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Biomedical subjects

T L Loo

Publications and source records attributed to T L Loo.

At least 37 records · Page 2Linked to original sources

Inhibition of hepatic drug metabolism in the rat after Corynebacterium parvum treatment.

Drug-metabolizing enzyme activities, cytochrome concentration, and protein content of hepatic microsomal preparations from adult, female Sprague-Dawley rats were examined at 1-, 3-, 6-, 10-, 14- and 17-day intervals after administration of a single intravenous injection of Corynebacterium parvum (C. parvum) at a dose of 10 mg/m2. Aniline hydroxylase (AH) activity, aminopyrine demethylase (APD) activity, and cytochrome P-450 concentration were reduced 20-50% on days 3-6 and, thereafter, gradually recovered to control levels by day 17. Cytochrome c reductase activity and cytochrome b5 concentration were reduced significantly (24%) only on day 10. Microsomal protein concentration was unchanged. C. parvum added in vitro had no effect on AH or APD activity. Although livers of treated rats were only slightly (less than 20%) enlarged, gross splenomegaly was apparent, reaching a maximum on day 6. A marked inverse correlation existed between the temporal variation in the size of the spleen and APD activity. In rats killed 6 days after administration of C. parvum at 0.67 to 10.00 mg/m2, a direct relationship was apparent between the adjuvant dose and the magnitude of reduction of APD activity. A similar relationship was apparent between splenomegaly and APD activity. Histopathologic examination of liver sections from treated rats revealed numerous granulomas throughout the parenchyma. The magnitude of enzyme inhibition generally paralleled the severity of the hepatic lesions.

Adjuvants, Immunologic↗

Determination of 1-(2-chloroethyl)-3-(2,6-dioxo-3-piperidyl)-1-nitrosourea in plasma by negative chemical ionization mass spectrometry.

A sensitive and specific method for the quantitative determination of a new antitumor agent, 1-(2-chloroethyl)-3-(2,6-dioxo-3-piperidyl)-1-nitrosourea, (PCNU) has been developed for the analysis of plasma. This assay involves extraction of the plasma sample, separation of the drug by thin-layer chromatography and mass spectrometric detection of the negative ions derived from the unchanged drug and its 2H4-labeled analog. Ion current profile peaks are obtained when drug samples are introduced into the heated source using a desorption chemical ionization probe. Detection limits are below 1.0 ng ml-1 of plasma. This method has been applied to determine the in vitro rate of decomposition of PCNU in plasma and the plasma clearance of this drug from a cancer patient.

Antineoplastic Agents↗

Intracerebral penetration and tissue distribution of 2,5-diaziridinyl 3,6-bis(carboethoxyamino) 1,4-benzoquinone (AZQ, NSC-182986).

[14C]AZQ (2-4 mg/m2, 100-200 mCi) was administered at varying times to five patients undergoing surgical resection of intracerebral tumors. Plasma, cerebrospinal fluid (CSF), edematous brain, and tumor specimens were obtained during surgery and the concentration of AZQ was determined radiochemically and chromatographically. Total [14C]AZQ equivalent concentration in tumor for two patients was determined to be 47.5% and 85% of concurrent plasma concentration which was similar to that found in normal brain (60.4% and 75.5% respectively). Only 18-45% of the total radioactivity in tumor tissue and 30-56% in plasma were accounted for by unchanged AZQ. These findings suggest that AZQ may be metabolized to a certain extent. Tissue samples from various organs were obtained during autopsy in a patient who expired ten days after AZQ administration. The highest AZQ concentration was found in the liver, followed by the kidney. Comparable amounts were found in normal brain and brain tumor (22 ng/g vs. 31 ng/g respectively). These results indicate that AZQ penetrates readily into the normal brain and brain tumor with a tendency to persist.

Adult↗

The pharmacologic fate of 2,5-diaziridinyl-3,6-bis(carboethoxyamino) 1,4-benzoquinone (AZQ NSC-182986) by intracarotid or intravenous administration in beagles.

