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Biomedical subjects

K K Chan

Publications and source records attributed to K K Chan.

At least 19 recordsLinked to original sources

Use of V79 cells with stably transfected cytochrome P450 cDNAs in studying the metabolism and effects of cytotoxic drugs.

PURPOSE: Studying the metabolism of cytotoxic drugs has become increasingly necessary to predict clinically significant drug-drug interactions and to understand the basis of interindividual variations in the pharmacokinetics of anticancer agents. The aim of this study was to determine the feasibility of using V79 Chinese hamster fibroblasts, which are stably transfected with cytochrome P450 (CYP) cDNAs, to study the metabolism of cytotoxic drugs in vitro. METHODS: The 3-[4,5-dimethylthiazol-2yl]-2,5-diphenyltetrazolium bromide (MTT) assay was used to determine cell survival after incubation with drugs. Gas chromatography/mass spectroscopy was used for the quantitation of metabolites of cyclophosphamide and ifosfamide in culture medium. The coculture technique was used to study the generation of cytotoxic metabolites in culture medium. RESULTS: After treatment with either cyclophosphamide or ifosfamide (100 microM to 1 mM) cytotoxicity was demonstrated in only cytochrome CYP2B1- and cytochrome CYP3A4-expressing cells. Treatment of parental nontransfected cells that were cocultured with CYP-expressing cells with cyclophosphamide resulted in increased sensitivity to this drug. All active and inactive metabolites of cyclophosphamide and ifosfamide were detected in the culture medium. Cyclophosphamide-induced cytotoxicity in CYP2B1- and CYP3A4-expressing cells was abrogated by metyrapone and midazolam/ troleandomycin, respectively. Paclitaxel showed greater cytotoxicity against parental V79 cells than against the CYP2BI-, 2E1-, or 3A4-expressing cells, which was also influenced by cotreatment with CYP inhibitors. CONCLUSIONS: Stable expression of CYP cDNAs by V79 cells provided an in vitro system to study cytotoxic drug metabolism. Cell viability and metabolite assays were used to determine the differential metabolism and effects in different CYP-transfected cell lines treated with cytotoxic drugs. The potential use of this V79 cell expression system is in studying enzymes involved in the metabolism of cytotoxic drugs, especially early in drug development. In addition, this system may be used to determine drug interactions that may influence the outcome of therapy in patients with cancer.

Animals

Chromosomal mapping, tissue distribution and cDNA sequence of four-and-a-half LIM domain protein 1 (FHL1).

We have isolated and sequenced a human heart cDNA clone encoding a novel LIM-only protein. This full-length cDNA clone has a predicted open reading frame (ORF) encoding 280 amino acids. The ORF of this cDNA codes for a LIM-only protein that possesses four repeats of LIM domain and an extra zinc finger and this putative protein is named four-and-a-half LIM domain protein 1 (FHL1). FHL1 is unique when compared with other LIM-only proteins because it possesses an odd number of zinc fingers. When the FHL1 cDNA probe was used to hybridize with poly-(A) RNA of various human tissues, a very strong signal was detected in skeletal muscle, a moderate one in the heart; only weak signals were associated with the placenta, ovary, prostate, testis, small intestine, colon and spleen, and virtually no signal could be detected in brain, lung, liver, kidney, pancreas, thymus and peripheral blood leukocytes. The FHL1 gene was located to human chromosome at Xq27.2 by somatic cell hybrid mapping, fluorescent in situ hybridization (FISH) and radiation hybrid mapping.

Amino Acid Sequence

Molecular cloning and characterization of FHL2, a novel LIM domain protein preferentially expressed in human heart.

