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Biomedical subjects

H Rabes

Publications and source records attributed to H Rabes.

At least 19 recordsLinked to original sources

[PCR: DNA amplification from histological sections].

Specific DNA sequences can be amplified from tissue material by means of the polymerase chain reaction (PCR) using oligonucleotides homologous to upstream and downstream flanking regions as primers for repeated cycles of Taq polymerase-mediated DNA synthesis (primer extension) in vitro. The amplification product provides the unique possibility to analyze genomic alterations (mutations, deletions, translocations) which may play a role during pathogenetic processes, or to detect heterologous (viral, bacterial) nucleic acids with maximum sensitivity. PCR with morphologically defined material from histologic sections gives the chance to bridge the gap between morphological description of a disease and the underlying molecular alteration. PCR from sections can be performed even from paraffin-embedded material of archival specimens. As an example a ras gene mutation analysis of human colorectal cancers and their metastasis and of human seminomas is presented. Only minute amounts of biological material are required for PCR, as exemplified with material punched from defined preneoplastic areas in rat liver cryostat sections. Using this material, not only a thorough mutational analysis of DNA of preneoplastic foci is possible after a simultaneous PCR amplification of various genomic sequences, but also an investigation of transcription activity after reverse transcription of mRNA into cDNA, as shown for c-myc expression during preneoplasia. The extremely high sensitivity of the method requires severe precaution with respect to contamination, and product control by Southern blots or sequencing. PCR from histological sections will become a valuable tool for analyzing molecular mechanisms of disease based on the classical morphological parameters of pathology.

Animals

[The morphology of chemically induced kidney tumors of the rat as a model for the typing of human kidney tumors].

1. 109 renal cell carcinomas were produced in 92 Wistar rats by a single dose of 80 mg/kg diethylnitrosamine 4, 16, 24 h after partial liver resection. These tumors showed a wide variety of morphological appearances, comparable with different types of human renal cell carcinomas, as proposed by THOENES et al. in a new cytomorphological classification. However, there were striking differences as to the incidence of the individual tumors types. Whereas clear cell tumor prevailed in human they were very rare in the animal experiment. 2. 54 renal cell carcinomas were produced in 105 rats by a single dose of 30 mg/kg dimethylnitrosamine after a low-protein diet of 5 days. Also in this experiment a variety of different tumor types resulted. Already in early "tubular lesions" a strikingly elevated thymidine labelling was found, in contrast to the surrounding regular tubular epithelial cells. Moreover, topographical relations of various tumor cell types to different segments of the nephron became evident. Besides a fair number of basophilic tumors with transition into proximal tubular epithelial cells, a large number of tumors showing abundant, typically vacuolated cytoplasm became evident. These tumor cells showed in general the highest labelling index with thymidine. They apparently are related to the distal nephron and possibly constitute neoplasms of the collecting ducts, compatible with otherwise rare ductus Bellini carcinomas. Concluding, the heterogeneity concerning tumor cell types and labelling indices has to be emphasized, whereby the latter also, appear to be dependent on the vascular blood supply.

Animals

Purified monocyte-derived angiogenic substance (angiotropin) induces controlled angiogenesis associated with regulated tissue proliferation in rabbit skin.

Angiotropin is a differentiation factor for microvascular endothelial cells isolated from serum-free cultures of lectin-activated, porcine monocytes. We used an ear lobe model in rabbits, single intradermal injection of angiotropin to induce phenotypical changes of the endothelial cells in capillaries and postcapillary venules, vascular engorgement, and subsequent angiogenesis in dose-dependent manner. The vascular changes are associated with epidermal and stromal cell proliferation. Angiogenesis and tissue proliferation occur in the absence of tissue necrosis and do not lead to scar formation. Angiotropin-induced angiogenesis is not inhibited by local dexamethasone although it involves a defined turnover of inflammatory cells. Proliferation is transient and regressive events follow. The overall tissue reaction resembles changes found in the undamaged skin margin of a primary healing wound during the inflammatory/proliferative phase. From these observations we conclude that angiotropin is an important secretory product of activated peripheral macrophages that triggers inflammatory and proliferative reactions in wound healing by activating microvascular endothelial cells.

Angiogenesis Inducing Agents

Autoradiographic studies on DNA synthesis in renal carcinoma after preoperative radiation.

In order to study, autoradiographically, DNA synthesis in tumors, kidneys containing renal carcinomas were for the first time perfused with normothermic oxygenated blood with an addition of radioactively labelled thymidine. Tumor cells preserve the ability of synthesizing DNA in spite of an unavoidable postoperative ischemia. In most cases the incorporation of 3H-TdR was inhibited significantly after preoperative irradiation with a total dose of 1,600 rad applicated 48 h before operation.

Autoradiography