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Biomedical subjects

C Broquet

Publications and source records attributed to C Broquet.

At least 19 recordsLinked to original sources

Intravitreally injected platelet activating factor induces retinitis in experimental animals.

PURPOSE: Platelet activating factor is a lipid which has been strongly implicated in anterior uveitis. In order to investigate further the role of platelet activating factor in intraocular inflammation, we have characterized the histological changes associated with the intravitreal injection of platelet activating factor, PAF analogs, or lyso-PAF in laboratory rabbits and rats. METHODS: Initial studies utilized a PAF analog (rac 1-0-octadecyl 2-0-ethyl glycero phosphoryl choline or ethoxy PAF), because this compound is relatively resistant to degradation by hydrolase, the major degradative enzyme for PAF. Doses ranging from 1 ug to 5 mg and time points from 6 hours to 7 days after injection were studied. RESULTS: In either rats or rabbits, 100 ug of ethoxy PAF consistently induced a marked uveitis with the predominance of inflammation focused in the retina and choroid. Retinitis was also induced in rabbits by either 1 mg PAF injected intravitreally or a similar dose of the PAF precursor/metabolite, lyso PAF. Retinal inflammation was not induced by an inactive lipid, 1,1-0,0-dihexadecyl-rac-glycero-3-phosphocholine, although this compound resulted in mild vitreous inflammation. The histological changes induced by PAF could be readily distinguished from the predominantly anterior inflammation induced by intravitreal injections of substances such an interleukin-1 or endotoxin. CONCLUSIONS: Recent studies indicating that PAF antagonists inhibit a variety of retinal toxicities and our own observations suggest that PAF could be a major mediator of retinal inflammation.

Animals↗

Tumor cell kinetics following long-term treatment with antineoplastic ether phospholipids.

Ether phospholipids are analogs of the naturally occurring 2-lysophosphatidylcholine that have been reported to have selective in vitro/in vivo antitumor activity. Their antiproliferative effect has been found against a variety of animal and human tumor cell lines. We have characterized the cytostatic activity of four ether phospholipids, the methoxy-substituted edelfosine (ET-18-OCH 3), the thio-derivative ilmofosine (BM 41.440), and two new aza-alkylphospholipids, BN 52205 and BN 52211, on a human tumor cell line derived from a colon adenocarcinoma, the HT29. A flow cytometric approach has been used and, contrary to previous studies, longer treatment times have been performed to allow multiple cell population doublings. The results confirm that the cytostatic activity of the four ether phospholipids is characterized by multiple "terminal points", as the drugs' action results in a G1 block, a slowdown of the transition from late-S to G2, followed by an accumulation of HT29 cells in the G2 phase of the cell cycle. Tumor cells in late G1 at the time of treatment progressed through S before being blocked in G2. In a similar fashion, tumor cells in late G2 at the time of treatment went through M but were then halted in G1. The long-term treatment studies indicate that the ether phospholipid cytostatic activity is partially reversible, depending on the drug concentration and the duration of the treatment.

Adenocarcinoma↗

Cytotoxic properties of a new synthetic demethylpodophyllotoxin derivative, BN 58705, against human tumor cell lines.

The in vitro cytotoxic properties of a newly synthesized demethylpodophyllotoxin derivative, 4-o-butanoyl-4'-demethylpodophyllotoxin (BN 58705), were determined by using several human tumor cell lines of different histological origin and of different sensitivity to conventional chemotherapeutic drugs (Adriamycin and cis-diammine-dichloride platinum). BN 58705 is shown to be cytotoxic against various human tumor cell lines as assessed by the MTT assay. Furthermore, BN 58705 is shown to be cytotoxic against several drug-resistant tumor cell lines. BN 58705 is cytotoxic at concentrations 100- to 1000-fold lower than those of Adriamycin or cis-diammine-dichloride platinum required to achieve similar cytotoxicity. BN 58705 did not mediate DNA fragmentation of target cells, whereas the epipodophyllotoxin-like etoposide induced DNA cleavage by stabilizing the DNA-enzyme intermediate. Like vinca alkaloids, BN 58705 induced a block in the mitotic phase of the cell cycle. By comparison, BN 58705 exerted a stronger cytotoxic activity in vitro than did either etoposide, an epipodophyllotoxin, or vincristine, a vinca alkaloid. When BN 58705 was applied in vivo in mice, it resulted in low toxicity (50% lethal dose, 150 mg/kg). These results demonstrate than BN 58705 is cytotoxic to drug-resistant human tumor cell lines and is manyfold more potent than conventional drugs. The cytotoxic potency and low toxicity of BN 58705 are important criteria to establish its potential chemotherapeutic efficacy in vivo.

