Glioblastoma (GBM), a highly invasive and vascular malignancy is shown to rapidly develop resistance and evolve to a more invasive phenotype following bevacizumab (Bev) therapy. Rho Guanine Nucleotide Exchange Factor proteins (RhoGEFs) are mediators of key components in Bev resistance pathways, GBM and Bev-induced invasion. To identify GEFs with enhanced mRNA expression in the leading edge of GBM tumours, a cohort of GEFs was assessed using a clinical dataset. The GEF βPix/COOL-1 was identified, and the functional effect of gene depletion assessed using 3D-boyden chamber, proliferation, and colony formation assays in GBM cells. Anti-angiogenic effects were assessed in endothelial cells using tube formation and wound healing assays. In vivo effects of βPix/COOL-1-siRNA delivered via RGD-Nanoparticle in combination with Bev was studied in an invasive model of GBM. We found that siRNA-mediated knockdown of βPix/COOL-1 in vitro decreased cell invasion, proliferation and increased apoptosis in GBM cell lines. Moreover βPix/COOL-1 mediated endothelial cell migration in vitro. Mice treated with βPix/COOL-1 siRNA-loaded RGD-Nanoparticle and Bev demonstrated a trend towards improved median survival compared with Bev monotherapy. Our hypothesis generating study suggests that the RhoGEF βPix/COOL-1 may represent a target of vulnerability in GBM, in particular to improve Bev efficacy.
Background: Combining bevacizumab and chemotherapy produced superior response rates compared with chemotherapy alone in metastatic breast cancer. As bevacizumab may cause hypertension (HTN) and increase the risk of cardiac failure, we performed a pilot study to evaluate the feasibility and toxicity of a non-anthracycline-containing combination of docetaxel with cyclophosphamide and bevacizumab in early stage breast cancer patients. Methods: Treatment consisted of four 3-weekly cycles of docetaxel and cyclophosphamide (75/600 mg/m 2 ). Bevacizumab was administered 15 mg/kg intravenously on day 1, and then every 3 weeks to a total of 18 cycles of treatment. Serum biomarker concentrations of vascular endothelial growth factor (VEGF), cardiac troponin-I (cTnI), myeloperoxidase (MPO), and placental growth factor (PlGF) were quantified using enzyme-linked immunosorbent assay (ELISA) in 62 patients at baseline and whilst on treatment to determine their utility as biomarkers of cardiotoxicity, indicated by left ventricular ejection fraction (LVEF). Results: A total of 106 patients were accrued in nine sites. Median follow up was 65 months (1–72 months). Seventeen protocol-defined relapse events were observed, accounting for an overall disease-free survival (DFS) rate of 84%. The DFS rates for hormone receptor positive (HR+) and triple-negative (TN) patients were 95% versus 43%, respectively. The median time to relapse was 25 (12–54) months in TN patients versus 38 (22–71) months in HR+ patients. There have been 13 deaths related to breast cancer . The overall survival (OS) rate was 88%. The 5-year OS rate in HR+ versus TN was 95% versus 57%. None of the measured biomarkers predicted the development of cardiotoxicity. Conclusions: We observed a low relapse rate in node-positive, HR+ patients; however, results in TN breast cancer were less encouraging. Given the negative results of three large phase III trials, it is unlikely that this approach will be investigated further. Trial Registration ClinicalTrials.gov Identifier: NCT00911716.
