Serveur d'exploration sur le lymphœdème

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The lymphatic vasculature in disease.

Identifieur interne : 002401 ( PubMed/Curation ); précédent : 002400; suivant : 002402

The lymphatic vasculature in disease.

Auteurs : Kari Alitalo [Finlande]

Source :

RBID : pubmed:22064427

Descripteurs français

English descriptors

Abstract

Blood vessels form a closed circulatory system, whereas lymphatic vessels form a one-way conduit for tissue fluid and leukocytes. In most vertebrates, the main function of lymphatic vessels is to collect excess protein-rich fluid that has extravasated from blood vessels and transport it back into the blood circulation. Lymphatic vessels have an important immune surveillance function, as they import various antigens and activated antigen-presenting cells into the lymph nodes and export immune effector cells and humoral response factors into the blood circulation. Defects in lymphatic function can lead to lymph accumulation in tissues, dampened immune responses, connective tissue and fat accumulation, and tissue swelling known as lymphedema. This review highlights the most recent developments in lymphatic biology and how the lymphatic system contributes to the pathogenesis of various diseases involving immune and inflammatory responses and its role in disseminating tumor cells.

DOI: 10.1038/nm.2545
PubMed: 22064427

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pubmed:22064427

Le document en format XML

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<div type="abstract" xml:lang="en">Blood vessels form a closed circulatory system, whereas lymphatic vessels form a one-way conduit for tissue fluid and leukocytes. In most vertebrates, the main function of lymphatic vessels is to collect excess protein-rich fluid that has extravasated from blood vessels and transport it back into the blood circulation. Lymphatic vessels have an important immune surveillance function, as they import various antigens and activated antigen-presenting cells into the lymph nodes and export immune effector cells and humoral response factors into the blood circulation. Defects in lymphatic function can lead to lymph accumulation in tissues, dampened immune responses, connective tissue and fat accumulation, and tissue swelling known as lymphedema. This review highlights the most recent developments in lymphatic biology and how the lymphatic system contributes to the pathogenesis of various diseases involving immune and inflammatory responses and its role in disseminating tumor cells.</div>
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<CommentsCorrectionsList>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2011 Aug 18;118(7):1989-97</RefSource>
<PMID Version="1">21700774</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Cell. 2010 Aug 9;18(2):171-84</RefSource>
<PMID Version="1">20708158</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2010 May 13;115(19):3997-4005</RefSource>
<PMID Version="1">20110424</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2010 Nov 24;33(5):817-29</RefSource>
<PMID Version="1">21093315</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Clin Oncol. 2008 Nov 10;26(32):5213-9</RefSource>
<PMID Version="1">18838709</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Ann Surg Oncol. 2012 Feb;19(2):642-51</RefSource>
<PMID Version="1">21863361</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2011 Jul 28;118(4):1154-62</RefSource>
<PMID Version="1">21566091</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circ Res. 2010 Jun 25;106(12):1839-48</RefSource>
<PMID Version="1">20431062</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Ann N Y Acad Sci. 2008;1131:82-8</RefSource>
<PMID Version="1">18519961</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Int J Cancer. 2011 Jun 1;128(11):2511-26</RefSource>
<PMID Version="1">21365648</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Science. 2011 Mar 25;331(6024):1559-64</RefSource>
<PMID Version="1">21436443</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Trends Endocrinol Metab. 2010 Aug;21(8):480-7</RefSource>
<PMID Version="1">20541951</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Lymphat Res Biol. 2006;4(3):143-52</RefSource>
<PMID Version="1">17034294</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nature. 2010 Oct 28;467(7319):1109-13</RefSource>
<PMID Version="1">20981101</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Cell Biol. 2011 Sep 11;13(10):1202-13</RefSource>
<PMID Version="1">21909098</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Immunol. 2009 May 1;182(9):5439-45</RefSource>
<PMID Version="1">19380791</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Med. 2009 Oct;15(10):1219-23</RefSource>
<PMID Version="1">19749772</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Am Coll Cardiol. 2009 Dec 1;54(23):2129-38</RefSource>
<PMID Version="1">19942084</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circ Res. 2010 Mar 19;106(5):920-31</RefSource>
<PMID Version="1">20133901</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circ Res. 2009 Jun 5;104(11):1302-12</RefSource>
<PMID Version="1">19443835</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2009 Jan 16;206(1):233-48</RefSource>
<PMID Version="1">19139167</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Curr Opin Gastroenterol. 2011 Jul;27(4):335-41</RefSource>
<PMID Version="1">21543977</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Genes Dev. 2010 Apr 1;24(7):696-707</RefSource>
<PMID Version="1">20360386</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Transplantation. 2011 Jul 15;92 (1):25-30</RefSource>
