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Biomedical subjects

A Nicolin

Publications and source records attributed to A Nicolin.

At least 37 records · Page 2Linked to original sources

Antitumor immunity induced by photodynamic therapy with aluminum disulfonated phthalocyanines and laser light.

Photodynamic therapy (PDT) is systemic administration of tumor localizing photosensitizers and subsequent irradiation with light of the appropriate wavelength. The combination of drug uptake in malignant tissues and selective delivery of laser-generated light provides effective therapy, with efficient tumor cytotoxicity and minimal normal tissue damage. There have been few studies of the effects of photoactivated photosensitizers on the host immune response. Since immunity is important in the control of tumor growth and spread, we have examined, in our laboratory, the effects of photoactivated phthalocyanines on the antitumor immune response. Immunosuppressed and normal mice bearing the MS-2 fibrosarcoma treated with 5 mg/kg of aluminum disulfonated phthalocyanine (AIS2Pc) and then the tumor mass exposed to laser light (100 mW/cm2 x 10 min) or treated with surgical excision of the tumor survived indefinitely, with no difference between the different groups. The survivors, tumor-free 100 days after the treatment modalities described above, were rechallenged with the parental MS-2. Some groups of surviving animals were immunosuppressed with cyclophosphamide before the injection of the tumor. Resistance to rechallenge was evidenced only in normal surviving animals cured by PDT, while the immunodepressed surviving animals and animals cured by surgery died of tumor. Finally, mice, cured by PDT and tumor-free, rechallenged with L1210 and P388 murine leukemias did not survive. These results suggest that a potential and specific 'antitumor immunity' is induced by PDT with photoactivated AIS2Pc.

Animals↗

Antiproliferative effect of DNA polymerase alpha antisense oligodeoxynucleotides on breast cancer cells.

Antisense oligonucleotides appear to offer considerable promise as sequence-specific inhibitors of gene expression. Different cellular targets for oligodeoxynucleotides with oncologic interest have been identified such as oncogenes, growth factors, and cell cycle-related genes. DNA polymerase alpha (pol alpha) plays a relevant role in DNA synthesis and cell proliferation. Pol alpha gene expression is constitutive throughout the cell cycle and its mRNA content and activity are related to the growth rate and neoplastic phenotype. The effects of a 18-mer pol alpha antisense oligomer on the proliferation of the MDA-MB 231 breast cancer cell line have been investigated. After 48 h in culture with oligomers (10 microM), about 50% growth inhibition was observed in antisense-treated cells, as evaluated by 3-(4,5-dimethythiazol-2yl)-2,5-diphenyltetrazolium bromide assay and cell count. [3H]Thymidine incorporation exhibited a 90% inhibition of DNA synthesis associated to 64% accumulation of cells at the G1-S border of the cycle as by flow cytometry, at 24 h. Northern hybridization and SDS-PAGE of immunoprecipitated MDA-MB 231 cell lysates revealed a decreased expression of pol alpha mRNA and a reduction of the 180-kDa polypeptide, respectively. Collectively, the data further confirm the relevance of pol alpha in the replicative cycle, as well as strengthen the potentiality of the antisense strategy for the control of gene expression and cell growth.

Adenocarcinoma↗

Antisense oligonucleotide blocks progesterone-induced lordosis behavior in ovariectomized rats.

Antisense oligonucleotides were utilized to interfere with the synthesis of progesterone receptor. A specific aODN was shown to decrease significantly the levels of PR in the T47D cell line known to express the PR gene. The molecule described was proved to be effective in hindering the effect of progesterone on target gene expression in T47D cells. The aODN was then utilized in an in vivo study to test its efficacy on the female rat sex behavior. Its injection in the ventromedial hypothalamus significantly inhibited the estrous responsiveness induced by progesterone. This study provides a clear demonstration of the full involvement of PR in the manifestation of lordosis behavior and demonstrates the activity of an aODN as antiprogestative.

