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Biomedical subjects

B Hu

Publications and source records attributed to B Hu.

At least 271 records · Page 15Linked to original sources

Cholesterol oxides and carcinogenesis.

Experimental evidence indicates a relationship between cholesterol alpha-epoxide and skin cancer, and exposure of skin fibroblasts to ultraviolet radiation enduces formation of significant levels of this oxide. Colon cancer is also etiologically linked to cholesterol oxidation products. Higher than normal levels of cholestanetriol have been found in patients with colon cancer and also in those with precancerous disorders such as adenomatous polyps and ulcerative colitis. Higher than normal levels of cholesterol alpha-epoxide have been found in breast fluid aspirates of women with benign breast disease, with or without atypical hyperplasia of the epithelium, and this may be a factor in the increased incidence of breast cancer associated with hyperplasia. Similarly, the observed increased levels of cholesterol alpha and beta-epoxides in prostatic fluid of men with benign prostatic hypertrophy may be associated with subsequent development of prostate cancer. Cholesterol alpha-epoxide has been found to be mutagenic to fibroblasts in culture and to induce morphological transformation in hamster embryo cells and in mouse C3H cells. 25-Hydroxycholesterol and 20 alpha-hydroxycholesterol are potent suppressors of generation and proliferation of tumor-specific cytotoxic T lymphocytes. Although investigations into the role of cholesterol oxidation products in cancer are still in the early stages, evidence to date indicates a potentially significant role in the induction of some types of cancer.

Animals↗

Excitotoxic brain injury suppresses striatal high-affinity glutamate uptake in perinatal rats.

In immature rodent brain, the glutamate receptor agonist N-methyl-D-aspartate (NMDA) is a potent neurotoxin. In postnatal day (PND)-7 rats, intrastriatal injection of 25 nmol of NMDA results in extensive ipsilateral forebrain injury. In this study, we examined alterations in high-affinity [3H]glutamate uptake (HAGU) in NMDA-lesioned striatum. HAGU was assayed in synaptosomes, prepared from lesioned striatum, the corresponding contralateral striatum, or unlesioned controls. Twenty-four hours after NMDA injection (25 nmol), HAGU declined 44 +/- 8% in lesioned tissue, compared with the contralateral striatum (mean +/- SEM, n = 6 assays, p less than 0.006, paired t test). Doses of 5-25 nmol of NMDA resulted in increasing suppression of HAGU (5 nmol, n = 3; 12.5 nmol, n = 3; and 25 nmol, n = 5 assays; p less than 0.01, regression analysis). The temporal evolution of HAGU suppression was biphasic. There was an early transient suppression of HAGU (-28 +/- 4% at 1 h; p less than 0.03, analysis of variance, comparing changes at 0.5, 1, 2, and 3 h after lesioning); 1 or 5 days postinjury there was sustained loss of HAGU (at 5 days, -56 +/- 11%, n = 3, p less than 0.03, paired t test, lesioned versus contralateral striata).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Lower respiratory tract flora in intubated patients].

200 lower respiratory tract (LRT) aspirates were taken via endotracheal intubates in 49 respiratory failure patients for quantitative bacterial cultures. 373 strains of bacteria and fungi were isolated and 63.3% were gram negative bacilli (GNB). During intubation, the isolation rate of Pseudomonas species gradually increased. In recent years, Enterobacteriaceae species, S. pneumoniae and S. aureus as LRT flora are decreasing, but Pseudomonas species, is increasing. The bacteria in aspirates with concentration higher than 10(5)CFU/ml could be considered as etiologic bacteria. Accordingly we estimated that the GNB infection rate was 81.6% and fatality rate was 15.0% in these 49 cases. Bacteriologic survey of the patients' oropharynx, respiratory instrument and the medical workers' finger skin suggested that besides the descending of oropharynx flora, environmental bacteria may also form LRT flora via endotracheal intubates.

Adult↗

[Study on ursodeoxycholic acid biotransformation by three strains of clostridia].