Glioblastoma (GBM), a highly invasive brain malignancy, remains an incurable disease. Angiogenesis, the formation of new vasculature, is a defining feature of this disease. Targeting GBM angiogenesis with Bevacizumab (Bev) is associated with improved progression free survival, but may also enhance tumour invasion into the surrounding parenchyma (Norden et al., 2008) and is not curative. Rho GTPases and their activators, guanine nucleotide exchange factors (GEFs), play central roles in the invasive process (4). Herein, we sought to identify and target GEFs of importance in mediating GBM invasion with a view to improving Bev response. We report a novel mechanism by which GBM tumours invade and proliferate via overexpression of the GEF beta-PIX gene which was shown to be increased at the invasive edge in 74% of GBM tumours assessed (n=19), compared with tumour core (Hoelzinger et al., 2005). We have further demonstrated that siRNA-mediated knockdown of beta-PIX in GBM patient-derived xenograft cell cultures and cell lines resulted in decreased cell invasion in 3D, cell proliferation and survival assays in vitro. An in vivo pilot study whereby beta-Pix knockdown was achieved using commercially available alphaV-beta3 integrin targeting nanoparticles (InVivoPlex Aparna Bio Corp), suggested that treatment with beta-PIX siRNA nanoparticles in combination with Bev could improve survival compared with Bev- alone in tumour-bearing animals. To further develop this strategy, we have recently designed and characterized a proprietary novel biodegradable, RGD-targeting and cholesterol-stabilized polyplex system for siRNA delivery in GBM. This novel nanoparticle system supports efficient gene silencing, and demonstrates a low toxicity profile in vitro and in vivo. We are currently performing advanced pre-clinical efficacy studies employing a clinically relevant GBM rodent resection model (Sweeney et al., 2014), to determine if nanoparticle mediated beta-PIX gene silencing will improve survival outcomes when combined with Bevacizumb and delivered in the adjuvant setting.
Sunitinib is a tyrosine kinase inhibitor approved for the treatment of multiple solid tumors. However, cardiotoxicity is of increasing concern, with a need to develop rational mechanism driven approaches for the early detection of cardiac dysfunction. We sought to interrogate changes in cardiac energy substrate usage during sunitinib treatment, hypothesising that these changes could represent a strategy for the early detection of cardiotoxicity. Balb/CJ mice or Sprague-Dawley rats were treated orally for 4 weeks with 40 or 20 mg/kg/day sunitinib. Cardiac positron emission tomography (PET) was implemented to investigate alterations in myocardial glucose and oxidative metabolism. Following treatment, blood pressure increased, and left ventricular ejection fraction decreased. Cardiac [18F]-fluorodeoxyglucose (FDG)-PET revealed increased glucose uptake after 48 hours. [11C]Acetate-PET showed decreased myocardial perfusion following treatment. Electron microscopy revealed significant lipid accumulation in the myocardium. Proteomic analyses indicated that oxidative metabolism, fatty acid β-oxidation and mitochondrial dysfunction were among the top myocardial signalling pathways perturbed. Sunitinib treatment results in an increased reliance on glycolysis, increased myocardial lipid deposition and perturbed mitochondrial function, indicative of a fundamental energy crisis resulting in compromised myocardial energy metabolism and function. Our findings suggest that a cardiac PET strategy may represent a rational approach to non-invasively monitor metabolic pathway remodeling following sunitinib treatment.
response in Glioblastoma implementing novel MR and PET imaging biomarkers. 2 3 Philip J O’Halloran, Thomas Viel, David W Murray, Lydia Wachsmuth, Katrin 4 Schwegmann, Stefan Wagner, Klaus Kopka,, Monika A Jarzabek, Patrick Dicker, 5 Sven Hermann, Cornelius Faber, Tim Klasen, Michael Schäfers, David O’Brien, 6 Jochen HM Prehn, Andreas H Jacobs and Annette T. Byrne *** 7 8 Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland, 9 Dublin 2, Ireland, National Neurosurgical Department, Beaumont Hospital, Dublin 9, 10 Ireland, European Institute for Molecular Imaging (EIMI), Westfälische Wilhelms11 Universität (WWU) Münster, Germany, PARCC, INSERM U970, Université Paris 12 Descartes, Paris France, Department of Clinical Radiology, University Hospital Münster, 13 Germany, Department of Nuclear Medicine, Münster University Hospital, Münster, 14 Germany, Radiopharmaceutical Chemistry, German Cancer Research Centre (dkfz), 15 Heidelberg, Germany, Department of Epidemiology & Public Health, Royal College of 16 Surgeons, Dublin 2, Ireland, Interdisciplinary Centre of Clinical Research (IZKF), all at 17 the Westfälische Wilhelms-Universität (WWU) Münster, Germany, Department of 18
