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G Kuipers

Publications and source records attributed to G Kuipers.

7 recordsLinked to original sources

COX-2 inhibitors act as radiosensitizer in tumor treatment.

Since cyclooxygenase-2 (COX-2) is overexpressed in malignant tissues, the COX-2 mediated signaling pathway has been recognized as potential target for therapeutic intervention. In most human tumors, COX-2 overexpression has been associated with tumor aggressiveness and poor clinical outcome. In vitro studies show inhibition of cell proliferation by selective COX-2 inhibitors alone, and enhancement of the response to irradiation. In vivo experimental reports demonstrate enhanced tumor response and impediment of tumor neovascularization following radiotherapy combined with COX-2 inhibition. Clinical studies on the combination of irradiation with COX-2 inhibitors are emerging. Taken together, the perspective for the combined approach of radiotherapy with COX-2 inhibition yields clinical significance since preclinical data demonstrate selective COX-2 inhibitors to act as radiosensitizer in tumor treatment.

Animals↗

Cloning of the chrysanthemum UEP1 promoter and comparative expression in florets and leaves of Dendranthema grandiflora.

To attain high transgene expression in petal tissue of ray florets of chrysanthemum an endogenous ubiquitin extension protein (UEP1) promoter was cloned and tested with the beta-glucuronidase (GUS) reporter gene. Expression levels were compared with four heterologous promoters: chalcone synthase (chs-A) and zinc finger transcription factor (EPF2-5) from petunia, eceriferum (CER6) from Arabidopsis and multicystatin (PMC) from potato. The comparison of the expression levels of the different constructs in ray florets, disc florets, and leaves is presented. The highest mean expression in petal tissue of ray and disc florets was conferred by the UEP1 promoter, followed by CER6 and EPF2-5. The UEP1 promoter in ray florets confers over 50-fold enhancement in expression as compared to CaMV 35S-based promoters.

Amino Acid Sequence↗

[Study of the pathways of the cat spinal cord using the method of experimental retrograde axon transport of horseradish peroxidase].

Funicular trajectories of descending brain stem pathways in the cat were identified by means of retrograde horseradish peroxidase (HPR) transport. In sixteen cats TH1 HRP injections preceded by a large C6-C7 lesion sparing the ventral or ventrolateral funiculi and by such a lesion sparing the dorsolateral funiculus were made. It was found that the descending fibres from the nucleus locus coeruleus and the nucleus subcoeruleus are distributed ipsilaterally through the ventrolateral funiculus. The fibres from the hypothalamus which descend throughout the spinal cord are located mainly in the lateral funiculus, but some of them also descend through the ventral and dorsolateral funiculi. A diagram summarizing the distribution of the descending fibres from the various brain stem cell groups over the different C6-C7 funiculi is presented.

Animals↗