Beagle dogs received either intravenous (I.V.) or intracarotid (I.C.) 14C ring labelled 2,5-diaziridinyl-3,6-bis-(carboethoxyamino) 1,4-benzoquinone (AZQ) at a dose of 2 mg/kg. Blood, urine and cerebrospinal fluid (CSF) samples were collected at intervals. At varying times, dogs from each group were sacrificed and histologic examination and drug determinations were performed on the major organs. By both routes of administration, the elimination of AZQ from plasma was biphasic with an initial half-life of 18 min and a terminal half-life of 26 hr. The apparent volume of distribution was 7.9 l/kg and the total clearance was 3.5 ml/kg/h. The 96 hr cumulative urinary excretion of total 14C was 41% of the administered dose, including 4% as the unchanged drug. At 1, 48, and 96 hr after I.C. AZQ, drug concentrations in the brain tissue were twice those by the I.V. route. High drug concentrations in the CSF were produced by both routes, although the CSF to plasma ratio was higher by I.C. than I.V. In extracranial organs, tissue concentrations of AZQ were at least twice as high by I.V. than by I.C. administration. No significant clinical or neurologic toxicity were noted when AZQ was given I.C. In the dog I.C. administration of AZQ seems to accelerate drug entry into the brain tissue.

Animals↗

Human central nervous system pharmacology of pentamethylmelamine and its metabolites.

Pentamethylmelamine (PMM) 80 mg/m2 was administered I.V. to 8 patients during surgical resection of intracerebral tumors. PMM concentrations in tumors were generally much higher than concurrent plasma concentrations, ranging from undetectable (less than .01 micrograms/g) to as high as 4.47 micrograms/g and were much higher in malignant melanoma samples than in astrocytoma samples. PMM was barely detectable or undetectable in most samples of edematous brain tissue adjacent to intracerebral tumor and in temporalis muscle. The PMM metabolites tetramethylmelamine (TeMM), trimethylmelamine (TrMM), and dimethylmelamine (DMM) were each detectable in tumor samples from one or two patients. Monomethylmelamine (MMM) was present in tumor samples from all except one patient. MMM was noted in samples of edematous brain tissue adjacent to tumor from 4 of 8 patients. It was the only PMM metabolite found in brain. TrMM, DMM, and MMM but not PMM, and TeMM were found in tumor cyst fluid from a patient with an intracerebral malignant melanoma. Two patients receiving therapeutic doses of PMM had biopsies taken of subcutaneous malignant melanoma deposits. PMM was undetectable in samples from one patient but reached high concentrations in the other patient. In both patients, MMM was the major metabolite. There was no indication that PMM penetrated into extracerebral tumors more readily than into intracerebral tumors Cerebrospinal fluid (CSF) samples were obtained from one patient without neurological toxicity who received low doses of PMM and from 4 patients receiving high doses of PMM who had developed neurological toxicity.(ABSTRACT TRUNCATED AT 250 WORDS)

Altretamine↗

Concentration of vinblastine in human intracerebral tumor and other tissues.

Uptake of vinblastine into human cerebrospinal fluid, intracerebral tumor and autopsy tissues was quantitated radiochemically after separating vinblastine from its metabolites by high pressure liquid chromatography. Only low concentrations of vinblastine were found in cerebrospinal fluid from a single patient. A second patient who received a tracer dose of radiolabelled vinblastine prior to surgical resection of an intracerebral tumor had slightly less radioactivity in tumor than in temporalis muscle, but more in tumor than in edematous brain surrounding the tumor. The radioactivity in tumor increased gradually and exceeded concurrent plasma radioactivity by 2 hr after drug administration. A third patient died 4 hr into a planned 24-hr infusion of radiolabeled vinblastine. Highest vinblastine concentrations were found in organs with high blood flow such as kidney and heart. Intermediate concentrations were found in liver and lung, and low concentrations were found in prostate, gastrointestinal tract, spleen, muscle, bladder, and hepatic and lymph node metastases. A fourth patient died one month after receiving radiolabeled vinblastine. Highest concentrations were in liver and next highest concentrations were in intracerebral tumor. Moderately high concentrations were found in pancreas, thyroid, lung, spleen, ovary, kidney, and kidney metastases. Lowest concentrations were found in omental metastases, heart, breast, and brain. Vinblastine concentration decreased with increasing distance into brain from the brain metastases. Thus, vinblastine was not selectively localized in tumors. The concentrations in tumor did not reflect the concentration in the organ in which the tumor was located. There was no indication that uptake into intracerebral tumor was impaired. Cerebrospinal fluid and brain concentrations of vinblastine did not give any indication of the concentration attainable in intracerebral tumor.