Abstract Background: Sunitinib is a multi-targeted agent approved for treatment of a number of cancers. However, since approval, data has continually emerged relating to toxicity profiles including hypertension, hand-foot syndrome and fatigue. Underlying mechanisms are unresolved. It has been hypothesised that the multi-parameter toxicity profile is related to ‘on-target’ kinase inhibition in ‘off-target’ tissues. Methods: To interrogate off-target effects, the Zeptosens Reverse Phase protein Array (RPA) platform was used to assess tissues obtained from mice treated with sunitinib (40 mg/kg) for 4 weeks. Additional tissue was collected for histological analyses and pathophysiologic changes assessed. Results: RPA data analyses on all organs collected (heart, kidney, liver, brain, intestine and skin) revealed the presence of differentially expressed proteins associated with damage and/or stress. Of note, Cyclin D1, MEK and phosphorylated-p21(CIP/WAF1) expression increased by 1.8-fold (p < 0.05), 2.2-fold (p < 0.1) and 1.7-fold (p < 0.1) respectively in the kidneys of sunitinib treated mice. These proteins are associated with kidney damage after chemotherapy, and induction of genes associated with renal immune response, inflammation and apoptosis. Mild proteinuria was observed in sunitinib treated animals, however no gross change in renal glomerular ultrastructure was visible via electron microscopy. Phosphorylated-FGFR1, cleaved Caspase-7, and phosphorylated-cMYC expression decreased by 0.45-fold (p < 0.05), 0.4-fold (p < 0.1) and 0.8-fold (p < 0.1) respectively in the skin of sunitinib treated mice. Down-regulation of these proteins has been associated with a perturbation of cutaneous wound healing (p-FGFR1/cleaved Caspase-7). Mice treated with high dose sunitinib (80 mg/kg) showed overt signs of skin toxicity. Histopathologic studies of the thyroid gland revealed decreased thyroid epithelial cell height (p < 0.05). Nevertheless, serum levels of triiodothyronine and thyroxine remained unchanged. An orthogonal validation study (Western blotting) is ongoing based on gene ontology, pathway analysis and observed fold changes in critical signalling pathway proteins involved in cellular stress. Conclusions: Implementation of a combined histopathologic/ RPA approach may provide a sensitive method to mechanistically elucidate the off-target toxicity sequelae associated with TKIs approved in the oncology setting. Work was supported by an EU funded Industry Academia Pathways and Partnerships Marie Curie Award (AngioTox) Grant Number 251528. RPAs were performed at Bayer Technology Services, Leverkusen, Germany. Citation Format: Alice C. O’Farrell, Adam Lafferty, Ian Miller, Rhys Evans, Maurice Cary, David Murray, Marina Alamanou, Girish Mallya Udupi, Liam Shiels, William M. Gallagher, Annette T. Byrne. Proteomic analysis of off-target toxicities following treatment with the tyrosine kinase inhibitor sunitinib. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 3010.
Abstract Background: Breast cancer is the leading cause of cancer in women, with 1.8 million patients diagnosed globally each year. In early stage disease, anthracycline regimens are commonly employed, but the risk of cardiotoxicity is high. Replacing anthracyclines with taxanes in combination with cyclophosphamide may improve response [1] and Bevacizumab (BVZ) may provide addtional benefit. However, as BVZ can cause hypertension and increased risk of cardiac failure, a rationale exists for studying biomarkers of cardiotoxicity in this setting. Methods: We assessed a panel of biomarkers in n = 57 early stage breast cancer patients whom underwent docetaxel/cyclophosphamide/BVZ therapy on the TC-Avastin Trial (NCT00911716). Serum was collected prior to treatment and at 3 months. Cardiotoxicity was defined as decline in left ventricular ejection fraction ≥ 10% to <55% over 1 year treatment + 2 year follow-up. Cardiac troponin I and T [cTnI, cTnT], Endothelin-1, Galectin-3, Placental Growth Factor [PlGF], Platelet Derived Growth Factor, Vascular Endothelial Growth