Animals↗

Oligonucleotide degradation contributes to resistance to antisense compounds.

A subline of the human B cell lymphoma DHL-4, grown in the artificial serum-free medium HB101, displayed a resistant phenotype to the activity of an antisense oligodeoxynucleotide (aODN) effective on the parental DHL-4 line. It was found that the cellular uptake of the 18mer aODN in the two cell lines was almost the same. In contrast, the unresponsive subline DHL-4r degraded the aODN very efficiently, in contrast to the stability of aODN inside cells of the parental DHL-4 line. Activation of the degrading 'machinery' combined with selective properties of the artificial medium may be responsible for the loss of responsiveness to aODN.

Antineoplastic Agents↗

Therapeutic implications of antisense oligonucleotides.

Antisense oligonucleotides and their derivatives have been shown to be specific inhibitors of gene expression. They are considered a very promising new generation of drugs, potentially useful in most human diseases, including cancers and viral infections. The elegance of the antisense oligonucleotides lies in their ability to bind, via standard Watson-Crick base pairing, a complementary region within a target mRNA. Although easily synthesized, therapeutic applications have been restricted by a number of difficulties including: stability, pharmacokinetic behavior (both a cellular and at systemic level), and the high cost of industrial production. The object of this review is to briefly describe the major properties of antisense oligonucleotides, the modalities currently under investigation to circumvent the difficulties in their use, and the up-to-date experimental applications, including findings from our own laboratory. As very few oligonucleotides need to be synthesized in order to obtain an active compound, compared with an average of 10,000 new standard compounds, prospects are extremely exciting and worthy of maximum attention.

Autoimmune Diseases↗

Rapid development of resistance to antifolates in vitro: possible clinical implication.

Within three repeated 7-day incubation periods with either methotrexate (MTX) or trimetrexate (TMTX), human colon adenocarcinoma cells (HCT-8) developed high levels of resistance to these drugs, as evidenced by approximately 20- and 50-fold increases, respectively, in the median effective doses. Similarly, within six short-term exposures (4 hours) to the same drugs, a high degree of resistance developed in the cells. Alternating 4-hour treatment cycles with MTX and TMTX did not delay the onset of resistance to these antimetabolites in the HCT-8 cells. The same strategy produced no better results than giving either MTX or TMTX alone to (C57BL/6 x DBA/2)F1 mice bearing murine leukemia P388 cells. Furthermore, HCT-8 cells resistant to short-term (4-hour) exposure to MTX were cross-resistant to the same drug given for 7 days continuously, and cells resistant to MTX given continuously for 7 days were cross-resistant to the same drug given for 4 hours. Analogous results were obtained with TMTX, indicating that, under these circumstances, changing the schedule of administration of the same agent does not overcome resistance to it. The clinical relevance of these data to prolonged adjuvant chemotherapy, as well as loco-regional and continuous-infusion chemotherapy, is discussed.

Adenocarcinoma↗

The use of antisense oligodeoxynucleotides (aODNs) for the therapy of cancer.

Although specific cancer targets are difficult to identify, the recent development of antisense oligodeoxynucleotides (aODNs) as inhibitors of gene expression has been shown to provide a new and useful tool in antiblastic management. aODNs are able to specifically interact with gene or mRNA sequences and inhibit the expression of relevant molecules for cancer pathogenesis and progression. Since alpha-DNA polymerase (pol-alpha) plays an essential role in cell proliferation, aODNs to pol-alpha have been synthesized in order to block mRNA translation and affect the growth of MDA-MB 231, human breast cancer cell line and SW626 ovarian cancer cells. A rapid colorimetric test (MTT assay) which measures cell growth and survival has been employed to evaluate the effects induced by ODN treatment. The present experimental results demonstrate that the aODNs to pol-alpha are able to significantly affect cell proliferation. This study provides an encouraging basis for the exploitation of ODNs as therapeutic agents in vitro and in future clinical application.

