these were significant in a multivariate model (P = 0.05, 0.04, and 0.04, respectively). By subgroup analysis, the percentage of MT staining predicted for response in metastatic disease (P = 0.03), but not in locally advanced disease (P = 0.28). Only performance status was significantly related to overall survival (P = 0.0001, log-rank test) in the whole cohort. Overexpression of MT in the 64 patients with metastatic disease was associated with a shorter survival (P = 0.04). Expression of p53, P-glycoprotein, and MIB-1 did not predict for survival. In conclusion, overexpression of MT is associated with a poorer outcome from chemotherapy, possibly due to cisplatin resistance.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

p53 point mutations and thymidylate synthase messenger RNA levels in disseminated colorectal cancer: an analysis of response and survival.

Recent studies suggest that there may be a strong correlation between the p53 status of a tumor and a patient's response to chemotherapy. Therefore, we determined p53 status in 36 patients with disseminated colorectal cancer by cDNA sequencing and immunohistochemical staining, as well as by the gene expression level of thymidylate synthase (TS), the target enzyme of 5-fluorouracil (5-FU), by reverse transcription-PCR. Ten patients (28%) experienced a clinical response to 5-FU chemotherapy. Overall, TS expression and response to chemotherapy were associated: 9 of 18 (50%) patients with TS < or = 3.0 x 10(-3) responded, compared to 1 of 18 (6%) patients with TS > 3.0 x 10(-3) (P = 0.003). p53 mutations were found in 21 of 36 patients (58%) using cDNA cycle sequencing, and p53 protein overexpression was found in 20 of 32 patients (62%) using immunohistochemistry staining. Overall p53 status and response to chemotherapy were associated: 5 of 10 (50%) patients with wild-type p53 or negative p53 staining experienced a response, but only 5 of 26 (19%) patients with mutant p53 or p53 overexpression responded. TS expression, but not expression of p53, was significantly associated with overall survival (P = 0.002). Patients with wild-type p53 had significantly lower TS levels compared to patients with mutated p53 (P = 0.044). In this study, we also present data linking specific p53 point mutations to TS expression levels and resistance to 5-FU. Although the number of patients is relatively small, these results identify p53 status and TS gene expression as associated with response in disseminated colorectal cancer; independent studies are needed to confirm these findings and to provide information leading to a better understanding of the role of 5-FU-based chemotherapy in the treatment of colorectal cancer.

Adult↗

Restoration of wild-type p53 activity in p53-null HL-60 cells confers multidrug sensitivity.

HL-60 cells that stably express transfected wild-type (wt) p53 were used to determine whether restoration of wt p53 increased the chemosensitivity of cells that normally lack p53 activity. The wt p53 HL-60 transfectants (SN3 cells) were more sensitive than the parental (S) cells to a number of common anticancer drugs representing various mechanisms of action, whereas HL-60 cells transfected with p53 genes mutated at codons 248 and 143 were not sensitized. The sensitization ratio due to the transfected wt p53 varied from about 2-fold for cisplatin to over 50-fold for thymidine. Cells treated with the thymidylate synthase inhibitor 5-fluoro-2'-deoxyuridine (FdUrd) were used to study changes in various p53-associated gene expressions. A higher percentage of apoptotic cells among the SN3 cells was observed than among the S cells at each concentration of FdUrd. The S cells had undetectable levels of bax and high levels of bcl-2, whereas the SN3 cells had undetectable levels of bcl-2 levels and appreciable basal levels of bax. After FdUrd treatment of SN3 cells, both p53 and bax levels increased, but the induction of bax was faster than that of p53 and paralleled the appearance of apoptotic DNA laddering. FdUrd treatment induced p21 expression and increased the G1 fraction of the SN3 cells but did not induce p21 or change the phase distribution in the S cells. FdUrd treatment also induced the expression and phosphorylation of cyclin D1 in the SN3 cells but not in the S cells. These results show that transfected wt p53 confers multidrug sensitivity to HL-60 cells by re-adjustment of the expressions of apoptosis genes and displays other properties characteristic of endogenously originated wt p53.

Antineoplastic Agents↗

Dihydrofolate reductase protein inhibits its own translation by binding to dihydrofolate reductase mRNA sequences within the coding region.