Factor receptors 1 and 2, total nitrous oxide NO and myeloperoxidase [MPO]) were screened by ELISA in a subgroup (n = 16). Pilot and recently published findings [2] implicated PlGF, cTn1 and MPO, which were subsequently assessed in the larger cohort. Results: Changes in serum MPO or cTnI were not related to cardiotoxicity when analysed in the larger cohort. However, a “cut-off” PlGF fold change of 0.99 could differentiate patients who developed cardiotoxicity from those that did not. 74% of cardiotoxicity patients, compared to only 35% of non-cardiotoxicity fell below the 0.99 cut-off. Conversely, 65% of non-cardiotoxicity patients, compared to 25% of cardiotoxicity patients fell above the cut-off (p = 0.0042). Conclusions: Our data suggest that decreased PlGF at 3 months may predict cardiotoxicity. These observations require further validation. This work was funded by AngioTox, an EC FP7 IAPP Marie Curie Award (Grant Agreement 251528). [1]Jones et al., J. Clin. Oncol.27, 1177-1183 (2009); [2] Putt et al., Clin. Chem 61, 1164-1172 (2015). Citation Format: David W. Murray, Alice C. O’Farrell, Giuseppe Gullo, Ashwini Maratha, Patrick Dicker, Mairin Rafferty, Verena Murphy, Bonnie Ky, William M. Gallagher, Norma O’Donovan, John Crown, Annette T. Byrne. Analysis of putative serum biomarker candidates for cardiotoxicity prediction in a cohort of early stage breast cancer patients treated with docetaxel, cyclophosphamide, and bevacizumab. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 1828.
Resistance to bevacizumab (BEV) in glioblastoma is believed to occur via activation of molecular networks including the mTOR/PI3K pathway. Using an MR/PET molecular imaging biomarker approach, we investigated the response to combining BEV with the mTOR/PI3K inhibitor BEZ235.
Abstract Glioblastoma (GBM), a highly invasive primary brain tumour, remains an incurable disease (1). Angiogenesis, the formation of new blood vessels, is a defining feature of GBM (2). Targeting GBM angiogenesis with Bevacizumab (Bev) is associated with improved progression free survival, but may also significantly enhance local tumour invasion (3). RhoGTPases and their activators, guanine nucleotide exchange factors (GEFs), play central roles in the invasive process (4). Herein, we sought to identify and target GEFs of importance in meditating GBM invasion with a view to improving Bev response. We report a novel strategy by which GBM tumours invade and proliferate via overexpression of the GEF beta-PIX which was shown to be increased at the invasive edge in 74% of GBM tumours assessed (n = 19) compared with tumour core (5). We have further shown that siRNA-mediated knockdown of beta-PIX in GBM patient-derived xenograft cell cultures and cell lines resulted in decreased cell invasion in 3D, cell proliferation and survival assays in vitro. Furthermore, we have uncovered a role for beta-PIX expression in endothelial cell function, as knockdown of beta-PIX inhibits HUVEC cell migration in vitro. To interrogate in vivo effects, we established an imagable orthotopic model of invasive GBM in mice, by stereotactically implanting GBM cells stably overexpressing firefly luciferase (U87R-GFP-luc2). beta-PIX-(human and mouse) specific siRNA or scrambled control siRNA (2 × 10 μg i.c.) were delivered to tumours using an alphaVbeta3 integrin targeting-(RGD peptide conjugated)-nanoparticle (InVivoPlex Aparna Bio Corp, Rockville, MD). Animals were treated with- or without- Bev (6 × 10mg/kg i.p. over 12 days). Initial data has shown that animals treated with beta-PIX siRNA nanoparticles in combination with Bev had an improved median survival of 100 days compared with Bev- alone treated mice (median: 88 days). Our data may support the future clinical use of a beta-PIX-targeting nanoparticle therapeutic, to improve Bev outcomes in GBM. 1. Kohler BA et al J Natl Cancer Inst. 2011; 103, 714-736 2. Jain RK et al Nat Rev Neurosci. 2007; 8(8):610-22 3. Norden AD et al Neurology 2008; 70: 779-787 4. Murray D et al Brit J Can 2014; 110(5):1307-15 5. Hoelzinger DB et al Neoplasia 2005; 7(1): 7-16 Citation Format: David W. Murray, Philip O'Halloran, Monika Jarzabek, Brian MacCarthy, Jann N. Sarkaria, Raymond M. Schiffelers, Marc Symons, Annette T. Byrne. Pre-clinical assessment of a novel anti-invasion nanoparticle therapeutic in combination with bevacizumab for the treatment of glioblastoma. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 5093. doi:10.1158/1538-7445.AM2015-5093