Cell Division↗

Peripheral blood and tumor infiltrating lymphocytes in non-small cell lung cancer: analysis at the population and clonal level.

Tumor infiltrating (TIL) and peripheral blood lymphocytes (PBL) were isolated from 18 patients with non-small cell lung cancer undergoing radical surgery. Surface marker analysis revealed that TILs and PBLs mainly consisted of CD3+ T cells and that TILs generally displayed a lower CD4/CD8 ratio. Differences were found in the expression of CD25 (IL-2 receptor) and DR (MHC class II) antigens, which were increased in TILs, and in the percentage of CD16+ natural killer (NK) cells, which was reduced in TILs as compared to PBLs. Accordingly, the NK activity of TILs was lower than that of PBLs, whereas neither TILs nor PBLs expressed spontaneous cytolytic activity against fresh autologous tumor cells, melanoma cells and the "NK-resistant" A549 lung carcinoma cell line. After 4 days of culture in medium with recombinant-interleukin-2 (rIL-2), TILs and PBLs acquired cytolytic activity against all cell targets, but TILs expressed higher levels of cytotoxicity than autologous PBLs only in 3 patients out of 16 tested. More importantly, both TILs and PBLs displayed similar levels of cytotoxic activity against autologous tumor cells. TILs and PBLs from 8 patients were also analyzed by a limiting dilution microculture system. Cloning efficiency was remarkably lower in TILs, and surface marker analysis of T cell clones confirmed that an accumulation of CD8+ lymphocytes, which displayed cytolytic activity in a lectin-dependent assay, occurred at the tumor site. The non-MHC-restricted cytolytic activity of TIL- and PBL-derived T cell clones against K562, A549, and allogeneic melanoma cells and the cytolytic activity against autologous tumor cells showed no significant differences. Only 53% of TIL clones released IL-2 in response to PHA + TPA stimulation, whereas 68% of PBL-derived clones were IL-2 producers. Moreover, most PBL- and TIL-derived clones released tumor necrosis factor alpha in response to mitogen stimulation.

Aged↗

Thymidine labelling index as prognostic factor in resected non-small cell lung cancer.

To assess the prognostic value of tumor proliferative activity, 89 patients with operable non-small cell lung cancer were studied. Tumor samples were obtained during surgery and cell kinetics were analyzed by the in vitro thymidine labelling index (TLI). The overall median TLI (2.9) was used to identify two subsets of patients with high and low proliferating tumors. In univariate analysis survival was significantly longer in patients with lower TLI (P = 0.047) and with stage I-II (P = 0.003) and T1-T2 tumors (P = 0.043). In multivariate analysis, stage was the most important prognostic parameter (P = 0.004). The risk of death for patients with TLI higher than 2.9 was increased (hazard ratio = 2.01, CI = 0.96-4.27).

Adult↗

Generation and characterization of a low-degree drug-resistant human tumor cell line.

A 2780 human ovarian cancer cells, obtained from an untreated patient, have been exposed to a relatively low, clinically maintainable dose (10 nmol/l) of the anthracycline doxorubicin (DX) to derive a low-degree (5-fold) drug-resistant subline (A2780-DX1). Compared to parental cells, these DX-resistant cells have increased size (+60% of cell volume) and contain a greater number of cytoplasmic vacuoles as determined by electron microscopy. When exposed to several other antiproliferative drugs, A2780-DX1 cells were highly cross-resistant (greater than 10-fold) to epirubicin, mafosfamide and cisplatin and slightly cross-resistant (2- to 3-fold) to navelbine and bleomycin, while they retained the original sensitivity to vinblastine, Ara-C and fluorouracil. Gel electrophoresis of cytoplasmic membrane proteins showed differences between the pattern of parental A2780 sensitive and A2780-DX1 cells as far as low-molecular-weight proteins (less than 45 kD) are concerned, while no clear overexpression of P-glycoprotein (P-170) could be detected. Membrane modifications yielding a decrease of both DX uptake and retention, increased content of intracellular glutathione (+32%) and reduced DNA double-strand breaks seem to be involved in the resulting multidrug-resistant phenotype of A2780-DX1 cells.

