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Biomedical subjects

R J Motzer

Publications and source records attributed to R J Motzer.

At least 37 records · Page 2Linked to original sources

Management of renal cell carcinoma.

Surgical resection remains the cornerstone of management for localized renal cell carcinoma. No effective postsurgical adjuvant therapy has been established for patients with locally advanced disease who are at high risk for recurrence. The effective treatment of metastatic kidney cancer remains a challenge. Immunologic therapy with cytokines, such as interferon-alfa (Intron A, Roferon-A) and interleukin-2 (IL-2 [Proleukin]), benefit relatively small numbers of patients. Preclinical research and clinical investigations aimed at identifying new agents and treatment programs with improved antitumor activity against metastases remain the highest priorities in this refractory disease. New immunologic approaches to the treatment of both advanced and high-risk postsurgical disease are focusing on novel vaccine therapies to target both renal epithelial and vascular antigens.

Antibodies, Monoclonal↗

Paclitaxel (Taxol) combination therapy for resistant germ cell tumors.

Rob Paclitaxel (Taxol; Bristol-Myers Squibb Company Princeton, NJ) showed antitumor activity in patients with germ cell tumors resistant to combination cisplatin-containing chemotherapy and was included in two risk-directed first-line combination salvage programs. Patients with relapsed germ cell tumors originating from a testis primary site were treated in a phase I/II trial with conventional-dose paclitaxel, ifosfamide, and cisplatin. Fifteen of 21 evaluable patients (71%) achieved a complete or partial response with normal serum tumor markers; 12 patients (57%) remain progression free with a median follow-up period of 15 months. Accrual to this trial continues to further define efficacy and toxicity. In a second trial, patient with cisplatin-resistant germ cell tumors and unfavorable prognostic features (prior incomplete response or an extragonadal primary site) were treated with a dose-intensive program consisting of rapid recycling of paclitaxel plus ifosfamide followed by carboplatin plus etoposide with stem cell support. Twenty-one of 37 assessable patients (57%) achieved a complete response and two (5%) achieved a partial response with negative serum tumor markers; 15 (41%) of these patients remain in durable response with a median follow-up period of 30 months.

Antineoplastic Combined Chemotherapy Protocols↗

Novel investigative approaches for advanced renal cell carcinoma.

Metastatic renal cell carcinoma remains one of the most treatment-resistant malignancies in humans. As such, long-term survival is limited to a minority of patients. Interferon-alpha and interleukin-2 induced major responses in some patients with renal cell carcinoma, and in so doing generated a great deal of interest and hope. However, clinical benefit is limited to relatively few patients. Here, we briefly discuss the management of metastatic renal cell carcinoma, and then elaborate on several novel treatment approaches in development, including retinoids, monoclonal antibodies, and antiangiogenesis strategies.

Adjuvants, Immunologic↗

Survival and prognostic stratification of 670 patients with advanced renal cell carcinoma.

PURPOSE: To identify prognostic factors and a model predictive for survival in patients with metastatic renal-cell carcinoma (RCC). PATIENTS AND METHODS: The relationship between pretreatment clinical features and survival was studied in 670 patients with advanced RCC treated in 24 Memorial Sloan-Kettering Cancer Center clinical trials between 1975 and 1996. Clinical features were first examined univariately. A stepwise modeling approach based on Cox proportional hazards regression was then used to form a multivariate model. The predictive performance of the model was internally validated through a two-step nonparametric bootstrapping process. RESULTS: The median survival time was 10 months (95% confidence interval [CI], 9 to 11 months). Fifty-seven of 670 patients remain alive, and the median follow-up time for survivors was 33 months. Pretreatment features associated with a shorter survival in the multivariate analysis were low Karnofsky performance status (<80%), high serum lactate dehydrogenase (> 1.5 times upper limit of normal), low hemoglobin (< lower limit of normal), high "corrected" serum calcium (> 10 mg/dL), and absence of prior nephrectomy. These were used as risk factors to categorize patients into three different groups. The median time to death in the 25% of patients with zero risk factors (favorable-risk) was 20 months. Fifty-three percent of the patients had one or two risk factors (intermediate-risk), and the median survival time in this group was 10 months. Patients with three or more risk factors (poor-risk), who comprised 22% of the patients, had a median survival time of 4 months. CONCLUSIONS: Five prognostic factors for predicting survival were identified and used to categorize patients with metastatic RCC into three risk groups, for which the median survival times were separated by 6 months or more. These risk categories can be used in clinical trial design and interpretation and in patient management. The low long-term survival rate emphasizes the priority of clinical investigation to identify more effective therapy.

