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C Christian

Publications and source records attributed to C Christian.

35 records · Page 2Linked to original sources

Developmental regulation of re-uptake of phosphatidylcholine by type II alveolar epithelium.

Type II alveolar epithelia produce, store and secrete pulmonary surfactant, a phospholipid and protein mixture which stabilizes alveoli at low lung volumes and, thereby, prevents alveolar collapse. We determined the developmental changes in the uptake, metabolism and reutilization of surfactant-related phospholipid in primary cultures of type II cells derived from fetal rat lung. Primary cultures of fetal and neonatal type II cells were incubated in media containing labelled liposomes. After the incubation phospholipids were extracted from the cells and uptake of label was analyzed. Re-uptake of radiolabelled dipalmitoyl phosphatidylcholine (DPPC) was concentration-dependent in undifferentiated fetal cells, differentiated fetal cells and neonatal cells. Re-uptake of DPPC by undifferentiated fetal cells was lower than re-uptake by both differentiated fetal and neonatal cells at 15 and 75 microM PC. Binding of DPPC to the cell surface involved a protein interaction, since trypsin was able to dissociate this trypsin-releasable fraction from internalized label. Undifferentiated fetal, differentiated fetal and neonatal cells all exhibited approx. 50% metabolic degradation of internalized phospholipid. Degraded lipids were reutilized in the synthesis of phosphatidylglycerol, but neonatal cells resynthesized twice as much phosphatidylglycerol as did undifferentiated fetal cells. These are the first studies which show that morphologically undifferentiated fetal type II cells are capable of the uptake of surfactant phospholipid as well as the degradation and reutilization of internalized phospholipid. Re-uptake, degradation and reutilization of internalized phospholipid appear to be under developmental control.

1,2-Dipalmitoylphosphatidylcholine↗

Retinal hemorrhage.

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Carbon Monoxide Poisoning↗

Multiple intracellular signaling pathways of the neuropeptide substance P receptor.

The rat substance P (SP) receptor cDNA has been transfected into cultured rat KNRK cells, and a stable cell line expressing functional SP receptors established. Upon stimulation with SP, these cells responded by simultaneously activating two signaling pathways: the mobilization of intracellular Ca2+ and the raising of cyclic adenosine triphosphate (cAMP) levels. Both Ca2+ and cAMP responses were elicited in a similar dose-dependent manner with half maximal concentrations of approximately 5 x 10(-10) M. Following ionomycin treatment SP-dependent Ca2+ responses were abolished, whereas cAMP responses were preserved. Forskolin eliminated the SP-dependent cAMP elevation, however, the SP-induced Ca2+ mobilization remained unchanged. Furthermore, treatment with phorbol esters had no significant effect on either of the two SP-induced responses. Thus it appears that the SP receptor is capable of independently activating Ca2+ mobilization and cAMP pathways. These results may provide new insights for further understanding the diverse activities of SP in various systems in vitro and in vivo.

Animals↗

Simplified PCR-based detection and typing strategy for human papillomaviruses utilizing a single oligonucleotide primer set.

Utilizing the PCR, we have devised a detection and typing system for the human papillomaviruses (HPVs) that are commonly associated with preneoplastic and cancerous lesions of the genital and aero-digestive tracts: HPV 6, 11, 16 and 18. Utilizing computer sequence analysis, we designed a single, "consensus" set of oligomeric nucleotide primers capable of amplifying a 571-594-bp region of the E1 open reading frame of all of these HPVs. Detection via PCR amplification is followed by restriction endonuclease digestion of the resultant products that yield distinctive and reproducible banding patterns by polyacrylamide gel electrophoresis because of their internal sequence diversity. The system is sensitive, does not require sophisticated molecular biology expertise or radioisotopes and can be modified as new information on HPV types and their relationship to diseases becomes available.

Electrophoresis, Agar Gel↗

Persistent immune complexes and abnormal CD4/CD8 ratios in HIV infection.

