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Biomedical subjects

R Yu

Publications and source records attributed to R Yu.

At least 91 records · Page 5Linked to original sources

Chemopreventive isothiocyanates induce apoptosis and caspase-3-like protease activity.

Isothiocyanates exert strong anticarcinogenic effects in a number of animal models of cancer, presumably by modulation of xenobiotic-metabolizing enzymes, such as by inhibition of cytochrome P-450 and/or by induction of phase II detoxifying enzymes. Here, we report that phenethyl isothiocyanate and other structurally related isothiocyanates, phenylmethyl isothiocyanate, phenylbutyl isothiocyanate, and phenylhexyl isothiocyanate, but not phenyl isothiocyanate induced apoptosis in HeLa cells in a time- and dose-dependent manner. Treatment with apoptosis-inducing concentrations of isothiocyanates also caused rapid and transient induction of caspase-3/CPP32-like activity. Furthermore, these isothiocyanates, except phenyl isothiocyanate, stimulated proteolytic cleavage of poly(ADP-ribose) polymerase, which followed the appearance of caspase activity and preceded DNA fragmentation. Pretreatment with a potent caspase-3 inhibitor acetyl-Asp-Glu-Val-Asp-aldehyde inhibited isothiocyanate-induced caspase-3-like activity and apoptosis. These results suggest that isothiocyanates may induce apoptosis through a caspase-3-dependent mechanism. The induction of apoptosis by isothiocyanates may provide a distinct mechanism for their chemopreventive functions.

Anticarcinogenic Agents↗

Biochemical evidence for a conserved interaction between bacterial transferrin binding protein A and transferrin binding protein B.

As an adaptation to the iron-restricted environment of the host, some bacterial pathogens possess iron acquisition pathways mediated by surface receptors that specifically bind transferrin from the host. The receptor is composed of two receptor proteins, TbpA and TbpB, which are both capable of binding to transferrin. Previous studies have demonstrated that affinity isolation of TbpB from Neisseria meningitidis or Haemophilus influenzae with immobilized human transferrin required the homologous TbpA, implicating a TbpA-TbpB interaction. In this study, we demonstrated that TbpA from either species can facilitate isolation of either TbpB, indicating that the TbpA-TbpB interaction is conserved within these species. Extension of these studies to veterinary pathogens in which a TbpA-Tf complex is used to affinity isolate heterologous TbpBs, demonstrated an interaction between the receptor proteins from N. meningitidis and Actinobacillus pleuropneumoniae. Further delineation of the TbpA-TbpB-transferrin interaction with recombinant chimeric N. meningitidis/A. pleuropneumoniae TbpBs has identified a region encoded by the first 1/4 of the tbpB gene which is involved in Tf binding.

Actinobacillus pleuropneumoniae↗

Optical fiber sensor for tetracycline antibiotics based on fluorescence quenching of covalently immobilized anthracene.

A new optical fiber sensor for tetracycline is fabricated with an anthracene-containing copolymer prepared from 9-anthrylmethyl methacrylate, methyl methacrylate and n-butyl acrylate (PAMB). The sensing relies on the fact that the fluorescence of the sensor membrane fabricated with PAMB can be strongly quenched by the tetracycline antibiotics extracted from the sample. The proposed sensor responds linearly in the measuring ranges 2.02 x 10(-7)-2.02 x 10(-4) mol l-1 tetracycline (TC), 2.00 x 10(-7)-2.03 x 10(-4) mol l-1 oxytetracycline (OTC) and 4.05 x 10(-7)-2.03 x 10(-4) mol l-1 doxycycline (DC) and has detection limits of 1.00 x 10(-7) mol l-1 for TC and OTC, and 2.00 x 10(-7) mol l-1 for DC. The leaching of anthracene from the sensor membrane was hindered by covalent immobilization, resulting in a drastically enhanced sensor lifetime. Moreover, the sensor can rapidly respond to the antibiotics of interest (ca. 30s) and exhibits good reproducibility, reversibility, and selectivity in the presence of some common pharmaceutical species as well as alkali and alkali-earth metal salts. The sensor was used for the direct assay of tetracycline antibiotics in commercial pharmaceutical preparations and urine. The results are comparable to those obtained by conventional spectrophotometry. The recovery for tetracycline antibiotics from urine samples is also satisfactory.

