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Biomedical subjects

S Patel

Publications and source records attributed to S Patel.

At least 19 recordsLinked to original sources

Progesterone blocks cholesterol translocation from lysosomes.

Fluorescent microscopic examination of fibroblasts cultured with low density lipoprotein (LDL) and progesterone (10 micrograms/ml) for 24 h revealed extensive filipin-cholesterol staining of perinuclear lysosomes. Levels of unesterified cholesterol were 2-fold greater than in fibroblasts cultured with LDL alone. Progesterone strongly blocked cholesteryl ester synthesis. When cellular uptake of LDL was monitored in the presence of 58035, a specific inhibitor of acyl-CoA:cholesterol acyltransferase, excess unesterified cholesterol was not stored in lysosomes. Discontinuation of LDL uptake in conjunction with progesterone washout markedly reversed the filipin-cholesterol staining of lysosomes. Reversal of the lysosomal cholesterol lipidosis was associated with a rapid burst of cholesteryl ester synthesis and a normalization of the cellular levels of free and esterified cholesterol. In contrast to normal cells, progesterone removal from Niemann-Pick C fibroblasts did not reverse the lysosomal cholesterol accumulation of these mutant cultures. The metabolic precursor of progesterone, pregnenolone, also induced extensive accumulation of cholesterol in lysosomes. Other steroids induced less vacuolar cholesterol accumulation in the following decreasing order: corticosterone and testosterone, promegestone, RU 486. The relative inhibition of cellular cholesterol esterification by the steroids paralleled their respective abilities to sequester cholesterol in lysosomes rather than their inhibition of acyl-CoA:cholesterol acyltransferase activity in cell-free extracts. The progesterone-related inhibition and restoration of lysosomal cholesterol trafficking is a useful experimental means of studying intracellular cholesterol transport. A particularly important feature of its utility is the facile reversibility of the steroid-induced block. The lysosomal cholesterol lipidosis established with a hydrophobic amine, U18666A, was not as readily reversed.

Androstenes

Stable expression of human D3 dopamine receptors in GH4C1 pituitary cells.

Human D3 dopamine receptor DNA was stably transfected into GH4C1 pituitary cells. Displacement of iodosulpiride binding in hD3 transfected cells (Kd = 0.3 nM, Bmax = 89 fmol/mg protein) by dopaminergic ligands was indistinguishable from that of hD3 receptors in CHO cells. Only two clonal cell lines exhibited weak GppNHp-dependent shifts in [3H]N-0437 binding, and these were used for functional assays. Neither arachidonic acid metabolism, cAMP levels, inositol phosphate turnover, intracellular calcium, or potassium currents were consistently affected by dopamine (1-10 microM). The paucity of responses indicates that human D3 receptors do not couple efficiently to these second messengers in GH4C1 cells.

Arachidonic Acids

Excitatory neurotransmitters in the lateral habenula and pedunculopontine nucleus of rat modulate limbic seizures induced by pilocarpine.

The involvement of the excitatory neurotransmitter system in the lateral habenula and pedunculopontine nucleus in the initiation and propagation of limbic seizures induced by pilocarpine has been investigated in the rat. Limbic seizures occur in animals following bilateral microinjection into the lateral habenula of N-methyl-D-aspartate (NMDA) (5 and 12.5 nmol) or kainate (100 and 200 pmol), 15 min prior to a subconvulsant dose of pilocarpine (150 mg/kg, i.p.). In the absence of pilocarpine NMDA (5 and 12.5 nmol) or kainate (100 and 200 pmol), injected focally into the lateral habenula or pedunculopontine nucleus, produced sniffing, grooming and tremor but no electrographic or behavioural seizures. Limbic seizures also occur after a subconvulsant dose of pilocarpine when it is preceded by injection of NMDA (5 and 12.5 nmol) or kainate (50, 100 and 200 pmol) into the pedunculopontine nucleus. Behavioural and electrographic signs of limbic seizures following pilocarpine (380 mg/kg, i.p.) were attenuated or completely antagonized by focal injection into the lateral habenula of the NMDA antagonist, 2-amino-7-phosphonoheptanoate (AP7) (10 and 50 pmol) or kainate antagonist, gamma-D-glutamylaminomethylsulphonate (GAMS) (20 nmol). In addition, AP7 (0.05, 0.1 and 1.0 nmol) or GAMS (40 nmol) injected into the pedunculopontine nucleus suppressed limbic seizures induced by i.p. administration of pilocarpine (380 mg/kg). The relative efficacy of NMDA and non-NMDA receptor antagonists revealed that the selective NMDA antagonist, AP7, was more potent in its anticonvulsant activity in comparison to GAMS, a non-NMDA receptor antagonist.

