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Biomedical subjects

Y Liang

Publications and source records attributed to Y Liang.

At least 127 records · Page 7Linked to original sources

Induction of apoptosis by mifepristone and tamoxifen in human LNCaP prostate cancer cells in culture.

BACKGROUND: Published data indicate that antiprogestins and antiestrogens could inhibit prostate cancer cell growth in vitro and in vivo. The main objective of the present studies was to explore the role of bcl(2) and TGFbeta(1) for induction of apoptosis in LNCaP prostate cancer cells growing in culture as a treatment response to the antiprogestin, mifepristone, and the antiestrogen, 4-hydroxytamoxifen. METHODS: In vitro cell viability (cytotoxicity), DNA fragmentation, and changes in the expression of bcl(2) and TGFbeta(1) proteins were assessed using the sulforhodamine B protein dye-binding assay, specific ELISA, and competitive inhibition assays. RESULTS: Both steroid antagonists induced a significant time- and dose-dependent cell growth inhibition (cytotoxicity). This inhibition of viable cells was associated with a significant increase in DNA fragmentation (apoptosis), downregulation of bcl(2), and induction of TGFbeta(1) protein. Abrogation of the mifepristone- and 4-hydroxytamoxifen-induced cytotoxicity by TGFbeta(1)-neutralizing antibody and by the addition of mannose-6-phosphate confirmed the correlation between induction of active TGFbeta(1) and subsequent prostate cancer cell death. The effect of mifepristone was not significantly reduced or prevented by occupying the progesterone or glucocorticoid receptors by their corresponding high-affinity native ligands. On the contrary, the effect of a combination of mifepristone with progesterone or hydrocortisone on the increase in DNA fragmentation, bcl(2) downregulation, and induction of TGFbeta(1) protein was additive and significantly different (P < 0.05) from the effect of mifepristone monotherapy. CONCLUSIONS: Our data suggest that mifepristone and tamoxifen are effective inducers of apoptosis and may represent nonandrogen-ablation, novel therapeutic approaches to overcome a potential intrinsic apoptosis resistance of androgen-independent prostate cancer cells.

Animals↗

A whole-genome assembly of Drosophila.

We report on the quality of a whole-genome assembly of Drosophila melanogaster and the nature of the computer algorithms that accomplished it. Three independent external data sources essentially agree with and support the assembly's sequence and ordering of contigs across the euchromatic portion of the genome. In addition, there are isolated contigs that we believe represent nonrepetitive pockets within the heterochromatin of the centromeres. Comparison with a previously sequenced 2.9- megabase region indicates that sequencing accuracy within nonrepetitive segments is greater than 99. 99% without manual curation. As such, this initial reconstruction of the Drosophila sequence should be of substantial value to the scientific community.

Algorithms↗

Hyperinsulinemia increases norepinephrine metabolism in the ventromedial hypothalamus of rats.

Numerous studies have implicated increased ventromedial hypothalamic (VMH) norepinephrine (NE) activity as a contributing factor to the obese, hyperinsulinemic, glucose intolerant condition. However, factors contributing to the increased VMH NE activity remain unknown. This study therefore investigated in normal rats the effect of a hyperinsulinemic-euglycemic clamp on VMH monoamine turnover and utilization via simultaneous VMH microdialysis to establish a role for hyperinsulinemia in the stimulation of VMH NE activity. Within 20 min of initiation of the hyperinsulinemic-euglycemic clamp, VMH extracellular methoxyhydroxy phenylglycol (metabolite of NE) level increased by 54% and remained approximately at this level for the 100 min duration of the clamp relative to control values (p<0.05). Hyperinsulinemia did not affect VMH dopamine or serotonin metabolism. Subsequent establishment of a hyperinsulinemic-hypoglycemic camp did not alter the VMH monoamine metabolism profile relative to the hyperinsulinemic-euglycemic clamp. Infusion of saline (as control) in a separate group of rats over the entire clamp period induced no changes in any monoamine metabolic profile relative to baseline. Hyperinsulinemia can feedback to stimulate VMH NE activity and, as a result, may contribute to the initiation and/or perpetuation of the obese, hyperinsulinemic, glucose-intolerant state.