A full-length cDNA clone encoding a novel LIM-only protein was isolated and sequenced from a human fetal heart cDNA library. This full-length clone consists of 1416 base pairs and has a predicted open reading frame (ORF) encoding 279 amino acids. The ORF of this polypeptide codes for the human heart-specific four and a half LIM-only protein 2 (FHL2). It possesses an extra zinc finger that is a half LIM domain and four repeats of LIM domain. When the human FHL2 cDNA probe was used to hybridize with poly-A RNA of various human tissues, a very strong signal could be seen in heart tissues, and only moderately low signals could be detected in placenta, skeletal muscle and ovary. Virtually no signal could be detected in brain, lung, liver, kidney, pancreas, spleen, thymus, prostate, testis, small intestine, colon or peripheral blood leukocyte. FHL2 was mapped to chromosome 2q12-q13 by fluorescent in-situ hybridization (FISH).

Amino Acid Sequence

Developmental regulation of 14-3-3 epsilon isoform in rat heart.

Human heart cDNA sequencing yielded a cDNA clone that is similar in DNA and amino acid sequences to that of mouse 14-3-3 epsilon isoform. The 6xHis-tagged H1433 epsilon recombinant protein was expressed in Escherichia coli and its size was approximately 30 kDa. From Northern blot results with human multiple tissues, human skeletal muscle was found to have the highest level of h1433 epsilon mRNA expression, whereas Northern blots of human cancer cell lines detected the highest mRNA level of h1433 epsilon in colorectal adenocarcinoma SW480. The protein expression level of h1433 epsilon and Raf-1 is found to be regulated coordinately during rat heart development, and their protein expression was highest from 14.5 to 16.5 days postcoitum.

14-3-3 Proteins

Pharmacokinetics of d-limonene in the rat by GC-MS assay.

The naturally occurring monoterpene d-limonene has been found to inhibit various stages of tumorigenesis in a number of animal models and is now being evaluated as a chemopreventive agent in humans. To date, there are little or no preclinical pharmacokinetics available nor is there a sensitive assay methodology. In this study, d-limonene and its dideuterium-labeled internal standard, limonene-d2, in whole rat blood were extracted with n-pentane which was then concentrated on a Kuderna-Danish concentrator. The residue was analyzed by an ion-trap GC -MS under ammonia chemical ionization. The detection limit of d-limonene was 1.0 ng if injected in pure form; however, due to the presence of endogenous d-limonene levels (probably from diet), the routine quantitation limit was set at 1.0 microgram ml-1. The monitored assay linearity range from 1.0 to 30 micrograms ml-1 within-day CV values of 8.0%, 2.4%, and 2.0% at 1.0, 3.0 and 10.0 micrograms ml-1, respectively (all at n = 8), and corresponding accuracy of 100%, 100%, and 101%. The between-day CV values were 12.3, 8.0, and 7.5% at 1, 6, and 20 micrograms ml-1, respectively (all at n = 8). Using this assay, pharmacokinetics of d-limonene were studied in Sprague-Dawley rats following intravenous and oral administration at 200 mg kg-1 each. Blood concentration-time profiles after intravenous administration showed a biphasic decline with a mean initial t1/2 of 12.4 min and a terminal t1/2 of 280 min. The plasma:red blood cell partition was found to be 0.84. Plasma protein binding of d-limonene was found to be 55.3% at 20 microgram ml-1. The mean total clearance was 49.6 ml min-1 kg-1, the volume of distribution at steady-state 11.7 1 kg-1, and median residence time 263 min. The blood concentration-time decline following oral administration also showed a biphasic decline with a mean initial t1/2 of 34 min and terminal t1/2 of 337 min. The oral bioavailability of d-limonene was 43.0%.

Animals

Effects of a novel antitumor depsipeptide, FR901228, on human breast cancer cells.