Adult↗

Up-regulation of retinoic acid receptor beta expression in renal cancers in vivo correlates with response to 13-cis-retinoic acid and interferon-alpha-2a.

Retinoic acid receptor-beta (RAR-beta) mRNA is not expressed by retinoid-resistant renal cancer cell lines but is present in retinoid-sensitive SK-RC-06 renal cancer cells and increases following incubation with retinoic acid (RA), suggesting that the antitumor action of RA is mediated through RAR-beta (A. D. Hoffman et al., Clin. Cancer Res., 2: 1077-1082, 2996). To determine whether RAR-beta expression correlates in vivo with major clinical response to patients with renal cell carcinoma (RCC) who were treated with retinoid-based therapy, we used in situ hybridization to analyze RAR-beta expression in tumor specimens obtained from patients who were treated on a clinical trial with 13-cis-RA and IFN-alpha. Thirty-three tissue specimens were analyzed (23 pretreatment and 10 on-treatment). mRNA expression was based on staining intensity, with scores within tumor cells ranging from 0 to 2, where a score of 0 indicated absence of staining, a score of 1 indicated weak staining, and a score of 2 indicated strong staining. RAR-beta expression was present in 22 of 23 (96%) pretreatment and 9 of 10 (90%) on-treatment specimens. Pretreatment levels of expression did not associate with the site of biopsy and did not predict for major clinical response to RA plus IFN-alpha therapy (two-sided Fisher's exact test, P = 0.826). However, an increase in the intensity of RAR-beta mRNA expression was detected in four of five (80%) patients who achieved a major response but in none of the five patients with progressive disease in whom sequential biopsies were available (two-sided Fisher's exact test, P = 0.048). These data show that RAR-beta transcripts increase in tumor cells of RCC patients who clinically respond to retinoid-based therapy. Retinoids that potently induce RAR-beta expression should be evaluated in the treatment of advanced RCC.

Biopsy↗

Chromosomal amplification is associated with cisplatin resistance of human male germ cell tumors.

Chemotherapy resistance of tumors is an important biological and clinical problem. Studies from many tumor types have indicated that resistance may be based on multiple genetic pathways. Human male germa cell tumors (GCTs) are an especially good model system to study the genetic basis of tumor sensitivity and resistance to chemotherapy. GCTs are exquisitely sensitive to treatment with DNA-damaging drugs such as cisplatin, rarely exhibit TP53 gene mutations, express normal p53 protein, and undergo p53-mediated apoptosis upon drug treatment. A small proportion of tumors (20-30% of metastatic lesions) escape the apoptotic response and result in treatment resistance. We have recently shown (J. Houldsworth, et al., Oncogene, 16: 2345-2359, 1998) that in a subset of such tumors, resistance is linked to TP53 gene mutations. In a further search for genetic mechanisms underlying resistance, we subjected a panel of 17 tumors from relapse-free patients (sensitive) and 17 chemotherapy-resistant tumors to comparative genomic hybridization analysis to identify possible amplified regions (implying amplified/overexpressed genes) associated with resistance. With the exception of 12p11.2-12, high level amplification was not detected in any of the sensitive tumors. We have identified eight amplified regions (1q31-32, 2p23-24, 7q21, 7q31, 9q22, 9q32-34, 15q23-24, and 20q11.2-12) in five resistant tumors, which suggests that chromosomal and, hence, gene amplification may comprise a pathway to drug resistance. Identification of amplified/overexpressed genes at these sites may elucidate new genetic pathways of chemotherapy resistance in GCTs and possibly also in other tumors.

Chromosome Mapping↗

Teratoma with malignant transformation: diverse malignant histologies arising in men with germ cell tumors.