Anti-Bacterial Agents↗

Receptors for thyrotropin-releasing hormone on rat lactotropes and thyrotropes.

Primary cultures of rat pituitary cells were stained with an antibody to the native thyrotropin-releasing hormone (TRH) receptor and with a bioactive, fluorescent analogue of TRH, Rhod-TRH. Rhod-TRH specifically stained 86% of lactotropes and 21% of nonlactotropes from primary pituitary cell cultures. Lactotropes and thyrotropes accounted for 90% of cells that stained with Rhod-TRH, but there were occasional lactotropes and thyrotropes that did not show detectable staining with antireceptor antibodies or with Rhod-TRH. The intensity of staining was generally higher in the GH3 line of tumor cells than in normal pituicytes, and 100% of the tumor cells stained with Rhod-TRH. To determine whether the TRH receptor undergoes ligand-directed endocytosis in normal cells, TRH receptor immunocytochemistry was performed before and after TRH binding. TRH receptors were localized on the surface of cells prior to TRH exposure, and Rhod-TRH fluorescence was confined to the plasma membrane when TRH binding was performed at 0 degrees C, where endocytosis is blocked. When cells were incubated with TRH at 37 degrees C, receptors were found in intracellular vesicles in both lactotropes and thyrotropes, and Rhod-TRH was rapidly internalized into endosomes at elevated temperatures. Internalization of Rhod-TRH was inhibited by hypertonic sucrose, indicating that it occurs through clathrin-coated pits. These findings show that some of the heterogeneity in the secretory and calcium responses of pituicytes to TRH occurs at the level of the TRH receptor.

Amino Acid Sequence↗

Signal transduction, desensitization, and recovery of responses to thyrotropin-releasing hormone after inhibition of receptor internalization.

Three independent methods were used to block internalization of the TRH receptor: cells were infected with vaccinia virus encoding a dominant negative dynamin, incubated in hypertonic sucrose, or stably transfected with a receptor lacking the C-terminal tail. Internalization was blocked in all three paradigms as judged by microscopy using a fluorescently labeled TRH agonist and biochemically. The initial inositol trisphosphate (IP3) and Ca2+ responses to TRH were normal when internalization was inhibited. The IP3 increase was sustained rather than transient, however, in cells expressing the truncated TRH receptor, implying that the C-terminal tail of the receptor may be important for uncoupling from phospholipase C. After withdrawal of TRH, cells were refractory to TRH until both ligand dissociation and resensitization of the receptor had occurred. When surface-bound TRH was removed by a mild acid wash, which did not impair receptor function, neither wild-type nor truncated receptors were able to generate full IP3 responses for about 10 min. The rate of recovery was not altered by blocking internalization. Recovery of intracellular Ca2+ responses also depended on the rate of Ca2+ pool refilling. In summary, in the continued presence of TRH, phospholipase C activity declines quickly due to receptor uncoupling; this desensitization does not take place for the truncated receptor. After TRH is withdrawn, cells are refractory to TRH. Before cells can respond, TRH must dissociate and a resensitization step, which takes place on the plasma membrane and does not require the C-terminal tail of the receptor, must occur.

Animals↗

[Relationship between lung function and nocturnal hypoxemia in patients with obstructive sleep apnea syndrome].

OBJECTIVE: To explore the relationship between the changes of lung function resulted from position changes and obesity, and nocturnal hypoxemia in patients with obstructive sleep apnea syndrome. METHOD: 34 patients with obstructive sleep apnea syndrome were detected by polysomnography with lung function and blood gas analysis in sitting and supine positions during wake, and the relationship between results of lung function and blood gas analysis, IBW% to the AI, and < 90% T (percentage of the duration of SaO2 below 90% to total sleep time) was analyzed. RESULT: The mean age of the patients was 44 +/- 13 years. The AI was 36 +/- 22 time.hour-1. On changing from sitting to supine position, PaO2, VC%, ERV, FRC, FRC%, RV%, TLC% decreased significantly, especially ERV and FRC%, which decreased 47% and 29% respectively. AI had positive correlation with VC% (r = 0.477, P < 0.01) and TLC% (r = 0.443, P < 0.01) in supine position, < 90% T had negative correlation with PaO2(r = -0.479, P < 0.01) and ERV (r = -0.416, P < 0.05) in sitting position. The IBW% had negative correlation with VC% in sitting (r = -0.547, P < 0.01) and supine position (r = -0.491, P < 0.01). IBW% also had negative correlation with ERV in sitting (r = -0.523, P < 0.01) and supine (r = -0.413, P < 0.01) position and FRC (r = -0.402, P < 0.05) in sitting position. The IBW% had positive correlation with the < 90% T(r = 0.514, P < 0.01). CONCLUSION: These results suggest that positional changes and obesity have effects on lung function in patients with OSAS, and lead to the deterioration of hypoxemia during apnea.

