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G L Rosner

Publications and source records attributed to G L Rosner.

At least 19 recordsLinked to original sources

Quantification of CCI-103F labeling heterogeneity in canine solid tumors.

PURPOSE: The purposes of this study were to assess sources of variation in the distribution of nitroimidazole-labeled hypoxic cells in canine tumors and to quantify the reliability of estimating overall nitroimidazole-labeled area fraction from biopsies. METHODS AND MATERIALS: Hypoxic cells were labeled in 24 canine tumors by immunostaining of the nitroimidazole hypoxia marker CCI-103F. In tumors with a volume < 100 cm3, each cubic centimeter of tumor was examined; in larger tumors 100 randomly selected 1 cm3 samples were examined. These data were used to estimate the overall CCI-103F-labeled area fraction in the tumor. A variance components model was used to quantify intertumoral, intratumoral, and within slide (residual) sources of variation. The ability to estimate intratumoral CCI-103F-labeled area fraction based on information obtained from biopsies was assessed by randomly selecting two or four samples from the dataset for each tumor and comparing the mean CCI-103F-labeled area fraction from this limited sample to the labeled area fraction based on each cubic centimeter; this simulation process was repeated 1000 times. RESULTS: Intratumoral (27% of total) and intertumoral (30% of total) variation in CCI-103F-labeled area fraction were similar. Residual variation (variation at the microscopic level) accounted for 43% of total variation in CCI-103F labeling. Intratumoral variation in labeling decreased as the intratumoral CCI-103F mean labeled area fraction decreased. The accuracy of estimating the intratumoral CCI-103F-labeled area fraction in a tumor from limited sampling increased as the number of samples increased or the intratumoral labeled area fraction decreased. When four random samples were used to estimate overall CCI-103F-labeled area fraction in the tumor, estimates from approximately 90% of the 1000 simulations were within 0.10 of the intratumoral CCI-103F-labeled area fraction. Classifying a minimally labeled tumor as unlabeled based on limited sampling was unlikely. CONCLUSION: Despite intratumor variation, acceptable estimates of nitroimidazole-labeled cells in a tumor may be obtained from a clinically feasible number of biopsies.

Analysis of Variance

Hypoxia marker labeling in tumor biopsies: quantification of labeling variation and criteria for biopsy sectioning.

BACKGROUND AND PURPOSE: The error associated with using biopsy-based methods for assessing parameters reflective of the tumor microenvironment depends on the variability in distribution of the parameter throughout the tumor and the biopsy sample. Some attention has been given to intratumoral distribution of parameters, but little attention has been given to their intrabiopsy distribution. We evaluated the intrabiopsy distribution of CCI-103F, a 2-nitroimidazole hypoxia marker. MATERIALS AND METHODS: The hypoxia marker CCI-103F was studied in dogs bearing spontaneous solid tumors. Two biopsies were taken from each of seven tumors, for a total of 14 biopsies. Biopsies were serially sectioned and four to six contiguous slides from each 100-150 microm of the biopsy were used to formulate the best estimate of CCI-103F labeled area throughout the biopsy sample. One, two or four slides were then randomly selected from each biopsy and the labeled area, based on this limited sample, was compared to the estimate obtained from counting all available slides. Random sampling of slides was repeated 1000 times for each biopsy sample. RESULTS: CCI-103F labeling variance throughout the biopsy decreased as the estimated overall labeled area in the biopsy decreased. The error associated with estimating the overall labeled area in a biopsy from a randomly selected subset of slides decreased as the number of slides increased, and as the overall labeled area in the biopsy decreased. No minimally labeled biopsy was classified as unlabeled based on limited sampling. CONCLUSION: With regard to CCI-103F labeling, quantification of the labeled area in four randomly selected slides from a biopsy can provide, in most biopsies, an estimate of the labeled area in the biopsy within an absolute range of +/-0.05.

Animals

Bayesian population pharmacokinetic and pharmacodynamic analyses using mixture models.

