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Biomedical subjects

M J Droller

Publications and source records attributed to M J Droller.

At least 73 records · Page 4Linked to original sources

Controversies in urologic oncology.

The persistent controversies that characterize urologic oncology reflect the significant advances that have been made in our understanding of genitourinary malignancy and the objective posture that has been taken both by those active in this area and by those whose interests are more indirect. Ultimately, the beneficiaries of these controversies are the patients and their physicians. As continued problems are recognized and investigations are designed to explore them, controversy and skepticism become a healthy concomitant so that true knowledge and understanding can be achieved and such issues ultimately resolved.

Carcinoma in Situ↗

Biologic response modifiers in genitourinary neoplasia.

With the exception of testis cancer, the variety of genitourinary cancers have not been found to be consistently responsive to chemotherapeutic agents or regimens for other than anecdotal short duration. This has generated keen interest in the possibility that biologic response modifiers might either directly or through manipulation of immune response mechanisms successfully prevent tumor progression in these systems. In recent years, those substances that have attracted the greatest attention have included interferon (and, more recently, recombinant gamma interferon), bacillus Calmette-Guerin (BCG), tumor necrosis factor, prostaglandin synthetase inhibitors, and interleukin-2. Results with each of these agents in the variety of genitourinary cancers have been both promising and disappointing. A number of mechanisms have been suggested to underlie the actions of each of these substances, and the successful or unsuccessful recruitment of these mechanisms, in the context of the particular intrinsic behavior of the cancers being treated, have been suggested as reasons for the treatment results that have been seen. Therapeutic efficacy has been described in the treatment of renal cell cancer by both systemic interferon and interleukin-2. Successful treatments have been reported in approximately 20% of patients treated with each substance, but generally, these results have been of short duration. Topical BCG has been used with great success to treat superficial transitional cell bladder cancer. In these instances, the generation of tumor necrosis factor has been suggested as possibly accounting for the 70% success rate both in therapy and prophylaxis that has been seen. Leukocyte-derived interferon and, more recently, recombinant gamma interferon, were found in initial trials to generate a 20% response rate in renal cell carcinoma patients. Enthusiasm for these agents, however, has been tempered more recently both by a failure to reproduce these results with any substantial duration as well as by the significant side effects that have been seen. Clearly, these agents continue to be intriguing both because of their intellectual appeal through the mechanisms by which they may be effective, as well as by the absence of any definitive therapy for the cancers they are being used to treat. An understanding of the complex host/tumor cell interaction that may ultimately determine therapeutic efficacy for each of these agents is undoubtedly critical if the role of these substances in the treatment of genitourinary cancer is to be successfully implemented, either alone or in combination with other treatment modalities.

Animals↗

Ureteral and renal pelvic metastases from renal cell carcinoma.

Six patients with ureteral or renal pelvic metastases from renal cell carcinoma (RCC) were studied radiologically. Correlation with surgical and histologic findings confirmed renal venous involvement in 5 and lymphatic invasion in 3 patients. The possible role of nephroureterectomy or secondary ureterectomy in patients with RCC is discussed in the background of our cases, as are prior reports of this finding.

Adult↗

Immunotherapy of metastatic renal cell carcinoma with polyinosinic-polycytidylic acid.

Polyinosinic-polycytidylic acid, a double-stranded ribonucleic acid that is a potent inducer of interferon production, was used in a stabilized form to treat 11 patients with metastatic renal cell carcinoma. Seven patients completed a full course of 8 infusions at maximum tolerated dosage. All patients experienced transient fever and marked fatigue. Anorexia was mild. Transient leukopenia occurred in 3 patients and reversible elevation in creatinine was observed in 1. All 4 patients with brain metastases became lethargic, and 3 died during or shortly after therapy. Only 2 patients demonstrated measurable total regression of isolated metastases (pleural/pulmonary in 1 and bone in 1) but in both metastases at other sites progressed. No partial regressions were seen. Metastases at all other sites (liver, brain and renal fossa) progressed during therapy. Patients who appeared to respond and who performed best during therapy generally demonstrated a higher performance status initially. Expression of natural cytotoxicity in in vitro testing did not correlate with a demonstrated response to treatment.

Bone Neoplasms↗

Thiotepa effects on urinary cytology in the interpretation of transitional cell cancer.

In recent years we have witnessed increased reliance on 2 modalities in the management of patients with superficial transitional cell cancer of the bladder, that is intravesical chemotherapy for the control of existing and recurrent disease, and urinary cytology for the diagnosis of persistent or new neoplastic cells. This development has prompted some concern as to whether the use of chemotherapy might affect the morphological appearance of cells so as to make the interpretation of cytological specimens in this setting unreliable. We describe morphological differences between neoplastic cells and normal as well as cancer cells exposed in situ and in vitro to thiotepa. An appreciation of these differences has permitted accurate diagnosis of urinary cells in the presence or absence of cancer despite the regular use of this agent. Thus, it appears that the status of bladder cancer can be monitored successfully by an assessment of urinary cytology in the context of long-term treatment and prophylaxis with this agent.