Animals↗

Antitumor activity of mifepristone in the human LNCaP, LNCaP-C4, and LNCaP-C4-2 prostate cancer models in nude mice.

BACKGROUND: Antiprogestins are a promising new class of mammary tumor inhibitors with a unique mechanism of action. Previously published results also suggest a tumor-inhibitory effect of antiprogestins in prostate cancer models. The objective of the present studies was to determine whether androgen-sensitive and androgen-insensitive variants of the well-characterized LNCaP human prostate cancer cell line exhibit stable differences in their sensitivity to in vivo antitumor activity of the antiprogestin, mifepristone. METHODS: Exponentially growing LNCaP, LNCaP-C4, and LNCaP-C4-2 prostate cancer cells in culture were mixed with Matrigel and injected subcutaneously (s.c.) into the flank of 6-8-week-old male nude mice. The tumors were permitted to grow until they reached a volume of 270-300 mm(3). The animals were then randomly assigned to two groups. One group received mifepristone (50 mg/kg/day s.c.). Control animals were treated with vehicle. Tumor volume was determined every 4 days. After 28 days of treatment, the tumors were harvested and wet weights were determined. RESULTS: The inoculated tumor cells produced progressively growing tumors in male nude mice. However, the androgen-insensitive LNCaP-C4-2 cells showed the most aggressive and most rapid growth rate and shortest time to tumor progression. The tumors derived from the LNCaP-C4 cells exhibited a higher rate of tumor growth as compared with those derived from the parental androgen-sensitive LNCaP cells. In all three models, mifepristone treatment caused a significant retardation of tumor progression: after 28 days of treatment, about 50% inhibition of tumor weight was observed in the mifepristone treatment groups (P < 0.05) compared with the corresponding control groups. CONCLUSIONS: This is the first report demonstrating significant antitumor activity of mifepristone in both androgen-sensitive and androgen-insensitive variants of the LNCaP human prostate cancer model in nude mice. These results suggest a potential clinical benefit of the use of antiprogestins as a novel nonandrogen ablation therapeutic approach in the management of prostate cancer.

Androgens↗

Expression of adhesion molecules relevant to leukocyte migration on the microvilli of liver peritoneal mesothelial cells.

To help assess the immunological functions of the liver peritoneum, expression and 3D-microlocalization of adhesion molecules were studied by immuno-SEM and -TEM. The peritoneal tissues of the liver obtained from lipopolysaccharide (LPS, 1.5 microg/g BW for 24 hr)-stimulated (n = 18 including nine controls) and non-stimulated mice (n = 6 including three controls) were analyzed by immunolabeling with 15 nm gold particle single-labeling analysis of ICAM-1, ICAM-2, VCAM-1, MAdCAM-1, PECAM-1, ELAM-1, and CD105 expression. In addition, 10 and 20 nm gold particle double-labeling analysis of ICAM-1 and VCAM-1 was carried out with conventional TEM and BSE (backscatter electron) imaging. Gold particles detected in the peritoneal mesothelial cells were quantified using a computer analyzer, LUZEX III. Only ICAM-1 in non-stimulated mice and both ICAM-1 and VCAM-1 in LPS-stimulated mice were expressed on the mesothelium, but no other adhesion molecules were detected in either condition. Expression of ICAM-1 was consistently about four times greater than that of VCAM-1. Each adhesion molecule was restricted to the microvilli. ICAM-1 was expressed on all microvilli and tended to form clusters of three or four molecules. On the other hand, about 24% of the microvilli expressed VCAM-1 and less clustering was seen. Double-labeling techniques disclosed that VCAM-1 and ICAM-1 were rarely closely associated, usually spaced by about 40 nm. These results suggest that microvilli of the mesothelial cell play a significant role in leukocyte migration in the peritoneal cavity, by providing the important substrates for adhesion, ICAM-1 and VCAM-1.