Adult↗

Clinical pharmacology of 2,5'-diaziridinyl-3,6-biscarboethoxyamino-1,4-benzoquinone (AZQ).

2,5'-Diaziridinyl-3,6-biscarboethoxyamino-1,4-benzoquinone (AZQ) is an alkylating compound which has exhibited a broad spectrum of antitumor activity against a variety of experimental tumors, particularly those implanted intracranially. We have studied the clinical pharmacology of AZQ in 11 patients with various types of tumors. AZQ was administered at 1-12 mg/m2 daily for 5 days by i.v. infusion in 10-30 min. 14C-labelled AZQ was given on day 1 only. Blood and urine specimens were analyzed radiochemically and chromatographically. The plasma disappearance of unchanged AZQ was essentially biphasic, with an initial plasma t 1/2 of 1.4 +/- 0.4 hr and a terminal t 1/2 of 45.5 +/- 3.1 hr. The apparent volume of distribution was 14.2 +/- 3.0 l/kg. The cumulative urinary excretion of unchanged AZQ was 4.3% in 24 hr and 8.6% in 96 hr. The total clearance of the drug was 200 ml/kg/hr. Cerebrospinal fluid AZQ concentration peaked 45-90 min after drug administration, reaching about 70% of that in plasma, and then declined at nearly the same rate.

Antineoplastic Agents↗

Tumor penetration of AMSA in man.

4'-(9-Acridinylamino)-methanesulfon-m-anisidide (AMSA) has shown significant antitumor activity against several murine tumors and leukemias. During its Phase I and II clinical trial, we were able to obtain tumors, plasma, and CSF specimens from patients who received varying doses of AMSA, as well as patients who received high doses and had autologous bone marrow rescue. The drug was analyzed chromatographically. The tumor to plasma drug concentration ratios ranged from 200% to 486%, apparently independent of dose and sampling time. Because AMSA was not detected in the CSF, the drug may not be effective in the treatment of meningeal metastasis. High-dose AMSA therapy with bone marrow rescue did not result in significantly higher AMSA concentrations in the tumor, nor did it elicit favorable response.

Aged↗

Pharmacological and biochemical interactions of N-(phosphonacetyl)-L-aspartate and 5-fluorouracil in beagles.

N-(Phosphonacetyl)-L-aspartate (PALA) and 5-fluorouracil (FUra) are both antimetabolites that affect the biosynthetic pathways of pyrimidines. To determine whether these two drugs exhibit synergistic pharmacological or biochemical interactions, we determined the pharmacological and biochemical parameters of PALA and [14C]FUra in 14 beagle dogs which received i.v. bolus administrations of either the single agents or the drug combination. The pharmacokinetic parameters of PALA (four dogs, 20 mg/kg) in plasma, cerebrospinal fluid, and urine were not changed by FUra (10 mg/kg, 30 min after PALA). The pharmacokinetics of [2-(14)C]FUra (six dogs, 10 mg/kg, 20 muCi/kg) was characterized by higher FUra plasma concentrations after pretreatment with PALA (20 mg/kg, 30 min before FUra); this led to a significantly larger area under the drug concentration-time curve, a decreased volume of distribution, and a reduced clearance rate and was associated with higher cerebrospinal fluid concentrations of FUra. The FUra plasma and cerebrospinal fluid half-lives, however, were not significantly altered by PALA. The biochemical determinants of PALA and FUra activity were studied in intestinal mucosa, liver, thymus, spleen, and bone marrow of four dogs. Although the activity of the target enzyme of PALA, L-aspartate carbamoyltransferase, in tissue extracts was decreased at least 50% at 18 to 24 hr after PALA administration (50 mg/kg), the uridine nucleotide pools remained remarkably stable. Intracellular FUra concentrations were not influenced by PALA. The incorporation of 5-fluorouridine triphosphate into RNA was enhanced in intestinal mucosa and liver. In other tissues, however, fluorouridine nucleotide concentrations were not affected by PALA. Free 5-fluorodeoxyuridine monophosphate had the highest concentration in liver and was detectable in all tissues, but it was not altered by PALA treatment. Our results show that the pharmacological and biochemical events after FUra exposure are marginally modulated by PALA in normal dogs. If sensitive tumors with a higher degree of interaction between the two drugs could be identified, limited toxicity to normal tissues can be expected.