Carcinoma, Transitional Cell↗

Intensive intravesical chemotherapy in the treatment of flat carcinoma in situ: is it safe?

Recent enthusiasm for the use of intensive regimens of intravesical chemotherapy in the management of various forms of superficial transitional cell carcinoma of the bladder prompted us to examine retrospectively a group of patients with carcinoma in situ treated by such regimens who failed with progressive and metastatic cancer. Of 8 patients with flat carcinoma in situ treated with thiotepa 5 presented initially with concomitant solitary stage T1 papillary tumors that were resected successfully at initial presentation. Six patients had diffuse or multifocal carcinoma in situ, while 2 others had only a solitary focus of in situ disease. All patients had persistently positive urinary cytology studies during treatment, prompting 3 of them to receive intravesical mitomycin C following their course of thiotepa. Involvement of the prostatic urethra developed during therapy in 3 patients and 3 had muscle-infiltrative disease. At cystectomy 3 of 7 patients had positive pelvic lymph nodes and 4 died of distant metastases at an average of 8 months after cystectomy. These results suggest that despite the apparent advances that have been made in the control of recurrent superficial transitional cell bladder cancer, the intrinsic behavior of some forms of the disease may determine cancer progression. Identification of such patients is indicated for the institution of early aggressive treatment, which in the end may actually be the more conservative therapeutic approach.

Antibiotics, Antineoplastic↗

Macrophage depletion and manipulation of enhanced immune response in an animal model of bladder cancer.

In a transplantable model of bladder cancer the inhibition of tumor growth by polyinosinic:polycytidylic acid (poly(I:C], concomitant stimulation of natural killer cell activity, and inhibition of both effects by prior inoculation with anti-interferon antiserum have been previously observed. The possible role of macrophages in these interactions is explored. Depletion of peritoneal macrophages by silica at concentrations that did not markedly depress natural killer cell activity was found to inhibit the enhancement of natural killer cell activity by subsequent in vivo poly(I:C) inoculation. Inoculation with silica also seemed to abrogate the tumor inhibitory effect of poly(I:C) treatment. To determine whether effects of poly(I:C) on natural cytotoxicity and tumor growth were mediated through production of interferon, anti-interferon antiserum (alpha-IF) was inoculated prior to poly(I:C) therapy. Tumor growth appeared to be uneffected by this maneuver even though poly(I:C)-induced enhancement of natural cytotoxicity was inhibited. Taken together, both macrophages and interferon may play a pivotal role in the immune response in both a stimulatory and a suppressive capacity. Additional study on such influences may be important if in vivo manipulation of these regulatory effects is to be accomplished successfully.

Animals↗

Modulation of stimulatory effects of poly(I:C) on natural cytotoxicity by anti-interferon.

The effect of polyinosinic . polycytidylic acid [poly(I:C)] on tumor inhibition in the context of natural cytotoxicity enhancement prompted further assessment of mechanisms underlying these effects. In vivo inoculations of poly(I:C) led to dose-dependent cytotoxicity enhancement in splenic lymphocytes and nonrecruited peritoneal exudate cells (monocytes). Although cytotoxicity of macrophages and lymphocytes together was less than that seen with lymphocytes alone, addition of indomethacin to these samples did not enhance cytotoxicity. In vivo inoculation of anti-interferon prior to poly(I:C) treatment prevented poly(I:C)-induced enhancement of natural cytotoxicity. Tumor growth was significantly inhibited by poly(I:C) treatment. Prior inoculation of anti-interferon antiserum partially prevented such tumor inhibition. Taken together, the tumor-inhibitory effect of poly(I:C) in this model may be mediated by interferon production and, at least in part, by interferon-induced enhancement of natural cytotoxicity.

Animals↗

Indomethacin and poly I:C in the inhibition of carcinogen-induced bladder cancer in an experimental animal model.