Population studies of the pharmacokinetics or pharmacodynamics of drugs help us, learn about the variability in drug disposition and effects, information that can be used to treat future patients at safe and effective doses. We present a new approach to population modeling based on a weighted mixture of normal distributions having random weights and means. This method allows estimation of underlying continuous population distributions without prespecifying the parametric form or shape of these probability distributions. Additionally, this method can carry out nonparametric regression of pharmacokinetic or dynamic parameters on patient covariates while estimating the underlying distributions. Two examples illustrate the method and its flexibility.

Bayes Theorem

Effects of diethylamine/nitric oxide on blood perfusion and oxygenation in the R3230Ac mammary carcinoma.

The effects of intravenous diethylamine/nitric oxide (DEA/NO), a short-acting nitric oxide (NO) donor, on systemic haemodynamics, muscle and tumour blood flow (MBF and TBF) and tumour oxygenation were examined in rats bearing subcutaneous R3230Ac carcinoma in the leg. The effects of DEA/NO on the diameters of tumour-feeding and normal arterioles were evaluated in window chambers with and without implanted tumours. DEA/NO reduced mean arterial pressure (MAP) when given at doses > or = 100 nmol kg(-1), with maximal suppression at 0.5-1 min followed by return to baseline within 20 min. DEA/NO did not affect MBF except at the highest doses (500 and 1000 nmol kg(-1)). In contrast, DEA/NO reduced TBF and constricted tumour arterioles at doses > or = 100 nmol kg(-1). Tumour arteriolar vasomotion occurred in more than half the animals during hypotension and with a significantly higher frequency than in normal granulating tissue at a dose of 500 nmol kg(-1). Normal arterioles rapidly and significantly vasodilated for about 3 min and then returned to baseline. The reductions in TBF and MAP were accompanied by synchronous reduction in tumour pO2. Our findings suggest that DEA/NO decreases TBF in two ways. In the window chamber model, vascular steal occurs as normal arterioles adjacent to tumour dilate more than tumour arterioles during the initial period of hypotension. In leg tumours, the predominant mechanism is attributable to reduced perfusion pressure induced by lowered MAP, which decreases flow to the tumour, probably because of relatively higher flow resistance. The vasoconstriction and vasomotion in tumour arterioles during DEA/NO-induced hypotension may reflect differences in regulatory metabolism of NO between neoplastic and normal arterioles. Thus, intravenous injection of a short-acting NO donor, DEA/NO, decreases MAP and heart rate, leading to subsequent decreases in tumour blood flow and oxygenation.

Animals

Stroma-free human hemoglobin A decreases R3230Ac rat mammary adenocarcinoma blood flow and oxygen partial pressure.

We examined the effect of a nitric oxide (NO) quencher, stroma-free human hemoglobin A (HbA0; 0.01, 0.05, 0.1, 0.2 g/kg), on the blood flow measured using the Doppler flow technique, tumor oxygen pressure (pO2) and the diameter of the arterioles using R3230Ac mammary adenocarcinoma as the tumor model. In female Fischer 344 rats with 1-cm-diameter tumors implanted in the lateral aspect of the left quadriceps, intravenous infusion of 0.1 and 0.2 g/kg HbA0 decreased both central tumor and peripheral tumor blood flow by 20-30% (P < 0.05). Tumor pO2 decreased 28% with 0.2 g/kg HbA0, from 15 mm Hg (baseline) to 11 mm Hg at 10 min (P = 0.02). Although 0.2 g/kg HbA0 increased blood flow 55% in the left quadriceps muscle proximal to the implanted tumor (P < 0.05), HbA0 had little effect on blood flow in right quadriceps muscle with no tumor implanted, and increased right quadriceps pO2, from 21 mm Hg (baseline) to 23 mm Hg at 10 min (P = 0.03). HbA0 increased mean arterial pressure 5-10% in a manner that was dependent on dose while heart rate concurrently decreased 9-19%. The diameter of the arterioles supplying the tumor was rapidly reduced 10% by 0.2 g/kg HbA0 (P = 0.037) and remained stable through 60 min of observation (P = 0.005). HbA0 selectively reduces tumor blood flow and tumor pO2 through vasoconstriction of the arterioles supplying the tumor. Vascular NO quenching provides an alternative to NO synthase inhibition as a means to achieve the goal of selective tumor hypoxia.