Animals↗

Novel presenilin 1 mutations associated with early onset of dementia in a family with both early-onset and late-onset Alzheimer disease.

Two children of an adult with early-onset, autopsy-confirmed Alzheimer disease (AD) developed dementia in their late 20s and were subsequently found to have novel mutations in codon 434 of the presenilin 1 (PS1) gene on chromosome 14, a G-to-T substitution at nucleotide 1548 and a C-to-G substitution at nucleotide 1549. The younger of the 2 children had AD confirmed at postmortem examination. The disease course in these 3 individuals was characterized by cognitive and behavioral problems accompanied by myoclonus, seizures, and aphasia within 5 years after onset. Two grandparents had clinically diagnosed AD with stroke beginning at ages 78 and 66 years, but neither had a PS1 mutation. No other living family member was demented, nor did any other family member have the PS1 mutation. We conclude that the affected parent of the proband was a likely recent founder for these novel mutations in PS1. The family demonstrates the clinical and genetic heterogeneity of AD. Arch Neurol. 2000;57:1454-1457

Adult↗

Expression of HLA-DR and its enhancing molecules in muscle fibers in polymyositis.

Polymyositis (PM) is an autoimmune inflammatory muscle disease of unknown cause in which cellular immunity is thought to play an important pathogenic role. Class II major histocompatibility complex (class II MHC: human leukocyte antigen (HLA)-DR operates as a cofactor of antigen presentation in immunological responses. There has been a major debate over whether muscle fibers themselves synthesize and express HLA-DR molecules and play a role in antigen presentation in PM pathogenesis. In this study, we demonstrated that most muscle fibers from patients with PM synthesized and expressed HLA-DR molecules on their surface. Human leukocyte antigen-DR expression was highly specific to PM. In addition, class II transactivator (CIITA), human leukocyte antigen DM (HLA-DM), and invariant chain (Ii), which are indispensable for expression of mature HLA-DR molecules and for antigen processing and presentation, were co-expressed. One of the cytokines that could induce this expression is interferon-gamma (IFN-gamma), released by activated lymphocytes. Our results indicate that in PM muscle fibers synthesize and express HLA-DR molecules and may contribute to the inflammatory responses together with lymphocytes.

Adult↗

Reduced expression of DMAHP/SIX5 gene in myotonic dystrophy muscle.

In myotonic dystrophy (DM), the expansion of CTG triplet repeats in the 3'-untranslated region of DM-protein kinase (DMPK) is a causal gene mutation. However, the pathogenic molecular mechanism of CTG repeat expansion for DM phenotypic expression is unclear. To investigate this issue, we examined the influence of CTG repeat expansion on the expression levels of DMPK gene and 3'-flanking DM locus-associated homeodomain protein (DMAHP)/SIX5 gene in the muscles of DM patients. We isolated RNA from muscle tissues of six DM patients and six controls, and performed a competitive reverse transcriptional polymerase chain reaction (RT-PCR) assay. The total mRNA level of DMAHP/SIX5 was significantly lower in DM than in controls, but the DMPK mRNA level was unchanged. Our results suggest that CTG repeat expansion influences the expression of genes other than DMPK to cause the DM phenotype.

Adult↗

Reclamation of wastewater for polyculture of freshwater fish: bioassays using Chlorella and Gambusia.

The feasibility of using the secondary effluents from two sewage treatment plants in Hong Kong (Yuen Long and Shek Wu Hui) for fish culture was assessed. Total ammonia contents in the two sewage effluents surpassed the level of 2 mg L(-1) recommended for wastewater fish culture. The two sewage effluents both needed essential elements for supporting algal Chlorella vulgaris growth, whereas only sewage effluent from Yuen Long had contaminants at toxic levels. Total ammonia in water explained more than 80% variations of toxicity of water samples to Gambusia patruelis, mosquito fish, according to regression analysis. Removal of ammonia from the sewage effluent is necessary before being used for fish culture. In addition, the rather high levels of heavy metals (Cu, Zn, Cd) in the effluent should be closely monitored.