Previous studies suggest that dihydrofolate reductase (DHFR) regulates its own translation. Moreover, intracellular levels of DHFR protein increase following exposure to the antifolate methotrexate (MTX), suggesting that MTX may release the translational inhibition mediated by DHFR [Chu et al. (1993) Biochemistry 32,4756-4760; Ercikan et al. (1993) Adv. Exp. Med. Biol. 338, 537-540]. To further investigate the role of DHFR in translational autoregulation, we have considered the possibility that DHFR directly contacts its cognate mRNA. Binding studies using a series of truncated DHFR mRNAs as probes localized the DHFR/RNA interaction to a 100-base-pair region containing two putative stem-loop structures; initial studies indicated that both of these loop structures are involved in protein binding. Moreover, the binding of MTX to DHFR prevents interaction of the protein with its cognate mRNA, thereby relieving translational autoregulation.

Base Sequence↗

Rapid movement of newly synthesized chicken apolipoprotein AI to trans-Golgi network and its secretion in Madin-Darby canine kidney cells.

MDCK cells were utilized to study the biosynthesis and secretion of chicken apolipoprotein AI (apoAI). A full-length apoAI cDNA in an eukaryotic expression vector was transfected into a MDCK-TGG cell line, expressing a trans-Golgi network (TGN) marker (TGG), and stable clones expressing apoAI were selected. Pulse-chase and cell fractionation studies showed that, compared to gp 80 (an endogenous secretory protein), apoAI was rapidly transported from RER to Golgi complex within 5 min and released from the Golgi complex to the cell exterior by 30 min. Immunofluorescence and three-dimensional laser scanning confocal microscopy revealed that at steady state apoAI was predominantly localized in the TGN. Transferrin uptake experiments showed that apoAI, localized in the TGN, was derived primarily from biosynthetic and not from endocytic routes. ApoAI was secreted in a nonpolarized manner. We suggest that apoAI stays transiently in the TGN prior to its secretion and that the major events of apoAI biosynthesis in vivo and in MDCK cells are conserved. Possible mechanisms of rapid ER to Golgi transport and TGN localization of apoAI are discussed.

Animals↗

Post-transplant methotrexate administration leads to improved curability of mice bearing a mammary tumor transplanted with marrow transduced with a mutant human dihydrofolate reductase cDNA.

To test the concept that protection of bone marrow progenitor cells via introduction of a drug resistance gene would allow larger and curative doses of chemotherapy to be administered, we used mice bearing a transplanted breast cancer as a model system. Mice bearing the E0771 tumor were treated with lethal doses of cyclophosphamide (CPA) and rescued from toxicity by administration of bone marrow transduced with a mutant dihydrofolate reductase (DHFR) cDNA (Ser-31) in a retroviral construct. Animals receiving marrow not transduced with mutant DHFR cDNA died from methotrexate (MTX) toxicity, whereas mice transduced with mutant DHFR cDNA containing marrow were able to tolerate MTX treatment post-transplant; 44% of the mice had no demonstrable tumor when sacrificed on day 52. Another control group of mice treated with CPA and transplanted but not treated with MTX post-transplant succumbed to tumor regrowth. These data provide a strong rationale for the use of drug resistance genes to protect marrow from drug toxicity because the increase in dose tolerated may result in an improved cure rate of chemosensitive tumors.

Animals↗

Modulation of cytotoxicity of chemotherapeutic drugs by activated H-ras.

Cells from a single MCF-7 clone were transfected with an isopropyl-1-thio-beta-D-galactopyranoside (IPTG)-inducible construct containing activated human H-ras with a Gly12 --> Val12 mutation. Expression of H-ras was induced by the presence of IPTG with low background. MCF-7-ras clones were examined for sensitivity to a wide variety of drugs under both induced and non-induced conditions. When expression of the activated ras was induced, these clones showed markedly increased resistance to cisplatin and mitomycin C, moderately increased resistance to methotrexate and trimetrexate, and no increased resistance to other drugs including taxol, doxorubicin, and etoposide. A DNA fragmentation assay revealed that DNA in MCF-7-ras cells treated with cisplatin under induced conditions was intact, whereas extensive degradation of DNA occurred in similarly treated cells under non-induced conditions. This result, along with the fact that MCF-7-ras cells, upon induction of the activated H-ras, showed increased resistance to drugs that bind DNA, indicates that the activated H-ras may play a role in the DNA repair process.

Antineoplastic Agents↗

Interobserver variation in prostate cancer Gleason scoring: are there implications for the design of clinical trials and treatment strategies?

