M. S. Choe et al. (jul 2019)
Cell biology international
Trolox-induced cardiac differentiation is mediated by the inhibition of Wnt/$\beta$-catenin signaling in human embryonic stem cells.
Cardiac differentiation of human pluripotent stem cells may be induced under chemically defined conditions,wherein the regulation of Wnt/$\beta$-catenin pathway is often desirable. Here,we examined the effect of trolox,a vitamin E analog,on the cardiac differentiation of human embryonic stem cells (hESCs). 6-Hydroxy-2,5,7,8-tetramethylchromane-2-carboxylic acid (Trolox) significantly enhanced cardiac differentiation in a time- and dose-dependent manner after the mesodermal differentiation of hESCs. Trolox promoted hESC cardiac differentiation through its inhibitory activity against the Wnt/$\beta$-catenin pathway. This study demonstrates an efficient cardiac differentiation method and reveals a novel Wnt/$\beta$-catenin regulator.
View Publication
产品号#:
100-0572
100-0573
产品名:
Trolox
Trolox
M. Cou\'e et al. (mar 1987)
FEBS letters 213 2 316--8
Inhibition of actin polymerization by latrunculin A.
Latrunculin A,a toxin purified from the red sea sponge Latrunculia magnifica,was found previously to induce striking reversible changes in the morphology of mammalian cells in culture and to disrupt the organization of their microfilaments. We now provide evidence that latrunculin A affects the polymerization of pure actin in vitro in a manner consistent with the formation of a 1:1 molar complex between latrunculin A and G-actin. The equilibrium dissociation constant (Kd) for the reaction in vitro is about 0.2 microM whereas the effects of the drug on cultured cells are detectable at concentrations in the medium of 0.1-1 microM.
View Publication
产品号#:
100-0562
100-0563
产品名:
Latrunculin A
Latrunculin A
J. Dalli et al. (jul 2010)
The American journal of pathology 177 1 176--86
CFTR inhibition provokes an inflammatory response associated with an imbalance of the annexin A1 pathway.
Cystic fibrosis (CF),a disease caused by mutations in the CF transmembrane conductance regulator (CFTR) gene,is characterized by chronic bacterial infections and inflammation in the lung. Having previously shown that deletion of CFTR is associated with lower expression of the endogenous anti-inflammatory protein Annexin A1 (AnxA1),we investigated further this possible functional connection using a validated CFTR inhibitor. Treatment of mice with the CFTR inhibitor-172 (CFTR(172)) augmented the acute peritonitis promoted by zymosan,an effect associated with lower AnxA1 levels in peritoneal cells. Similar results were obtained with another,chemically distinct,CFTR inhibitor. The pro-inflammatory effect of CFTR(172) was lost in AnxA1(-/-),as well as CFTR(-/-) mice. Importantly,administration of hrAnxA1 and its peptido-mimetic to CFTR(-/-) animals or to animals treated with CFTR(172) corrected the exaggerated leukocyte migration seen in these animals. In vitro assays with human Polymorphonuclear leukocyte (PMN) demonstrated that CFTR(172) reduced cell-associated AnxA1 by promoting release of the protein in microparticles. We propose that the reduced impact of the counterregulatory properties of AnxA1 in CF cells contributes to the inflammatory phenotype characteristic of this disease. Thus,these findings provide an important insight into the mechanism underlying the inflammatory disease associated with CFTR inhibition while,at the same time,providing a novel pharmacological target for controlling the inflammatory phenotype of CF.
View Publication
产品号#:
100-0530
100-0554
100-0531
100-0555
产品名:
GlyH-101
CFTR(inh)-172
GlyH-101
CFTR(inh)-172
E. Donohue et al. ( 2014)
PloS one 9 12 e114964
Induction of Covalently Crosslinked p62 Oligomers with Reduced Binding to Polyubiquitinated Proteins by the Autophagy Inhibitor Verteporfin.