Using the improved TLC procedure, we measured the conversion rates of ursodeoxycholic acid(UDCA) from chenodeoxycholic acid (CDCA) by 3 strains of clostridia--C. perfringens HS-10, C. butyricum DL-20 and LQ-29 isolated. The orthogonal test was used to determine the optical conditions of biotransformation for HS-10. It was found that the conversion rate of UDCA by HS-10 was over 80% during 6-48 h in RCM medium containing 0.2 mmol/L CDCA. The UDCA conversion rates were still over 70% when the CDCA concentrations were as high as 0.8-1.0 mmol/L. In addition, the WW-BCP (Waste water from bean curd production) without any supplemental nutrients was preliminarily proved to be a potential inexpensive conversion medium.

Biotransformation↗

Effects of cholestanetriol on cytotoxicity and prostacyclin production in cultured rabbit aortic endothelial cells.

Rabbit aortic endothelial cells in culture were incubated with 10 micrograms/ml of either pure cholesterol or cholestane-3 beta, 5 alpha, 6 beta-triol (triol) for 12 or 24 hours. Cells incubated with triol showed an increased rate of cell death, decreased [3H]-thymidine incorporation and decreased prostacyclin production as compared to either the control or the pure cholesterol group. These effects were more marked at 24 hours than at 12 hours. Pure cholesterol had no significant effects on any of the above parameters at either time interval. These results suggest potential atherogenic mechanisms for cholestanetriol, one of the most biologically active cholesterol oxidation products.

Animals↗

[Cochlear microcirculation in living guinea pigs following explosion].

The cochlear microcirculation in living guinea pigs was observed, explosion was then imposed on the left ear and the velocity of blood cell flow and vessel diameters were measured within one hour. The results showed that: 1. there was an orderly stable movement of blood cells in all vascular beds under normal conditions; 2. the flow rate in both spiral ligament and stria vascularis increased promptly after explosion, that in the spiral ligament might return to normal within 30 minutes with vasodilatation, indicating increased blood supply early after explosion; 3. there was no relationship between changes in microcirculation and hearing loss and hair cell damage. The cause of hair cell damage and hearing loss were discussed and the techniques of vital microscopic studies of cochlear microcirculation assessed.

Animals↗

Membrane resistance increase induced in thalamic neurons by stimulation of brainstem cholinergic afferents.

The synaptic response induced in thalamic relay cells by stimulation of peribrachial cholinergic afferents was studied in cats maintained under urethane anesthesia. Recordings were performed in the ventral lateral nucleus after destruction of the reticular thalamic complex and cortical lesion. Some animals were also pretreated with reserpine (1.2 mg/kg) 24 h before recording sessions. Repetitive stimulation (25-60 Hz for 200-600 ms) of the peribrachial area produced a slow depolarization and tonic firing in thalamic cells. The depolarization was associated with an increase in membrane resistance and its amplitude decreased during membrane hyperpolarization. The reactivity of thalamic relay cells to a corticothalamic volley was also increased during the slow depolarization. Similar results were obtained in reserpinized animals. On the basis of previous data obtained in vitro, it is concluded that the slow depolarization resulted from the activation of muscarinic receptors by brainstem cholinergic afferents.

Animals↗

Polyclonal B cell activation of IgG2a and IgG2b production by infection of mice with lactate dehydrogenase-elevating virus is partly dependent on CD4+ lymphocytes.