Animals↗

Effect of nutritional status on the hepatobiliary excretion of methotrexate in the rat.

The effect of induced protein-calorie malnutrition (PCM) and its subsequent nutritional repletion with chow or total parenteral alimentation (TPA) on the hepatobiliary excretion of methotrexate (MTX) was determined in the Sprague-Dawley rat. Compared with full-fed controls, PCM resulted in a decrease in body and liver weight, bile flow, and the cumulative excretion of MTX but a consistently higher plasma MTX concentration at each time-point measured. Repletion with chow and TPA resulted in a gain in body weight and an increase in liver weight. Chow repletion resulted in an increase in bile flow and biliary excretion of MTX equal to that for the controls. Repletion with chow also resulted in a consistently lower plasma MTX concentration as compared with PCM rats. Repletion of PCM via TPA did not affect biliary, or plasma, MTX concentrations although the cumulative biliary excretion of MTX was further decreased. The biliary clearance of MTX was decreased by PCM. The clearance for rats repleted with chow, however, was greater than that for the controls. The clearance for PCM rats repleted via TPA was equal to that for PCM rats but less than that for the controls. When expressed as a function of liver weight and compared with PCM rats, the clearance for rats repleted with chow was increased while that for malnourished rats repleted parenterally was decreased. These studies suggest that the biliary excretion of MTX in the rat is a carrier-mediated process that is sensitive to the nutritional status of the host and independent of the effect of nutritional status on liver weight.

Animals↗

Negative-ion chemical-ionization mass spectrometry of aclarubicin analogs and characterization of two metabolites in man.

Aclarubicin and seven analogs have been characterized by negative-ion chemical-ionization mass spectrometry. The method is highly sensitive (requires 1-10 ng) because of the stable semiquinone radical anions that are produced by resonance electron capture of thermal electrons. Ions in the spectra correspond to the intact molecule (M), M-H2O, aglycone, aglycone-O, and aglycone-2H2O. In addition, ions corresponding to the sequential loss of carbohydrate groups are exhibited in the spectra of compounds with di- and tri-saccharides. Two aclarubicin analogs were isolated from a patient's plasma and were found to be bisanhydroaklavinone, F, and one or both of the epimeric reduction products of the L-cinerulose carbonyl, M1 and N1.

Aclarubicin↗

Preliminary observations on the effects of the Chinese medicinal herbs Astragalus membranaceus and Ligustrum lucidum on lymphocyte blastogenic responses.

The biological effects of extracts of two Chinese medicinal herbs, Astragalus membranaceus and Ligustrum lucidum, on in vitro lymphocyte blastogenesis were assessed. Aqueous extracts augmented the spontaneous [3H]thymidine incorporation in the mononuclear cells (MNC) of 14 normal subjects from 273.0 to 609.3 counts per minute (cpm) and 252.9 to 656.9 cpm for the two herbs, respectively. The stimulation indices were 2.4 and 3.1, respectively (p less than 0.001). They also augmented the proliferation of normal subjects' lymphocytes induced by suboptimal concentrations of phytohemagglutinin (PHA) from 5084.6 to 23,398.3 and 221.7 to 24,132.8 cpm, of concanavalin A (con A) from 4046.5 to 15,661.5 and 677.6 to 14,644.6 cpm, and of pokeweed mitogen (PWM) from 4377.9 to 24,405.6 and 322.7 to 11,730.0 cpm, respectively (p less than 0.00). Herb extracts augmented the PHA responses of the MNC from 14 cancer patients significantly (p less than 0.01 and p less than 0.05, respectively). Extracts of L. lucidum also augmented the con A response of patients (p less than 0.05). The augmenting effect of the herbs on the PHA, con A, and PWM responses was dose dependent, and proliferation was inhibited at higher concentrations. The optimal concentration for stimulating the MNC of cancer patients was 100 micrograms/ml, compared to 10 micrograms/ml for the MNC of normal donors. MNC of seven patients depressed the mitogen responses of normal cells in a co-culture system. This was partially abrogated in five by preincubating the patients' cells in herb extracts for 45 min or by irradiation of the patients' cells. These results suggest that the herb extracts contain immunomodulatory components which may be useful in the immunotherapy of disease.

Adult↗

Clinical pharmacology of intraarterial cis-diamminedichloroplatinum(II).

