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Biomedical subjects

M Kraut

Publications and source records attributed to M Kraut.

8 recordsLinked to original sources

Effect of calcium replacement on the hemodynamic changes associated with high dose interleukin-2 therapy.

Administration of high-dose IL-2 results in hemodynamic changes that are similar to those seen in septic shock. These include a decrease in systemic vascular resistance (SVR) with a resultant drop in mean arterial pressure (MAP). Hypocalcemia is seen in septic shock and with IL-2 administration. Calcium replacement in septic shock has been reported to result in hemodynamic improvement; we therefore administered calcium to patients receiving high dose IL-2 to correct ionized hypocalcemia. Five consecutive patients underwent invasive hemodynamic monitoring before and during IL-2 administration. Calcium chloride was administered to correct ionized hypocalcemia, and hemodynamic parameters were monitored before and after calcium administration. Ionized hypocalcemia was associated with an elevation in parathyroid hormone levels. There was no toxicity related to the administration of calcium. An improvement in the MAP and SVR was seen early and late (after a dose of IL-2 was held) in the IL-2 treatment cycle; there were minimal effects at other points. Because of the potential hemodynamic benefit of calcium replacement, we recommend that ionized hypocalcemia be corrected in patients receiving high-dose IL-2.

Adult

Phase I trial of recombinant macrophage colony-stimulating factor by rapid intravenous infusion in patients with cancer.

Fourteen patients were entered into a phase I dose-escalation trial of macrophage colony-stimulating factor (M-CSF). M-CSF was administered to inpatients by rapid 15 min i.v. infusion every 8 h x 5 days, repeated after a 9-day rest. Dose levels evaluated were 20, 40, 80, 330, and 1,100 micrograms/m2. Monitoring of patients every 4 h included vital signs, daily complete blood count (CBC), and serum chemistries (SGOT, creatinine, and bilirubin) while receiving M-CSF. No clinical or laboratory evidence of toxicity was seen. The average serum t1/2 varied with dose level. At 330 and 1,100 micrograms/m2, the serum t1/2 was 25 and 84 min, respectively, implying a saturable mechanism of clearance. After 5 days of treatment, the t1/2 decreased by twofold, consistent with enhancement of the saturable mechanism. Monocyte cytotoxicity against the A375 melanoma cell line was evaluated pretreatment and day 5 of each cycle. No consistent enhancement of monocyte cytotoxicity was seen. No effect on peripheral blood monocyte number was seen until the 1,100 micrograms/m2 dose level. At this dose level, the mean monocyte number on day 5 was increased compared to baseline (1,300 mm3 vs. 300/mm3). Clinical activity was seen in two patients with previously progressive leiomyosarcoma metastatic to the liver. A partial response (PR) lasting 7 months occurred at the 330 micrograms/m2 dose level while a patient treated at 1,100 micrograms/m2 has had stable disease for 20+ months. The maximum tolerated dose (MTD) of M-CSF was not determined. Based on clinical responses, a phase II trial is warranted in patients with metastatic soft tissue sarcoma.

Antineoplastic Agents

5-Fluorouracil, etoposide, and cisplatin in the management of metastatic non-small cell lung cancer.

Encouraging response rates have been reported in Stage III non-small cell lung cancer when 5-fluorouracil (5-FU), etoposide (VP-16), and cisplatin (FED) have been combined with radiation therapy (RT) or RT and surgery. The current study evaluated the effectiveness of FED chemotherapy in 32 patients with metastatic non-small cell lung cancer. Treatment consisted of 5-FU (800 mg/m2/d) on days 1 to 4 by continuous infusion, intravenous (IV) VP-16 (60 mg/m2) over 1 hour on days 1 to 4, and IV cisplatin (60 mg/m2) over 1 hour on day 1. Treatment cycles were repeated every 28 days as toxicity permitted. Partial responses occurred in 7 of 32 patients (22%; 95% confidence limit [CL] 0.09, 0.40), including 6 of 19 patients (32%) with performance status of 0 or 1, and 1 of 13 patients (8%) with performance status of 2 or 3. The median response duration was 5.0 months. Although toxicity was modest and consisted of primarily hematologic and gastrointestinal side effects, this combination does not appear to provide an advantage over other cisplatin combinations in Stage IV non-small cell lung cancer.

Adult

A dose-intensive regimen of 5-fluorouracil for the treatment of metastatic colorectal carcinoma.

5-Fluorouracil (5-FU) was delivered in a dose-intensive schedule to 23 patients with metastatic or unresectable colorectal carcinoma. The schedule consisted of bolus single-dose 5-FU therapy 400 to 500 mg followed by 4-day infusion of 5-FU, 600 to 800 mg/m2/day, followed by a 17-day to 24-day infusion of 200 to 250 mg/m2/day. Partial remissions were seen in 22% of all eligible patients. Significant toxicity, including mucositis, diarrhea, and hand-foot syndrome, necessitated dose reductions in most patients. The authors conclude that 5-FU given in this moderately intensive schedule is associated with a moderate level of response, as easily achieved with more conventional schedules or with 5-FU-leucovorin combinations. Tumor responsiveness to dose intensive 5-FU regimens may be limited.

Adult

Initial experience with a practical hyperfractionated accelerated radiotherapy regimen.