Adenocarcinoma

Radiation plus local hyperthermia versus radiation plus the combination of local and whole-body hyperthermia in canine sarcomas.

PURPOSE: The purpose of this study was to assess the effect of increasing intratumoral temperatures by the combination of local hyperthermia (LH) and whole body hyperthermia (WBH) on the radiation response of canine sarcomas. METHODS AND MATERIALS: Dogs with spontaneous soft tissue sarcomas and no evidence of metastasis were randomized to be treated with radiation combined with either LH alone or LH + WBH. Dogs were accessioned for treatment at two institutions. The radiation dose was 56.25 Gy, given in 25 2.25 Gy daily fractions. Two hyperthermia treatments were given; one during the first and one during the last week of treatment. Dogs were evaluated after treatment for local recurrence, metastasis, and complications. RESULTS: Sixty-four dogs were treated between 1989 and 1993. The use of LH+WBH resulted in statistically significant increases in the low and middle regions of the temperature distributions. The largest increase was in the low temperatures with median CEM 43 T90 values of 4 vs. 49 min for LH vs. LH + WBH, respectively (p<0.001). There was no difference in duration of local tumor control between hyperthermia groups (p = 0.59). The time to metastasis was shorter for dogs receiving LH + WBH (p = 0.02); the hazard ratio for metastatic disease for dogs in the LH + WBH group was 2.4 (95% confidence interval, 1.2-5.4) with respect to dogs in the LH group. Complications were greater in larger tumors and in tumors treated with LH + WBH, CONCLUSION: The combination of LH + WBH with radiation therapy, as described herein, was not associated with an increase in local tumor control in comparison to use of LH with radiation therapy. The combination of LH + WBH also appeared to alter the biology of the metastatic process and was associated with more complications than LH. We identified no rationale for further study of LH + WBH in combination with radiation for treatment of solid tumors.

Animals

Relationship between toxicity and obesity in women receiving adjuvant chemotherapy for breast cancer: results from cancer and leukemia group B study 8541.

PURPOSE: We examined data from a large clinical trial to determine if chemotherapy dosing according to actual body weight places obese patients at greater risk of toxicity. PATIENTS AND METHODS: Cancer and Leukemia Group B (CALGB) study 8541, a randomized study of schedule and dose of adjuvant cyclophosphamide, doxorubicin, and fluorouracil (CAF) for stage II breast cancer patients with positive regional lymph nodes, provided data on 1,435 women for analysis. Using body-mass index (BMI), we classified a woman as obese if her BMI was > or = 27.3 kg/m2; doses were considered weight-based if within 5% of values calculated using actual weight. Our primary analysis concerned toxicity risks during cycle 1. RESULTS: Among women who received weight-based doses of the most dose-intensive CAF regimen, 47% of obese and 51% of nonobese women experienced severe hematologic toxicity (grade > or = 3) during cycle 1 (P = .51, two-tailed). The overall risk ratio (obese v nonobese) of treatment failure among women who received weight-based doses during cycle 1 was 1.02 (95% confidence interval, 0.83 to 1.26), stratified by treatment and adjusted for number of positive nodes, menopausal status, hormone receptor status, and tumor size. The overall adjusted failure risk ratio (weight-based v reduced initial doses) was 0.73 (95% confidence interval, 0.53 to 1.00) among obese women. CONCLUSION: Obese patients initially dosed (within 5%) by actual weight did not experience excess cycle 1 toxicity or worse outcome compared with nonobese women dosed similarly. The data suggest that obese women who received reduced doses in cycle 1 experienced worse failure-free survival. We recommend that initial doses of CAF be computed according to actual body weight.

Antineoplastic Combined Chemotherapy Protocols

Arteriolar oxygenation in tumour and subcutaneous arterioles: effects of inspired air oxygen content.