Human breast cancer MCF7 and MDA-MB231 cells were used to investigate the biological and molecular activities of a novel naturally occurring agent, FR901228 (FR), that possesses a potent antitumor activity against human and murine tumor cells. Investigation of the cytotoxicity of FR and induction of internucleosomal DNA degradation in FR-treated cultures revealed that FR induced apoptotic-like cell death of MCF7 and MDA-MB231 cells. In FR-treated apoptotic cultures, flow cytometry revealed that there was a significant decrease of cells in S phase of the cell cycle. In FR-treated cells there was an increased expression of p21Cip1 and phosphorylation of Bcl-2 as determined by Western immunoblotting, and a novel cytoplasmic kinase of 33 kDa, p33 kinase, as determined by the in-gel kinase assay using myelin basic protein (MBP) as a substrate. Increased expression of p21CiP1, phosphorylation of Bcl-2, and activation of p33 MBP kinase may play part of the key mechanism for FR-induced apoptosis.

Anti-Bacterial Agents

Chromosomal mapping of a skeletal muscle specific LIM-only protein FHL3 to the distal end of the short arm of human chromosome 1.

Four-and-a-half LIM domain proteins (FHL) possess four tandem repeats of LIM domain and an extra zinc finger. FHL family LIM proteins are unique when compared with other LIM-only proteins because they possess an odd number of zinc fingers. In this study, the tissue distribution and chromosomal mapping of skeletal muscle LIM protein FHL3 were reported. When the FHL3 cDNA probe was used to hybridize with poly-(A) RNA of various human tissues, a very strong signal was detected in skeletal muscle, and virtually no signal could be detected in heart, brain, placenta, lung, liver, kidney and pancreas. Using radiation hybrid technique, FHL3 gene was mapped to the distal end of the short arm of chromosome 1 (123.26 cR from the top of the Chr1 linkage group) and this region (near 1p34) is related to several human malignancies.

Animals

Expression of neuronal markers in oligodendrogliomas: an immunohistochemical study.

The oligodendroglioma has been considered to be a tumour showing oligodendrocyte differentiation, but studies of the expression of oligodendrocyte markers have not conclusively demonstrated this and the pattern of differentiation of this tumour remains uncertain. Recent studies have suggested that some oligodendrogliomas may show neuronal differentiation. The aim of this study was to determine whether there was evidence of neuronal differentiation in a series of oligodendrogliomas, and, if so, to determine whether this identified a biologically or clinically distinct group. Immunohistochemistry was carried out on paraffin sections using antibodies to synaptophysin, phosphorylated and non-phosphorylated neurofilament proteins. An archival series of 32 oligodendrogliomas had been previously characterized for histological features, histological grade, Ki-67 labelling index, apoptosis index and prognosis. Six per cent of tumours showed expression of synaptophysin. Thirty-one per cent of cases showed expression of neurofilament proteins with an antibody to non-phosphorylated epitopes, but no cases were positive with antibodies to phosphorylated neurofilament epitopes. Tumours showing expression of neuronal markers did not show a difference in the distribution of histological grade or GFAP expression from those which did not express these markers, and there was no difference in labelling indices or prognosis between the two groups. In conclusion, a subset of oligodendrogliomas showed expression of neuronal lineage markers; this is discussed in relation to histogenesis and differential diagnosis. The expression of such markers did not identify a biologically or clinically distinct subgroup.

Biomarkers

Differential in vitro hepatic and intestinal metabolism of ifosfamide in the rat.

1. Metabolism of ifosfamide (IF) in intestinal and hepatic microsomes has been investigated in the rat. The generation of three primary metabolites, 4-hydroxyifosfamide (HOIF), N2-dechloroethylifosfamide (N2D) and N3-dechloroethylifosfamide (N3D), was followed. 2. Microflora in rat small intestine showed no metabolic activity towards IF. The overall metabolic activity was higher in the hepatic microsomes than in the intestinal microsomes, and the hydroxylation pathway accounted for 53.6% of total IF metabolism in the hepatic microsomes. In contrast, hydroxylation of IF in intestinal microsomes was only 9.8% of the total monitored metabolic activity and N3-dechloroethylation of IF was a major pathway, constituting 73.0% of the monitored activity. 3. In summary, the intestinal metabolism of IF was demonstrated for the first time and these in vitro data indicate that the intestinal metabolism of IF could contribute significantly to the overall first-pass metabolism.