PURPOSE: Teratoma with malignant transformation refers to a form of germ cell tumor in which a somatic teratomatous component becomes morphologically malignant and develops aggressive growth. We evaluated the spectrum of histologies, chromosomal abnormalities and clinical outcome in patients with teratoma with malignant transformation. MATERIALS AND METHODS: We identified 46 patients with germ cell tumor meeting morphologic criteria for malignant transformation. Histology, disease extent and treatment were correlated with survival. Tumors in 12 patients were studied by conventional cytogenetics or molecular genetic techniques for the isochromosome 12p [i(12p)], a marker for germ cell tumor, as well as other chromosomal abnormalities. RESULTS: The site of first detection of malignant transformation occurred in the primary tumor of 21 cases (44%), at a metastatic site in 20 (43%) and in both sites in 5 (10%). Sarcoma was the most frequent histology, identified in 29 patients (63%) with rhabdomyosarcoma the most common subtype. Seventeen tumors (37%) contained a solid tumor histology other than sarcoma, with adenocarcinoma and primitive neuroectodermal tumor as the most common histologies. Four patients with mediastinal germ cell tumor containing sarcoma also had hematological malignancies, including a focus of nonHodgkin's lymphoma in the mediastinal primary tumor (1) and nonlymphocytic leukemia in spleen or bone marrow (3). Patients who had teratoma with malignant transformation components confined to the testis or retroperitoneum completely resected experienced a longer survival than those with distant metastases or incompletely resected tumors (p = 0.003). Chromosomal abnormalities associated with germ cell tumor (i[12p]) were identified in 11 of 12 tumors containing adenocarcinoma, primitive neuroectodermal tumor, sarcoma and leukemia. In addition to i (12p), chromosomal rearrangements characteristic of the transformed histology were detected in 4 tumors. CONCLUSIONS: A variety of nongerm cell histologies, including sarcoma, adenocarcinoma, primitive neuroectodermal tumor and leukemia, may occur in association with germ cell tumor. Chromosomal abnormalities in these tumors include i (12p), reflecting germ cell tumor clonality, as well as chromosomal abnormalities associated with the transformed histology. These tumors do not respond like germ cell tumor to cisplatin-containing chemotherapy regimens. Treatment should be tailored according to that used in standard management of the transformed histology, and surgical resection is the mainstay of therapy.

Adenocarcinoma↗

Risk assessment for metastatic testis cancer.

Metastatic germ cell tumors represent a model for curable malignancy, with 70% to 80% of patients cured of their disease. Patients with a good prognosis are likely to be cured, and the aim of investigation is to maintain the high cure rate while minimizing toxicity. For patients who fail to achieve a complete response (CR) to therapy, or who relapse after achieving CR, the prognosis is poor--these patients have become the focus of more intensive treatment to increase the cure rate. Distinguishing which patients will require more aggressive therapy ab initio has been the goal of successive attempts to stratify patients into either good- or poor-risk groups to tailor treatment accordingly. A number of analyses have yielded variable factors and differing schemas to classify patients, culminating in the International Germ Cell Consensus Group whose findings have been utilized to develop the new testicular cancer staging system for the American Joint Committee on Cancer (AJCC) and the Union International contre le Cancre (UICC). This article traces the developments in risk assessment that have lead to this consensus, which would prospectively allow comparison among future clinical trials.

Biomarkers, Tumor↗

Poor-risk germ cell tumors. Recent developments.

Standard therapy for patients with poor-risk germ cell tumors remains four cycles of bleomycin, etoposide, and cisplatin (BEP) chemotherapy, which cures approximately 50% of this patient population. Randomized trials of conventional-dose chemotherapy have failed to identify a regimen with superior efficacy to BEP. Preliminary data suggesting efficacy for high-dose chemotherapy with stem cell or autologous bone marrow transplantation as initial therapy for poor-risk disease have led to two randomized trials of this approach as initial therapy for poor-risk patients. The recently developed International Germ Cell Consensus Classification provides a standard method for determining poor-risk status and should be uniformly applied for both clinical decision making and risk assignment in clinical trials.

Antineoplastic Agents↗

Metastatic germ cell tumors: modeling for response to chemotherapy.

