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Biomedical subjects

J M Jacobs

Publications and source records attributed to J M Jacobs.

At least 127 records · Page 7Linked to original sources

The distribution of degenerative changes in INH neuropathy. Further evidence for focal axonal lesions.

Rats were given isoniazid either in a single large dose or continuously in drinking water and killed 5--105 days later. The distribution of degenerating fibres in various nerves (sensory and mixed) and in various sites along nerves and spinal roots was studied by light and electron microscopy. It was found that sensory nerves tended to be less affected than motor, and degeneration was more proximal in the latter. It was concluded that the pattern of degeneration and regeneration supported the view that the initial metabolic lesion is in the axon, rather than in the cell body.

Animals↗

Quinones as hydrogen carriers for a late step in anaerobic heme biosynthesis in Escherichia coli.

A late step in anaerobic heme synthesis, the oxidation of protoprophyrinogen with fumarate as electron acceptor, was studied in extracts and particles of Escherichia coli mutants deficient in quinones or cytochromes. Mutants specifically deficient in menaquinone did not couple protoporphyrinogen oxidation to fumarate reduction, whereas mutants containing menaquinone but deficient in either ubiquinone or cytochromes exhibited this activity. These findings indicate that this coupled reaction is dependent upon menaquinone as hydrogen carrier but independent of ubiquinone and cytochromes. Other characteristics of this coupled reaction were also studied. The activity was located exclusively in the membrane fraction of cell-free extracts. Coproporphyrinogen III could not replace protoporphyrinogen as substrate. Methylene blue, triphenyl tetrazolium and nitrate, but not nitrite, could replace fumarate as anaerobic hydrogen acceptor. These findings have implications for the mechanism and regulation of microbial heme and chlorophyll synthesis and for the physiology of cytochrome synthesis in anaerobic microorganisms.

Coloring Agents↗

Vascular permeability and neurotoxicity.

Neurotoxic substances affect the nervous system in a selective manner. One possible basis for this selectivity is blood vessel permeability. In general, the central nervous system and the peripheral nerve trunks have impermeable blood vessels, but in certain parts the capillaries are "leaky," allowing the passage of a plasma filtrate. Intravenously injected protein tracers rapidly reach nerve cells in these regions, with the implication that these nerve cells are also readily accessible to circulating neurotoxic substances. Some examples of neurotoxicity in the central nervous system show a selectivity that could be due to capillary permeability. In experimental methylmercury poisoning, cranial nerve V and sensory dorsal root ganglia, which lie in regions of vascular permeability, are particularly susceptible. A number of drug and chemically induced neuropathies are predominantly sensory, and may be due, directly or indirectly, to the accessibility of neurotoxic substances to sensory neurons. Examination of areas of potential vulnerability to circulating toxic substances may be of value in the experimental testing of substances for neurotoxicity, where pharmacological tests may be negative and clinical symptoms difficult to assess.

Animals↗

[Immunoglogulins in swine. (A) A review supplemented by a report on findings in personal studies (author's transl)].

the literature is reviewed and the importance of studying immunoglobulins in farm animals, particularly swine, is stressed. Possible methods of clinical immunological investigation in pigs are suggested. The literature as well as personal studies show that the immunoglobulin titre in the serum of piglets continues to be very low over a prolonged period from the seventh day post partum. This incomplete state of immunity should be taken into account on weaning piglets.

Animals↗

[Immunoglobulins in swine. (B) Immunohistological studies on the localization of cells containing immunoglobulin in the tissues of the small intestine and spleen (author's transl)].

Antisera to porcine immunoglobulins, conjugated with flurescein isothiocyanate, were used in studies on the localization of cells containing immunoglobulin in the tissues of the intestine and spleen in pigs. Cells containing IgM and IgA were found to be present in the lamina propria of the intestinal mucosa, the villous membrane showing fluorescence due to liberated immunoglobulins. Cells containing IgG and IgM were detected in the marginal areas of the splenic lymph nodes but could not be definitely identified as mature plasma cells.

Animals↗

Evidence for involvement of the electron transport system at a late step of anaerobic microbial heme synthesis.

The penultimate step in heme biosynthesis, the oxidation of protoporphyrinogen to protoporphyrin, can be anaerobically coupled to the reduction of fumarate in extracts of anaerobically-grown Escherichia coli. This coupling is approximately 90% inhibied by 2-heptyl-4-hydroxy quinoline-N-oxide (HQNO), a known inhibitor of the electron transport chain. This observation suggests that the mechanism of the anaerobic oxidation of protoporphyrinogen in E. coli involves a coupling into the anaerobic electron transport system. In contrast, the aerobic oxidation of protoporphyrinogen, which occurs in mammalian and yeast mitochondria, is known to be linked directly to oxygen without the mediation of an electron transport system.