Autophagy is a cellular catabolic process responsible for the degradation of cytoplasmic constituents,including organelles and long-lived proteins,that helps maintain cellular homeostasis and protect against various cellular stresses. Verteporfin is a benzoporphyrin derivative used clinically in photodynamic therapy to treat macular degeneration. Verteporfin was recently found to inhibit autophagosome formation by an unknown mechanism that does not require exposure to light. We report that verteporfin directly targets and modifies p62,a scaffold and adaptor protein that binds both polyubiquitinated proteins destined for degradation and LC3 on autophagosomal membranes. Western blotting experiments revealed that exposure of cells or purified p62 to verteporfin causes the formation of covalently crosslinked p62 oligomers by a mechanism involving low-level singlet oxygen production. Rose bengal,a singlet oxygen producer structurally unrelated to verteporfin,also produced crosslinked p62 oligomers and inhibited autophagosome formation. Co-immunoprecipitation experiments demonstrated that crosslinked p62 oligomers retain their ability to bind to LC3 but show defective binding to polyubiquitinated proteins. Mutations in the p62 PB1 domain that abolish self-oligomerization also abolished crosslinked oligomer formation. Interestingly,small amounts of crosslinked p62 oligomers were detected in untreated cells,and other groups noted the accumulation of p62 forms with reduced SDS-PAGE mobility in cellular and animal models of oxidative stress and aging. These data indicate that p62 is particularly susceptible to oxidative crosslinking and lead us to propose a model whereby oxidized crosslinked p62 oligomers generated rapidly by drugs like verteporfin or over time during the aging process interfere with autophagy.
View Publication
产品号#:
100-0261
产品名:
维替泊芬
Y. Emori et al. (jun 2005)
Journal of gastroenterology and hepatology 20 6 895--9
Camostat, an oral trypsin inhibitor, reduces pancreatic fibrosis induced by repeated administration of a superoxide dismutase inhibitor in rats.
BACKGROUND AND AIM An oral trypsin inhibitor,camostat (CM),has a beneficial effect on chronic pancreatitis,but its mechanism is not yet fully understood. Recently,pancreatic stellate cells (PSC) have been reported to play an essential role in pancreatic fibrosis. An experimental model of pancreatic fibrosis induced by a superoxide dismutase (SOD) inhibitor (diethyldithiocarbamate [DDC]) was developed in rats. Thus,the effect of an oral trypsin inhibitor on pancreatic fibrosis and PSC was investigated. METHODS Pancreatic fibrosis was induced in rats using DDC (DDC rats). DDC + CM rats were administered DDC,and subsequently were fed a diet containing CM. Immunohistochemistry of the pancreas was performed with monoclonal anti-alpha-smooth muscle actin (alpha-SMA) antibody and anti-desmin antibody. RESULTS The DDC rats showed a significant increase in alpha-SMA-positive cells or desmin-positive cells compared with control rats. These significant increases in the fibrotic area improved after treatment with CM. The level of prolyl hydroxylase in the pancreas,which significantly increased as a result of DDC,decreased after treatment with CM. CONCLUSION Camostat has a beneficial effect on pancreatic fibrosis induced by the administration of a SOD inhibitor,which inhibits the proliferation and activation of PSC.
View Publication
产品号#:
100-0552
产品名:
M. Garcia-Calvo et al. (dec 1998)
The Journal of biological chemistry 273 49 32608--13
Inhibition of human caspases by peptide-based and macromolecular inhibitors.
Studies with peptide-based and macromolecular inhibitors of the caspase family of cysteine proteases have helped to define a central role for these enzymes in inflammation and mammalian apoptosis. A clear interpretation of these studies has been compromised by an incomplete understanding of the selectivity of these molecules. Here we describe the selectivity of several peptide-based inhibitors and the coxpox serpin CrmA against 10 human caspases. The peptide aldehydes that were examined (Ac-WEHD-CHO,Ac-DEVD-CHO,Ac-YVAD-CHO,t-butoxycarbonyl-IETD-CHO,and t-butoxycarbonyl-AEVD-CHO) included several that contain the optimal tetrapeptide recognition motif for various caspases. These aldehydes display a wide range of selectivities and potencies against these enzymes,with dissociation constants ranging from 75 pM to {\textgreater}10 microM. The halomethyl ketone benzyloxycarbonyl-VAD fluoromethyl ketone is a broad specificity irreversible caspase inhibitor,with second-order inactivation rates that range from 2.9 x 10(2) M-1 s-1 for caspase-2 to 2.8 x 10(5) M-1 s-1 for caspase-1. The results obtained with peptide-based inhibitors are in accord with those predicted from the substrate specificity studies described earlier. The cowpox serpin CrmA is a potent (Ki {\textless} 20 nM) and selective inhibitor of Group I caspases (caspase-1,-4,and -5) and most Group III caspases (caspase-8,-9,and -10),suggesting that this virus facilitates infection through inhibition of both apoptosis and the host inflammatory response.
View Publication
产品号#:
100-0534
100-0536
100-0535
100-0537
产品名:
Z-VAD-FMK
Ac-DEVD-CHO (Trifluoroacetate Salt)
Z-VAD-FMK
Ac-DEVD-CHO (Trifluoroacetate Salt)
J. Gibo et al. (jan 2005)
Laboratory investigation; a journal of technical methods and pathology 85 1 75--89
Camostat mesilate attenuates pancreatic fibrosis via inhibition of monocytes and pancreatic stellate cells activity.