After intraarterial (30 patients) or i.v. (seven patients) administration of cis-diamminedichloroplatinum, X-ray fluorescence spectrometry was used to measure platinum concentrations in plasma and urine. Arteries infused included hepatic (seven patients), carotid (six patients), iliac (ten patients), brachial (three patients), and femoral (four patients). All patients received i.v. mannitol. Pharmacokinetic parameters after intraarterial administration were similar to those after i.v. administration, although differences existed for different intraarterial routes of administration. Mean for all patients combined were: Co, 2.67 +/- 0.97 (S.D.) microgram/ml; t1/2 beta, 71.1 +/- 26.6 hr; clearance, 0.72 +/- 0.25 liters/hr/sq m; total volume of distribution, 45.2 +/- 17.0 liters/sq m; C x t, 167 +/- 72 mg/hr/liter; and 24-hr urinary excretion, 20 +/- 10% of the administered dose. Intrahepatic infusion of the drug was associated with a significantly lower Co (1.88 +/- 0.50 g/ml) and C x t (140 +/- 25 mg hr/liter) and significantly higher clearance (0.91 +/- 0.24 liters/hr/sq m) and volume of distribution (67.6 +/- 4.6 liters/sq m) than administration by other routes, suggesting first pass extraction of drug by liver. In addition, an apparent minor late rise in serum platinum concentration may suggest enterohepatic recirculation of drug. High fluid intake was associated with a low Co and a high volume of distribution, consistent with expansion of the central compartment by fluids. Low serum albumin (less than 3.5 g/dl) was associated with significant shortening of the t1/2 beta (50.5 +/- 21.6 hr), suggesting that the amount of unbound filterable drug may possibly be higher in patients with low serum albumin concentrations. Plasma from veins draining an infused area has a higher Co and C x t during infusion than concurrent plasma from peripheral veins. Thus, intraarterial administration of cis-diamminedichloroplatinum results in increased drug exposure of tumor in the infused area without substantially decreasing exposure of systemic tumor.

Cisplatin↗

Human pharmacokinetics of a new acridine derivative, 4'-(9-acridinylamino)methanesulfon-m-anisidide (NSC 249992).

The clinical pharmacology of 4'-(9-acridinylamino)methanesulfon-m-anisidide (amsacrine) was studied, utilizing [9-14C]amsacrine i.v. in 19 patients with disseminated neoplasms. The mean terminal plasma half-life for total 14C ranged from 34 hr in patients with normal organ function to 46 hr in patients with severe liver disease. For unchanged amsacrine, the mean values of plasma half-life were 7.4 and 17.2 hr for patients with normal and abnormal liver function, respectively. The plasma half-lives of 14C were prolonged, while those for unchanged amsacrine appeared to be normal in patients with renal dysfunction. The mean 72-hr cumulative urinary excretion of total 14C varied from 35% in normal patients to 49% in patients with severe liver disease, while patients with renal disease excreted only 2 to 16%. In comparison, the urinary excretion of unchanged amsacrine was 12, 20 and 2% of the administered dose, respectively, in these same patients. Amsacrine biliary excretion studied in two patients showed about 8 and 36% of the administered radioactivity excreted in the bile in 72 hr, with less than 2% as unchanged amsacrine. Cerebrospinal fluid concentrations of amsacrine were below 2% of the simultaneous plasma levels in three patients. Impaired amsacrine drug clearance was frequently associated with liver dysfunction. Patients with impaired amsacrine drug clearance experienced the most severe clinical toxicity. Hepatic metabolism and biliary excretion appear the most important routes for amsacrine elimination. Renal elimination, although less important, is significant in patients with severe kidney dysfunction. To avoid excessive clinical toxicity, initial dose reductions of 30 to 40% are recommended for patients with severe liver or renal disease or for those who have pharmacologically documented impaired drug clearance.

Aminoacridines↗

Clinical pharmacokinetics of vinblastine by continuous intravenous infusion.