Carbogen is thought to be more effective than normobaric oxygen in reducing tumour hypoxia because it may reduce hyperoxic vasoconstriction. In this study, tumour and normal arteriolar diameters were measured simultaneously with perivascular pO2 during air breathing followed by either carbogen or 100% oxygen to determine whether the action of carbogen is the result of alterations in feeding vessel diameter. Fischer-344 rats bearing dorsal flap window chambers, with or without implanted R3230AC tumours, were the experimental subjects. Arteriolar diameters were measured using optical techniques and perivascular pO2 was measured using recessed-tip electrodes (3-6 microns tip diameter). Baseline arteriolar pO2 averaged 30-50% of blood gas pO2 (mean = 97 mmHg). Both hyperoxic gases increased blood gas pO2 by 4-to 5-fold, but relative improvements in arteriolar pO2 were < or = 2.5 for all arterioles studied. This means that these normobaric high O2 gases are not very efficient in increasing O2 delivery to tumours. In addition, improvements in tumour arteriolar pO2 were transient for both hyperoxic gases. Oxygen and carbogen caused no change and mild vasodilatory responses in tumour arterioles, respectively. Normal arterioles on the other hand, tended toward vasoconstriction by carbogen breathing. Peri-arteriolar pO2 in tumours increased within the first 5 min of breathing either hyperoxic gas, followed by a decline back toward values seen with air-breathing. These results suggest that temporal changes in tumour oxygenation after exposure to carbogen or O2 may not be due to changes in perfusion. Other factors, such as changes in O2 consumption rate may be involved.

Animals

Patterns and variability of tumor oxygenation in human soft tissue sarcomas, cervical carcinomas, and lymph node metastases.

PURPOSE: The validity of tumor pO2 measurement as a predictive outcome assay depends upon demonstrating that intrapatient pO2 variation is less than interpatient variation. No consensus exists regarding the appropriate distance between individual measurements. This distance could affect the calculation of the hypoxic fraction (% pO2s < 5 mm Hg) and the assessment of intra/interpatient heterogeneity. This study was performed to evaluate tumor oxygenation and to assess the effects of two different measurement intervals on pO2 heterogeneity in three different sets of patients. MATERIALS AND METHODS: Fifteen patients with soft tissue sarcoma, nine patients with cervical carcinoma, and eight patients with squamous carcinoma metastatic to lymph nodes underwent pretreatment polarographic pO2 measurements. Two grossly distinct sites were studied in each tumor, and 2-3 linear tracks were measured at each site. Track lengths varied from 20-36 mm. Distance between measured points was either 0.7-0.8 mm or 0.4 mm. Mean pO2, median pO2, and hypoxic fraction were calculated for each track. Data for each patient were also averaged across all tracks obtained for that patient. Track-specific data were used to evaluate intrapatient variation. The range of average values for each patient was used to assess interpatient heterogeneity. The ratio of these measures provided an assessment of within- vs. between-patient heterogeneity. RESULTS: The median number of pO2 measurements/patient was 200 (range: 88-356). The average length of hypoxic regions varied from 4.5-5.6 mm. Median tumor pO2s for the cervix, lymph node, and sarcoma patients were 4.5 mm Hg, 12.6 mm Hg, and 18.0 mm Hg, respectively (p = 0.07). Median hypoxic fractions were 0.61, 0.36, and 0.31, respectively (p = 0.07). Intrapatient heterogeneity was less than interpatient heterogeneity for all parameters in all patients, except for mean pO2 for the cervix patients measured at 0.7-mm increments (1.51). Assessment of oxygenation was not affected by the distance between samples. CONCLUSIONS: Heterogeneity of tumor oxygenation within tumors is less than that between tumors. Both 0.4 mm and 0.7-0.8 mm sampling increments provide similar data. Longer term follow-up of large numbers of uniformly treated patients is required to define the value of tumor oxygen measurement as a predictor of treatment outcome.

Carcinoma, Squamous Cell

A Bayesian group sequential design for a multiple arm randomized clinical trial.