Camostat mesilate (CM),an oral protease inhibitor,has been used clinically for the treatment of chronic pancreatitis in Japan. However,the mechanism by which it operates has not been fully understood. Our aim was to evaluate the therapeutic efficacy of CM in the experimental pancreatic fibrosis model induced by dibutyltin dichloride (DBTC),and we also determined the effect of CM on isolated monocytes and panceatic stellate cells (PSCs). In vivo,chronic pancreatitis was induced in male Lewis rats by single administration of 7 mg/kg DBTC and a special diet containing 1 mg/g CM was fed to the DBTC+CM-treated group from day 7,while the DBTC-treated group rats were fed a standard diet. At days 0,7,14 and 28,the severity of pancreatitis and fibrosis was examined histologically and enzymologically in both groups. In vitro,monocytes were isolated from the spleen of a Lewis rat,and activated with lipopolysaccharide stimulation. Thereafter,the effect of CM on monocyte chemoattractant protein-1 (MCP-1) and tumor necrosis factor-alpha (TNF-alpha) production from monocytes was examined. Subsequently,cultured rat PSCs were exposed to CM and tested to see whether their proliferation,MCP-1 production and procollagen alpha1 messenger RNA expression was influenced by CM. In vivo,the oral administration of CM inhibited inflammation,cytokines expression and fibrosis in the pancreas. The in vitro study revealed that CM inhibited both MCP-1 and TNF-alpha production from monocytes,and proliferation and MCP-1 production from PSCs. However,procollagen alpha1 expression in PSCs was not influenced by CM. These results suggest that CM attenuated DBTC-induced rat pancreatic fibrosis via inhibition of monocytes and PSCs activity.
View Publication
产品号#:
100-0552
产品名:
K. E. Gomez et al. (oct 2020)
Cancer research 80 19 4185--4198
Cancer Cell CD44 Mediates Macrophage/Monocyte-Driven Regulation of Head and Neck Cancer Stem Cells.
Tumor-associated macrophages (TAM) in the tumor microenvironment (TME) cooperate with cancer stem cells (CSC) to maintain stemness. We recently identified cluster of differentiation 44 (CD44) as a surface marker defining head and neck squamous cell carcinoma (HNSCC) CSC. PI3K-4EBP1-SOX2 activation and signaling regulate CSC properties,yet the upstream molecular control of this pathway and the mechanisms underlying cross-talk between TAM and CSC in HNSCC remain largely unknown. Because CD44 is a molecular mediator in the TME,we propose here that TAM-influenced CD44 signaling could mediate stemness via the PI3K-4EBP1-SOX2 pathway,possibly by modulating availability of hyaluronic acid (HA),the main CD44 ligand. HNSCC IHC was used to identify TAM/CSC relationships,and in vitro coculture spheroid models and in vivo mouse models were used to identify the influence of TAMs on CSC function via CD44. Patient HNSCC-derived TAMs were positively and negatively associated with CSC marker expression at noninvasive and invasive edge regions,respectively. TAMs increased availability of HA and increased cancer cell invasion. HA binding to CD44 increased PI3K-4EBP1-SOX2 signaling and the CSC fraction,whereas CD44-VCAM-1 binding promoted invasive signaling by ezrin/PI3K. In vivo,targeting CD44 decreased PI3K-4EBP1-SOX2 signaling,tumor growth,and CSC. TAM depletion in syngeneic and humanized mouse models also diminished growth and CSC numbers. Finally,a CD44 isoform switch regulated epithelial-to-mesenchymal plasticity as standard form of CD44 and CD44v8-10 determined invasive and tumorigenic phenotypes,respectively. We have established a mechanistic link between TAMs and CSCs in HNSCC that is mediated by CD44 intracellular signaling in response to extracellular signals. SIGNIFICANCE: These findings establish a mechanistic link between tumor cell CD44,TAM,and CSC properties at the tumor-stroma interface that can serve as a vital area of focus for target and drug discovery.
View Publication
产品号#:
产品名:
M. A. Gray et al. (dec 2020)
Nature chemical biology 16 12 1376--1384
Targeted glycan degradation potentiates the anticancer immune response in vivo.
Currently approved immune checkpoint inhibitor therapies targeting the PD-1 and CTLA-4 receptor pathways are powerful treatment options for certain cancers; however,most patients across cancer types still fail to respond. Consequently,there is interest in discovering and blocking alternative pathways that mediate immune suppression. One such mechanism is an upregulation of sialoglycans in malignancy,which has been recently shown to inhibit immune cell activation through multiple mechanisms and therefore represents a targetable glycoimmune checkpoint. Since these glycans are not canonically druggable,we designed an $\alpha$HER2 antibody-sialidase conjugate that potently and selectively strips diverse sialoglycans from breast cancer cells. In syngeneic breast cancer models,desialylation enhanced immune cell infiltration and activation and prolonged the survival of mice,an effect that was dependent on expression of the Siglec-E checkpoint receptor found on tumor-infiltrating myeloid cells. Thus,antibody-sialidase conjugates represent a promising modality for glycoimmune checkpoint therapy.