BACKGROUND:Neuroepithelial transforming gene 1 (NET1) mediates tumour invasion and metastasis in a number of cancers, including gastric adenocarcinoma. It is an indicator of poor prognosis in breast cancer and glioma. This study examined NET1 expression and its prognostic significance in patients with adenocarcinoma of the oesophagogastric junction (AOG).METHODS:NET1 expression was measured by immunohistochemistry in a tissue microarray, constructed from biobanked tissue collected over a 10-year interval, and linked to a prospectively maintained clinical database.RESULTS:Using the Siewert classification for AOG, type I tumours expressed significantly higher levels of NET1, with lowest expression in type III and intermediate levels in type II (P = 0.001). In patients with AOG type III, NET1-positive patients were more likely to be female (P = 0.043), have advanced stage cancer (P = 0.035), had a higher number of transmural cancers (P = 0.006) and had a significantly higher median number of positive lymph nodes (P = 0.029). In this subgroup, NET1-positive patients had worse median overall (15 versus 23 months; P = 0·025) and disease-free (11 versus 36 per cent; P = 0.025) survival compared with NET1-negative patients.CONCLUSION:Although existing data show differences in clinical and prognostic indices across AOG subtypes, there are no studies showing differences in tumour biology. These data suggest NET1, a known mediator of an aggressive tumour phenotype in a number of gastrointestinal cancers, is expressed differentially across AOG subtypes and may be of prognostic significance in the clinical management of this condition.
Glioblastoma is the most malignant and lethal form of astrocytoma, with patients having a median survival time of approximately 15 months with current therapeutic modalities. It is therefore important to identify novel therapeutics. There is mounting evidence that microglia (specialized brain-resident macrophages) play a significant role in the development and progression of glioblastoma tumors. In this paper we show that microglia, in addition to stimulating glioblastoma cell invasion, also promote glioblastoma cell proliferation and resistance to ionizing radiation in vitro. We found that semapimod, a drug that selectively interferes with the function of macrophages and microglia, potently inhibits microglia-stimulated GL261 invasion, without affecting serum-stimulated glioblastoma cell invasion. Semapimod also inhibits microglia-stimulated resistance of glioblastoma cells to radiation, but has no significant effect on microglia-stimulated glioblastoma cell proliferation. We also found that intracranially administered semapimod strongly increases the survival of GL261 tumor-bearing animals in combination with radiation, but has no significant benefit in the absence of radiation. In conclusion, our observations indicate that semapimod sensitizes glioblastoma tumors to ionizing radiation by targeting microglia and/or infiltrating macrophages.
Abstract Glioblastoma multiforme (GBM) is the most common and lethal primary malignant brain tumor. It is an incurable disease with an average life expectancy of just 14 months following diagnosis. GBM morbidity is primarily due to its rapid growth, neovascularization and invasion throughout the brain. The angiogenesis inhibitor, bevacizumab, now approved for GBM treatment, has been shown to cause enhanced tumor cell invasion in part via c-MET (HGF-receptor) signaling. We have previously shown that several members of the Rho family of small GTPases, including Rac1, Rac3, RhoG and Cdc42, play central roles in GBM tumor cell invasion. Rho GTPases are activated by guanine nucleotide exchange factors (Rho GEFs). Herein we focus on identifying GEFs that act on Rac subfamily members and which are of functional importance in GBM. We found that Dock7 and Ect2, two GEFs that can activate Rac proteins, show elevated mRNA and protein expression in human GBM tissue in comparison with non-neoplastic brain. RNAi-mediated depletion of these GEFs in GBM cell lines resulted in decreased HGF- and serum-induced tumor cell invasion in 3-dimensional extracellular matrix in vitro and organotypic ex vivo brain slice invasion assays. GEF activity of Dock7 and Ect2 were shown to be increased by HGF using a pull-down with Rac1G15A, a nucleotide binding-deficient mutant of Rac1. Furthermore, Dock7 and Ect2 were shown to be required for HGF-induced Rac1 activation, lamellipodia