Ammonia↗

The role of lymphotoxin in pathogenesis of polymyositis.

Polymyositis (PM) is a cell-mediated autoimmune disease. Perforin (PF), Fas ligand (FasL) and TNF-alpha are considered to be important factors in cytotoxic T lymphocyte-mediated cell injury, and several studies have established a role of lymphotoxin (LT) in T helper type 1 (Th1)-induced cell-mediated autoimmune diseases. In the present study, to determine how LT, PF and FasL are involved in the pathogenesis of PM, we used immunohistochemical staining (IHC), reverse transcription polymerase chain reaction (RT-PCR), and in situ hybridization (ISH) on muscle specimens from patients with PM, amyotrophic lateral sclerosis (ALS), myotonic dystrophy (MyD) and controls (NC). There were many mononuclear cells (MNCs) immunoreactive for LT and some for PF and FasL within the fasciculus in PM muscles. On the other hand, only few or no LT-, PF- and FasL-positive cells were detected in MyD, ALS and NC muscles. The results of mRNA expression of these three molecules with RT-PCR were consistent with those using IHC methods. The number of MNCs positive for LT with ISH was far higher in PM compared to MyD, ALS and NC (P < 0.05 or 0.01). The MNCs located in the connective tissue or in the vicinity of necrotizing or non-necrotizing muscles were mainly LT mRNA and CD4 positive, while MNCs invading the non-necrotic fibers were mainly LT mRNA and CD8 positive. Our results indicated that the expression of LT was up-regulated in PM, and LT plays an important role in muscle injury and orchestrating the inflammatory reaction in PM.

Aged↗

Tumor necrosis factor-alpha expression in muscles of polymyositis and dermatomyositis.

We evaluated the expression of tumor necrosis factor-alpha (TNF-alpha) mRNA in muscle biopsy specimens from patients with polymyositis (PM) and dermatomyositis (DM) to clarify its role in the pathogenesis of PM and DM. We performed non-radioactive in situ hybridization studies for TNF-alpha combined with immunohistochemistry for cell type-specific markers on muscles from ten PM and five DM patients. TNF-alpha-positive infiltrating cells present in the endomysium and perimysium were found in all PM and DM muscles. The frequency of TNF-alpha-positive cells against total infiltrating cells was similar among PM and DM (27.1 +/- 7.4% in PM and 28.5 +/- 13.6% in DM). However, TNF-alpha/CD8-positive lymphocytes and TNF-alpha-positive macrophages invading the non-necrotic muscle fiber were observed only in PM but not in DM. TNF-alpha was more highly expressed in PM and DM than was previously thought, and it was suggested that TNF-alpha plays a role in muscle fiber degeneration in PM.

Aged↗

Eosinophil cationic protein- and eosinophil-derived neurotoxin/eosinophil protein X-immunoreactive eosinophils in prurigo nodularis.

It is known that eosinophils are actively involved in allergy and inflammation. The granular components of eosinophils, eosinophil cationic protein (ECP) and eosinophil-derived neurotoxin/eosinophil protein X (EDN/EPX), play an important role in such allergic and inflammatory processes. Prurigo nodularis is a chronic inflammatory skin disease with obvious cutaneous nervous involvement. To detect ECP and EDN/ EPX expression in the eosinophils and their relation to nerve fibres in prurigo nodularis, ECP and EDN/EPX single-labelling immunofluorescence, and ECP and PGP 9.5 double-labelling immunofluorescence, were performed. In prurigo nodularis lesional skin, the ECP- and EDN/EPX-containing cells, which were mainly distributed in the upper dermis, were significantly increased in number compared to their numbers in uninvolved and normal skin. The immunoreactivity of ECP and EDN/EPX in prurigo lesional skin was stronger than in uninvolved skin or control skin. The PGP 9.5-immunoreactive nerves were also increased in number in the areas where there were increased eosinophils. The nerves were in close proximity to eosinophils, and occasionally even seemed to be in contact. The present results indicate that the cutaneous nerves and the ECP- and EDN/EPX-containing eosinophils are possibly involved in the pathogenesis of the disease. The close relationship of nerves and eosinophils indicates that the cutaneous nerves may influence eosinophil function in the chronic inflammatory states of prurigo nodularis. ECP and EDN/EPX could thus be released to the local tissue and modulate the inflammation of the prurigo nodularis lesion.