Adult↗

[Gliosis: follow-up and pathological study of 34 cases].

OBJECTIVE: To discuss the etiology, clinical characteristics, pathology and canceration in gliosis. METHOD: 34 cases of gliosis were analyzed retrospectively follow-up for a long period. Their pathologic slices were restudied. RESULT: The causes of gliosis included cranial infection, specially infection caused by virus without distinct symptoms cerebral ischemia, brain injury, radiological treatment of brain. most cases showed symptoms of intracranial hypertension, 55.9% of the patients accompanied with epilepsy. Pathological examination revealed proliferation of small gliosis in all cases, lligodendrogliosis in 79.4% of the cases. The cases with proliferation had better rehabilitation. Canceration was noted in 11.8% of all cases. CONCLUSION: Gliosis is a nonmalignant disease, however, it has the possibility of canceration.

Adolescent↗

[In vitro sensitivity of oral gram-negative bacteria to the bactericidal activity of defensins].

Oral gram-negative bacteria, including Actinobacillus actinomycetemcomitans, Porphyromonas gingivalis, Capnocytophaga sputigena, Provotella intermedius, Provotella melaninogenicus, have been associated with destructive periodontal infection. An ultrasensitive antibacterial assay was applied to determine the sensitivity of a battery of oral gram-negative bacteria to the bactericidal effects of the isolated human neutrophil defensins (HNP) and two kinds of rabbit defensins NP1 and NP2. All species tested were killed by HNP, NP1 and NP2 except that porphyromonas gingivalis was resistant to HNP. However, there was strain-to-strain variation in sensitivity. It was concluded that the oral gram-negative bacteria were sensitive to the cidal mechanism involved in defensinmediated bacterial killing.

Aggregatibacter actinomycetemcomitans↗

Modulation of select immune responses by dietary capsaicin.

Capsaicin (CAP) is the spicy principle of hot peppers that has been used as a food additive, preservative, and medicine. In this study, we investigated the effect of dietary CAP on immune status and selected immune responses. BALB/c mice were divided into 5 groups and fed diets with either 0, 5, 20, 50 or 100 ppm CAP for 3 weeks. The parameters measured with lymphocytes included mitogen-induced proliferation, plaque-forming cell number, and total serum immunoglobulin levels. In spleen cells of mice fed 20 ppm CAP there was a greater T-cell mitogen induced, lymphocyte proliferative response. In addition, the number of antibody-producing B cells and serum IgG and IgM levels increased in mice fed 20 ppm CAP as compared to the control with no CAP. The effect of dietary CAP on macrophage activity was assessed by phagocytosis and tumor necrosis factor-alpha (TNF alpha) production. Dietary CAP had no effect on phagocytic activity by peritoneal macrophages, but the levels of secreted TNF alpha increased in the groups fed 20 ppm CAP compared to the control. These results suggest that dietary CAP may differentially enhance immune status as well as select immune functions. That is in contrast with previous studies that show immunosuppression observed after CAP injection.

Animals↗

Expression of heterogeneous nuclear ribonucleoprotein A2/B1 in bronchial epithelium of chronic smokers.