formation and cell spreading. Dock7, but not Ect2, was shown to co-immunoprecipitate with c-MET and this interaction was HGF-dependent and required the c-MET adaptor protein GAB1. Dock7 and GAB1 were furthermore shown to co-immunoprecipitate in an HGF-dependent manner. GAB1 was shown to be required for HGF-induced Dock7 and Ect2 Rac1 GEF activities, Rac1 activation and HGF-induced GBM cell invasion. In summary, we have identified two GEFs that are of functional and clinical relevance in the development of the GBM pathologic phenotype. Dock7 and Ect 2 represent potential new drug targets for the management of GBM, especially in combination with an anti-angiogenic approach. Citation Format: David W. Murray, Sebastien Didier, Vincent M. Paulino, Amanda Chan, Nhan L. Tran, Annette T. Byrne, Marc H. Symons. Guanine nucleotide exchange factors Dock7 and Ect2 mediate HGF/c-MET-induced glioblastoma cell invasion. [abstract]. In: Proceedings of the 104th Annual Meeting of the American Association for Cancer Research; 2013 Apr 6-10; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2013;73(8 Suppl):Abstract nr LB-40. doi:10.1158/1538-7445.AM2013-LB-40
HIV infection is associated with metabolic bone disease resulting in bone demineralization and reduced bone mass. The molecular mechanisms driving this disease process have yet to be elucidated. Wnt/beta-catenin signaling plays a key role in bone development and remodeling. We attempted to determine the effects of the HIV-1 protein, gp120, on Wnt/beta-catenin signaling at an intracellular and transcriptional level in primary human osteoblasts (HOBs). This work, inclusive of experimental controls, was part of a greater project assessing the effects of a variety of different agents on Wnt/beta-catenin signaling (BMC Musculoskelet Disord 2010;11:210). We examined the phenotypic effects of silencing and overexpressing the Wnt antagonist, Dickkopf-1 (Dkk1) in HOBs treated with gp120. HOBs exposed to gp120 displayed a significant reduction in alkaline phosphatase activity (ALP) activity and cell proliferation and increased cellular apoptosis over a 48 h time course. Immunocytochemistry demonstrated a significant reduction in intracytosolic and intranuclear beta-catenin in response to HIV-1 protein exposure. These changes were associated with a reduction of TCF/LEF-mediated transcription, the transcriptional outcome of canonical Wnt beta-catenin signaling. Silencing Dkk1 expression in HOBs exposed to gp120 resulted in increased ALP activity and cell proliferation, and decreased cellular apoptosis relative to scrambled control. Dkk1 overexpression exacerbated the inhibitory effect of gp120 on HOB function, with decreases in ALP activity and cell proliferation and increased cellular apoptosis relative to vector control. Wnt/beta b-catenin signaling plays a key regulatory role in HIV-associated bone loss, with Dkk1, aputative central mediator in this degenerative process. (C) 2012 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 31:218-226, 2013
Abstract Glioblastoma multiforme (GBM) is the most malignant and lethal form of astrocytoma. GBM patients have a median survival time of approximately one year and therefore it is essential to identify novel targets and effective therapies. There is mounting evidence that microglia (specialized brain-resident macrophages) play a significant role in the development and progression of GBM tumors. We have established a microglia-glioma cell co-culture system consisting of normal microglia from C57Bl/6J mice and syngeneic GL261 glioma cells. We have demonstrated that microglia strongly stimulate the invasive behavior of GL261 cells in this system. Our preliminary data also indicate that the microglia significantly stimulate GL261 cell proliferation and resistance to ionizing radiation (IR) in these conditions. In a search for small molecule inhibitors that block the stimulatory effects of microglia on glioma cells, we have examined CNI-1493, a drug that is known to selectively interfere with macrophage function. We found that CNI-1493 potently inhibits microglia-stimulated GL261 invasion. We also examined the effect of intracranially administered CNI-1493 on orthotopic GL261 tumors in the presence or absence of fractionated whole brain irradiation (10 Gy total). We found that although CNI-1493 only has a marginal benefit in the absence of IR, it strongly stimulates animal survival in combination with IR: whereas IR treatment increases survival by 10 days, IR in combination with CNI-1493 treatment extends survival beyond 40 days. In conclusion, our observations support the notion that pharmacological targeting of microglia may be beneficial as adjuvant therapy in conjunction with ionizing radiation. Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 103rd Annual Meeting of the American Association for Cancer Research; 2012 Mar 31-Apr 4; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2012;72(8 Suppl):Abstract nr LB-503. doi:1538-7445.AM2012-LB-503
