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H Spring

Publications and source records attributed to H Spring.

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[Release by agitation of constituents from cell walls of Pseudomonas aeruginosa. III. Communication: Electron microscopy (author's transl)].

A thermovariable inhibition of agglutination (EA) was demonstrated in two randomly chosen strains of Pseudomonas aeruginosa (table 1, article I). The temperature range from the loss of agglutinability to its recovery was as described in previous articles (II). The agglutination patterns were similar to those of the O-group-type strains 1 and 4, indicating that the IA is a widespread property among Pseudomonas aeruginosa strains. Shaking at moderate intensities for 20-60 hours restored the thermosensitive agglutinability (Table 2, article I), and the times necessary for restoration were somewhate dependent on the specific culture media and the strains used (table3, article I). After restoration of agglutinability the bacteria had maintained their capability to form stable suspensions in physiological saline solution (table 2, article I). Another treatment at elevated temperature did not result in an IA (table 5c, article I). During the shaking the pelleted bacteria did no longer exhibit their normal slimy stickiness, similar to what has been observed after treatment with hyaluronidase (17). When the shaking was continued after restoration of agglutinability a special serological phenomenon ("Rauh-Phänomen," cf. table 5b in article I) was noted. Suspension of the bacteria in physiological saline for 7 days did not result in the recovery from the thermovariable IA (table 4, article 1). The secondary forms of the agglutinates were similar to those of Enterobacteriaceae, the typical primary form of the agglutination into slimy networks and spheres was not observed upon the restoration of agglutinability. The hypothesis that loosely bound surface components are responsible for the thermovariable IA was examined by chemical analyses of the fractionated supernatants obtained during the shaking treatments. The first supernatant fractions obtained after relatively brief shaking periods exhibited a high viscosity, in contrast to the low viscosity of supernatants harvested later. Total acetone-precipitable material from the supernatants contained lipids, proteins and carbohydrates, however, at different ratios (tables 1, 2, 3, article II). The amounts of lipids recovered from the supernatants were similar in all fractions during the shaking treatment, whereas protein-carbohydrate complex material was maximal in the first fractions and significantly decreased in fractions harvested later (table 1 and 2, article II). The data indicated, that the restored agglutinability at elevated temperatures and the maintained suspensibility in physiological saline was due to the removal of a limited amount of material from the most superficial layer of the bacterial wall; however in the continuous presence of the cell membrane and perhaps also of the internal cell wall layers (see also 8). This concept was examined by electron microscopy. The morphology of the native bacteria is illustrated in figures 1-3 (article III)...

Agglutination↗

Lampbrush-type chromosomes in the primary nucleus of the green alga Acetabularia mediterranea.

Structures with a lampbruch-chromosome-like morphology are described in the nucleoplasm of primary nuclei of the green alga, Acetabularia mediterranea, by light and electron microscopy in sections of cells fixed in situ and in spread preparations of isolated nuclear components. These chromosomes reveal typical loops (up to 20 micronm long), chromomere-like nodules (1-2 micronm in diameter), and 2-4 micronm large axial globules. Associations of some of these chromosomes with nucleolar structures and with the nuclear envelope are also recognized. The light microscopically identified loops are correlated with distinct fibrillogranular structures observed in the thin sections and with the very long matrix units seen in the spread preparations. The similarity of these structures to the lampbrush chromosomes of various animal cell types, all exclusively stages of meiotic prophase, is discussed as well as the possible relation of the appearance of lampbrush chromosomes to a defined phase of the vegatative growth of this alga.

Acetabularia↗

Growth of the nuclear envelope in the vegetative phase of the green alga Acetabularia. Evidence for assembly from membrane components synthesized in the cytoplasm.

The primary nucleus of the green alga Acetabularia grows about 25,000-fold in volume while it is separated from the endoplasmic reticulum and the whole cytoplasm by a special paranuclear cisterna of a vacuolar labyrinthum system which shows only very few (two to six per square micrometer) and small (ca. 40-120 nm in diamter) fenestrations. The nuclear envelope does not bear polyribosomes, nor do they occur in the entire zone intermediate between the nuclear envelope and the paranuclear cisterna. It is suggested that this special form of nuclear envelope growth takes place by assembly from cytoplasmically synthesized proteins that are translocated across the paranuclear cisterna in a nonmembrane-structured form.

Acetabularia↗

Morphology of nucleolar cistrons in a plant cell, Acetabularia mediterranea.

The structural organization of transcriptionally active DNA that contains cistrons for precursor molecules of ribosomal RNA is described in positively stained spread preparations from nuclei and nucleoli isolated from the green alga, Acetabularia mediterranea Lmx. These nuclei contain large aggregates of nucleolar subunits in which fibril-covered regions, the putative active cistrons for precursors of ribosomal RNA, alternate with fibril-free intercepts, the "spacers." The length distribution of the different intercepts of this DNA is given, and the pattern is compared with those shown in animal cell systems. The data are discussed in relation to problems of transcription and of amplification of ribosomal RNA genes.

Acetabularia↗

Antimetastatic effects of razoxane in a rat osteosarcoma model.

The cytostatic and antimetastatic activities of 1,2-di(3,5-dioxopiperazin-1-yl) propane (ICRF-159, razoxane) were studied in a transplantable, slowly growing osteosarcoma in Sprague-Dawley rats. This tumor model is characterized by osteoid formation and spontaneous metastasization to lungs, kidneys and lymph nodes. Razoxane given intraperitoneally (i.p.) from 2 days before to 14 days after tumor transplantation (30 mg/kg or 10 mg/kg per day) resulted in a dose-dependent prolongation of median survival time (83 or 48 days respectively, versus 38 days for the control group), but showed no influence on the growth of the primary tumor. Early treatment with razoxane (30 mg/kg i.p. from day -2 to +14) showed a greater inhibition of pulmonary metastases than later treatment (30 mg/kg i.p. from day +14 to +28 after transplantation). Whereas 59.9 per cent of the total sectional area of the lungs in the control animals was covered by osteosarcoma metastases, only 3.4 per cent and 26.1 per cent respectively was affected in the early and late razoxane treatment groups. Toxic side-effects of these treatment schedules were reversible diffuse alopecia, but no retardation of body weight gain.

Animals↗