Animals

Proliferation and cell death in oligodendrogliomas.

The rates of cell proliferation and of cell loss influence the growth rate of a tumour and reflect genetic changes. We studied proliferation and apoptosis in oligodendrogliomas and their relationship to progression of the tumours. Thirty-two cases of oligodendroglioma were retrieved spanning a 10-year period. The diagnosis and grade were reviewed and follow-up data obtained. Mitotic index (MI) and apoptotic index (AI) were determined from haematoxylin and eosin (H & E) stained sections. A labelling index (LI) of proliferating cells was obtained using the MIB1 antibody to the Ki-67 antigen. A further index of apoptosis was obtained using in situ end-labelling of DNA strand breaks (TUNEL index, TI). Fourteen cases were graded as II, 18 as III (1993 WHO). LI was significantly higher in grade III than in grade II tumours (P < 0.01) but the difference in apoptotic indices between grades was not significant. There was a significant (P = 0.036) positive correlation between the logarithms of TI and LI. Construction of survival curves demonstrated a significant difference in survival according to histological grade (P < 0.05). Stratification of cases by LI alone did not predict significantly different survival outcomes, and apoptotic indices did not demonstrate a relationship to survival. A positive relationship was demonstrated between proliferation and apoptosis in oligodendrogliomas. The levels of apoptosis observed indicate that this phenomenon may have an important influence on the overall rate of tumour growth.

Adolescent

Effects of phenobarbital on stereoselective metabolism of ifosfamide in rats.

Plasma and urinary levels of ifosfamide (IF) enantiomers and their metabolites 2-dechloroethylifosfamide, 3-dechloroethylifosfamide, 4-hydroxyifosfamide, and isophosphoramide mustard were determined for control and phenobarbital-treated male Sprague-Dawley rats by using pseudoracemates and GC/MS and stable-isotope dilution analytical methods. For the control rats, the mean AUC for (S)-IF in plasma was greater than that for (R)-IF (R/S AUC ratio, 0.78) and the mean half-life of 41.8 min for (S)-IF was slightly longer than that of 34.3 min for (R)-IF. Phenobarbital pretreatment significantly decreased the AUC values for (R)-IF and (S)-IF, to 21 and 30% of the control values, respectively, and shortened plasma half-lives for both enantiomers [half-life for (R)-IF, 19.8 min; half-life for (S)-IF, 19.4 min]. The urinary excretion values for (R)-IF and (S)-IF were decreased to 41 and 30% of the control values, respectively. The overall amounts of the metabolites in urine were concomitantly increased. Additionally, there were significant reversals in both the R/S AUC ratio and the urinary excretion of 3-dechloroethylifosfamide. Moreover, the enantioselectivity for the generation of 4-hydroxyifosfamide and isophosphoramide mustard disappeared after phenobarbital treatment. These results strongly suggested that the 4-hydroxylation and dechloroethylation of IF enantiomers were mediated by different P450 isozymes or the same isozyme with different stereochemical selectivities.

Animals

Absence of the glutathione S-transferase M1 gene increases cytochrome P4501A2 activity among frequent consumers of cruciferous vegetables in a Caucasian population.