The monoclonal antibody 703D4, which binds heterogeneous nuclear ribonucleoprotein A2/B1 (hnRNP A2/B1), has been reported to detect lung cancer more than a year earlier than routine chest X-ray or cytomorphology. To explore the biological basis of this detection, we studied the expression of this antigen in the central airways of smokers with evidence of bronchial metaplasia using specimens from a previously reported, randomized retinoid chemoprevention trial. By analyzing 1078 available biopsy specimens from 147 individuals at baseline and 68 individuals who completed the intervention, we frequently detected overexpression of hnRNP A2/B1 in normal and abnormal bronchial epithelium (i.e., in 41% of normal and 37% of squamous metaplasia samples). There was no correlation between hnRNP A2/B1 overexpression and the different histological changes. In cases with hnRNP A2/B1 overexpression, immunoreactivity was homogeneously expressed in all biopsied sites. For the 68 cases with serial biopsies, there was no significant modulation of hnRNP expression by retinoid intervention or smoking status. With lung cancer cell lines, 0.5-4 microM concentrations of 13-cis-retinoic acid reduced hnRNP A2/B1 overexpression by immunocytochemistry. We conclude that hnRNP A2/B1 overexpression is frequently found in central airways of chronic smokers, consistent with the pattern of expression that we reported previously in airways surrounding resected primary lung cancers. Oral 13-cis-retinoic acid at a dose of 1 mg/kg has no demonstrable effects on modulating hnRNP A2/B1 expression in proximal bronchial epithelium.

Biomarkers, Tumor↗

Characterization of the polymorphonuclear leukocyte-induced vasoconstriction in isolated human umbilical veins.

We investigated the contractile effects of both activated and unactivated polymorphonuclear leukocytes (PMNs) on human vascular tissue to characterize the influence of human PMNs on vascular tone. PMNs were added either unactivated or after f-met-leu-phe (fMLP) activation (10(-8) M), into tissue chambers containing human umbilical vein segments under either control or cytokine-treated conditions. The activation state of different PMN preparations was measured by immunofluorescence staining of the adhesion glycoproteins Mac-1 and L-selectin. Both unactivated and activated PMNs induced a cell number-dependent (1.5 x 10(5) to 2 x 10(6) cells/ml) vasoconstriction in human umbilical vein segments. This PMN-induced response was not inhibited by treatment with indomethacin (10(-5) M), superoxide dismutase (2 x 10(-7) M) or L-nitro-monomethyl arginine (10(-4) M). However, treatment of PMNs with the leukotriene biosynthesis inhibitor BIRM-270 partially inhibited (-61 +/- 19%, P <.05) the contraction induced only by unactivated PMNs. Moreover, the supernatant from unactivated, but not that from activated, PMNs elicited a contractile response comparable to that from the addition of cells. We observed a significant correlation between the Mac-1/L-selectin ratio of activated PMNs and the contractile response they generated (r = 0.77, P <.05). The activated PMN response had an endothelium-dependent component, whereas the unactivated PMN response was endothelium-independent. These results suggest that human PMNs of varying activation states have the capacity to modulate vascular smooth muscle tone via distinct mechanisms. Unactivated PMNs appear to modulate tone via a secreted product, whereas the more activated phenotype modulates vascular tone via a cognate interaction with the endothelium.

Flow Cytometry↗

Capsaicin can alter the expression of tumor forming-related genes which might be followed by induction of apoptosis of a Korean stomach cancer cell line, SNU-1.

Capsaicin (CAP) has been known to inhibit some tumor development in vivo (J.J. Jang, S.H. Kim, T.K. Yun, Inhibitory effect of capsaicin on mouse lung tumor development, in vivo, J. Korean Med. Sci. 3 (1989) 49-53; J.J. Jang, K.J. Cho, Y.S. Lee, J.H. Bae, Different modifying responses of capsaicin in a wide-spectrum initiation model of F344 rat, J. Korean Med. 6 (1991) 31-36) [1,2] even though its mechanism of action is not well understood. The objectives of this study were to examine the effect of CAP on expression of tumor forming-related genes in a Korean stomach tumor cell, SNU-1. We used slot blot hybridization to investigate its effect on a wide spectrum of proto-oncogenes. It was found that CAP enhanced the transcripts of two proto-oncogenes (c-myc and c-Ha-ras) and tumor suppressor gene p53. While a low concentration of CAP (0.01 microM) did not significantly increase the level of p53 transcript in SNU-1, it did increase it by a factor of 3.5 at a 10 microM dose of CAP. Consequently, SNU-1 cells are sensitive to CAP in the overexpression of tumor suppressor gene, p53 and proto-oncogenes, c-myc and c-Ha-ras, but not those of c-erbB-2, c-jun and bcl-2 genes. Both cell death and DNA fragmentation were shown in SNU-1 cells with treatment of CAP. Our results suggest that CAP induces apoptotic cell death in human gastric cancer cells (SNU-1) in vitro which may be possibly mediated by the overexpression of p53 and/or c-myc genes. Because cell suicide is arguably the most potent natural defense against cancer, the correlation between the induction of apoptosis and the change of tumor forming-related gene expression after CAP treatment should be further studied in detail.