cells x intensity of the stain).Then, we compared the stains of the surgical specimen to the stains of endoscopic biopsies by both qualitative tests (paired Wilcoxon) and categorical tests (true negative if the stain was negative in both stains, false negative if one of the stains was positive and the other negative).Results: 74 patients were included, of whom 56 (75.7%) had positive Bethesda criteria.11 tumors (14.9%) were located in the rectum and all were treated with neoadjuvant chemoradiation.15 (20.2%) cases show no expression of one or more MMR proteins.Six patients had loss of MLH1 and PMS2 expression, 6 patients had loss of MSH2 and MSH6 expression, two patients had loss of MSH6 expression and one patient had loss of PMS2 expression.Compared to the biopsies obtained during colonoscopy, the mean score was significantly lower in surgical specimens for MLH1, MSH2, MSH6 and PMS2 in both the colon and the rectum (P<0.05 for all).The mean decrease was significantly greater among the rectal cancer cases for MLH1, MSH2, MSH6 (P<0.05).Surgical resection specimens from 3 patients (4.1%) with colon cancer and from 3 patients with rectal cancer (27%) demonstrated loss of expression of one or more MMR proteins (false negative).In all these cases, immunoexpression of MMR proteins was demonstrated on endoscopic biopsies.Conclusions: IHC stains from biopsies obtained during colonoscopy appear to be superior to stains performed on surgical specimens.Care should be taken when interpreting IHC stains after chemoradiation as there is a significant drop in the quality of the stains.
Abstract Glioblastoma multiforme (GBM), the most common and deadly adult brain malignancy, is an incurable disease with an average life expectancy of 14 months following diagnosis. GBM morbidity is primarily due to its rapid growth, neovascularization and invasion throughout the brain. Recently, anti-VEGF therapies approved in this indication have paradoxically been shown to stimulate the invasive behavior of GBM. Members of the Rho family of small GTPases have been established as important mediators of GBM cell invasion. These proteins are activated by guanine nucleotide exchange factors (GEFs). In the current study, we sought to identify GEFs that are up-regulated in high-grade glioma and which may be of functional importance in human GBM. In this study we have shown that that Dock7, a GEF that can mediate signaling of Rac1 and Cdc42 Rho GTPases is up-regulated in human GBM tissue in comparison with normal brain. We have further demonstrated that Dock7 silencing by RNA-interference inhibits invasion of U87 and SNB19 GBM cells into ex vivo brain slices. Dock7 silencing inhibits Hepatocyte Growth Factor (HGF)-induced cell invasion in a 3D in vitro assay. HGF is known to strongly stimulate GBM cell invasiveness and both HGF and its receptor c-MET have been shown to be up-regulated in high- versus low-grade gliomas. Interestingly, we have also shown that Dock7 binds to c-MET in an HGF-dependent manner and that this interaction requires the GAB1 adaptor protein. Dock7 silencing reduced HGF-induced activation of Rac1 and consistent with this, we have shown that Dock7 silencing results in the inhibition of HGF-induced lamellipodia formation in GBM cells. Finally Dock7 was shown to be activated in an HGF-dependant manner, using Rac1-G15A pull-down assay. In summary, our data suggests a role for Dock7 in GBM cell invasion thus, Dock7 may present a potential therapeutic target in the management of invasive GBM, in particular in the adjuvant setting in combination with anti-VEGF therapies. Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 103rd Annual Meeting of the American Association for Cancer Research; 2012 Mar 31-Apr 4; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2012;72(8 Suppl):Abstract nr LB-515. doi:1538-7445.AM2012-LB-515