Vinblastine (VLB) is moderately active clinically against advanced breast cancer. Since VLB is extensively taken up by platelets and thus only partially available to tumor cells, to enhance the therapeutic index of VLB we have therefore administered this agent by continuous i.v. infusion to patients with advanced breast cancer. In conjunction with the clinical trial, we conducted pharmacokinetic studies of generally tritiated VLB, using radiochemical and chromatographic techniques. The elimination of VLB from the plasma of patients who received it by 5-day i.v. infusion at 1 to 2 mg/sq m daily was biphasic. In four patients who achieved partial remission, the average plasma half-life of VLB during the terminal phase was 29.4 +/- 14.6 days, with a total clearance of 36 +/- 8 ml/kg/hr, and a steady-state apparent volume of distribution of 28.1 +/- 8.5 liters/kg. However, in three patients whose disease merely stabilized, the plasma half-life was 6.4 +/- 1.6 days, the total clearance was 137 +/- 2.9 ml/kg/hr, and the volume of distribution was 33.0 +/- 11.6 liters/kg. In contrast, in five patients with refractory disease, these parameters were 2.3 +/- 0.3 days, 541 +/- 124 ml/kg/hr, and 37.6 +/- 8.6 liters/kg. Since the apparent volumes of distributions at steady state did not differ significantly among these three groups, whereas the values of the total clearance were markedly dissimilar, the plasma half-lives of VLB were significantly shorter in patients not responsive to continuous infusion therapy with this drug. Although the number of patients studied was small, it nevertheless appears that favorable clinical response of patients with advanced breast cancer is associated with slow total clearance of the drug.

Breast Neoplasms↗

Clinical pharmacokinetics of 5-methyltetrahydrohomofolate.

DL-N5-Methyltetrahydrohomofolate (MTHHF; NSC-139490; N- [(4-[(2-(2-amino-3,4,5,6,7,8-hexahydro-4-oxo-5-methyl-6- pteridinyl)ethyl) amino) benzoyl)] -L-glutamate), a new folate antagonist of relatively low toxicity, is active against experimental tumor systems resistant to methotrexate and consequently now in clinical trial. We investigated its clinical pharmacokinetics in six patients; four of them received by rapid i.v. infusion tracer doses of [N5-methyl-14C]MTHHF ranging from 13 to 16 mg/sq m, and 2 received 150 mg/sq m; the total radioactivity dose was 100 to 200 mu Ci/patient. MTHHF was assayed by radiochemical and chromatographic techniques. The elimination of MTHHF from the plasma followed a triexponential pattern, with a harmonic mean initial half-life of 20.1 min, an intermediary half-life of 4.5 hr, and a terminal half-life of 74.6 hr. The apparent volume of distribution was 1.6 liters/kg, suggesting rapid and extensive tissue binding. This, together with the low total clearance of 0.2 ml/kg/min, contributed to the long half-life of this agent. Although 68% of the administered dose was excreted in the urine on the first day, only an additional 1% was excreted on the ensuing 3 days. In the two patients who received the higher dose, very little MTHHF was found in the cerebrospinal fluid. In concentrations ranging from 25 to 500 micrograms/ml, the drug was about 50% bound to plasma protein. MTHHF was not metabolized in humans as also reported in animals. These results suggest that MTHHF is excreted in the bile to certain extent. Moreover, since it tends to localize and persist in the body, to forestall cumulative toxicity, frequent administration of this agent should be undertaken only with caution.

Breast Neoplasms↗

Aspartate carbamoyltransferase activity, drug concentrations, and pyrimidine nucleotides in tissue from patients treated with N-(phosphonacetyl)-L-aspartate.

Biopsy specimens were obtained from patients treated with N-(phosphonacetyl)-L-aspartate (PALA) in a phase I clinical trial. Activities of aspartate carbamoyltransferase (ACTase), the target enzyme, in ten specimens before treatment varied from 0.4 to 1.7 units/mg. PALA was measured in protein-free extracts of thirteen specimens by inhibition of rat ACTase. At 1.5 to 145 hr after doses of 1 to 6 g/m2, PALA concentrations were 0.9 to 89 micrograms/g; at 4 hr or later the tissue concentrations were similar to those in plasma (five samples). The observed inhibition of ACTase (17-87%) correlated with the PALA concentrations. Pyrimidine nucleotides were decreased (relative to purine nucleotides) in nine to ten specimens, by 16-72%. ACTase partially purified from human spleen had a Km for carbamoyl phosphate of 20.6 microM and the Ki for PALA was 0.011 microM. The results suggest that inhibition of ACTase by PALA affects the concentration of pyrimidine nucleotides in human tumors in a dose-dependent manner.

Antimetabolites, Antineoplastic↗