A series of prostate cancer histological slides from 71 patients were used to measure the interobserver variation among three pathologists awarding a Gleason score. The study was prompted on account of the use of histological grade to stratify patients prior to randomization within two clinical trials currently recruiting at our centre, and a proposed study that would allocate treatment depending upon the score awarded. The pathologists were expected to award a score based upon their day to day experience, there being no consensus meeting before-hand to agree on the grey areas of the Gleason grading system. We used the kappa statistic to assess the level of agreement. This was calculated both for comparison of the raw scores awarded by the three observers, as well as the grouped scores corresponding to those groupings used for the purposes of stratification in the two trials. The extent of the interobserver variation (weighted kappa) for the raw scores (Gleason scores 2-10) was 0.16 to 0.29 and for the grouped scores (Gleason scores < or = 7 or > or = 8), kappa was 0.15 to 0.29. For the raw scores, the total agreement rate was 9.9% and the total disagreement 26.8%; for the grouped scores the total agreement rate was 43.7%. It is concluded that, despite this level of agreement there is no concern regarding stratification using the Gleason score, because of the subsequent randomization. However, using a reported Gleason score to determine treatment might be inappropriate. These data indicate the value of a central review process for pathology grading in clinical trials, especially where the treatment is directly affected by this information.

Adenocarcinoma↗

Co-expression of the herpes simplex virus thymidine kinase gene potentiates methotrexate resistance conferred by transfer of a mutated dihydrofolate reductase gene.

We have previously shown that transfer of a mutated dihydrofolate reductase (DHFR) confers resistance to methotrexate (MTX) to infected cells. We report herein the construction of a retrovirus vector, DC/SV6S31tk, which carries the herpes simplex virus thymidine kinase gene (HSVtk) as well as the mutated Serine 31 DHFR (S31) cDNA. 3T3 cells infected with DC/SV6S31tk are more resistant to MTX than cells infected with DC/SV6S31, which carries the S31 and Neo gene. In DC/SV6S31tk-infected cells, a fraction of cells (20-40%) were more resistant to MTX compared with DC/SV6S31-infected cells, and these cells survived a 5-day exposure to 200 microM of MTX. The mechanism of this augmented resistance is attributed to the salvage of thymidine by HSVtk, as the augmentation is reversed when dialyzed serum is used for cytotoxicity assays. The cells that survive high-dose MTX selection have high levels of expression of S31 DHFR and HSVtk, although copy numbers of the proviral sequences do not increase significantly. Transduction of cells with the DC/SV6S31tk vector also sensitizes cells to ganciclovir (GCV). Co-expression of a metabolically related gene in a retroviral vector to potentiate the resistance imparted by a drug resistance gene may be useful for gene therapy for cancer patients.

3T3 Cells↗

Laryngeal involvement during post kala-azar dermal leishmaniasis in India.

Post kala-azar dermal leishmaniasis (PKDL) involving the mucus membranes is relatively rare on the Indian sub-continent. We describe 3 cases of PKDL presenting with hoarseness of voice. In one case the skin, nasal, oral, oropharyngeal and laryngeal mucosa had nodular and nodulo-ulcerative lesions; in the 2 other cases, genitalia and anorectal mucosa were also affected. Laryngoscopic examination revealed nodular lesions on the vocal cords. Biopsy smear and culture confirmed their leishmanial origin.

Adolescent↗

Increased photosensitivity in HL60 cells expressing wild-type p53.

Loss of p53 function has been correlated with decreased sensitivity to chemotherapy and radiation therapy in a variety of human tumors. Comparable analysis of p53 status with sensitivity to oxidative stress induced by photodynamic therapy has not been reported. In the current study we examined photosensitivity in human promyelocytic leukemia HL60 cells exhibiting either wild-type p53, mutated p53 or deleted p53 expression. Experiments were performed using a purpurin, tin ethyl etiopurpurin (SnET2)-, or a porphyrin, Photofrin (PH)-based photosensitizer. Total SnET2 accumulation was comparable in all three cell lines. Uptake of PH was highest in cells expressing wild-type p53 but incubation conditions could be adjusted to achieve equivalent cellular PH levels during experiments that analyzed photosensitivity. Survival measurements demonstrated that HL60 cells expressing wild-type p53 were more sensitive to PH- and SnET2-mediated photosensitization, as well as to UVC irradiation, when compared to HL60 cells exhibiting deleted or mutated p53 phenotypes. A rapid apoptotic response was observed following purpurin- and porphyrin-induced photosensitization in all cell lines. Results of this study indicate that photosensitivity is increased in HL60 cells expressing wild-type p53 and that photosensitizer-mediated oxidative stress can induce apoptosis through a p53-independent mechanism in HL60 cells.