We assessed the immunopathologic role of circulating immune complexes in human immunodeficiency virus infection by evaluating the data base and the serum bank of the San Francisco Men's Health Study, a longitudinal clinical and epidemiological investigation conducted since 1983. A group of 4,276 sera from 1,023 (including 811 homosexual/bisexual) men were tested for circulating immune complexes. We used a modification of the commercially available enzyme immunoassay test, based on monoclonal anti-C1q antibodies coupled to the solid phase, for capturing circulating immune complexes from the test serum, followed by detection of circulating immune complexes with either anti-IgG or with anti-IgM probes. Although persistent IgM and IgG circulating immune complexes were most frequently encountered in human immunodeficiency virus-seropositive homosexual/bisexual men, they were not an indicator of disease progression as assessed by abnormalities in the absolute numbers or ratios of CD4- and CD8-positive T cells, or clinical signs and symptoms of AIDS/ARC.

Acquired Immunodeficiency Syndrome↗

[Brain function and level of consciousness in fentanyl anesthesia in heart surgery].

The level of consciousness and the supply/demand ratio of oxygen in the brain was studied in anaesthetized patients undergoing open heart surgery. Anaesthesia was accomplished with intravenous fentanyl; 26 patients received 25 micrograms/kg and 24 patients received 50 micrograms/kg fentanyl. In addition only pancuronium bromide was administered for muscular relaxation; all patients were ventilated with 100% oxygen. The following measurements were made during induction and prior to cardiopulmonary bypass and in the first ten minutes of bypass: 1. EEG with the Klein EEG Analyzer. This instrument permits simultaneous analysis of frequency and amplitude while eliminating muscular artifacts. 2. Cerebral oxygen with the Niroscope. This instrument uses an infrared light beam through the brain to evaluate cerebral oxygen sufficiency. 3. Oxygen supply/demand ratio in the whole body, estimated from mixed venous oxygen saturation measured with a fiberoptic pulmonary artery catheter. Clinical unconsciousness occurred in all patients within about 30 s after the administration of fentanyl. Simultaneously the EEG showed a significant decrease in frequency and an increase in amplitude. With the Niroscope no change in oxygen supply and demand was seen in any patients. This is in contrast to previous studies with thiopental, where changes were seen. A slight increase in mixed venous oxygen saturation was observed. This indicates an increase in the total oxygen supply/demand ratio, probably due to decreased muscle metabolism induced by pancuronium bromide paralysis. From the end of induction until cardiopulmonary bypass a slight increase in cerebral electrical activity was observed; an additional increase occurred in the first ten minutes of bypass.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesia, General↗

Distribution of calpain I, an enzyme associated with degenerative activity, in rat brain.

The calcium-activated protease calpain I was localized in rat brain by immunocytochemistry. Calpain I-like immunoreactivity (CLI) was prominent in several structures in which degeneration is an ongoing feature, e.g. spinal motoneurons, olfactory nerve. Also noteworthy was the presence of CLI in regions susceptible to age-related pathologies, e.g. cerebellar Purkinje cells, substantia nigra and subiculum. This distribution suggests that calpain I may be involved with both normal and pathological neuronal degeneration.

Animals↗

The influence of the sympathetic nervous system on the development of beta-adrenergic receptors in the rat submandibular salivary gland.

During the development of the rat submandibular gland (SMG) there is a clearly-defined sequence in the maturation of the beta-adrenergic receptor/adenylate cyclase-linked stimulus-secretion coupling system. The sympathetic nervous system does not become functionally linked to the exocrine process in the SMG until approximately six days after birth. The temporal correlation of the ingrowth of catecholamine-containing nerve processes, the appearance of beta-adrenergic receptors and the functional coupling of the stimulus-secretion system suggested the possibility of a cause and effect relationship between the appearance of the catecholamine-containing nerves in the gland and the maturational increase in the number of beta-adrenergic receptors. Chemical sympathectomy in neonates did not effect the time of appearance or the number of beta-adrenergic receptors seen in the developing gland. However, chronic isoproterenol treatment resulted in accelerated maturation of the gland with a concomitant premature appearance of the beta-receptors. These data suggest that the increase in the number of beta-adrenergic receptors which normally occurs in the developing gland at 5-6 days after birth is a specifically-programmed step closely associated with the degree of maturation attained by the cells and is independent from the ingrowth of catecholamine-containing nerves.

Animals↗

Ultrastructural studies of the rat submandibular gland in streptozotocin induced diabetes mellitus.