Animals↗

Cytostatic activity of new synthetic anti-tumor aza-alkyllysophospholipids.

Alkyllysophospholipids are analogues of the naturally occurring 2-lysophosphatidylcholine which have been reported to have selective in vitro/in vivo anti-tumor activity. Their antiproliferative effect has been found against a variety of animal and human tumor cell lines. We have characterized the cytostatic activity of 2 newly synthetized aza-alkyllysophospholipids (AALPs), the BN52205 and the BN52211, on a human tumor cell line derived from a colon adenocarcinoma, the HT29. We used 3 different flow cytometric approaches to study which phase of the cell cycle was the most sensitive to the antiproliferative activity of the 2 AALPs. By applying the biparametric analysis of 5'-bromo-2-deoxyuridine incorporation vs. DNA content we have been able to demonstrate that the 2 AALPs do not interfere with the S phase of the cell cycle. The simultaneous measurement of total nuclear protein vs. DNA content in isolated HT29 nuclei enabled us to exclude a block in the M phase of the cell cycle. Finally, stathmokinetic analysis enabled us to show that cytostatic activity of the 2 new AALPs is characterized by multiple "terminal points" as the drugs' action results in a G1 block, in a slow-down of the transition from late S to G2 followed by an accumulation of HT29 cells in the G2 phase of the cell cycle.

Adenocarcinoma↗

Preparation of immunoaffinity mini-columns for the analysis of platelet activating factor (PAF) in biological samples.

Using an antibody to BN 52719, an analogue of platelet activating factor (PAF), immunoaffinity mini-columns for the separation of PAF from biological samples were prepared. Rabbits were immunized with BN 52719 and immunoglobulin G (IgG) from the antiserum was coupled with Sepharose 4B. The resulting suspension of the IgG-coated Sepharose 4B in 25 mM phosphate buffer (pH 6.9) was poured into a plastic mini-column (bed volume 2.0 x 0.8 cm). Stepwise elution of the column with methanol revealed that lyso-PAF is eluted with 20-30% methanol in water whereas PAF is eluted with 50-80% methanol. For the determination of PAF in biological samples, it is recommended that lipids are extracted from the samples and the extract, reconstituted in 20% methanol, is loaded on the column. The column is then washed with 50% methanol followed by elution of PAF with 80% methanol. A small amount of [3H]PAF is added to the samples for measurement of the recoveries of PAF during the procedures of extraction and elution. The PAF is then quantified by radioimmunoassay or bioassay. Employing the immunoaffinity mini-column and radioimmunoassay, the contents of PAF in macrophages and conditioned medium after stimulation with calcium ionophore A23187, or tumor promoters such as TPA and thapsigargin, were measured.

Animals↗

Reversible or irreversible modification of [3H]PAF binding on rabbit platelet membranes differentiates various PAF receptor antagonists.

[3H]Platelet-activating factor (PAF) binding to rabbit platelet membranes was examined before and after 20 min preincubation at 25 degrees C in the presence of PAF, lysoPAF, or of five different PAF receptor antagonists (L 652731, BN 52021, WEB 2086, BN 52111 and BN 52115). When platelet membranes were not washed after preincubation with PAF or PAF antagonists, no significant specific binding of [3H]PAF was observed, which suggests full occupancy of the binding sites. When membranes were extensively washed, full recovery of specific [3H]PAF binding was attained with L 652731 and partial recoveries (60%, 55% and 30%) were reached with BN 52021, WEB 2086 and PAF, respectively; no recovery was seen with the dioxolanes BN 52111 and BN 52115. Scatchard analysis of the binding data indicated that no significant change in the dissociation constant (Kd) and maximum number of binding sites (Bmax) occurred after preincubation of platelet membrane with L 652731, whereas a reduction of Bmax was observed when PAF and BN 52021 were measured. When platelet membranes were preincubated with WEB 2086, Bmax and Kd significantly increased. The data suggest differing binding properties for PAF and the PAF antagonists. Some of the PAF antagonists may tightly bind to the PAF receptor site(s) and/or irreversibly modify or downregulate PAF recognition sites. Our results also suggest that the interaction of PAF receptor antagonists with PAF receptor can be divided into at least two components, namely a reversible component and an irreversible one.

