Matches in SemOpenAlex for { <https://semopenalex.org/work/W2013217832> ?p ?o ?g. }
- W2013217832 endingPage "312" @default.
- W2013217832 startingPage "308" @default.
- W2013217832 abstract "There is growing evidence suggesting that cross talk between mantle cell lymphoma (MCL) cells and stromal cells in tissue microenvironments, such as the bone marrow and secondary lymphoid organs, causes disease progression by promoting lymphoma cell survival, growth, and drug resistance. Conceivably, while conventional treatment eliminates the bulk of MCL cells, residual lymphoma cells may lurk in protective tissue niches, where they receive signals from accessory cells that promote survival and drug-resistance, thereby paving the way for residual disease and relapses. Based on this concept, the lymphoma microenvironment has become a growing area of current research, and initial clinical trials targeting cross talk between MCL cells and their microenvironment are showing promising early results. In this review, we summarize key cellular and molecular interactions between MCL cells and their microenvironment, and update new clinical developments in this area." @default.
- W2013217832 created "2016-06-24" @default.
- W2013217832 creator A5058755419 @default.
- W2013217832 creator A5085678821 @default.
- W2013217832 date "2011-11-01" @default.
- W2013217832 modified "2023-10-16" @default.
- W2013217832 title "The microenvironment in mantle cell lymphoma: Cellular and molecular pathways and emerging targeted therapies" @default.
- W2013217832 cites W115619992 @default.
- W2013217832 cites W148711857 @default.
- W2013217832 cites W1528751727 @default.
- W2013217832 cites W1531083786 @default.
- W2013217832 cites W1580240122 @default.
- W2013217832 cites W1844343538 @default.
- W2013217832 cites W1908293564 @default.
- W2013217832 cites W1964899672 @default.
- W2013217832 cites W1969267175 @default.
- W2013217832 cites W1974788142 @default.
- W2013217832 cites W1976402300 @default.
- W2013217832 cites W1976767301 @default.
- W2013217832 cites W1977070131 @default.
- W2013217832 cites W1981371253 @default.
- W2013217832 cites W1993476359 @default.
- W2013217832 cites W1993986769 @default.
- W2013217832 cites W2004043922 @default.
- W2013217832 cites W2006396189 @default.
- W2013217832 cites W2006411367 @default.
- W2013217832 cites W2011102246 @default.
- W2013217832 cites W2019206924 @default.
- W2013217832 cites W2023841575 @default.
- W2013217832 cites W2027971058 @default.
- W2013217832 cites W2036242721 @default.
- W2013217832 cites W2038322120 @default.
- W2013217832 cites W2047994380 @default.
- W2013217832 cites W2051449283 @default.
- W2013217832 cites W2080860848 @default.
- W2013217832 cites W2082216180 @default.
- W2013217832 cites W2084749640 @default.
- W2013217832 cites W2085257327 @default.
- W2013217832 cites W2085875957 @default.
- W2013217832 cites W2088201430 @default.
- W2013217832 cites W2091961397 @default.
- W2013217832 cites W2094999215 @default.
- W2013217832 cites W2096286042 @default.
- W2013217832 cites W2099675490 @default.
- W2013217832 cites W2100265671 @default.
- W2013217832 cites W2116090592 @default.
- W2013217832 cites W2122737399 @default.
- W2013217832 cites W2122874647 @default.
- W2013217832 cites W2123172008 @default.
- W2013217832 cites W2132598458 @default.
- W2013217832 cites W2141642011 @default.
- W2013217832 cites W2143758178 @default.
- W2013217832 cites W2143790526 @default.
- W2013217832 cites W2149888039 @default.
- W2013217832 cites W2154992334 @default.
- W2013217832 cites W2163690533 @default.
- W2013217832 cites W2166618513 @default.
- W2013217832 cites W2167484525 @default.
- W2013217832 cites W2167979360 @default.
- W2013217832 cites W2170716753 @default.
- W2013217832 cites W2270059422 @default.
- W2013217832 cites W2318213861 @default.
- W2013217832 cites W2530008332 @default.
- W2013217832 cites W2576627190 @default.
- W2013217832 cites W2584629017 @default.
- W2013217832 cites W72880836 @default.
- W2013217832 doi "https://doi.org/10.1016/j.semcancer.2011.09.006" @default.
- W2013217832 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21945516" @default.
- W2013217832 hasPublicationYear "2011" @default.
- W2013217832 type Work @default.
- W2013217832 sameAs 2013217832 @default.
- W2013217832 citedByCount "54" @default.
- W2013217832 countsByYear W20132178322012 @default.
- W2013217832 countsByYear W20132178322013 @default.
- W2013217832 countsByYear W20132178322014 @default.
- W2013217832 countsByYear W20132178322015 @default.
- W2013217832 countsByYear W20132178322016 @default.
- W2013217832 countsByYear W20132178322017 @default.
- W2013217832 countsByYear W20132178322018 @default.
- W2013217832 countsByYear W20132178322019 @default.
- W2013217832 countsByYear W20132178322020 @default.
- W2013217832 countsByYear W20132178322021 @default.
- W2013217832 countsByYear W20132178322022 @default.
- W2013217832 countsByYear W20132178322023 @default.
- W2013217832 crossrefType "journal-article" @default.
- W2013217832 hasAuthorship W2013217832A5058755419 @default.
- W2013217832 hasAuthorship W2013217832A5085678821 @default.
- W2013217832 hasConcept C16930146 @default.
- W2013217832 hasConcept C203014093 @default.
- W2013217832 hasConcept C2776107976 @default.
- W2013217832 hasConcept C2777525834 @default.
- W2013217832 hasConcept C2779338263 @default.
- W2013217832 hasConcept C2780007613 @default.
- W2013217832 hasConcept C3020616263 @default.
- W2013217832 hasConcept C502942594 @default.
- W2013217832 hasConcept C71924100 @default.
- W2013217832 hasConcept C86803240 @default.
- W2013217832 hasConceptScore W2013217832C16930146 @default.