Aged↗

Use of a 13C tracer to quantify the plasma appearance of a physiological dose of lutein in humans.

Increased intake of lutein from vegetables promotes increased density of the macular pigment and therefore may protect against age-related macular degeneration. Our objective was to use a 13C tracer and high-precision gas chromatography-combustion interfaced-isotope ratio mass spectrometry (GC-C-IRMS) to investigate metabolism of a lutein dose equivalent to that absorbed from vegetables. Biosynthetic per-labeled (>99% 13C) lutein was purified from a commercially available extract of algal biomass. Subjects (n = 4) ingested 3 mg of [13C]lutein with a standardized low-carotenoid breakfast. Blood samples were collected at baseline and then hourly for 12 h; additional blood samples were drawn at 16, 24, 48, 72, 96, 192, 360, and 528 h. To produce perhydro-beta-carotene suitable for analysis by GC-C-IRMS, the plasma lutein fraction was hydrogenated on palladium-on-carbon catalyst with acid-catalyzed hydrogenolysis. The stable carbon isotope (13C/12C) ratio measured by GC-C-IRMS was used to calculate the plasma concentration of [13C]lutein. There was a rapid increase in [13C]lutein in plasma until peak enrichment at 16 h followed by a decline to the next measurement at 24 h. At 528 h, small changes in 13C enrichment from baseline could still be measured in plasma lutein. High-precision GC-C-IRMS enables complete definition of the appearance and disappearance of [13C]lutein in plasma after ingestion of a dose similar to that absorbed from foods.

Adult↗

CGRP-immunoreactive nerves in prurigo nodularis--an exploration of neurogenic inflammation.

BACKGROUND: The present study has explored the localization and distribution of calcitonin gene-related peptide (CGRP)-immunoreactive (IR) nerve fibers in prurigo nodularis, especially emphasizing its relationships to mast cells and eosinophils, which all are important contributors to inflammation. METHODS: The exact localization of CGRP in the nerve fibers of prurigo nodularis lesional skin has been clarified by an ultrastructural immunogold labelling technique; and the relationships of CGRP-IR nerve fibers to tryptase-IR mast cells or eosinophil cationic protein (ECP)-IR eosinophils were also investigated by immunofluorescence double-labelling. RESULTS: This ultrastructural study has demonstrated that CGRP immunoreactivity is increased in the dense-core vesicles in the axons of the prurigo nodularis lesional skin; the axons which contain CGRP are, in addition, enlarged and have more dense-core vesicles than the axons which do not contain CGRP. The immunofluorescence investigation demonstrated that tryptase-containing mast cells and ECP-containing eosinophils also are significantly increased in the lesional skin. CONCLUSIONS: The results indicate that certain neurons increasingly express CGRP, which may dynamically result in a neurogenic inflammation in the lesional skin, through vasodilatation, and recruitment and regulation of inflammatory cells, e.g. eosinophils and mast cells.

Aged↗

Mutations of PKD1 in ADPKD2 cysts suggest a pathogenic effect of trans-heterozygous mutations.

Autosomal dominant polycystic kidney disease (ADPKD) is caused by mutations in PKD1 and PKD2. The products of these genes associate to form heteromeric complexes. Several models have been proposed to explain the mechanism of cyst formation. Here we find somatic mutations of PKD2 in 71% of ADPKD2 cysts analysed. Clonal somatic mutations of PKD1 were identified in a subset of cysts that lacked PKD2 mutations.