Increased fluid intake (polydipsia) is one of the classic symptoms of diabetes mellitus. Xerostomia (dry mouth) and resultant thirst are other symptoms of the disease and bear a close relationship to polydipsia. The xerostomia in individuals with diabetes is primarily due to decreased saliva flow which appears to be associated with degenerative changes in the salivary glands. This study examines the response of the rat submandibular gland to streptozotocin induced diabetes mellitus. Adult male rats were given a single I.V. dose of streptozotocin (65 mg/kg body weight) in citrate buffer (pH 4.5). Salivary glands were examined by light and electron microscopy at 4, 8 and 24 h and 3, 7, 14 and 21 days posttreatment. The changes in the acinar cells were characterized by an accumulation of secretory material within the cytoplasm. This secretory protein accumulation was followed by degenerative changes in the acinar cells which frequently resulted in cell death and replacement of secretory cells by connective tissue elements. The loss of secretory volume and potential changes in secretory kinetics are discussed with regard to the xerostomia, thirst and polydipsia exhibited by individuals with diabetes mellitus.

Animals↗

Regulation of acetylcholine release from neuroblastoma x glioma hybrid cells.

Neuroblastoma x glioma NG108-15 hybrid cells exposed to N6, O2'-dibutyryladenosine 3':5'-cyclic monophosphate for several days release [3H]acetylcholine in response to serotonin, prostaglandin F2alpha, KCl, or veratridine. NG108-15 cells grown in the absence of dibutyrul cyclic AMP do not respond to an excitatory stimulus by releasing [3H]acetylcholine but can be shifted to a responsive state by treatment with dibutyryl cyclic AMP. Thus, the reactions that are required for acetylcholine release can be regulated in NG108-15 cells, thereby regulating the ability of cells to form synapses and the efficiency of synaptic communication.

Acetylcholine↗

Concurrent cytochemical localization of adenylate cyclase and peroxidase in the developing rat submandibular gland.

An electron microscopic histochemical technique for the concurrent localization of adenylate cyclase and endogenous peroxidase is described. The procedure involves incubation of glutaraldehyde fixed tissue in adenylate cyclase medium followed by washing and incubation in 3,3'-diaminobenzidine tetrahydrochloride medium to demonstrate peroxidase activity. Adenylate cyclase was localized at the cell surface of the tissue investigated (20 day fetal rat submandibular gland) while peroxidase was localized in the rough endoplasmic reticulum and secretory granules of some cells. Biochemical and histochemical controls indicate that the procedure is valid. The potential use of this procedure and variations of the procedure are discussed.

Adenylyl Cyclases↗

Synapse formation between clonal neuroblastoma X glioma hybrid cells and striated muscle cells.

Clonal neuroblastoma X glioma hybrid cells were shown to form synapses with cultured, striated muscle cells. The properties of the synapses between hybrid and muscle cells were similar to those of the normal, neuromuscular synapse at an early stage of development. The number of synapses formed and the efficiency of transmission across synapses were found to be regulated, apparently independently, by components in the culture medium. Under appropriate conditions synapses were found with 20% of the hybrid-muscle cell pairs examined; thus, the hybrid cells form synapses with relatively high frequency.

Action Potentials↗

Stimulation of transcriptional regulatory activity by substance P.

The neuropeptide substance P (SP) is one of the principal mediators of neurogenic inflammation as well as a neurotransmitter in nociceptive affect neurons. The mechanisms by which binding of SP to its receptor stimulates diverse downstream biologic effects remain unknown. In order to elucidate this process we have established stably transfected cell lines expressing functional rat SP receptors (KNRK-SPR). When stimulated by SP, KNRK-SPR cells respond by simultaneously mobilizing intracellular Ca2+ and increasing cAMP levels. To determine if SP stimulation activates downstream transcriptional regulatory factors, we transfected KNRK-SPR cells with plasmids containing the activator protein 1 (AP-1) and cAMP-responsive (CRE) enhancer elements coupled to the chloramphenicol acetyltransferase (CAT) reporter gene. Stimulation with SP 1-1,000 nM caused a 1.5- to 2-fold increase in CAT activity in both AP-1-CAT- and CRE-CAT-transfected KNRK-SPR cells. Northern and Western blot analyses demonstrate that the mechanism by which SP stimulates AP-1 enhancer activity involves increases in both c-jun mRNA and protein. Moreover, gel retardation assays with oligomers containing the AP-1 and CRE binding sites showed that SP induces specific retardation bands consistent with increases in AP-1 and CRE complexes. These experiments suggest that SP-mediated stimulation of cells involves the participation of two signaling pathways resulting in several transcriptional regulatory mechanisms being activated.

Animals↗