Anaerobiosis↗

Penetration of systemically injected horseradish peroxidase into ganglia and nerves of the autonomic nervous system.

HRP given intravenously to rats and guinea-pigs passes within 5 minutes into the extracellular spaces of the superior cervical and coeliac ganglia, reaching the spaces between neurons and their associated satellite cells and the equivalent spaces between neuronal processes and satellite cells. The sympathetic nerve trunks have a blood-nerve barrier. The myenteric plexus does not contain blood vessels, but is permeable to tracer from the extracellular spaces of the adjacent muscle layers.

Adrenal Medulla↗

Nitrate, fumarate, and oxygen as electron acceptors for a late step in microbial heme synthesis.

Nitrate can serve as anaerobic electron acceptor for the oxidation of protoporphyrinogen to protoporphyrin in cell-free extracts of Escherichia coli grown anaerobically in the presence of nitrate. Two kinds of experiments indicated this: anaerobic protoporphyrin formation from protoporphyrinogen, followed spectrophotometrically, was markedly stimulated by addition of nitrate; and anaerobic protoheme formation from protoporphyrinogen, determined by extraction procedures, was markedly stimulated by addition of nitrate. In contrast, anaerobic protoheme formation from protoporphyrin was not dependent upon addition of nitrate. This was the first demonstration of the ability of nitrate to serve as electron acceptor for this late step of heme synthesis. Previous studies with mammalian and yeast mitochondria had indicated an obligatory requirement for molecular oxygen at this step. In confirmation of our previous preliminary report, fumarate was also shown to be an electron acceptor for anaerobic protoporphyrinogen oxidation in extracts of E. coli grown anaerobically on fumarate. For the first time, anaerobic protoheme formation from protoporphyrinogen, but not from protoporphyrin, was shown to be dependent upon the addition of fumarate. The importance of these findings is 2-fold. First, they establish that enzymatic protoporphyrinogen oxidation can occur in the absence of molecular oxygen, in contrast to previous observations using mammalian and yeast mitochondria. Secondly, these findings help explain the ability of some facultative and anaerobic bacteria to form very large amounts of heme compounds, such as cytochrome pigments, when grown anaerobically in the presence of nitrate or fumarate. In fact, denitrifying bacteria are known to form more cytochromes when grown anaerobically than during aerobic growth. An unexpected finding was that extracts of another bacterium, Staphylococcus epidermidis, exhibited very little ability to oxidize protoporphyrinogen to protoporphyrin as compared to E. coli extracts. This finding suggests some fundamental differences in these two organisms in this key step in heme synthesis. It is known that these two facultative organisms also differ in that E. coli synthesizes cytochrome during both aerobic and anaerobic growth, while Staphylococcus only synthesizes cytochromes when grown aerobically.

Cell-Free System↗

Vascular leakage in the dorsal root ganglia of the rat, studied with horseradish peroxidase.

Horseradish peroxidase (HRP) was found to pass from ganglionic blood vessels into the extracellular space of dorsal root and Vth nerve ganglia within 2 min of intravenous injection in the rat. By 5 min, the tracer had penetrated into perineuronal and periaxonal spaces. A brisk macrophage response occured, and these cells rapidly engulfed the tracer so that it has almost completely disappeared from the extracellular space 2-3 hr. Fenestrated blood vessels, with and without diaphragms were seen within ganglia. On the basis of the pattern of tracer distribution following post-fixation perfusion of HRP, it was concluded that the fenestrations and endothelial intercellular clefts were probably the most important route of tracer leakage. Because of the foreign and possibly toxic nature of the tracer, its movements and fate may not parallel that of normally extravasated proteins.

Animals↗

Mitochondrial oxygen affinity as a function of redox and phosphate potentials.

1. The conditions under which mitochondria might catalyse a net reversal of oxidative phosphorylation are analysed. 2. Rat-liver mitochondria, incubated under such conditions, show a strongly diminished affinity for oxygen. 3. The velocity of respiration under these conditions is a hyperbolic function of the oxygen concentration. 4. The K-m for oxygen is less than 0.1 muM at low phosphate potential, irrespective of substrate, and 1-3 muM under reversal conditions. 5. The observed kinetics can be accounted for in a simple mechanism for cytochrome oxidase action.

Adenosine Diphosphate↗

Comparative effect of oxygen and nitrate on protoporphyrin and heme synthesis from delta-amino levulinic acid in bacterial cultures.

Pseudomonas aeruginosa and P. denitrificans accumulate more protoheme and considerably more protoporphyrin during anaerobic growth under denitrifying conditions than during aerobic growth. In Escherichia coli, the small accumulation of protoporphyrin and protoheme which occurs during anaerobic growth is slightly stimulated by nitrate and markedly stimulated by oxygen.

Aerobiosis↗