Fischer rats, in whom superficial transitional cell cancers of the urinary bladder were induced by the carcinogen N-[4-(5- nitrofuryl )-2-thiazolyl] formamide, were inoculated intraperitoneally with either phosphate buffered saline, indomethacin (a prostaglandin synthetase inhibitor), poly I:C (an interferon inducer), or indomethacin together with poly I:C. While indomethacin alone appeared to have a significant albeit variable inhibitory effect on tumor size, poly I:C had a far more pronounced significant inhibitory effect. The combination of poly I:C and indomethacin together, however, led to the greatest inhibition in tumor growth, and in some instances, to tumor regression. Splenic lymphocytes from the same animals demonstrated enhanced natural cytotoxicity after treatment with poly I:C. Surprisingly, levels of natural cytotoxicity seen in animals treated with indomethacin and poly I:C together were lower than those seen with poly I:C alone. No enhancement of cytotoxicity could be demonstrated in vitro in lymphocytes from indomethacin-treated animals. Macrophages were also treated in this system under identical conditions. However, the activity of macrophages alone and of macrophages and lymphocytes together did not appear to be modified either by indomethacin alone or by the combination of prostaglandin synthetase inhibition and interferon induction together, the combination of which in vivo was suggested to be most effective in controlling tumor progression. Further studies to determine timing of these interactions and doses of immune response modifiers in order to characterize mechanisms possibly at work in modifying tumor growth in this system therefore seem highly indicated.

Animals↗

Immunotherapy in genitourinary neoplasia.

The putative role of the immune response in the natural defense against neoplasia remains poorly defined. Correspondingly, its potential recruitment as a means of cancer therapy has remained unfulfilled. The intricate interactions of immune response mechanisms as well as the heterogeneity of tumor cells themselves have contributed to this situation. Moreover, the immunosenescence that occurs during aging may have further compromised potential means of recruiting immune response mechanisms in treating cancer. The various attempts to treat different types of genitourinary neoplasia are illustrations of these difficulties, and emphasize directions that may need attention in future therapeutic efforts.

BCG Vaccine↗

Mutation affecting the 12th amino acid of the c-Ha-ras oncogene product occurs infrequently in human cancer.

A point mutation alters the 12th amino acid of the c-Ha-ras oncogene product p21 in a human bladder cancer cell line. This is, at present, the only mutation known to result in a human transforming gene. This mutation may therefore represent a possible target for mutagenesis leading to carcinogenesis in humans. By means of restriction enzyme analysis, 29 human cancers, including 20 primary tumor tissues, derived from organs commonly exposed to environmental carcinogens, were tested for the presence of this mutation. None of ten primary bladder carcinomas exhibited the mutation; nor did nine colon carcinomas or ten carcinomas of the lung. Thus the point mutation affecting the 12th amino acid of the c-Ha-ras gene product, while a valuable model for carcinogenesis, does not appear to play a role in the development of most human epithelial cancers of the bladder, colon, or lung.

Adenocarcinoma↗

Therapeutic efficacy of salvage cystectomy. Do results reflect natural history of bladder cancer?

In a retrospective review of patients who underwent salvage cystectomy, patients with muscle-invasive cancers who had initially presented with tumors that were pathologically TA or T1 appeared to have a better prognosis than those who had muscle-invasive (T2 or T3) cancers on initial clinical presentation. Prognosis in each group appeared to correlate with the stage of tumor at initial clinical presentation rather than with stage of tumor at recurrence after radiation therapy. Prognosis also appeared to correlate with architectural configuration of the presenting tumor as well as the type of invasion. Thus, papillary lesions with muscle invasion by a broad front of histologically cohesive blocks of cells appeared to have a better prognosis than did solid or nodular lesions that appeared to invade the muscle wall in a tentacular fashion with fingerlike tumor cell extensions that seemed to percolate through the bladder wall. Taken together, the results of treatment in these patients may have represented the intrinsic nature of their particular tumors.

Carcinoma, Transitional Cell↗

Enhancement of natural cytotoxicity in lymphocytes from animals with carcinogen-induced bladder cancer.

Splenic lymphocytes from Fischer rats with carcinogen (FANFT)-induced bladder cancer had depressed natural cytotoxicity that could be enhanced in vitro by the addition of mouse leukocyte interferon to the cytotoxicity assay. Such enhancement appeared to reflect an effect directly on lymphocytes rather than a cytotoxic effect on tumor target cells. The possibility that tumor cell prostaglandin production might partially inhibit lymphocyte cytotoxicity and its enhancement prompted separate attempts to enhance cytotoxicity by inhibiting prostaglandin production during cytotoxicity testing. However, addition of indomethacin to the cytotoxicity assays did not enhance cytotoxicity in lymphocytes from either control or tumor-bearing rats and did not add to the enhancement seen with interferon. Addition to the cytotoxicity assay of unstimulated peritoneal monocytes which themselves have been shown to produce prostaglandins, did not effect lymphocyte cytotoxicity. Correspondingly, indomethacin in parallel samples did not alter baseline levels of cytotoxicity seen. Further stimulation of cytotoxicity by addition of interferon to these samples was also not seen. Taken together, in vitro enhancement of depressed lymphocyte cytotoxicity in tumor-bearing animals was possible with exogenous leukocyte interferon, could not be accomplished by inhibition of prostaglandin production in this system, and did not appear to be influenced by the addition or deletion of monocytes during cytotoxicity testing.

Animals↗