<PMID Version="1">21508896</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circ Res. 2011 Aug 19;109(5):486-91</RefSource>
<PMID Version="1">21778431</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2009 May 28;113(22):5650-9</RefSource>
<PMID Version="1">19346498</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Rev Immunol. 2010 Sep;10(9):664-74</RefSource>
<PMID Version="1">20706277</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2011 Jan 28;34(1):96-107</RefSource>
<PMID Version="1">21256057</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Nucl Med. 2009 Mar;50(3):364-7</RefSource>
<PMID Version="1">19223404</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Int J Cancer. 2010 Feb 1;126(3):589-98</RefSource>
<PMID Version="1">19795462</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Immunol. 2009 Aug 1;183(3):1767-79</RefSource>
<PMID Version="1">19587009</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Genet. 2005 Oct;37(10):1072-81</RefSource>
<PMID Version="1">16170315</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circulation. 2011 Mar 29;123(12):1335-51</RefSource>
<PMID Version="1">21444892</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Sci Transl Med. 2011 Feb 9;3(69):69ra11</RefSource>
<PMID Version="1">21307301</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nature. 2008 May 1;453(7191):51-5</RefSource>
<PMID Version="1">18451854</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Mol Cancer Ther. 2010 Jan;9(1):145-56</RefSource>
<PMID Version="1">20053776</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Eur J Immunol. 2009 Dec;39(12):3477-87</RefSource>
<PMID Version="1">19830743</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Res. 2006 Mar 1;66(5):2650-7</RefSource>
<PMID Version="1">16510584</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Genet. 2004 Jul;36(7):687-93</RefSource>
<PMID Version="1">15220918</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2010 Jan 18;207(1):17-27</RefSource>
<PMID Version="1">20026661</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Res. 2010 Sep 15;70(18):7053-62</RefSource>
<PMID Version="1">20823159</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nature. 2008 Jul 31;454(7204):656-60</RefSource>
<PMID Version="1">18594512</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Eur Respir Rev. 2011 Mar;20(119):34-44</RefSource>
<PMID Version="1">21357890</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Ann Surg. 2006 Mar;243(3):313-5</RefSource>
<PMID Version="1">16495693</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Res. 2010 Dec 15;70(24):10411-21</RefSource>
<PMID Version="1">21056990</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Proc Natl Acad Sci U S A. 2001 Oct 23;98(22):12677-82</RefSource>
<PMID Version="1">11592985</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Cell Biol. 2009 May 4;185(3):439-57</RefSource>
<PMID Version="1">19398761</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Med. 2006 Feb;12(2):230-4</RefSource>
<PMID Version="1">16415878</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2010 Sep 23;116(12):2173-82</RefSource>
<PMID Version="1">20566898</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Med. 2009 May;15(5):545-52</RefSource>
<PMID Version="1">19412173</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circulation. 2007 Apr 10;115(14 ):1912-20</RefSource>
<PMID Version="1">17372167</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2011 Apr 28;117(17):4667-78</RefSource>
<PMID Version="1">21364190</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Ann Surg. 2012 Mar;255(3):468-73</RefSource>
<PMID Version="1">22233832</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Genet. 2011 Sep 04;43(10):929-31</RefSource>
<PMID Version="1">21892158</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Proc Natl Acad Sci U S A. 2010 Feb 2;107(5):1906-11</RefSource>
<PMID Version="1">20080685</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circulation. 2010 Mar 30;121(12):1413-22</RefSource>
<PMID Version="1">20231530</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2011 Sep 26;208(10):2141-53</RefSource>
<PMID Version="1">21930767</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2009 Feb 20;30(2):264-76</RefSource>
<PMID Version="1">19185517</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cell. 1999 Sep 17;98(6):769-78</RefSource>
<PMID Version="1">10499794</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Clin Oncol. 2004 Jan 1;22(1):97-101</RefSource>
<PMID Version="1">14701770</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Dev Cell. 2010 Jul 20;19(1):13-26</RefSource>
<PMID Version="1">20643347</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Clin Invest. 2005 Feb;115(2):247-57</RefSource>
<PMID Version="1">15668734</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2010 May 28;32(5):703-13</RefSource>
<PMID Version="1">20471289</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Curr Opin Biotechnol. 2009 Feb;20(1):74-82</RefSource>
<PMID Version="1">19233639</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Med. 2009 Sep;15(9):1023-30</RefSource>
<PMID Version="1">19668192</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Am J Pathol. 2010 Mar;176(3):1122-9</RefSource>
<PMID Version="1">20110415</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Hum Pathol. 2005 Apr;36(4):330-40</RefSource>
<PMID Version="1">15891993</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Am J Pathol. 2009 Sep;175(3):1328-37</RefSource>
<PMID Version="1">19679879</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Dev Cell. 2009 Feb;16(2):209-21</RefSource>
<PMID Version="1">19217423</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>FASEB J. 2002 Dec;16(14):1985-7</RefSource>
