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J Gal

Publications and source records attributed to J Gal.

13 recordsLinked to original sources

Multiregion profiling of genomic and transcriptional heterogeneity in head and neck squamous-cell carcinoma.

BACKGROUND: Intratumoral heterogeneity (ITH) is thought to contribute to tumour evolution and treatment resistance but its biological and clinical significance in localised head and neck squamous-cell carcinoma (HNSCC) remains incompletely understood. PATIENTS AND METHODS: In the prospective SCANDARE study, we analysed 87 patients with resectable HNSCC treated with upfront surgery. Two to five spatially distinct tumour regions per patient underwent pathological evaluation, targeted DNA sequencing, and bulk RNA sequencing. Genomic ITH (gITH) was quantified using clonal deconvolution and Shannon diversity indices, whereas transcriptional heterogeneity (tITH) was assessed using the intratumour expression distance metric. Associations between ITH, molecular features, tumour microenvironment composition, and clinical outcomes were explored using multivariable statistical models. RESULTS: Pathology-based spatial heterogeneity showed limited prognostic value. gITH was common, with 37% of tumours displaying regionally heterogeneous pathogenic variants, including spatially actionable alterations in 10% of patients. In an initial multivariable Cox model, higher gITH was associated with shorter disease-free survival. However, after Ridge-penalised modelling and bootstrap internal validation, the effect size was attenuated [corrected hazard ratio 1.42, 95% confidence interval (CI) 0.91-2.75]. The overall model retained moderate discriminative performance (optimism-corrected C-index 0.69, 95% CI 0.59-0.79). gITH was associated with tumour cellularity, reduced estimated endothelial cell infiltration, and alterations in KMT2C and PIK3CA. tITH differed according to human papillomavirus (HPV) status, with lower tITH in HPV-positive tumours, and was associated with distinct biological pathways and genomic alterations. Genomic and tITH were not correlated. CONCLUSIONS: This prospective multiregion study provides a comprehensive characterisation of genomic and tITH in localised HNSCC. Our findings highlight substantial spatial molecular diversity within primary tumours and suggest potential associations between heterogeneity, tumour biology, and clinical outcome that warrant validation in independent cohorts.

head and neck squamous-cell carcinoma (HNSCC)

Metabolism of dimethoxymethyl phenobarbital (eterobarb) in patients with epilepsy.

The metabolism of dimethoxymethyl phenobarbital (DMMP) was investigated in 6 epileptic patients using deuterium-labeled drug measured by integrated gas chromatography/mass spectrometry. Following an oral dose of 120 mg, none of the parent compound appeared in serum, urine, or saliva in spite of a measurement sensitivity of less than 0.05 nmol/ml. A metabolite, monomethoxymethyl phenobarbital (MMP), was detected in all patients, with peak serum concentrations averaging 1.96 nmol/ml at 1.3 hours. Phenobarbital was the major metabolite detected, and it reached peak levels in 6 to 12 hours. Two of the patients were continued on DMMP therapy for several months and then administered a pulse dose of deuterated drug. Again no DMMP was detectable. Steady-state drug administration had no effect on the kinetics of metabolism of either MMP or phenobarbital although peak serum concentrations were lower for both metabolites. In the urine of 5 patients an unidentified labeled fragment was detected that does not appear in urine from patients taking phenobarbital. From these pharmacokinetic studies it appears likely that the anticonvulsant activity of DMMP results from its metabolic conversion to phenobarbital.

Adolescent

Convenient synthesis of N-alkoxymethylbarbituric acids and N-alkoxymethylhydantoins.

A simple one-step method for the N-alkoxymethylation of barbituric acids and hydantoins is presented. The compounds are N-methoxymethylated or N-ethoxymethylated using phosphorus pentoxide and dimethoxymethane or diethoxymethane, respectively, in a chlorinated solvent. 1-Methoxymethyl-3-ethyl-5-phenylhydantoin showed significant anticonvulsant activity in the subcutaneous pentylenetetrazol test, while 1,3-bis(methoxymethyl)-5-ethyl-5-(p-tolyl) barbituric acid was inactive.

Animals

Stereochemistry of metabolism of amphetamines: use of (-)-alpha-methoxy-alpha-(trifluoromethyl)phenylacetyl chloride for GLC resolution of chiral amines.

Amphetamine and eight related compounds were reacted with the chiral acylating reagent (-)-alpha-methoxy-alpha-(trifluoromethyl)phenylacetyl chloride to obtain, in each case, two diastereomeric amide derivatives. GLC conditions were found for the separation of the diastereomers in seven of the nine cases studied. This procedure may be suitable for the resolution of amino acid enantiomers via the amide derivatives of the methyl esters. Secondary amines were not derivatized under the reaction conditions used. A correlation between absolute configuration and elution order of the diastereomeric amides was observed for five compounds. The chiral acylating reagent was used in the determination of the enantiomeric composition of 2,5-dimethoxy-4-methylamphetamine excreted in rat urine after intraperitoneal drug administration. The chiral acylating reagent is suitable for the determination of the optical composition of compounds extracted from biological fluids.

DOM 2,5-Dimethoxy-4-Methylamphetamine

Pharmacokinetics of methylphenidate in the rat using single-ion monitoring GLC-mass spectrometry.

A GLC-mass spectrometric assay for methylphenidate in biological fluids was developed using the ethyl ester homolog of the drug as the internal standard. The procedure has a lower level of sensitivity of 1.2 ng/ml and is based on GLC-mass spectrometic monitoring of the m/e 180 ion common to the mass spectra of the N-trifluoroacetyl derivatives of the drug and internal standard. The brain and plasma levels of methylphenidate in rats were determined after intravenous administration of 0.5 mg/kg of the drug. The two-compartment open pharmacokinetic model fit the data.

Animals

The metabolism of amphetamine in vitro by rabbit liver preparations: a comparison of R(-) and S(+) enantiomers.

1. Incubation of R(-), S(+) and RS(+/-) amphetamines with rabbit liver 9000 g supernatant indicated that R(-) was metabolized at a faster rate than S(+), but that racemic amphetamine was metabolized at the same rate as S(+) during one hour incubations. 2. N-Hydroxyamphetamine and 1-phenyl-2-propranol were the major compounds detected in both R(-) and S(+) amphetamine incubations. 3. Phenylacetone oxime was detected in significant quantities after 3 h incubations of R(-) amphetamine, but only in minor quantities from S(+). 4. A fall in the amount of N-hydroxyamphetamine present in R(-) amphetamine incubations after a 3 h period as compared to a 1 h incubation, paralleled by a rise in the amount of phenylacetone oxime during 3 h suggested that the oxime was derived as a secondary metabolics from N-hydroxyamphetamine. 5. R(-) and S(+) N-hydroxyamphetamines were both metabolized to phenylacetone oxime by rabbit liver 9000 g supernatant, but the R(-) enantiomer was converted at a faster rate than S(+).

Amphetamine