Animals↗

Evaluation of combinations of antineoplastic ether phospholipids and chemotherapeutic drugs.

Combinations of drugs are used clinically for the therapeutic advantages they may provide over single agents. We have studied the cytotoxic interaction between four either phospholipids ET-18-OCH3, BM 41.440, BN 52205 and BN 52211, and several chemotherapeutic drugs (ADM, CDDP, VLB, VP-16, MMC, BLM and MTX) on two human tumor cell lines, A427 (lung) and HT29 (colon). We have used the MTT colorimetric assay to evaluate growth inhibition and performed isobologram analysis on the IC50 data. For both cell lines a synergistic effect has been found between each of the four ether phospholipids in association with CDDP and ADM. In both cell lines only BM 41.440 and BN 52211 act synergistically with VLB while, in A427 cells, only BN 52205 behaves similarly with MMC. These results show that a positive interaction exists between ether phospholipids, spindle poisons and DNA-interactive drugs.

Antineoplastic Combined Chemotherapy Protocols↗

Immunomodulatory activity of two new aza alkyl phospholipid antineoplastic drugs.

The present work reports the modulation of immunocompetent cell functions by two aza alkyl phospholipids (AAP), BN 52205 and BN 52211. Each compound was compared with 1-O-octadecyl-2-O-rac-glycero-3-phosphocholine (ET-18-OCH3) and/or three drugs used for cancer treatment, i.e. cisplatyl (CIS), 5-fluorouracil (5-FU) and cytosine arabinoside (ARA-C). Interleukin (IL)-1 release from P388D1 cells was increased 2-fold in the presence of 5 micrograms/ml BN 52205 or BN 52211. However, these stimulations were lower than those obtained with ARA-C, 5-FU and CIS. Compared with ET-18-OCH3, CIS and 5-FU, BN 52205 and BN 52211 were more efficient in increasing tumor necrosis factor production induced by lipopolysaccharide (LPS) from human monocytes. In vitro, all compounds exhibited similar activity in enhancing IL-6 production from human monocytes stimulated with LPS, with the exception of 5-FU and CIS that were inactive. At 20 mg/kg (i.v.), a peak of IL-6 production was reached 2 h after injection of ET-18-OCH3 [> 1280 U/ml (n = 4, p < 0.001) versus 3.5 +/- 0.2 U/ml (n = 7)], whereas BN 52211 induced a maximum of IL-6 production after 4 h (77 +/- 27 U/ml, n = 5, p < 0.001). BN 52205 induced peaks of IL-6 production after 3 and 6 h (90 +/- 62 and 68 +/- 35 U/ml, respectively, p < 0.001, n = 4). The proliferation of rat splenocytes was abolished in the presence of BN 52205 and BN 52211 at 10 micrograms/ml, corresponding to only a partial reduction of IL-2 production at the same concentration. The production of interferon-gamma was stimulated 6- to 10-fold in the presence of 1-5 micrograms/ml BN 52205, BN 52211 and ARA-C. BN 52211 and BN 52205 were also potent enhancers of IL-3 production, whereas 5-FU and ARA-C were inhibitory. These results indicate that in addition to a direct antitumoral effect, AAP may also exhibit immunomodulatory activity both in vitro and in vivo.

Adjuvants, Immunologic↗

Structure-activity relationship in PAF-acether. 4. Synthesis and biological activities of carboxylate isosteres.