Apoptosis↗

Butylated hydroxyanisole and its metabolite tert-butylhydroquinone differentially regulate mitogen-activated protein kinases. The role of oxidative stress in the activation of mitogen-activated protein kinases by phenolic antioxidants.

Phenolic antioxidant butylated hydroxyanisole (BHA) is a commonly used food preservative with broad biological activities, including protection against acute toxicity of chemicals, modulation of macromolecule synthesis and immune response, induction of phase II detoxifying enzymes, and especially its potential tumor-promoting activities. Understanding the molecular basis underlying these diverse biological actions of BHA is thus of great importance. Here we demonstrate that BHA is capable of activating distinct mitogen-activated protein kinases (MAPKs), extracellular signal-regulated protein kinase 2 (ERK2), and c-Jun N-terminal kinase 1 (JNK1). Activation of ERK2 by BHA was rapid and transient, whereas the JNK1 activation was relatively delayed and persistent. A major metabolite of BHA, tert-butylhydroquinone (tBHQ), also activated ERK2 but weakly stimulated JNK1 activity. Furthermore, tBHQ activation of ERK2 was late and prolonged, showing a kinetics different from that induced by BHA. ERK2 activation by both compounds required the involvement of an upstream signaling kinase MAPK/ERK kinase (MEK), as evidenced by the inhibitory effect of a MEK inhibitor, PD98059. Pretreatment with N-acetyl-L-cysteine, glutathione, or vitamin E attenuated ERK2 but not JNK1 activation by BHA and tBHQ. Modulation of intracellular H2O2 levels by direct addition of catalase or pretreatment with a catalase inhibitor, aminotriazole, also affected BHA- and tBHQ-stimulated ERK2 activity but not JNK1, indicating the involvement of oxidative stress in the ERK2 activation by these two compounds. However, we did not observe any generation of H2O2 after exposure of cells to BHA or tBHQ using a H2O2-sensitive fluorescent probe, 2',7'-dichlorofluorescein diacetate. Instead, BHA and tBHQ substantially reduced the amount of intracellular H2O2. Furthermore, BHA and tBHQ activation of ERK2 was strongly inhibited by ascorbic acid and a peroxidase inhibitor, sodium azide, suggesting the potential role of phenoxyl radicals and/or their derivatives. Taken together, our results indicate that (i) BHA and its metabolite tBHQ differentially regulate MAPK pathways, and (ii) oxidative stress due to the generation of reactive intermediates, possibly phenoxyl radicals but not H2O2, is responsible for the ERK2 activation by BHA and tBHQ, whereas the JNK1 activation may require a distinct yet unknown mechanism.

Amitrole↗

Desensitization of thyrotropin-releasing hormone receptor-mediated responses involves multiple steps.

Desensitization and recovery of the inositol 1,4,5-trisphosphate (IP3) and intracellular free calcium concentration ([Ca2+]i) responses to thyrotropin-releasing hormone (TRH) were measured in HEK293 cells stably expressing the G protein-coupled TRH receptor. TRH caused a large, rapid, and transient increase in IP3 and a biphasic increase in [Ca2+]i. Desensitization of the TRH response was measured by exposing cells to TRH, washing, and then incubating the cells in hormone-free medium before reintroducing TRH and measuring IP3, [Ca2+]i, and intracellular Ca2+ pool size. When cells were incubated with 1 microM TRH for 10 s or 10 min and reexposed to TRH, there was almost no IP3 or [Ca2+]i increase. The IP3 response recovered first, followed by the [Ca2+]i response. The ionomycin-releasable intracellular Ca2+ pool was almost completely depleted by TRH, and pool refilling was slow. Thrombin, endothelin, and carbachol, when combined, stimulated large increases in IP3 and [Ca2+]i, but did not block the IP3 or [Ca2+]i responses to TRH measured 10 min later. In contrast, cells exposed to TRH first responded to combined agonists with a nearly normal increase in IP3, but no rise in [Ca2+]i. Thus, the IP3 response to TRH displays homologous desensitization, whereas the [Ca2+]i response displays heterologous desensitization because depletion of intracellular Ca2+ pools prevents responses to other hormones.