Group sequential designs for randomized clinical trials allow analyses of accruing data. Most group sequential designs in the literature concern the comparison of two treatments and maintain an overall prespecified type I error. As the number of treatments increases, however, so does the probability of falsely rejecting the null hypothesis. Bayesian statisticians concern themselves with the observed data and abide by the likelihood principle. As long as previous analyses do not change the likelihood, these analyses do not change Bayesian inference. In this paper, we discuss a group sequential design for a proposed randomized clinical trial comparing four treatment regimens. Bayesian ideas underlie the design and posterior probability calculations determine the criteria for stopping accrual to one or more of the treatments. We use computer simulation to estimate the frequentists properties of the design, information of interest to many of our collaborators. We show that relatively simple posterior probability calculations, along with simulations to calculate power under alternative hypotheses, can produce appealing designs for randomized clinical trials.

Bayes Theorem

Evaluation of GM-CSF mouthwash for prevention of chemotherapy-induced mucositis: a randomized, double-blind, dose-ranging study.

Uncontrolled clinical trials have shown that parenteral administration of GM-CSF reduces the frequency of chemotherapy-induced mucositis. The mechanism of this effect could be related to acceleration of haematopoiesis and/or increase in functional activation of WBC. We conducted a double-blind, placebo-controlled, dose ranging study of GM-CSF (mol-gramostim) mouthwash in patients with breast cancer during the first treatment cycle of a combination chemotherapy regimen which has historically produced dose-limiting (grade > or = 3) mucositis in approximately 39% of patients. Subjects were randomized to receive either placebo mouthwash (0.1 percent albumin) or one of four concentrations of GM-CSF mouthwash (0.01, 0.1, 1.0 or 10 mcg/ml). The primary endpoint was to evaluate the relationship between dose of GM-CSF mouthwash received and probability of grade > or = 3 mucositis using a logistic model. Solutions were administered four times daily starting within 24 hours of chemotherapy initiation and continuing until the end of the cycle (day 21). Mucositis was assessed on days 1-6, 10, 15 and 21. Day 6 plasma samples were assayed for GM-CSF. Forty-five patients were evaluable for response (nine per dosing group). A 42% risk (15/36) of mucositis grade > or = 3 was evident on day 15 in patients receiving GM-CSF compared to 2 of 9 patients on the placebo arm. No evidence of dose response was found by logistic regression. Five patients had a detectable plasma concentration of GM-CSF (56-209 pg/ml). A positive correlation between GM-CSF dose and leukocyte recovery was noted (P = 0.04).

Adult

Clinical pharmacology of cytarabine in patients with acute myeloid leukemia: a cancer and leukemia group B study.

The pharmacokinetics of cytarabine (ara-C) were determined in 265 patients with acute myeloid leukemia (AML) receiving ara-C (200 mg/m2 per day for 7 days as a continuous infusion) and daunorubicin during induction therapy. The mean (standard deviation) ara-C concentration at steady-state (Css) and systemic clearance (Cl) were 0.30 (0.13) microM and 134 (71) l/h per m2 respectively. Males had a significantly faster ara-C Cl (139 vs 131 l/h per m2, P = 0.025) than females. Significant correlations were noted between ara-C Cl and the pretreatment, peripheral white blood cell count (P = 0.005) and pretreatment blast count (P = 0.020). No significant differences in ara-C Css or Cl were noted in patients achieving complete remission compared with those failing therapy (P = 0.315, P = 0.344, respectively). No significant correlations were observed between ara-C pharmacokinetic parameters and several indices of patient toxicity. Our findings indicate that variability in ara-C disposition in plasma at this dosage level does not correlate with remission status or toxicity in patients with AML receiving initial induction therapy with ara-C and daunorubicin.

Acute Disease

Phase I study of paclitaxel and topotecan in patients with advanced tumors: a cancer and leukemia group B study.