View Publication
产品号#:
19055
19255
19255RF
19055RF
产品名:
EasySep™人NK细胞富集试剂盒
EasySep™人Gamma/Delta T细胞分选试剂盒
RoboSep™ 人Gamma/Delta T细胞分选试剂盒
RoboSep™ 人NK细胞富集试剂盒含滤芯吸头
O. W. Griffith (nov 1982)
The Journal of biological chemistry 257 22 13704--12
Mechanism of action, metabolism, and toxicity of buthionine sulfoximine and its higher homologs, potent inhibitors of glutathione synthesis.
A. Haddad et al. (oct 2019)
Respiratory research 20 1 234
Neutrophils from severe asthmatic patients induce epithelial to mesenchymal transition in healthy bronchial epithelial cells.
BACKGROUND Asthma is a heterogenous disease characterized by chronic inflammation and airway remodeling. An increase in the severity of airway remodeling is associated with a more severe form of asthma. There is increasing interest in the epithelial to mesenchymal transition process and mechanisms involved in the differentiation and repair of the airway epithelium,especially as they apply to severe asthma. Growing evidence suggests that Epithelial-Mesenchymal transition (EMT) could contribute to airway remodeling and fibrosis in asthma. Severe asthmatic patients with remodeled airways have a neutrophil driven inflammation. Neutrophils are an important source of TGF-$\beta$1,which plays a role in recruitment and activation of inflammatory cells,extracellular matrix (ECM) production and fibrosis development,and is a potent inducer of EMT. OBJECTIVE As there is little data examining the contribution of neutrophils and/or their mediators to the induction of EMT in airway epithelial cells,the objective of this study was to better understand the potential role of neutrophils in severe asthma in regards to EMT. METHODS We used an in vitro system to investigate the neutrophil-epithelial cell interaction. We obtained peripheral blood neutrophils from severe asthmatic patients and control subjects and examined for their ability to induce EMT in primary airway epithelial cells. RESULTS Our data indicate that neutrophils from severe asthmatic patients induce changes in morphology and EMT marker expression in bronchial epithelial cells consistent with the EMT process when co-cultured. TGF-$\beta$1 levels in the culture medium of severe asthmatic patients were increased compared to that from co-cultures of non-asthmatic neutrophils and epithelial cells. CONCLUSIONS AND CLINICAL RELEVANCE As an inducer of EMT and an important source of TGF-$\beta$1,neutrophils may play a significant role in the development of airway remodeling and fibrosis in severe asthmatic airways.
View Publication
产品号#:
05040
19656
产品名:
PneumaCult™-Ex Plus 培养基
EasySep™ Direct人嗜酸性粒细胞分选试剂盒
R. N. Jadeja et al. (jun 2018)
Aging 10 6 1306--1323
Loss of NAMPT in aging retinal pigment epithelium reduces NAD+ availability and promotes cellular senescence.
Retinal pigment epithelium (RPE) performs numerous functions critical to retinal health and visual function. RPE senescence is a hallmark of aging and degenerative retinal disease development. Here,we evaluated the temporal expression of key nicotinamide adenine dinucleotide (NAD+)-biosynthetic genes and associated levels of NAD+,a principal regulator of energy metabolism and cellular fate,in mouse RPE. NAD+ levels declined with age and correlated directly with decreased nicotinamide phosphoribosyltransferase (NAMPT) expression,increased expression of senescence markers (p16INK4a,p21Waf/Cip1,ApoJ,CTGF and $\beta$-galactosidase) and significant reductions in SIRT1 expression and activity. We simulated in vitro the age-dependent decline in NAD+ and the related increase in RPE senescence in human (ARPE-19) and mouse primary RPE using the NAMPT inhibitor FK866 and demonstrated the positive impact of NAD+-enhancing therapies on RPE cell viability. This,we confirmed in vivo in the RPE of mice injected sub-retinally with FK866 in the presence or absence of nicotinamide mononucleotide. Our data confirm the importance of NAD+ to RPE cell biology normally and in aging and demonstrate the potential utility of therapies targeting NAMPT and NAD+ biosynthesis to prevent or alleviate consequences of RPE senescence in aging and/or degenerative retinal diseases in which RPE dysfunction is a crucial element.
View Publication