Calcium↗

Clonal genetic alterations in the lungs of current and former smokers.

BACKGROUND AND PURPOSE: Genetic damage has been identified at multiple chromosomal sites (i.e., loci) in lung cancer cells. We questioned whether similar damage could be detected in the bronchial epithelial cells of chronic smokers who do not have this disease. METHODS: Biopsy specimens from six different bronchial regions were obtained from 54 chronic smokers (40 current smokers and 14 former smokers). The presence of squamous metaplasia and dysplasia (abnormal histologic changes) in the specimens was documented by examination of hematoxylin-eosin-stained sections, and a metaplasia index ([number of biopsy specimens with metaplasia/total number of biopsy specimens] x 100%) was calculated for each subject. Loss of heterozygosity (i.e., loss of DNA sequences from one member of a chromosome pair) involving microsatellite DNA at three specific loci-chromosome 3p14, chromosome 9p21, and chromosome 17p13-was evaluated by means of the polymerase chain reaction. Fisher's exact test and logistic regression analysis were used to assess the data. Reported P values are two-sided. RESULTS: Data on microsatellite DNA status at chromosomes 3p14, 9p21, and 17p13 were available for 54, 50, and 44 subjects, respectively. The numbers of individuals who were actually informative (i.e., able to be evaluated for a loss of heterozygosity) at the three loci were 36 (67%), 37 (74%), and 34 (77%), respectively. DNA losses were detected in 27 (75%), 21 (57%), and six (18%) of the informative subjects at chromosomes 3p14, 9p21, and 17p13, respectively. Fifty-one subjects were informative for at least one of the three loci, and 39 (76%) exhibited a loss of heterozygosity. Forty-two subjects were informative for at least two of the loci, and 13 (31%) exhibited losses at a minimum of two loci. Loss of heterozygosity at chromosome 3p14 was more frequent in current smokers (22 [88%] of 25 informative) than in former smokers (five [45%] of 11 informative) (P = .01) and in subjects with a metaplasia index greater than or equal to 15% (21 [91%] of 23 informative) than in subjects with a metaplasia index of less than 15% (six [46%] of 13 informative) (P = .003). In five informative individuals among nine tested nonsmokers, a loss of heterozygosity was detected in only one subject at chromosome 3p14 (P = .03), and no losses were detected at chromosome 9p21 (P = .05). CONCLUSIONS: Genetic alterations at chromosomal sites containing putative tumor-suppressor genes (i.e., 3p14 and the FHIT gene, 9p21 and the p16 gene [also known as CDKN2], and 17p13 and the p53 gene [also known as TP53]) occur frequently in the histologically normal or minimally altered bronchial epithelium of chronic smokers.

Adult↗

Activation of signal transduction kinases by tamoxifen.

PURPOSE: To study the signal transduction mechanisms of tamoxifen via the activation of MAPKs, JNK and ERK in order to understand its regulation of gene expression. METHODS: The effects of tamoxifen (TAM) on the activation of serine/threonine mitogen-activated protein kinase (MAPK, p42/ERK2) and the stress-activated protein kinases (p46 SAPK or c-Jun N-terminal kinase, JNK1) were evaluated using a human cervical epitheloid carcinoma HeLa cell line. RESULTS: TAM activated both JNK1 and ERK2 activities in a time- and dose-dependent manner in HeLa cells. The activation of JNK1 was enhanced when the cells were pretreated with prooxidant H2O2. CONCLUSIONS: These studies show that TAM activates the signal transduction kinases, JNK1 and ERK2, which may play important roles in the regulation of gene expression by TAM.

Antineoplastic Agents, Hormonal↗