Antineoplastic Agents↗

HPLC determination of azidothymidine (AZT) and its metabolite in human plasma.

In order to evaluate the amount of Azidothymidine (AZT) and its metabolite (GAZT) in human plasma, the HPLC retention times of both compounds on a C18 column as well as on an anionic column by using, as eluent, the same mobile phase have been studied. The two chromatographic systems did not allow, separately, a simultaneous determination of AZT and GAZT. In fact AZT is easily revealed by a C18 column whereas the GAZT elution results too fast and the peak falls into plasmatic matrix. The opposite situation, namely the fastest AZT elution, has been observed by using the anionic column. In contrast by using the two columns linked together (max. back-pressure 21-22 MPa) both peaks were delayed conveniently and did not overlap with the plasmatic matrix. The total analysis time was about 11 min. long. The methodology reported here was further proved rapid and reliable as assessed by preliminary assays in plasma of an AZT treated patient.

Chromatography, High Pressure Liquid↗

Cell kinetics in ovarian cancer. Relationship to clinicopathologic features, responsiveness to chemotherapy, and survival.

The tumor proliferative activity of 74 previously untreated epithelial ovarian carcinomas was evaluated by the thymidine labeling index (TLI) and the primer-dependent alpha DNA polymerase assay (PDP-LI). The median TLI and PDP-LI were 2% (0.1 to 28.0) and 10% (3.0 to 80.0), respectively. The TLI was significantly correlated to tumor grade, International Federation of Gynecology and Obstetrics (FIGO) stage, and residual disease. However, neither the TLI nor the PDP-LI was a predictor of survival. A higher response rate was observed in the case of rapidly proliferating tumors: an objective response (OR) was observed in 38.4% of the patients with a low TLI and in 53.6% of the patients with a high TLI. The advantage of an OR in favor of the high TLI group was significant for patients treated with regimens containing doxorubicin (high TLI, 72.2% OR; low TLI, 40% OR; P = 0.03).

Aged↗

Assimilation of LDL by experimental tumours in mice.

We have studied the uptake of 125I-labelled low-density lipoprotein (LDL) by seven experimental murine tumours in vivo. Four tumours (Lewis Lung carcinoma, B-16, MS-2 and Colon 26) showed a higher relative uptake of lipoprotein as compared to the liver, two (L-1210 and P-388) had a very low lipoprotein uptake, while lipoprotein uptake by tumour M5 was similar to that of the liver. The data was confirmed by tracing tissue uptake of lipoproteins using [14C]sucrose-labeled LDL. These in vivo findings correlated well with the in vitro specific binding of 125I-beta-VLDL to membranes prepared from tumours, thus suggesting that the expression of the LDL receptor in the tumours is related to the in vivo uptake of lipoprotein. Further analysis of the LDL receptor by ligand blotting showed that the tumor receptor has several of the liver LDL receptor characteristics (including apparent Mr, sensitivity to proteinases, and Ca2+ requirement of lipoprotein binding). In summary, our data show that experimental murine tumours express the LDL receptor and suggest that the high relative in vivo uptake of LDL is determined by the elevated LDL-receptor expression in the tumours.

Animals↗

Sequence-dependent enhancement of HCT-8 cell kill by trimetrexate and fluoropyrimidines: implications for the mechanism of this interaction.