PURPOSE: This study sought to determine factors that predict response to chemotherapy for patients with advanced germ cell tumors (GCTs), to evaluate different methods by which serum tumor markers can be used to predict response independent of assay method, and to develop criteria to guide allocation to clinical trials. METHODS: Pretreatment data from 796 patients treated with platinum-based chemotherapy on Memorial Hospital protocols from 1975 to 1990 were analyzed. Multivariate analyses were performed on a developmental data set (n = 597) to assess for independently significant predictors of response. Predictive models developed using these methods were confirmed on the validation set (n = 199). RESULTS: Independently significant factors for response included a mediastinal primary tumor (.015), pure seminomatous histology (.002), metastases to nonpulmonary visceral sites (bone, liver, and brain; .0001), and the pretreatment values of lactate dehydrogenase (LDH; .0001) and human chorionic gonadotropin (HCG; .0001). The likelihood of complete response (CR) was increased by seminomatous histology and decreased by the other factors. Serum levels of HCG and LDH could predict outcome independent of assay methodology. A model to predict good-, intermediate-, and poor-risk categories with CR rates of 92%, 76%, and 39%, respectively, was developed. CONCLUSION: The independent prognostic factors of serum tumor markers LDH and HCG, the sites of metastases, and the primary origin of GCTs can predict outcome in patients with advanced GCT. These factors should be considered in the allocation of patients with advanced disease to clinical trials and have been included in the new tumor-node-metastasis (TNM) staging systems developed for the American Joint Committee on Cancer (AJCC) and the Union Internationale Contre le Cancer (UICC).

Antineoplastic Combined Chemotherapy Protocols↗

Aminopeptidase A expression and enzymatic activity in primary human renal cancers.

The gp160 human kidney differentiation antigen is identical to human aminopeptidase A (APA), a zinc-dependent cell-surface metallopeptidase which hydrolyzes peptides with N-terminal acidic residues. GP160/APA is constitutively expressed by proximal tubule cells, the normal cellular counterpart of most renal cancers (RCs). Immunohistochemical analysis of gp160/APA protein expression in 62 primary renal tumor specimens using monoclonal antibody S4 revealed heterogeneous or homogeneous expression of gp160/APA in 46/51 (90%) of clear cell carcinomas in contrast with 1/8 (13%) papillary renal tumors and 0/3 oncocytomas (p<0.001). Analysis of five primary clear cell carcinomas for gp160 protein expression immunohistochemically and associated APA catalytic activity revealed one tumor which expressed gp160/APA protein which was enzymatically inactive. Direct sequence analysis of DNA derived from this specimen could not detect mutations within the zinc-binding domain which would eliminate gp160/APA catalytic activity. These data indicate that the gp160/APA protein is expressed by primary clear cell but not papillary RCs or oncocytomas, and that alterations in gp160/APA protein including loss of protein expression or enzymatic activity occur in 20% of primary clear cell RCs.

Adenoma, Oxyphilic↗

Phase I trial of subcutaneous recombinant human interleukin-12 in patients with advanced renal cell carcinoma.

Patients with advanced renal cell carcinoma were treated in a Phase I trial with escalating doses of recombinant human interleukin-12 (rHuIL-12) given on days 1, 8, and 15 of each 28-day cycle. Treatment in the initial dose scheme consisted of a fixed dose with dose levels of 0.1, 0.5, and 1.0 microg/kg given to cohorts composed of three or six patients. On the basis of the toxicity profile, a second scheme (up-titration) was undertaken wherein rHuIL-12 was escalated for each patient from week 1 to week 2, to a target dose given week 3 and thereafter; cohort target dose levels were 0.5, 0.75, 1.0, 1.25, and 1.5 microg/kg. Fifty-one patients were treated: 32 (63%) had prior cytokine therapy and 19 (37%) had received no prior systemic therapy. The maximum tolerated dose for the fixed dose scheme was 1.0 microg/kg. Dose-limiting toxicities included increase in transaminase concentration, pulmonary toxicity, and leukopenia. The most severe toxicities occurred with the first injection and were milder upon further treatment. With the up-titration dose scheme, the maximum tolerated dose was reached at 1.5 microg/kg, and dose-limiting toxicity consisted of an increase in serum transaminase levels. At the maximum tolerated dose of 1.5 microg/kg, serum IL-12 levels increased to a mean peak level of 706 pg/ml. Serum levels of IFN-gamma increased to a mean peak level of about 200 pg/ml at 24 h after the first maintenance dose of 1.5 microg/kg. The best responses were as follows: one patient had complete response, 34 patients were stable, 14 patients showed progression, and 1 patient was inevaluable. In conclusion, rHuIL-12 was relatively well tolerated when administered by s.c. injection. The recommended dose according to the up-titration schedule of rHuIL-12 (microg/kg) for Phase II trials was as follows: cycle 1, 0.1 (day 1), 0.5 (day 8), 1.25 (day 15); cycle 2 onwards, 1.25. Phase II trials of rHuIL-12 were initiated in previously untreated patients with renal cell carcinoma and in patients with melanoma.