The cancer protective effect of cruciferous vegetables has been attributed to induction of phase II enzymes. But cruciferous vegetables also induce cytochrome P4501A2 (CYP1A2), which catalyzes the metabolic activation of various procarcinogens, including aromatic amines in tobacco. Thus, frequent intake of cruciferous vegetables could also result in cancer-enhancing effects. GSTM1 is involved in the detoxification of various carcinogens, but it also enhances the excretion of isothiocyanates and possibly other enzyme inducers in cruciferous vegetables. We, therefore, hypothesized that GSTM1 null genotype might be associated with increased CYP1A2 activity among frequent consumers of cruciferous vegetables because the excretion of CYP1A2 inducers contained in these vegetables may be partially inhibited in the absence of the GSTM1 enzyme. Three hundred twenty-eight non-Hispanic white residents of Los Angeles County (265 males and 63 females) were genotyped for the presence or absence of GSTM1 alleles and phenotyped for CYP1A2 activity. Information on usual dietary habits was obtained from these subjects through in-person interviews. Among frequent (at least once a week) consumers of broccoli, GSTM1 null individuals exhibited a 21% higher geometric mean level of CYP1A2 activity relative to GSTM1 non-null individuals (5.24 versus 4.32, two-sided P = 0.01). No such difference was observed in subjects who consumed broccoli less frequently (two-sided P = 0.39). This interactive effect of GSTM1 genotype and vegetable intake on CYP1A2 activity also was observed when overall intake of the five cruciferous vegetables under study (broccoli, cabbage, cauliflower, Brussels sprouts, and mustard greens) was examined. Among weekly consumers of cruciferous vegetables, GSTM1 null individuals showed a 16% higher geometric mean level of CYP1A2 activity relative to GSTM1 non-null individuals (5.03 versus 4.33, two-sided P = 0.02), whereas no difference was evident among those who consumed cruciferous vegetables less frequently (two-sided P = 0.35). Our results suggest that cruciferous vegetables contain CYP1A2 inducers, which are deactivated in the presence of GSTM1.

Brassicaceae

A pilot study on early post-operative morbidity and technique of inguinal node dissection in vulval carcinoma.

Inguinal lymphadenectomy is part of the management plan for most cases of vulval carcinoma. The surgical techniques have been modified over the years resulting in less destructive operations. Even so, inguinal lymphadenectomy continues to pose difficulties particularly relating to wound breakdown and lymphocyst formation. Many different methods are described, though none have undergone any comparative assessment regarding morbidity. This small study compares two methods performed on the same patients. The radical procedure included excision of the fascia lata and exposure of the femoral vessels and nerve. The anatomically-directed method was more conservative with surgery directed at removing the nodes as described in anatomical textbooks. Both methods resulted in equal lymph node retrieval, though the subjective short-term morbidity was reduced with the more conservative surgery. This approach did not result in any detrimental outcomes regarding relapse disease, though a randomised trial is required to corroborate these findings.

Carcinoma, Squamous Cell

Synthesis and purification of NB1-palmitoyl insulin.

A procedure for synthesizing NB1-palmitoyl insulin for incorporation into liposomes for targeting to hepatocytes was developed. The amino group of the first amino acid phenylalanine on the B chain (B1) of insulin was selected for conjugation with palmitic acid in anticipation that its binding to the insulin receptor would be preserved. Two other free amino groups present in insulin, the first amino acid glycine on the A chain (A1) and the 29th amino acid lysine on the B chain (B29), were first protected with a t-butoxycarbonyloxy (t-Boc) group to yield NA1, B29-di-(t-Boc) insulin. The identity of this di-(t-Boc) insulin was confirmed by amino acid analysis as well as by enzyme hydrolysis coupled with matrix-assisted laser-desorption time of flight mass spectrometry (MALDI-TOF MS). NA1,B29-Di-(t-Boc) insulin was then reacted with the N-hydroxysuccinimide ester of palmitic acid, followed by deblocking the t-Boc groups, to yield NB1-palmitoyl insulin, the structure of which was further confirmed by MALDI-TOF MS analysis. NB1-palmitoyl insulin was found to interact with the insulin receptor on fat cells, thereby catalyzing the conversion of [14C]glucose into lipids, at reduced efficiency (30-40%).

Animals

Depsipeptide (FR901228, NSC-630176) pharmacokinetics in the rat by LC/MS/MS.

