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Biomedical subjects

P Formstecher

Publications and source records attributed to P Formstecher.

75 records · Page 5Linked to original sources

[Are mitochondria targets of anticancer drugs responsible for apoptosis?].

The vast majority of both chemical and physical anticancer treatments act through the induction of apoptotic cell death in vitro and in vivo. In numerous experimental systems, the apoptotic processes can be divided into three different phases. In the first one, multiple pro-apoptotic signal transduction pathways (e.g. P53, ROS production, etc.) are activated by various factors including anti cancer drugs. This first step is followed by an intermediate phase in which pro-apoptotic signals converge to mitochondria which in turn can finally trigger the last degradation phase of apoptosis. Consequently, mitochondria, play a pivotal role in the executive phase of apoptosis and could represent a novel attractive target for pro-apoptotic drugs. Indeed, unlike conventional anti tumour drugs which trigger pro-apoptotic signal transduction pathways upstream mitochondria, several compounds were shown to act directly on mitochondria to induce apoptosis. These drugs include betulinic acid, lonidamine, arsenic trioxide and two retinoids like CD437/AHPN and fenretinide/4-HPR. This review summarizes new data concerning these drugs targetted to mitochondria and highlights the new perspective they may offer in cancer therapy.

Animals↗

[Micro-array based technologies to study the proteome: technological progress and applications].

Since these twenty last years, there is an increasing interest for large-scale analysis of biological function. In the field of transcriptome, the emergence of microarray-based technologies and the design of DNA biochips allow high-throughput studies of RNA expression in cell and tissue at a given moment. In the field of proteome, methods of reference are still the 2D electrophoresis followed by analysis with mass spectrometry. Technological progress makes it possible to apply microarray methods to proteomics study : they are protein biochips or protein arrays. Expression analysis of proteins in a cell or a tissue in simultaneous and highly parallel way give further information for large-scale studies of signaling pathway. Numerous applications of protein microarray-based assays are described in basic biological research and in medical research to identify diagnostic biomarkers of inflammatory and cancerous pathologies and to find out news drugs and new therapeutic targets. This review summarizes concrete applications of microarray-based technology in the field of proteome, describes fundamental technical stages in protein array development and highlights critical points which will be useful to improve this emerging proteomic method.

Protein Array Analysis↗

[Pathological and biochemical studies on a neonatal case of argininosuccinic aciduria (author's transl)].

A newborn infant affected by argininosuccinic aciduria was treated with a hypoproteinaemic diet and survived up to the age of three months. Post mortem biochemical studies have confirmed the absence of argininosuccinase activity in kidney, liver and brain and a marked storage of argininosuccinic acid in the brain. The histological study of the central nervous system shows no Alzheimer type II cells; there is neither demyelination nor spongiosis. Such results are totally different from those recorded in untreated cases; they represent very likely the effects of the diet which has controlled the hyperammoniaemia and prevented a deficiency of arginine.

Amino Acid Metabolism, Inborn Errors↗