Adolescent↗

A phase II study of 13-cis-retinoic acid in patients with advanced renal cell carcinoma.

The aim of this study was to determine the antitumor activity of 13-cis-retinoic acid as a single agent in patients with advanced renal cell carcinoma. Eligible patients had advanced renal cell carcinoma with bi-dimensionally measurable disease, a Karnofsky performance status of at least 70, life expectancy of greater than three months, no evidence of brain metastases, and treatment with no more than one chemotherapy regimen. Patients were treated with one mg/kg/day of 13-cis-retinoic acid orally. Twenty-six patients were enrolled in this study and 25 were evaluable for response and toxicity. Of the twenty-five evaluable patients, no major responses were achieved. Toxicity was mild, with no patient requiring a dose reduction. At the dose administered in this trial, 13-cis-retinoic acid is inactive as a single agent in renal cell carcinoma.

Adult↗

High-dose carboplatin, etoposide, and cyclophosphamide with autologous bone marrow transplantation in first-line therapy for patients with poor-risk germ cell tumors.

PURPOSE: A treatment program that included high-dose carboplatin, etoposide, and cyclophosphamide (CEC) followed by autologous bone marrow transplantation (AuBMT) was investigated as first-line therapy in patients with poor-risk germ cell tumors (GCTs). PATIENTS AND METHODS: Previously untreated GCT patients with poor-risk features were treated with etoposide, ifosfamide, and cisplatin (VIP) with or without high-dose CEC plus AuBMT. Patients qualified for a change to high-dose CEC if a prolonged clearance of elevated serum tumor markers was observed after two cycles of the cisplatin-containing regimen. RESULTS: Sixteen patients were treated with VIP alone and 14 with VIP and high-dose CEC. Seventeen patients (57%) achieved a complete response. Twenty are alive (67%) and 15 (50%) are free of disease at a median follow-up time of 30 months. For 23 cycles of high-dose CEC, the median time from AuBMT to a granulocyte count > or = 0.5/microL was 11 days (range, 0 to 14) and to a platelet count 50,000/microL, 19 days (range, 14 to 34). The survival of 58 patients treated in two of our center's programs that incorporated high-dose chemotherapy (high-dose carboplatin plus etoposide [CE] and CEC) was compared with our prior experience with conventional-dose cisplatin chemotherapy alone in poor-risk GCT. Patients treated with marker-dependent, early-intervention high-dose chemotherapy experienced longer survival (P = .001). CONCLUSION: In this setting, high-dose CEC was well tolerated, cumulative toxicity was lacking, and the recovery of blood counts after AuBMT was rapid. A randomized trial has been initiated to investigate further the role of high-dose CEC in first-line therapy for patients with poor-risk GCT.

Antineoplastic Combined Chemotherapy Protocols↗

Long-term follow-up of patients with good-risk germ cell tumors treated with etoposide and cisplatin.

PURPOSE: To assess the durability of response and overall survival for patients with good-risk metastatic germ cell tumors (GCT) treated with four cycles of etoposide and cisplatin (EP). PATIENTS AND METHODS: Two hundred fourteen patients treated with EP on two consecutive randomized trials for good-risk metastatic GCT were the subject of this retrospective study. The response to therapy, relapse and survival status, and results of salvage therapy are reported. RESULTS: One hundred ninety-five patients (91%) achieved a complete response (CR). This included 182 patients (85%) who achieved a CR to chemotherapy alone and 13 patients (6%) who achieved a CR to chemotherapy plus surgical resection of viable GCT. Seventeen patients (9%) have relapsed from CR. The median time to relapse was 10 months, and the longest duration from treatment to relapse was 36 months in a patient who received three of four planned courses of therapy. Eight patients who either achieved an incomplete response (IR) or relapsed were rendered continuously disease-free by salvage therapy and are alive. One hundred eighty-three patients (86%) are alive at a median follow-up of 7.6 years. CONCLUSION: Four cycles of EP constitute effective therapy and can be offered to patients with good-risk GCT. In patients with intermediate- and poor-risk GCT, clinical trials remain a priority to identify more effective treatment.

Adolescent↗