Cell Survival↗

Prognostic factors for relapse in stage I testicular seminoma treated with surveillance.

PURPOSE: We sought to identify prognostic factors predictive of disease progression in patients with clinical stage I seminoma on surveillance following orchiectomy. MATERIALS AND METHODS: Between January 1981 and December 1993, 201 patients 20 to 86 years old (median age 34) with clinical stage I seminoma were placed on surveillance following orchiectomy. The potential prognostic factors studied included age, tumor size, mitotic count, S phase fraction, ploidy, presence of small vessel invasion, syncytiotrophoblasts and tumor infiltrating lymphocytes, expression of beta-human chorionic gonadotropin and low molecular weight keratin on immunohistochemistry. RESULTS: With a median followup of 6.1 years (range 1.3 to 12.3) 31 patients had relapse for an actuarial 5-year relapse-free rate of 84.9%. The 5-year actuarial survival rate was 97.1% and the cause specific survival rate was 99.5%. On univariate analysis factors predictive of relapse were tumor size (5-year relapse-free rate 88 and 67% for tumors 6 cm. or less and greater than 6 cm., respectively, p = 0.004), age (5-year relapse-free rate 79 and 91% for age 34 years or younger versus older than 34 years, respectively, p = 0.009) and presence of small vessel invasion (5-year relapse-free rate 86 versus 69%, p = 0.01). On multivariate analysis age and tumor size were predictive of relapse, while small vessel invasion approached statistical significance. The risk of relapse in 57 patients with none of the 3 adverse prognostic factors (age greater than 34 years, tumor 6 cm. or smaller and no small vessel invasion) was 6%. CONCLUSIONS: We identified age, size of the primary tumor and small vessel invasion as important prognostic factors for relapse in patients with stage I seminoma treated with surveillance. Further followup and assessment of biological factors are needed to optimize selection of patients at a high risk for relapse who should receive immediate postoperative therapy.

Actuarial Analysis↗

Haematological changes in buprenorphine-treated mice.

Studies were carried out in adult male Swiss mice to determine whether different haematological parameters like total counts of red and white blood cells, differential counts of white blood cells, haematocrit value and blood haemoglobin level were affected by the synthetic opioid analgesic, buprenorphine, which has currently been known to be abused in several countries by the heroin addicts as a cheap substitute for heroin. The mice were daily given an intraperitoneal injection of buprenorphine (300 micrograms/kg) for 60 consecutive days. A severe leucopenia accompanied by decreases in lymphocyte and monocyte counts, an increase in neutrophil count, a decrease in haematocrit value, a rossette-like adherence of red blood cells to a few neutrophils and platelet satellitism were observed at the advanced stages of treatment. The abnormalities, however, reverted to normal within 45 days following withdrawal of the drug. The necessity of periodic monitoring of the blood picture in human abusers of the drug is suggested.

Agranulocytosis↗

Characterization of native falcipain, an enzyme involved in Plasmodium falciparum hemoglobin degradation.

In Plasmodium falciparum, a cysteine protease known as falcipain has been implicated in the essential metabolic process of hemoglobin degradation. Parallel lines of investigation, using native or recombinant enzyme, have led to differing conclusions about the specificity and role of this protease. We have now determined that (1) Native falcipain does not cleave hemoglobin unless this substrate has first been denatured by reducing agents, acid-acetone treatment or plasmepsin action. (2) Reducing agents such as glutathione cannot denature hemoglobin in the presence of catalase, which is accumulated in the digestive vacuole. (3) The purified native enzyme has kinetics similar to those obtained with trophozoite extract, but substantially different from those of recombinant enzyme. (4) Although there are numerous cysteine protease genes in the P. falciparum genome, the falcipain gene is the only one whose transcript can be detected in the early intraerythrocytic parasites. We conclude that falcipain likely works by degrading hemoglobin fragments after initial aspartic protease attack has denatured the substrate. We propose that falcipain inhibitors block the initial steps of degradation indirectly by promoting vacuolar accumulation of osmotically active hemoglobin peptides.

Animals↗