Depsipeptide, a cyclic peptide (FR), isolated from Chrombacterium violaceum strain WB968 by Fujisawa Company during a screening program for anti-oncogene agents, possesses potent antitumor activity against human tumor cell lines and xenografts. This compound has been selected for preclinical and early clinical development by the National Cancer Institute. The pharmacokinetics and oral bioavailability of this depsipeptide in the rat were investigated in the present study. A sensitive and specific electrospray LC-tandem mass spectrometry method was first developed and validated for the analysis of this depsipeptide in plasma using t-boc-alpha-d-glutamic acid benzyl ester as the internal standard. The routine sensitivity limit was 1 or 10 ng/ml using 1.0 or 0.1 ml of plasma sample. The within-run CV values were 11.8, 17.9, 11.0, and 5.0% at 1, 10, 100, and 500 ng/ml levels, respectively, with corresponding accuracy of 94.4, 109, 95, and 97% (all n = 6). A formulation based on ethanol, normal saline and PEG400 was then developed and Fischer rats were given this formulated drug separately by intravenous and oral route. Plasma drug concentrations were measured by this method and pharmacokinetics were analyzed by the standard techniques. Plasma concentration-time profiles were found to follow a biexponential decline with a mean terminal t1/2 of 97 min and mean total clearance (CLt) of 425.3 ml/min/kg following i.v. dosing at 10 mg/kg. Following oral dosing at 50 mg/kg, the peptide was absorbed but produced erratic drug levels also with a bioavailability of 15.6%. Thus, active plasma concentrations can be produced up to 3 hrs in the rat following a single dose at 10 mg/kg and the peptide represents one of the very few orally absorbed peptides reported.

Administration, Oral

Suspected mitochondrial myopathy in a Jack Russell terrier.

A Jack Russell terrier with a history of progressive exercise intolerance was examined at the age of four months and again 10 months later. Clinical examination revealed a stunted, thin dog with a stilted gait. The dog had raised lactate levels before and after feeding and a raised lactate/pyruvate ratio after feeding, indicating a metabolic abnormality. Histochemical evaluation of muscle biopsies revealed subsarcolemmal accumulation of oxidative activity when stained with nicotinamide adenine dinucleotide tetrazollum reductase and ragged red fibres when stained with modified Gomori trichrome; all fibre types were involved. Ultrastructural examination of the muscle confirmed the presence of subsarcolemmal accumulations of mitochondria. Histochemical staining for the activity of enzymes of the Krebs cycle, oxidative phosphorylation and other metabolic cytosolic enzymes failed to demonstrate an abnormality. In view of the clinical picture and the biochemical and histological findings, a tentative diagnosis of mitochondrial myopathy was made. The difficulties associated with diagnosing mitochondrial disorders are discussed.

Animals

Cupid's bow contour of the vertebral body: evaluation of pathogenesis with bone densitometry and imaging-histopathologic correlation.

PURPOSE: To investigate the Cupid's bow contour by means of bone densitometry and imaging-histopathologic correlation. MATERIALS AND METHODS: Radiographs and histologic slices were obtained in 64 cadaveric thoracolumbar spines to assess the morphology, distribution, and histopathologic features of the Cupid's bow contour. Dual-energy x-ray absorptiometry and radiography were performed in the lumbar spine in 406 healthy subjects. Bone density and body height and weight were then related to the presence of the Cupid's bow contour. The Cupid's bow contour was compared with the fish vertebra of osteoporosis and Schmorl node. RESULTS: No clinically important relationship was found between lumbar bone density, body height and weight, and prevalence of the Cupid's bow contour. Histologic examination showed thickened bone in the Cupid's bow end plate with annular fibers inserting into this region. In cadavers, the Cupid's bow contour occurred at multiple lumbar and thoracic levels, with the highest frequency in the lower lumbar spine. Lateral radiographs enabled better detection of the contour change. CONCLUSION: The Cupid's bow deformity is a developmental phenomenon that is unrelated to osteopenia or mechanical stress on the spine.

Absorptiometry, Photon