2-Amino-5-phosphonovalerate

Crystallization of kappa-bungarotoxin: preliminary X-ray data obtained from the venom-derived protein.

kappa-Bungarotoxin is a 66 residue polypeptide found in the venom of the Taiwanese banded krait, Bungarus multicinctus. It binds tightly to neuronal nicotinic acetylcholine receptors and inhibits nerve transmission mediated by these postsynaptic receptors. It is related, by similarity in amino acid sequence, to alpha-bungarotoxin and other alpha-neurotoxins, but differs sharply in physiologic action. The alpha-neurotoxins inhibit nerve transmission in nicotinic acetylcholine receptors associated with vertebrate skeletal muscle and fish electric organs. The kappa-neurotoxins inhibit nerve transmission in neuronal nicotinic acetylcholine receptors such as those found in chick ciliary ganglia. The kappa-neurotoxins display a low level of interaction with receptors that are strongly affected by alpha-neurotoxins, but alpha-neurotoxins are completely without effect on receptors that are affected by kappa-bungarotoxin. The structural basis for this physiologic differentiation is not known. Crystals of kappa-bungarotoxin have now been obtained that diffract to at least 2.3 A. These crystals are hexagonal, space group P6, and have dimensions of a = b = 80.2 A, c = 39.6 A, and angles of alpha = beta = 90 degrees and gamma = 120 degrees. Each unit cell contains 12 molecules of the 66 residue protein or two molecules per asymmetric unit. Comparison of the structure of kappa-bungarotoxin, which will result from further diffraction analysis of these crystals, with the structures of the alpha-neurotoxins that have been determined may provide information on the structural basis of physiologic action in these acetylcholine receptor antagonists.

Bungarotoxins

L-687,306: a functionally selective and potent muscarinic M1 receptor agonist.

The oxadiazole L-687,306 is a high affinity muscarinic agonist with a N-methylscopolamine/oxotremorine-M binding profile predictive of a partial agonist. L-687,306 showed marked selectivity in functional pharmacological assays. L-687,306 was a partial agonist at muscarinic M1 receptors in the rat ganglion but a high affinity competitive antagonist at guinea-pig cardiac M2 and ileal M3 muscarinic receptors. This compound gives an opportunity to study receptor reserve involved in muscarinic receptors in vitro and in vivo.

Animals

DNA supercoiling and relaxation by ATP-dependent DNA topoisomerases.

Bacterial DNA gyrase and the eukaryotic type II DNA topoisomerases are ATPases that catalyse the introduction or removal of DNA supercoils and the formation and resolution of DNA knots and catenanes. Gyrase is unique in using ATP to drive the energetically unfavourable negative supercoiling of DNA, an example of mechanochemical coupling: in contrast, eukaryotic topoisomerase II relaxes DNA in an ATP-requiring reaction. In each case, the enzyme-DNA complex acts as a 'gate' mediating the passage of a DNA segment through a transient enzyme-bridged double-strand DNA break. We are using a variety of genetic and enzymic approaches to probe the nature of these complexes and their mechanism of action. Recent studies will be described focusing on the role of DNA wrapping on the A2B2 gyrase complex, subunit activities uncovered by using ATP analogues and the coumarin and quinolone inhibitors, and the identification and functions of discrete subunit domains. Homology between gyrase subunits and the A2 homodimer of eukaryotic topo II suggests functional conservation between these proteins. The role of ATP hydrolysis by these topoisomerases will be discussed in regard to other energy coupling systems.

Adenosine Triphosphate

Site-specific DNA cleavage by mammalian DNA topoisomerase II induced by novel flavone and catechin derivatives.