The synthesis and biological characterization of some 3-carboxylate isosteres of PAF-acether structurally modified in positions 1 (ether, carbamate), 2 (acetoyl, ethoxy), and 3 (chain length and polar head group) are reported. All derivatives present antagonist activities against PAF-acether-induced effects in vitro (platelet aggregation) and in vivo (bronchoconstriction and thrombocytopenia in guinea pig and, to a lesser extent, hypotension in rat). The functional modifications presented here do not modify dramatically the potency of antagonist activities, and there is no enantioselectivity. All of the isosteres are specific PAF-acether antagonists, except the 1-carbamoyl analogue, which is also potent against acetylcholine-induced hypotension and bronchoconstriction.

Animals↗

Endothelium-dependent vasorelaxation induced by Cn-acetal plasmalogens.

In this study the effects of the synthetic acetal plasmalogens (AP) C17-AP, C13-AP, C9-AP on isolated rabbit aorta were investigated with emphasis on their putative relationship with endothelium-dependent relaxing factor (EDRF). The various AP were obtained by total synthesis from the related fatty acid chlorides. In isolated rabbit aorta precontracted with phenylephrine (PE, 10(-7) M), C17-AP (greater than 10(-6) M) and C13-AP (greater than 10(-5) M) exerted an endothelium-dependent relaxation (EDR). In contrast, C9-AP was totally devoid of effect. Given 30 or 45 min before PE, C17-AP (greater than 10(-6) M) and C13-AP (greater than 10(-5) M) abolished the carbachol-induced ERD; moreover, following preincubation with C17-AP, enhanced contraction was obtained with carbachol. Similar effects were obtained with preincubation of aortas with both AA(10(-4) M) and A 23 187 (10(-8) M). Conversely preincubation of aortas with carbachol (3X 10(-6) M) and ATP (3 X 10(-5) M) did not significantly modify the carbachol-induced EDR. Atropine (3 X 10(-7) M) did not affect the relaxation induced by C17-AP and C13-AP. The in vivo effects are correlated with the in vitro actions of acetal plasmalogens: C17-AP and C13-AP but not C9-AP, given iv (5 mg/kg) induced a pronounced but transient hypotension which lasted 2-3 min and which was followed by a persistent hypertensive state. Atropine (0.5 and 1 mg/kg; iv) given 5 min before C17-AP inhibited the secondary hypertensive phase. These results show that C17-AP and C13-AP should be added to the list of compounds capable of releasing EDRF.

Adenosine Triphosphate↗

Structure-activity relationship in PAF-acether. 3. Hydrophobic contribution to agonistic activity.

The synthesis of some selected PAF-acether homologues with an alkoxy-chain length from C1 to C20 in position 1 is described. All agonist activities are closely correlated among themselves and with the calculated fatty-chain hydrophobicity. After a discussion on recent published results and comparison with our data, we conclude that the ether oxide function is absolutely essential at the glycerol 1-position for potent agonist activity and that potency correlates well with hydrophobicity parameters. We indicate the importance of steric and configurational constraints.

Animals↗

Effects of PAF-acether and structural analogues on platelet activation and bronchoconstriction in guinea-pigs.

PAF-acether (platelet-activating factor) (1-O-alkyl-2-acetyl-sn-glycerol-3-phosphorylcholine) induces platelet-dependent bronchoconstriction in the guinea-pig which correlates with its in vivo thrombocytopenic effect. We investigated the influence of modifications of the polar head group in position 3 of the glycerol skeleton of PAF-acether on guinea-pig platelet activation and bronchoconstriction. PAF-acether itself induced concentration-dependent platelet activation (EC50 for aggregation = 0.41 nM and EC20 for secretion of ATP = 0.56 nM). The 3-phosphoryl-N-methyl-morpholino ethanol analogue was slightly more active than PAF-acether and the 3-phosphoryl-N-methyl-piperidinium ethanol, 3-phopshoryl-(N-methyl-piperidino-3') methanol and 3-phosphoryl-(N-methyl-hydroxy-4') piperidine analogues were equieffective to PAF-acether in activating platelets. The 3-phosphoryl-piperidino ethanol analogue was 8 times less active than PAF-acether; the 3-phosphoryl-morpholino ethanol analogue and the 1-O-octadecyl-2-O-acetyl-3-O-[trimethyl-ammonio)-propyl) glycerol were inactive up to 1 microM. Our data show that the choline head group is not a compulsory requirement for activity. When injected i.v. to the propranolol-treated guinea-pigs, the platelet-activating analogues also induced bronchoconstriction. Two PAF-acether antagonists, compounds 48740 RP and BN 52021, inhibited PAF-acether-induced platelet activation when added to PRP at the final concentration of 0.1 mM (aggregation inhibited by 91 +/- 4 and by 94 +/- 3% respect.; secretion inhibited by 80 +/- 12 and 79 +/- 10% respectively, mean +/- S.E.M., n = 4). Both antagonists also suppressed platelet activation and in vivo bronchoconstriction, thrombocytopenia, leukopenia and hypotension induced by PAF-acether and the various analogues. Our results indicate that PAF-acether and the analogues studied trigger platelet activation and the consequent bronchoconstriction through mechanisms which share sensitivity to same antagonists.