Background NET1, a RhoA guanine exchange factor, is up-regulated in gastric cancer (GC) tissue and drives the invasive phenotype of this disease. In this study, we aimed to determine the role of NET1 in GC by monitoring the proliferation, motility and invasion of GC cells in which NET1 has been stably knocked down. Additionally, we aimed to determine NET1-dependent transcriptomic events that occur in GC. Methods An in vitro model of stable knockdown of NET1 was achieved in AGS human gastric adenocarcinoma cells via lentiviral mediated transduction of short-hairpin (sh) RNA targeting NET1. Knockdown was assessed using quantitative PCR. Cell proliferation was assessed using an MTS assay and cell migration was assessed using a wound healing scratch assay. Cell invasion was assessed using a transwell matrigel invasion assay. Gene expression profiles were examined using affymetrix oligonucleotide U133A expression arrays. A student's t test was used to determine changes of statistical significance. Results GC cells were transduced with NET1 shRNA resulting in a 97% reduction in NET1 mRNA (p < 0.0001). NET1 knockdown significantly reduced the invasion and migration of GC cells by 94% (p < 0.05) and 24% (p < 0.001) respectively, while cell proliferation was not significantly altered following NET1 knockdown. Microarray analysis was performed on non-target and knockdown cell lines, treated with and without 10 μM lysophosphatidic acid (LPA) allowing us to identify NET1-dependent, LPA-dependent and NET1-mediated LPA-induced gene transcription. Differential gene expression was confirmed by quantitative PCR. Shortlisted NET1-dependent genes included STAT1, TSPAN1, TGFBi and CCL5 all of which were downregulatd upon NET1 downregulation. Shortlisted LPA-dependent genes included EGFR and PPARD where EGFR was upregulated and PPARD was downregulated upon LPA stimulation. Shortlisted NET1 and LPA dependent genes included IGFR1 and PIP5K3. These LPA induced genes were downregulated in NET1 knockdown cells. Conclusions NET1 plays an important role in GC cell migration and invasion, key aspects of GC progression. Furthermore, the gene expression profile further elucidates the molecular mechanisms underpinning NET1-mediated aggressive GC cell behaviour.
MicroRNAs (miRNAs) are small, single-stranded RNA molecules encoded by genes that are transcribed from DNA but not translated into protein (noncoding RNA). The ability of miRNA to regulate the expression of, as yet, an unknown quantity of targets has recently become an area of huge interest to researchers studying many different areas in many species. Identifying miRNA targets provides functional insights and strategies for therapy. Furthermore, the recent advent of high-throughput methods for profiling miRNA expression and for the identification of miRNA targets has ushered in a new era in the research of gene regulation. miRNA profiling further adds a new dimension of information for the molecular profiling of disease. Summarized herein are the methods used to query the expression of miRNAs at both an individual and global level. We have also described modern computational approaches to identifying miRNA target transcripts.
The Wnt/beta-catenin pathway is a major signaling cascade in bone biology, playing a key role in regulating bone development and remodeling, with aberrations in signaling resulting in disturbances in bone mass. The objectives of our study were to correlate serum Dkk1 expression with bone mineral density (BMD) and assess the potential role of Dkk1 as a serological marker of bone mass. Serum was collected from a cohort of patients (n = 36), 18 patients with a reduced BMD and 18 control patients. Serum Dkk1 expression as quantified by ELISA was correlated with lumbar and femoral t- and z-scores. Serum Dkk1 concentration in the osteoporosis group was significantly higher than control group (941 +/- 116 vs. 558 +/- 47 pg/ml, p < 0.01). Serum Dkk1 expression was highly correlated with bone mass variables with inverse associations found between serum Dkk1 expression and lumbar t-score (r = -0.34, p = 0.00433), lumbar z-score (r = -0.22, p = 0.1907), femur t-score (r = -0.42, p = 0.0101), and femur z-score (r = -0.43, p = 0.0089). Our data further emphasizes the pivotal role played by Wnt/beta-catenin signaling in bone mass regulation. Dkk1, a powerful antagonist of canonical Wnt signaling, may have a role to play as a serological marker for disorders of bone mass, warranting further evaluation. (C) 2010 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 29:414-418, 2011