Four naturally occurring flavones (baicalein, quercetin, quercetagetin and myricetin) and two novel catechins [(-)-epicatechin gallate and (-)-epigallocatechin gallate, from the tea plant Camellia sinensis], which are known inhibitors of reverse transcriptase, were shown to induce mammalian topoisomerase II-dependent DNA-cleavage in vitro. The flavones differed from the catechins in causing unwinding of duplex DNA, but both classes of compound induced enzymic DNA breakage at the same sites on DNA. Moreover, the cleavage specificity was the same as that for the known intercalator 4'-(acridin-9-ylamino)methanesulphon-m-anisidide, suggesting that these agents trap the same cleavable complex. Analysis of some 30 flavonoid compounds allowed elucidation of the structure-function relationships for topoisomerase II-mediated DNA cleavage. For flavonoid inhibitors an unsaturated double bond between positions 2 and 3 of the pyrone ring and hydroxy groups at the 5, 7, 3' and 4' positions favoured efficient cleavage. Hydroxy substitutions could be tolerated at the 3, 6 and 5' positions. Indeed, the absence of substituents at the 3', 4' and 5' positions could be compensated by a hydroxy group at position 6 (baicalein). Similar requirements have been reported for flavonoid inhibitors of protein kinase C that act competitively with ATP, suggesting interaction with a conserved protein feature. Formation of the cleavable complex is a cytotoxic lesion that may contribute to the growth-inhibitory properties of flavones observed for three human tumour cell lines. These results are discussed in regard to the selectivity of antiviral agents.

Animals

Synthesis and in vitro biological profile of all four isomers of the potent muscarinic agonist 3-(3-methyl-1,2,4-oxadiazol-5-yl)-1-azabicyclo[2.2.1]heptane.

The four stereoisomers of the muscarinic agonist 7 have been synthesized from enantiomerically pure exo-azanorbornane esters (13a,b). The esters were obtained in optically active form by separation of the carboxamide diastereomers 12a,b, formed from the borane complex of exo-azanorbornane-3-carboxylate 10 and a chiral amine auxiliary. Using the known chirality of (R)-alpha-methylbenzylamine, an X-ray analysis was accomplished on 12a in order to determine the absolute configuration of the azanorbornane C4 chiral center. Each of the chiral esters 13a,b was separately transformed into the oxadiazoles with concomitant epimerization at C3 of the azanorbornane ring to afford the thermodynamic equilibrium mixture of isomers. Chromatographic separation followed by analysis of each isomer by NMR and GC allowed the absolute stereochemistry of all four isomers of 7 to be confirmed. Full biological evaluation in biochemical and pharmacological assays revealed that the 3R,4R isomer was the most active on receptor binding studies and the most potent on the pharmacological preparations, showing a 50-fold increase in potency at the M2 and M3 sites compared to M1.

Animals

Synthesis and muscarinic activity of quinuclidinyl- and (1-azanorbornyl)pyrazine derivatives.

The synthesis and cortical muscarinic activity of a novel series of pyrazine-based agonists is described. Quinuclidine and azanorbornane derivatives were prepared either by reaction of lithiated pyrazines with azabicyclic ketones, followed by chlorination and reduction, or by reaction of the lithium enolate of the azabicyclic ester with 2-chloropyrazines followed by ester hydrolysis and decarboxylation. Substitution at all three positions of the heteroaromatic ring has been explored. Optimal muscarinic agonist activity was observed for unsubstituted pyrazines in the azanorbornane series. The exo-1-azanorbornane 18a is one of the most efficacious and potent centrally active muscarinic agonists known. Studies on the 3-substituted derivatives have provided evidence of the preferred conformation of these ligands for optimal muscarinic activity. Substitution at C6 gave ligands with increased affinity and reduced efficacy. Moving the position of the diazine ring nitrogens to give pyrimidine and pyridazine derivatives resulted in a significant loss of muscarinic activity.

Animals

Effect of iontophoresis on in vitro skin permeation of an analogue of growth hormone releasing factor in the hairless guinea pig model.