This paper presents early results of a trial of a three-fractions-per-day (TID) regimen that is more convenient to schedule than the Continuous Hyperfractionated Accelerated Radiotherapy (CHART) protocol currently being tested in Europe. The treatment schedule used in the CHART regimen has been modified from 36 fractions of 1.5 Gy TID in 12 days to 72 fractions of 1.1 Gy in 24 treatment days, with all fractions delivered during normal working hours. With no weekend treatments, the entire course of radiotherapy is completed in less than 5 weeks. The doses used were determined using the L-Q model, with correction for incomplete repair between fractions and for accelerated repopulation of cancer cells. Comparison with historical controls shows statistically significant improvements both in CR rates for the primary tumor and in acute toxicity, as measured by reduced treatment interruptions. L-Q model calculations predict that, compared to the highest dose achieved in previous studies without exceeding tolerance, we are able to obtain a 12% increase in bioeffect dose to the primary tumor due to accelerating the treatment. An analysis of the potential tumoricidal effectiveness of this new treatment regimen shows that it should be better than several other accelerated fractionation schedules being tested for all values of Tpot. For short Tpot times, the advantage may be as much as one log cell kill, corresponding to a 10-15% potential improvement in local control.

Aged

Phase II study of deoxydoxorubicin in previously untreated metastatic breast cancer.

With the objective of identifying new chemotherapeutic agents active against breast cancer, we administered the phase II agent deoxydoxorubicin (DxDx) to 25 patients who had received no prior chemotherapy for their metastatic breast cancer. A dose of 30-35 mg/M2 given at 3 week intervals resulted in a response rate of 12%. The patients were subsequently treated with a combination of 5-fluorouracil, methotrexate, vincristine, cyclophosphamide, and prednisone. A response rate of 38% was achieved with this combination as second line therapy. Toxicity of DxDx was predominantly hematopoietic. One patient developed congestive heart failure. Median survival from onset of treatment with DxDx was 39 weeks. DxDx appears to be minimally active against metastatic breast cancer. Whether the administration of phase II agents as first line therapy offers an advantage in the overall management of metastatic cancer, needs further evaluation.

Adult

A phase I trial of recombinant interleukin-2 combined with recombinant interferon-gamma in patients with cancer.

Twenty-six patients with metastatic cancer were entered into a phase I trial of concurrent recombinant interleukin-2 (IL-2) and recombinant interferon-gamma (IFN-gamma). IL-2 was administered as a continuous intravenous infusion for 5 days. IFN-gamma was administered by a daily intramuscular (IM) injection during the 5 days of IL-2 administration. Treatment was repeated twice after 9-day rest periods. After a 2-week rest, patients without evidence of tumor progression were retreated. Natural killer (NK)- and lymphokine-activated killer (LAK)-cell activity were assayed in each patient before treatment, on day 1, and on day 5 of each cycle. Constitutional symptoms occurred in most patients but were not dose-limiting. Other toxicities included hypotension responsive to fluids, transient elevations in liver function tests, erythema/pruritus, eosinophilia, and transient leukopenia/thrombocytopenia. The maximum-tolerated dose (MTD) of the combination was 1 x 10(6) U/m2/d of IL-2 combined with 0.50 mg/m2/d of IFN-gamma. The dose-limiting toxicity was pulmonary manifesting as rales and shortness of breath. The dose of the combination that resulted in the optimal generation of in vivo LAK-cell activity was a dose of at least 0.25 mg/m2/d of IFN-gamma combined with 1 x 10(6) U/m2/d of IL-2. Objective clinical responses were seen in five of 26 patients. These included a partial response of 2 months duration in a patient with non-Hodgkin's lymphoma (NHL), mixed responses in a patient with NHL and two patients with renal cell carcinoma (RCC), and an ongoing assessable response in a patient with bone metastases from RCC. The recommended dose for phase II trials of this combination is 0.50 mg/m2 of IFN-gamma and 1 x 10(6) U of IL-2.

Adolescent

Homology and distribution of CO dehydrogenase structural genes in carboxydotrophic bacteria.

The 17 (S), 30 (M) and 87 kDa (L) subunits of CO dehydrogenases from the CO-oxidizing bacteria Pseudomonas carboxydoflava, Pseudomonas carboxydohydrogena and Pseudomonas carboxydovorans OM5 were isolated and purified. The N-terminal sequences of same subunits from different bacteria showed distinct homologies. Dot blot hybridization employing oligonucleotide probes derived from the sequences of the S-subunit of P. carboxydovorans OM5 and the M-subunit of P. carboxydohydrogena and DNA of the plasmid-containing CO-oxidizing bacteria Alcaligenes carboxydus, Azomonas B1, P. carboxydoflava, P. carboxydovorans OM2, OM4 and OM5 indicated that all genes encoding these subunits reside on plasmids. That in P. carboxydovorans OM5 CO dehydrogenase structural genes are located entirely on plasmid pHCG3 was evident from the absence of hybridization employing DNA from the cured mutant strain OM5-12. CO dehydrogenase structural genes could be identified on the chromosome of the plasmid-free bacteria Arthrobacter 11/x, Bacillus schlegelii, P. carboxydohydrogena and P. carboxydovorans OM3. There was no example of a plasmid-harboring carboxydotrophic bacterium that did not carry CO dehydrogenase structural genes on the plasmid. The N-terminal sequences of CO dehydrogenase structural genes were found to be conserved among carboxydotrophic bacteria of distinct taxonomic position, independent of the presence of plasmids. It is discussed whether this might be the consequence of horizontal gene transfer.

Alcaligenes