Adenosine Triphosphate↗

Phosphorylation of class I HLA antigens in U-937 monocyte-like cells. Role of protein kinase C.

Phorbol esters and 1-oleoyl-2-acetylglycerol induce an increase in phosphorylation of a series of 44-kD proteins in the U-937 human monocyte-like cell line. The phenomenon is rapid at 37 degrees C, starting 0.5 min after adding the inducer, increasing to a maximum of 5-10 min and decreasing to the basal level at 30 min. It is also observed at 4 degrees C, though much more slowly. Immunoprecipitation and two-dimensional electrophoresis demonstrated that these phosphorylated proteins belong to the class I HLA antigens.

Cell Line↗

[Metabolic effects of gliclazide in diabetes type II patients. Study with indirect calorimetry].

An attempt is made to determine the effect of treatment with gliclazide on the manner in which obese patients with noninsulin-dependent diabetes dispose of an oral glucose load. Six patients were studied on two occasions - once after one month of an isocaloric diet containing 40% carbohydrate, and two months after gliclazide had been added. Body weight remained constant throughout the three months. However, fasting plasma glucose concentration fell and mean (+/- SEM) incremental insulin response to oral glucose increased significantly (p less than 0.05) with drug therapy (51.1 +/- 14.6 microU/ml vs 17.1 +/- 1.5 microU/ml). Glucose oxidation significantly improved after gliclazide treatment (16.9 +/- 2.4 g/3 h vs 7.5 +/- 2.1 g/3 h, p less than 0.02) in parallel with the fall in plasma glucose and the increase in insulin response. In addition, glucose storage significantly increased after drug therapy (44.1 +/- 10.1 g/3 h vs 28.4 +/- 7.2 g/3 h, p less than 0.001). In contrast, lipid oxidation fell with gliclazide treatment (7.2 +/- 0.7 g/2 h vs 12.0 +/- 1.7 g/3 h, p less than 0.02). This effect may be explained by improvement of the antilipolytic effect of insulin. In conclusion, improvement in glucose oxidation (25%) and in glucose storage (55%), together with reduced lipid oxidation, was observed after two months of gliclazide therapy.

Blood Glucose↗

Decreased thermogenic response to an oral glucose load in older subjects.

The thermogenic response to a 100 g oral glucose load was studied by indirect calorimetry in 13 older persons (age range, 38-68 years) and compared with that of 16 young matched controls of similar body weight (age range, 19-30 years). The glucose-induced thermogenesis measured over 180 min and expressed as a per cent of the energy content of the glucose load was found to be reduced in the older subjects, i.e., 5.8 +/- 0.3 per cent vs 8.6 +/- 0.7 per cent, P less than 0.002). This was also accompanied by a significant decrease in the glucose oxidation rate when averaged over the same three-hour period following the glucose load, i.e., 153 mg/min vs 213 mg/min in the control subjects (P less than 0.001) despite a similar time course of glycemia. This study suggests that the thermogenic response to an oral glucose load is blunted in older people, and this may represent an additional factor that contributes to the decreased energy requirement with age and therefore to the increased propensity to obesity if energy intake is not adjusted.

Adult↗