Concentrations of IgM and IgG isotypes were determined by capture ELISA in plasma of Swiss, BALB/c and C58/M mice. Plasma IgG isotype concentrations, especially of IgM, IgG1 and IgG2a, varied considerably between mouse strains, batches of mice of the same strain and individual mice and as a function of age. Infection of the mice with LDV, which is known to replicate primarily in a subpopulation of macrophages, consistently resulted in a rapid elevation of plasma IgG2a (or of IgG2b in some Swiss nu/+ mice), but no plasma IgG increases were observed in mice immunized with inactivated LDV. Plasma IgG2a elevation after LDV infection was greatly delayed and reduced by depletion of the mice of CD4+, but not of CD8+, T cells by administration of protein-G-purified anti-CD4 or anti-CD8 mAbs, and completely inhibited by repeated treatment of the mice with cyclophosphamide. Treatment with anti-CD4 mAbs, or cyclophosphamide also greatly reduced the production of anti-LDV antibodies, while not significantly affecting the replication of LDV in these mice. Nude Swiss mice also failed to produce anti-LDV antibodies, though supporting normal LDV replication. Plasma IgM, IgG1, IgG2a and IgG2b levels increased in LDV-infected nu/nu mice, but similar changes were observed in uninfected mice. The results indicate that the LDV-induced polyclonal activation of B cells requires productive LDV infection of mice and is, at least partly, dependent on functioning CD4+ cells. They suggest that productive infection of the LDV-permissive subpopulation of macrophages leads to the activation of CD4+ T lymphocytes of subset 1 and their Spleen cells from 5-day LDV-infected BALB/c mice incorporated [3H]thymidine 2-3 times more rapidly in vitro than spleen cells from companion uninfected mice, whereas their responses to concanavalin A and lipopolysaccharide were reduced 60-70%.

Animals↗

[Amino acid analysis of the main organs during different growing periods of panax ginseng C.A. Mey].

Studies on different growing periods of Panax ginseng, its ages and the variation regularities of amino acids in its main organs are reported. The test has shown that it contains seventeen amino acids. The total amount of amino acids reaches its peak point during the sprouting period (in April), next to it is the withering period (in September), flowering and fruiting periods being the lowest (in June). The amount of these acids in the main root is higher than that in the fibrous root, the lowest being in the lateral root. Five-year-old Panax ginseng features the highest amount.

Amino Acids↗

Influence of cholesterol oxides on endocytosis of cultured endothelial and smooth muscle cells.

Human umbilical vein endothelial cells and rabbit aortic smooth muscle cells in culture were incubated for intervals up to 24 hrs with varying concentrations of cholesterol, 7-ketocholesterol, 25-hydroxycholesterol, cholestane-3 beta,5 alpha,6 beta-triol or cholesterol-5 alpha, 6 beta-epoxide. Endocytosis, as measured by uptake of horseradish peroxidase (HRP), was inhibited in a dose and time dependent manner in both endothelial and smooth muscle cell cultures by cholestane-3 beta,5 alpha,6 beta-triol and 25-hydroxycholesterol. Inhibition by 7-ketocholesterol in endothelial cells occurred only at higher concentrations, and cholesterol and cholesterol epoxide showed no significant inhibitory effects. The viability of the cells exposed to the cholesterol oxides at the concentrations that inhibited the uptake of HRP was not changed. Cholesterol oxides induce functional endothelial injury, not morphologically apparent, which may be involved in atherogenesis.

Animals↗

The effects of brainstem peribrachial stimulation on perigeniculate neurons: the blockage of spindle waves.

The mode of action of afferents arising from the brainstem peribrachial region at the midbrain-pontine junction on neurons recorded from the reticular thalamic sector adjacent to the lateral geniculate nucleus (perigeniculate cells) was investigated at the intracellular level in the cat. Experiments were performed in cats under barbiturate or urethane anaesthesia and in non-anaesthetized deafferented animals. Most cats were pretreated with reserpine (1-2 mg/kg) and were also acutely deprived of their retinal and cortical visual inputs. It was found that peribrachial stimulation produced a short train of fast-rising depolarizations followed by a long-lasting period of hyperpolarization in all perigeniculate neurons. Although the latest part of the early depolarizations preceding the hyperpolarization resulted from a parallel activation of lateral geniculate relay neurons by peribrachial afferents, those occurring at shortest latencies appear to result from a direct excitation produced by peribrachial afferents. Furthermore, these early excitatory postsynaptic potentials persisted under deep barbiturate anaesthesia, a condition that prevents activation of thalamic relay neurons by peribrachial stimulation. The evoked hyperpolarization decreased with membrane hyperpolarization, was associated with a 40-50% increase in membrane conductance and was insensitive to Cl injections. It was no longer observed within one hour after i.v. injection of scopolamine. However, the depolarizing responses were not depressed by this muscarinic antagonist. Iontophoretic applications of scopolamine also removed peribrachial-evoked inhibition of synaptic responses triggered by optic chiasma stimulation. The peribrachial input exerted a powerful control on the oscillatory behavior of perigeniculate neurons. Spindle oscillations which are generated within the reticular thalamic complex were readily blocked by peribrachial stimulation. It is then concluded that the transition from an oscillatory to a relay mode of operation in the thalamus is controlled at least in part by a muscarinic inhibition of reticular thalamic neurons. The synaptic mechanism responsible for the early depolarization remains to be elucidated.