PURPOSE: To define the dose-limiting toxicities (DLTs) and the recommended phase II doses of paclitaxel combined with topotecan, without and with filgrastim support. PATIENTS AND METHODS: Patients with advanced solid tumors and a maximum of one prior chemotherapy regimen for metastatic disease were eligible if they had a performance status of 0 to 1 and normal renal, hepatic, and bone marrow function. Prior treatment with taxanes or comptothecin analogs, and prior pelvic irradiation were not allowed. Patients with a history of cardiac disease or on medications known to affect cardiac conduction were excluded. The dose of topotecan was fixed at 1.0 mg/m2/d for 5 days. The dose of paclitaxel was escalated until the maximum-tolerated dose (MTD), without and with filgrastim 5 micrograms/kg subcutaneously (SC) on days 6 to 14, was reached. Paclitaxel was administered over 3 hours on day 1 before topotecan. Treatment cycles were repeated every 21 days. RESULTS: Of 46 patients entered, 45 were assessable for toxicity and 34 for response. The principal toxicity was neutropenia. Without filgrastim, the MTD of paclitaxel was 80 mg/m2 on day 1 in combination with topotecan 1.0 mg/m2/d for 5 days. With filgrastim, the dose of paclitaxel was escalated to 230 mg/m2 in combination with the same dose of topotecan. At this dose level, one patient had hematologic DLT and a second patient developed neuromuscular DLT. Three patients had a partial response (PR): one with head and neck cancer, a second with non-small-cell lung cancer, and the third with colon cancer. CONCLUSION: We conclude that paclitaxel can be given at clinically relevant doses in combination with topotecan and filgrastim. The recommended dose for phase II studies is paclitaxel 230 mg/m2 on day 1 and topotecan 1.0 mg/m2/day for 5 days with filgrastim 5 micrograms/kg on days 6 to 14.

Adult

The impact of conventional plus high dose chemotherapy with autologous bone marrow transplantation on hematologic toxicity during subsequent local-regional radiotherapy for breast cancer.

BACKGROUND: Forty patients with Stage II-III breast cancer with 10 or more positive axillary nodes were treated with mastectomy followed by four cycles of standard dose CAF (cytoxan, Adriamycin, 5-FU), followed by high dose cytoxan, cisplatin, carmustine (HDCT) with autologous bone marrow transplant support (ABMT), and local-regional radiotherapy (LR XRT). During LR XRT, the hematologic toxicity experienced by these patients appeared more severe than that usually seen in patients not heavily pretreated with chemotherapy. Radiation therapy was interrupted in four patients (10%) because of thrombocytopenia and leukopenia. This observation prompted a comparison of the hematologic changes seen in this group with those seen in patients not treated previously with chemotherapy. METHODS: A detailed analysis of changes in hematologic parameters during LR XRT was performed in 33 evaluable patients who received CAF-HDCT/ABMT and compared with a "control" group of 17 women who did not receive prior chemotherapy. RESULTS: The mean pretreatment leukocyte, platelet, and hematocrit counts were lower in the CAF-HDCT/ABMT group than in the control group, with the differences indicating statistical significance for the latter two (P = 0.17, P < 0.001, and P = 0.001, respectively). None of the control patients required a treatment interruption because of hematologic toxicity, whereas four of the CAF-HDCT/ABMT patients did. Among the CAF-HDCT/ABMT patients, a leukocyte count nadir of less than 2.0, a platelet nadir of less than 50,000, and a hematocrit nadir of less than 25 occurred in 12%, 19%, and 9%, respectively. The corresponding rates of control patients were 6%, 0%, and 0%, respectively. Relative to their pretreatment levels, however, both groups experienced similar declines in platelet and leukocyte counts. CONCLUSION: The higher rate of hematologic toxicity observed in the patients who previously received conventional chemotherapy plus HDCT/ABMT appears to have been due primarily to lower preradiotherapy blood counts.

Adenocarcinoma

Pretreatment oxygenation profiles of human soft tissue sarcomas.

