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| 1 | Techniques for Providing QoS in Mobile Cellular Networks Based on CAC and Resource Reservation at the Origin and Destination显示文摘 | Solange S Guedes L G R Roberto G P | 2006 | IEEE Transactions on Latin America2006,4,5: | 1 |
| 2 | Imaging findings of Ewing's sarcoma in the mandible显示文摘 | Sergio L PC Lopes Solange M | 2007 | J Oral Sci2007,49,: | 1 |
| 3 | Time-related changes involatile compounds of lean tissue of French dry-cured ham显示文摘 | Solange B Berdagure J L Monin G | 1993 | Joumal of the Science of Food Agriculture1993,63,: | 1 |
| 4 | Time-related changes in volatile compounds of lean tissue during processing of French dry-cured ham显示文摘 | SOLANGE B BERDAGUE J L MONIN G | 1993 | J Sci Food Agric1993,63,: | 1 |
| 5 | Sulforaphane, a natural occurring isothiocyanate, induces cell cycle arrest and apoptosis in HT 29 human colon cancer cells显示文摘 | Laurence G Pengfei L Solange L | 2000 | Cancer Research2000,60,5: | 1 |
| 6 | Delineation of Inundated Area and Vegetation Along the Amazon Floodplain with the SIR-C Synthetic Aperture Radar 显示文摘 | Laura L Hess John M Melack Solange Filoso | 1995 | Transactions on Geosicence and Remote Sense1995,33,4: | 1 |
| 7 | Sulforaphane ,a natural occurring isothiocyanate,induces cell cycle arrest and apoptosis in HT29 human colon cancer cells显示文摘 | LAURENCE G PENGFEI L SOLANGE L | 2000 | Cancer Research2000,60,5: | 1 |
| 8 | Propolis:recent advances in chemistry and plant origin显示文摘 | Vassya S Bankova Solange L | 2000 | Apidologie2000,31,: | 1 |
| 9 | MancilhaNon- digestible oligosaeeharides : A review 显示文摘 | Solange L Mussatto Ismael M | 2007 | Carbohydrate Polymers2007,68,: | 1 |
| 10 | COVID-19 compared to other epidemic coronavirus diseases and theflu显示文摘Coronaviruses are among the largest group of known positive-sense RNA viruses with a wide range of animal hosts as reservoir. In the last two decades,newly evolved coronaviruses such as the severe acute respiratory syndrome coronavirus(SARS-CoV) which caused the infamous 2002 outbreak, the Middle East respiratory syndrome coronavirus(MERS-CoV) which caused an outbreak in 2012, and now the SARS-CoV-2 [responsible for the current coronavirus disease 2019(COVID-19)] have all posed notable threats to global public health.But, how does the current COVID-19 outbreak compare with previous coronaviruses diseases? In this review, we look at the key differences between SARS-CoV, MERS-CoV, and SARS-CoV-2, and examine challenges in determining accurate estimates of the severity of COVID-19. We discuss coronavirus outbreaks in light of key outbreak severity indicators including,disease fatality, pathogen novelty, ease of transmission, geographical range, and outbreak preparedness. Finally, we review clinical trials of emerging treatment modalities and provide recommendations on the control of COVID-19 based on the mode of transmission of the coronaviruses. We also recommend the development and use of a standardized predictive epidemic severity models to inform future epidemic response. | James A Ayukekbong Michel L Ntemgwa Solange A Ayukekbong Eta E Ashu Terence A Agbor | 2020 | World Journal of Clinical Infectious Diseases2020,10,1: | 1 |
| 11 | Time-related changes in volatile compounds of lean tissue during processing of French dry-cured ham显示文摘 | Solange Buscailhon Berdagué J L Monin G | 1993 | J Science Food Agric1993,63,: | 1 |
| 12 | AB030. Characterization of the interactions between hepatic stellate cells and tumor cells during uveal melanoma metastatic progression显示文摘Background:Uveal melanoma(UM)is the most common primary eye tumor in adults,and the most frequent site of malignant transformation of the melanocytes after the skin.It spreads to the liver in half of the cases,and the death rate following the report of metastasis is 92%at 2 years.Hepatic tropism of UM cannot simply be explained by the blood circulatory system organization,and illustrates the“seed and soil”hypothesis that describes an interaction between tumor cells(seed)and a specific microenvironment(soil).We decided to focus our study on the synergic interaction between UM cells and hepatic stellate cells(HSC),whose role has been previously described in the metastatic progression of colon and pancreatic cancers.Furthermore,HSC have been found surrounding UM liver metastasis,and the UM secretome contains activating cytokines of hepatic stromal cells.Our hypothesis is that HSC provide a specific microenvironment in the liver enhancing the growth of UM cells and increasing their therapeutic resistance.Using an in vitro 3D model and an original xenograft mouse model,we aim to decipher the mechanisms of UM metastatic progression,in order to elaborate new therapeutic strategies.Methods:First,using an agar coating,spheroids were generated with UM cells and were allowed to grow for 72 h.These tumor spheroids were then embedded in Matrigel and the HSC conditioned medium was used to evaluate the impact of the HSC secretome on UM invasion.Next,an original in vivo xenograft mouse model was generated,in which metastatic UM cells were injected alone or with human HSC in the spleen of immunodeficient mice.This model allows us to evaluate in 3-6 weeks the metastatic potential of each cell population,and thus to determine the cooperation between HSC and UM cells in the liver.Results:The HSC conditioned medium increased the invasion of UM spheroids compared to non-conditioned medium in our in vitro model.In addition,UM cells inoculated in the mouse spleen alone or with human HSC were able to metastasize to the liver,and the host HSC were also recruited by UM metastases.Conclusions:Our preliminary results strongly suggest that the secretome of HSC provides a permissive microenvironment for UM metastatic progression.We now have to confirm these results by characterizing the secretome of HSC,in order to identify cytokines or growth factors that increase the invasion of the liver by UM.Our models can be used to test the efficacy of new therapeutic strategies targeting the UM microenvironment. | Léo Piquet William Pelletier Peter Gerges Julie Bérubé Solange Landreville | 2018 | Annals of Eye Science2018,,1: | 0 |