Action Potentials↗

The effects of brainstem peribrachial stimulation on neurons of the lateral geniculate nucleus.

The intracellular effects of brainstem peribrachial stimulation on lateral geniculate neurons were investigated in the cat. Experiments were performed in cats under barbiturate or urethane anaesthesia and in non-anaesthetized deafferented animals. Most animals were pretreated with reserpine and were acutely deprived of their retinal and visual cortical inputs. Short trains of stimuli triggered a transient depolarization in most relay neurons (latency: 20-30 ms; duration: 200-300 ms). This depolarization could be interrupted by a short-duration unitary inhibitory postsynaptic potential. The depolarization increased with membrane hyperpolarization and was associated with an increase in membrane conductance. The inhibitory postsynaptic potential had an intrathalamic origin and likely resulted from parallel activation of intrageniculate interneurons. The above responses were largely enhanced in reserpinized cats and were completely abolished by small doses of barbiturates. Iontophoretic applications of the nicotinic blocker, hexamethonium, eliminated peribrachial-evoked discharges in these cells, while similar applications of the muscarinic antagonist, scopolamine, were devoid of any effect. The conclusion is reached that the depolarization of lateral geniculate relay neurons by peribrachial afferents represents a direct postsynaptic effect and does not result from a global disinhibitory mechanism involving inhibition of perigeniculate cells and intrageniculate interneurons. This peribrachial-evoked transient excitation of relay neurons results from a nicotinic mechanism.

Action Potentials↗

The cellular mechanism of thalamic ponto-geniculo-occipital waves.

The cellular mechanisms underlying the genesis of thalamic ponto-geniculo-occipital waves were studied in reserpinized cats under urethane anaesthesia. Simultaneous field potential and intracellular recordings were performed in the lateral geniculate nucleus after acute lesions of retinal and visual cortical inputs. In most relay cells, reserpine-induced ponto-geniculo-occipital waves were associated with a transient depolarization that was often interrupted by a unitary inhibitory postsynaptic potential. The depolarization grew in size with membrane hyperpolarization and was accompanied by an increase in membrane conductance. The inhibitory postsynaptic potential is likely to have resulted from the activation of intrageniculate interneurons since perigeniculate cells were always inhibited during the occurrence of ponto-geniculo-occipital waves. Under reserpine, thalamic ponto-geniculo-occipital waves could also be triggered by peribrachial or auditory stimulation. These evoked ponto-geniculo-occipital waves were associated with intracellular events identical to those occurring spontaneously after reserpine administration. In addition, thalamic spindle oscillations were readily blocked by the occurrence of spontaneous or evoked ponto-geniculo-occipital waves. On the basis of the present results and those already published in the literature, the conclusion is reached that lateral geniculate ponto-geniculo-occipital waves result from a nicotinic activation of relay cells and from a parallel muscarinic inhibition of perigeniculate cells by peribrachial afferents. The functional significance of the ponto-geniculo-occipital activity is discussed on the basis of the antagonistic action of these signals on thalamic oscillations. It is proposed that these signals are the central correlates of orienting reactions elicited by sensory stimuli during waking (the so-called eye movement potentials) and by internally generated drives during paradoxical sleep.

Action Potentials↗