The new folate antagonist trimetrexate is an inhibitor of dihydrofolate reductase, but unlike methotrexate (MTX) it is not polyglutamylated. We have compared the cell killing effects of MTX and trimetrexate/5-fluorouracil (FUra) and 5-fluoro-2'-deoxyuridine (FdUrd) combinations on HCT-8 cells in vitro, in an attempt to explore indirectly the role of polyglutamylation of the antifol in determining the known sequence-dependent synergism between MTX and FUra. The comparisons were made in a number of equitoxic concentrations and times of exposure. Trimetrexate given for 4, 24 or 48 h followed by FUra, for 4, 24 or 196 h, produced synergistic HTC-8 cell kill, whereas antagonism was observed when FUra preceded or was given simultaneously with trimetrexate. The degree of interaction was essentially identical to those obtained when MTX was combined with FUra. The interactions between MTX/FdUrd and trimetrexate/FdUrd were also similar: synergistic cell kill resulted from the sequences trimetrexate or MTX followed by FdUrd, while additive effects were produced by trimetrexate or MTX + FdUrd combinations or FdUrd followed by MTX or trimetrexate. Because the same interactions observed with MTX/FUra or FdUrd combinations were also obtained when trimetrexate was combined with the fluoropyrimidines, it is unlikely that polyglutamylation of the antifols plays a significant role in determining the different sequence-dependent effects of these antimetabolites. However, these studies do not rule out the possibility that increased levels of dihydrofolate polyglutamates increase fluoropyrimidine cytotoxicity.

Adenocarcinoma↗

Toxicity of fenclor 42 in mice: effects on immunocompetent cells.

The aim of this study is to evaluate the effects of Fenclor 42 (a mixture of trichlorobiphenyls) on the immune system. A prolonged administration of this compound to CD2F1 mice resulted in a reduction of relative spleen and thymus weight according to the dose. Furthermore, spleen weights, total number of splenocytes and relative spleen weights decreased significantly also following a single treatment with 0.5 g/kg or 1 g/kg of Fenclor 42. An analysis of the functional activity of splenocytes pointed out that proliferative response to mitogens was also inhibited. Splenic parameters returned to normal values within 5 days after a single treatment and between 8 and 15 days after a subchronic administration. The functional activity of splenocytes was restored between day +5 and day +8 according to the different schedules of treatment. On the contrary, natural killer cell (NK) activity was never affected by Fenclor 42. Studies are in progress to elucidate the intimate mechanism of the toxicity of Fenclor 42 on immunocompetent cells.

Animals↗

Phenotypic and functional characterization of T cell clones following allogeneic bone marrow transplantation.

T cell clones (n = 456) were derived from 9 patients following allogeneic bone marrow transplantation (BMT) with or without acute graft versus host disease (aGVHD) and from 4 healthy donors. The cloning efficiency was 63.2% in controls, 13.2% and 12.1% in patients with or without aGVHD. Once established, T cell clones were typed for surface markers (CD3, CD4, CD8) and tested for production of IL-2 and expression of cytolytic activities in a lectin-dependent cellular cytotoxicity assay (LDCC) and against the K562 target cell line to detect natural killer activity. We found the expected imbalance of CD4/CD8 clones in BMT patients, as compared to controls. A higher proportion of IL-2-producing clones was observed in patients with aGVHD (83.5%; P less than 0.02) as compared to patients without aGVHD (64.8%) and controls (68.5%). No major differences were found in terms of LDCC, whereas an increased percentage of clones with NK-like activity was found in patients with aGVHD (34.7%, P less than 0.05) as compared to patients without aGVHD (29.5%) and controls (21.3%). The clones were also tested for inhibition of IL-2 production mediated by cyclosporine. Such inhibition could be obtained in virtually all clones both in patients with or without aGVHD, suggesting that the latter is probably not due to the emergence of CsA-resistant clones. In conclusion, this study demonstrates a low cloning efficiency in BMT patients associated with the well-known CD4/CD8 imbalance. A higher production of IL-2, an increased NK activity, but not the presence of CsA-resistant clones appear to differentiate patients with from patients without aGVHD.

Antigens, Surface↗