The shortened analogue of growth hormone releasing factor (GRF) Ro 23-7861 (1) has a molecular weight of 3929 daltons [equivalent to GRF (1-29)] and is more potent than the endogenous GRF (1-44). The in vitro hairless guinea pig model and vertical and horizontal diffusion cell assemblies were used to study the effect of iontophoresis on the permeability to skin of 1. The transport of 1 across the skin was studied by monitoring the rate of its appearance in the receiver compartment with a radioimmunoassay. No permeability of 1 was observed without iontophoresis, whereas with iontophoresis, the permeability of 1 was significant. For example, at a current density of 0.23 mA/cm2 and buffer concentration of 0.05 M, the flux of 1 was 56.8 +/- 8.21 ng/cm2.h. The flux of 1 was independent of the design of the permeation apparatus, the electrodes, the donor and receiver volumes, the type of current (constant or pulsed), and the frequency of the pulsed current. The flux of 1 increased curvilinearly with the increase in salt concentration of the buffer and linearly with the increase in current.

Algorithms

Nasal delivery of [14C]dextromethorphan hydrochloride in rats: levels in plasma and brain.

Dextromethorphan (DM) is a neuroprotective agent. The mechanism of action is believed to be by N-methyl-D-aspartate receptor blockade. The concentration of DM in the brain is believed to be dose and route dependent. Delivery by the nasal route has received a lot of attention recently, because drug absorption from this route follows intravenous profiles with no first-pass effect. The uptake of DM in the brain from the nasal route was 65.9% compared with the intravenous route, whereas the plasma bioavailability from the nasal route was 78.8%. The nasal route is a viable alternative to the parenteral route for DM administration.

Absorption

Lithotripsy plus ursodiol is superior to ursodiol alone for cholesterol gallstones.

The safety and efficacy of gallbladder extracorporeal shock-wave lithotripsy combined with 600 mg/day ursodiol were examined in 85 patients with radiolucent gallstones, 15 with lightly calcified gallstones, and 12 with radiolucent stones pretreated for greater than or equal to 2 months with 600 mg/day ursodiol. Results were compared with those of a well-matched lithotripsy-eligible group of 32 subjects treated with ursodiol alone (no lithotripsy). Pretreatment with ursodiol significantly improved while gallstone calcification interfered with fragmentation. Small gallstone size and number also aided fragmentation. Biliary lithotripsy plus ursodiol increased efficacy twofold compared with ursodiol therapy alone (47% vs. 22% of subjects gallstone free; P less than 0.02). Gallstones did not disappear in any subject with calcified gallstones (P less than 0.001) vs. lithotripsy). Product-limit analysis showed that the efficacy for gallstone dissolution increases in the following order: ursodiol alone, lithotripsy-ursodiol, lithotripsy-ursodiol pretreated with ursodiol (P less than 0.02, pairwise). Similar mean gallstone-dissolution rate constants (stone size divided by time to disappear) of stone fragments and whole gallstones during ursodiol therapy suggest that most fragments disappear by dissolution not expulsion. This finding explains why fragmentation appears to be the key predictor of disappearance and even partial fragmentation accelerates gallstone clearance.

Alanine Transaminase

CD4+ TCR alpha beta+ T-cell clones derived shortly after allogeneic bone marrow transplantation: theophyllamine and verapamil inhibit proliferation of functionally heterogeneous T-cells.

CD4+ TCR alpha beta+ T-cell clones were prepared from three CML-patients 4-6 weeks after allogeneic bone marrow transplantation and the effects of theophyllamine and verapamil on clonal growth then assessed. Both drugs inhibited PHA-stimulated autocrine proliferation of clones as well as proliferation of clones dependent on exogenous growth factors. Inhibition was seen when using different accessory cells (PBM or BCL) during T-cell activation, and both for IL2- and IL4-dependent proliferation of previously activated T-cells. The isomer R-verapamil inhibited PHA-stimulated proliferation as well as IL2- and IL4-dependent T-cell proliferation. The drugs also inhibited proliferation of CD8+ T-cells. Although the T-cell clones were functionally heterogeneous and were derived from different patients and priming cultures, both drugs inhibited all clones investigated. However, the degree of inhibition varied between different clones.

Aminophylline

Anticonvulsant profile of MDL 27,266: an orally active, broad-spectrum anticonvulsant agent.