Base Sequence↗

T cells overexpressing interferon-gamma and interleukin-10 are found in both the thymus and secondary lymphoid tissues of feline immunodeficiency virus-infected cats.

Similar to human immunodeficiency virus type 1, feline immunodeficiency virus (FIV) replicates in the thymus of infected animals, causing marked alteration in thymic lymphocyte subpopulations. The immune phenotype and cytokine patterns in the thymus and secondary lymphoid tissues of FIV-infected cats were investigated. FIV infection caused an acute-stage transient reduction in CD4CD8 double-positive thymocytes, a marked increase in CD8 single-positive thymocytes, and formation of thymic B cell lymphoid follicles. Interferon (IFN)-gamma and interleukin (IL)-10 mRNA were up-regulated in both the thymus and lymph nodes of FIV-infected cats. Analysis of purified CD4 and CD8 cells revealed that CD4 cells produced most of the IL-10, whereas IFN-gamma was produced by both subsets. Quantitative-competitive reverse-transcription polymerase chain reaction analysis revealed that thymocytes, especially CD4CD8 thymocytes, had much greater levels of gag mRNA than did lymph node T cells. Thus, overexpression of IFN-gamma and IL-10 is a feature of the thymus and secondary lymphoid tissues of FIV-infected cats.

Animals↗

Sex-dependent regulation of hepatic peroxisome proliferation in mice by trichloroethylene via peroxisome proliferator-activated receptor alpha (PPARalpha).

The mechanism of trichloroethylene-induced liver peroxisome proliferation and the sex difference in response was investigated using wild-type Sv/129 and peroxisome proliferator-activated receptor alpha (PPARalpha)-null mice. Trichloroethylene treatment (0.75 g/kg for 2 weeks by gavage) resulted in liver peroxisome proliferation in wild-type mice, but not in PPARalpha-null mice, suggesting that trichloroethylene-induced peroxisome proliferation is primarily mediated by PPARalpha. No remarkable sex difference was observed in induction of peroxisome proliferation, as measured morphologically, but a markedly higher induction of several enzymes and PPARalpha protein and mRNA was found in males. On the other hand, trichloroethylene induced liver cytochrome P450 2E1, the principal enzyme responsible for metabolizing trichloroethylene to chloral hydrate, only in males, which resulted in similar expression levels in both sexes after the treatment. Trichloroethylene influenced neither the level of catalase, an enzyme involved in the reduction of oxidative stress, nor aldehyde dehydrogenase, the main enzyme catalyzing the conversion to trichloroacetic acid. These results suggest that trichloroethylene treatment causes a male-specific PPARalpha-dependent increase in cellular oxidative stress.

Animals↗

Desiccation tolerance of recalcitrant Theobroma cacao embryonic axes: the optimal drying rate and its physiological basis.

Recalcitrant seed axes were reported to survive to lower water contents under fast-drying conditions. The present study was to examine the hypothesis that drying rate and dehydration duration could interact to determine desiccation tolerance through different physico-chemical mechanisms. The effect of drying rate on desiccation tolerance of Theobroma cacao seed axes at 16 degrees C was examined. Rapid-drying at low relative humidity (RH) and slow-drying at high RH were more harmful to cocoa axes, because electrolyte leakage began to increase and axis viability began to decrease at high water contents. Maximum desiccation tolerance was observed with intermediate drying rates at RH between 88% and 91%, indicating the existence of an optimal drying rate or optimal desiccation duration. This maximum level of desiccation tolerance for cocoa axes (corresponding to a critical water potential of -9 MPa) was also detected using the equilibration method, in which axes were dehydrated over a series of salt solutions or glycerol solutions until the equilibrium. These data confirmed that the physiological basis of the optimal drying rate is related to both mechanical stress during desiccation and the length of desiccation duration during which deleterious reactions may occur. The optimal drying rate represents a situation where combined damages from mechanical and metabolic stresses become minimal.

Adaptation, Physiological↗