PURPOSE: Tumor oxygenation is thought to influence the radiocurability of many malignancies. Advances in polarographic electrode technology have facilitated the in situ measurement of human tumor pO2. The optimal method of defining a "hypoxic" tumor is not known. Characterization of intra-tumor and intertumor pO2 heterogeneity could help with this process. This study was performed to evaluate pretreatment tumor oxygenation status and pO2 heterogeneity in patients with soft tissue sarcoma. METHODS AND MATERIALS: Nine patients with soft tissue sarcomas underwent pretreatment pO2 measurements with the Eppendorf pO2 histograph. Two grossly distinct anatomic sites within each tumor were measured in all but one patient; these were localized under computerized tomography guidance to ensure that all measurements were obtained from tumor tissue. Multiple probe tracks were studied at each site. Measurements were performed in resting, awake patients. RESULTS: A total of 1588 pO2 readings was obtained (mean = 176/patient). Measurement path lengths ranged from 22-36 mm. The average hypoxic fraction (pO2 < 5 mm Hg) was 29% (range 0-76%). Arterial pO2 was positively correlated with mean and median tumor pO2. Tumor hypoxic fraction increased with increasing tumor volume. Linear pO2 profiles and frequency histograms provided similar estimates of the extent of hypoxia in individual tumors. Marked variation in oxygenation existed both within and between individual tumors. The intertumor variation was greater than the intratumor variation. CONCLUSION: Radiobiologic hypoxia exists in human soft tissue sarcomas. The pO2 variation within individual tumors is less than the variation between tumors. Further study is necessary to identify the best parameter for defining tumor hypoxia and to discern the relationship between tumor pO2 and treatment outcome.

Cell Hypoxia

Distribution of the hypoxia marker CCI-103F in canine tumors.

PURPOSE: The purpose of this study was to identify the prevalence and distribution of hypoxic tumor cells in spontaneous canine tumors, and to relate these parameters to various tumor and patient characteristics, such as tumor volume, tumor type, or tumor location. METHODS AND MATERIALS: Hypoxic tumor cells were labeled in vivo in 32 primary malignant canine tumors by bioreductive binding of the nitroimidazole hypoxia marker CCI-103F. CCI-103F was given at 40 mg/kg i.v. Tumors were completely excised, and CCI-103F adducts were detected in histologic sections (mean, 138 sections-per-tumor) by peroxidase-antiperoxidase immunostaining. Area fraction (area labeled/total area examined) of labeled regions was measured via computer assisted image analysis. In tumors with a volume < 100 cm3, each cubic centimeter of tumor was examined; in larger tumors 100 randomly selected 1 cm3 samples were examined. RESULTS: There were 13 soft-tissue sarcomas, 11 mast-cell tumors, five carcinomas, two lymphosarcomas, and one melanoma. Tumors varied from < .001 to > 2000 cm3. Labeled cells were present in 31 of 32 canine tumors examined, and varied between 0 and 35%. Mean (+/- SD) % label was 12.2% +/- 16.7%; 13 of the 32 dogs had % labeled area < 5.0%. The area fraction was not related to tumor site, tumor type, tumor volume, presence and degree of necrosis or tumor grade. Dog characteristics such as sex, age, and body size did not affect the degree of labeling of tumors. CCI-103F adducts were randomly distributed grossly, and at the microscopic level were not found near blood vessels or regions containing mitoses. Labeling was seen in a variety of normal tissues; not all binding in normal tissues could be attributed to hypoxia. CONCLUSION: CCI-103F labeling of hypoxic regions in tumors provides a nonradioactive method of detecting nitroimidazole adducts at the cellular level, and allows concurrent histologic examination. The pattern of labeling is consistent with detection of hypoxic tumor cells arising from oxygen diffusion limitations. This method may have clinical applicability in the detection of tumor hypoxia.

Animals

Pharmacodynamic analysis of hematologic profiles.

We discuss the analysis of the myelosuppressive effects of chemotherapy. Such analyses examine hematologic data that arise by monitoring patients after treatment with high doses of chemotherapy. We propose a flexible approach for modeling such information and, using data collected as part of a Phase I study of an anticancer agent, show some interesting aspects of the data that become available after fitting models this way.

Antineoplastic Agents