The novel anticonvulsant substance MDL 27,266 was tested in a variety of anticonvulsant models to assess its anticonvulsant profile, behavioral toxicity and oral bioavailability. Intraperitoneally (i.p.) administered MDL 27,266 afforded complete protection against sound-induced seizures in DBA/2J and Frings audiogenic-seizure (AGS)-susceptible mice (ED50s: 5.0 and 5.1 mg/kg, respectively). It was also effective following i.p. administration to CF#1 mice against maximal electroshock (MES)-, pentetrazole-, picrotoxin-, quisqualic acid-, and strychnine-induced seizures (ED50s: 24.9, 13.8, 43.3, 8.05, and 60.5 mg/kg, respectively). MDL 27,266, in well tolerated oral doses, prevented the expression of stage 5 behavioral seizures in the corneal-kindled rat and myoclonic seizures in the photosensitive baboon, Papio papio. Chronic administration of MDL 27,266 to AGS-susceptible mice did not markedly affect its anticonvulsant potency or efficacy against sound-induced seizures. These results suggest that MDL 27,266 possesses a broad anticonvulsant profile which most closely approximates that of the broad-spectrum prototype antiepileptic drug valproate.

Animals

Preoperative chemotherapy for osteosarcoma with intravenous adriamycin and intra-arterial cis-platinum.

Ninety-seven patients with primary osteosarcoma of the extremities, all age 16 or older, were treated with adriamycin, 90 mg/m2, continuous i.v. infusion over 96 h, followed by cis-platinum, 120-160 mg/m2 by intra-arterial infusion. The first 37 patients, treated from 1979-1982, had a 59% complete response rate and a 54% 5-year continuous disease free survival (CDFS). Patients with complete response had an 85% 5-year CDFS compared with 13% for patients with partial and poor response. Patients treated between 1983-1988 with an intensified regimen have a 68% complete response rate and a 69% 3-year CDFS. Those who did not achieve complete remission were switched to an alternating chemotherapy program emphasizing the use of high-dose methotrexate. Limb salvage has been accomplished in 59% of patients in the first group and 80% in patients of the second group. Preoperative chemotherapy allows informed decisions to be made in postoperative management which can influence overall cure rates. Long-term follow-up is essential before final interpretation of the data.

Bone Neoplasms

Standard and high dose chemotherapy for advanced soft tissue sarcomas.

While significant improvements have been made in the management of localized soft tissue sarcomas, enabling the realization of better functional results and a better overall outcome, progress in metastatic disease has been less than impressive. Adriamycin and DTIC based chemotherapy programs have resulted in response rates of upto 50%, with a small but finite cure fraction, especially in conjunction with surgical resection of residual abnormalities. The decade of the 80s experienced a considerable amount of enthusiasm in exploring the role of ifosfamide and mesna, and identified its definite usefulness as an effective salvage regimen with response rates of approximately 25%-30% in adriamycin failures. Studies evaluating the role of ifosfamide as up-front line agent in combination with adriamycin have met with increased toxicities without a significant additive therapeutic benefit, probably as a result of compromised dose intensity of each individual agent. The steep linear log-dose response relationship of alkylating agents and adriamycin constitutes the theoretical rationale for use of higher doses of chemotherapy, which have become feasible, with the advent of growth factors for bone marrow support. While this approach seems promising in its infancy, with improved complete and overall response, its ultimate effect on survival is anxiously awaited. The limited experience available in the literature with even more aggressive approaches like marrow ablative doses of chemotherapy followed by bone marrow transplantation, have been uniformly disappointing, with extremely short lived responses and extremely high morbidity and cost. As clinical research continues to improve our understanding and ability to implement the currently available therapeutic armamentarium, the search for newer and better drugs needs to continue.(ABSTRACT TRUNCATED AT 250 WORDS)

Antineoplastic Agents

Stomatococcus mucilaginosus: an emerging pathogen in neutropenic patients.

Stomatococcus mucilaginosus was isolated from eight neutropenic patients during nine febrile episodes over a 13-month period. Five of these isolates were from definite infections, including one case of fatal meningitis. This slime-producing, catalase-variable, gram-positive coccus is a component of the normal oral flora of humans. Its biochemical profile may result in misidentification; however, unlike most micrococci, it characteristically fails to grow on media containing 5% NaCl. All but one of our isolates were sensitive to benzylpenicillin, and all were sensitive to vancomycin. S. mucilaginosus may prove to be an important pathogen in severely immunocompromised patients.

Adult