PubMed Health⌕ Search

Biomedical subjects

M Ganser

Publications and source records attributed to M Ganser.

7 recordsLinked to original sources

An anti-MUC1-antibody-interleukin-2 fusion protein that activates resting NK cells to lysis of MUC1-positive tumour cells.

MUC1 mucin is aberrantly glycosylated and overexpressed in a number of epithelial malignancies and is therefore a promising tumour-associated antigen for target-directed immunotherapy of a panel of malignant diseases. In MUC1-positive tumours, MHC class I expression is frequently downregulated and MUC1-specific cytotoxic T cells (CTLs) are either not available or in a state of anergy allowing tumour growth without limitation by CTL control. To activate lymphocytes and natural killer (NK) cells, we here generated an anti-MUC1-scFv-IL2 fusion protein (C595scFv-Fc-IL2) that contains the C595 single-chain antibody for MUC1 binding, the human IgG1 CH2CH3 domain for protein dimerisation, and interleukin-2 (IL2) for activation of immunological effector cells. The fusion protein binds to MUC1-derived peptides and to MUC1-positive tumour cells with the same specificity as does the C595 monoclonal antibody. Bound to MUC1, the C595scFv-Fc-IL2 fusion protein stimulates proliferation of human activated lymphocytes in vitro. Upon binding to MUC1-positive MCF7 breast carcinoma cells, moreover, the fusion protein activates resting NK cells to tumour cell lysis. These properties make the C595scFv-Fc-IL2 fusion protein a suitable candidate for the immunotherapy of MUC1-positive tumours.

Antibodies, Monoclonal↗

Use of platinum coproporphyrin and delayed luminescence imaging to extend the number of targets FISH karyotyping.

Combinatorial use of fluorophores in multicolor fluorescence in situ hybridization (FISH) allows for the recognition of all human chromosomes. Here we introduce the concept of the use of delayed luminescence labels such as phosphorescent platinum coproporphyrins (PtCP) to extend the number of simultaneously detectable targets in multicolor FISH karyotyping. PtCP-conjugated antibodies were used in combination with conventional FISH labels such as cascade blue, fluorescein, lissamine rhodamine, Cy5, and Cy7. Probe sets for all human chromosomes were generated and labeled with these dyes in a combinatorial approach. Delayed luminescence of PtCP was accomplished using a standard fluorescence microscope in which a specially constructed module for visualization of delayed luminescence was incorporated. The module consists of a minichopper incorporated in the standard block that holds the shutter and diaphragm, and a FLC polarizing shutter mounted in a filter holder at the emission side. Multicolor FISH staining was applied to normal metaphase chromosomes and to chromosomes generated from cultured JVM-2 cells with known translocations. Multicolor FISH images (conventional and delayed) were registered using a slow-scan CCD camera. Recognition of all 24 chromosomes was feasible, since the delayed PtCP fluorescence (lifetime, 90 micros) could be easily distinguished from the conventional promptly fluorescing dyes. We discuss possibilities for extending the number of targets far beyond the 24 demonstrated so far.

Coproporphyrins↗

An optimized, fully automated system for fast and accurate identification of chromosomal rearrangements by multiplex-FISH (M-FISH).

Multiplex-FISH (M-FISH) is a recently developed technique by which each of the two dozen human chromosomes-the 22 autosomes and the X and Y sex chromosomes-can be stained or "painted" with uniquely distinctive colors. Using a combinatorial labeling technique and a specially designed filter set, each DNA probe can be identified by its unique spectral signature. Here we present several significant optimizations of the M-FISH technology. First, a new strategy for labeling the probes is described which allows for easy and fast production of the complex M-FISH probe mix. Second, a newly developed, completely motorized microscope equipped with an eight-position filter wheel and a new generation of filter sets is presented that allows fully automatic imaging of a complete metaphase spread within seconds. Third, to determine the characteristic spectral signatures for all different combinations of fluorochromes, we developed a novel multichannel image analysis method. The spectral analysis is solely guided by the image information itself and does not require any user interaction. A complete analysis of a metaphase spread can be accomplished in less than 3 min. Sophisticated built-in quality controls were developed, and the value of visual inspection of M-FISH images as a simple means of controlling the computer-generated chromosome classification are illustrated. In addition, we discuss advantages of adding new fluorochromes to the traditionally used five fluorochromes.

Chromosome Aberrations↗

[The Spitz nevus. Spindle cell and/or epithelioid cell nevus--a clinical analysis of 652 tumors].

We report on clinical aspects of 652 Spitz' nevi. In 42.9% of the cases, this tumor has been observed in people over 19 years. The female sex with 61.6% was much more concerned than the male sex. Most frequently, the lower extremities were affected (30.1%). The clinical diagnosis of Spitz' nevus could be definitely made in only 13.9% of the cases. We are going to discuss the very variable clinical picture of Spitz' nevus.

Adolescent↗

[The Spitz nevus. Spindle cell and/or epithelioid cell nevus--a histological analysis of 652 tumors].

652 Spitz' nevi have been histologically analysed and separated into epidermal and dermal changes. There are similarities between Spitz' nevus and melanocytic nevus. 44.9% of the examined Spitz' nevi consist of spindle cells only, 34% of spindle as well as epithelioid cells, and 21% of epithelioid cells only. We are going to discuss the difficulties in histological examination; more or less important signs are differentiated in detail. In some cases, Spitz' nevus will remain a somewhat dubious and disturbing tumor.

Adolescent↗