<PMID Version="1">12397087</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Dev Biol. 2011 Jun 15;354(2):253-66</RefSource>
<PMID Version="1">21515254</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cell Stem Cell. 2009 Mar 6;4(3):263-74</RefSource>
<PMID Version="1">19265665</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Rev Mol Cell Biol. 2009 Mar;10(3):165-77</RefSource>
<PMID Version="1">19234476</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2010 Jan 28;115(4):887-95</RefSource>
<PMID Version="1">19965636</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Int Immunol. 2010 Oct;22(10):839-49</RefSource>
<PMID Version="1">20739459</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Med. 2007 Dec;13(12):1458-66</RefSource>
<PMID Version="1">18059280</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Development. 2009 Jan;136(1):29-34</RefSource>
<PMID Version="1">19060331</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Res. 2010 Nov 1;70(21):8842-51</RefSource>
<PMID Version="1">20978206</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Res. 2010 Mar 15;70(6):2213-23</RefSource>
<PMID Version="1">20197469</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2011 Feb 3;117(5):1507-15</RefSource>
<PMID Version="1">21148085</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Trends Immunol. 2009 Dec;30(12):569-73</RefSource>
<PMID Version="1">19837632</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2008 Sep 19;29(3):325-42</RefSource>
<PMID Version="1">18799141</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Rev Immunol. 2008 May;8(5):362-71</RefSource>
<PMID Version="1">18379575</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Lymphat Res Biol. 2009;7(1):29-45</RefSource>
<PMID Version="1">19302022</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Genes Dev. 2010 May;24(9):875-80</RefSource>
<PMID Version="1">20439428</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Cell. 2008 Apr;13(4):331-42</RefSource>
<PMID Version="1">18394556</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cancer Cell. 2010 Dec 14;18(6):630-40</RefSource>
<PMID Version="1">21130043</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Immunol. 2009 Jul;10(7):786-93</RefSource>
<PMID Version="1">19503106</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Arch Ophthalmol. 2012 Jan;130(1):84-9</RefSource>
<PMID Version="1">21911653</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circ Res. 2003 May 30;92(10):1098-106</RefSource>
<PMID Version="1">12714562</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Gut. 2010 Feb;59(2):197-206</RefSource>
<PMID Version="1">19846409</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Circulation. 2011 Feb 15;123(6):613-20</RefSource>
<PMID Version="1">21282502</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Immunity. 2006 Feb;24(2):203-15</RefSource>
<PMID Version="1">16473832</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nature. 2008 Dec 4;456(7222):643-7</RefSource>
<PMID Version="1">18931657</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2009 Dec 21;206(13):2925-35</RefSource>
<PMID Version="1">19995949</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>JAMA. 2011 Jul 27;306(4):385-93</RefSource>
<PMID Version="1">21791687</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2009 Oct 26;206(11):2455-67</RefSource>
<PMID Version="1">19808250</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Proc Natl Acad Sci U S A. 2010 Feb 9;107(6):2425-30</RefSource>
<PMID Version="1">20145116</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Cell Biol. 2010 Jan 11;188(1):115-30</RefSource>
<PMID Version="1">20065093</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2009 Mar 12;113(11):2605-13</RefSource>
<PMID Version="1">19098273</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Expert Rev Dermatol. 2008 Oct;3(5):569-585</RefSource>
<PMID Version="1">19649148</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Cell Biol. 2011 May 16;193(4):607-18</RefSource>
<PMID Version="1">21576390</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Lymphat Res Biol. 2008;6(3-4):109-22</RefSource>
<PMID Version="1">19093783</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Immunol. 2004 Jan;5(1):74-80</RefSource>
<PMID Version="1">14634646</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>N Engl J Med. 2011 Apr 28;364(17):1595-606</RefSource>
<PMID Version="1">21410393</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>FASEB J. 2011 Sep;25(9):2980-6</RefSource>
<PMID Version="1">21613573</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Exp Med. 2010 Apr 12;207(4):681-8</RefSource>
<PMID Version="1">20308365</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Mol Cancer Ther. 2011 May;10(5):770-83</RefSource>
<PMID Version="1">21388971</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Eur J Immunol. 2008 Aug;38(8):2142-55</RefSource>
<PMID Version="1">18629939</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Clin Invest. 2011 May;121(5):2000-12</RefSource>
<PMID Version="1">21540548</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Immunol. 2011 Jul 15;187(2):828-34</RefSource>
<PMID Version="1">21666055</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Am J Hum Genet. 2010 Jun 11;86(6):943-8</RefSource>
<PMID Version="1">20537300</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Cell. 2010 Feb 19;140(4):460-76</RefSource>
<PMID Version="1">20178740</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Am J Pathol. 2008 Oct;173(4):1202-9</RefSource>
<PMID Version="1">18772332</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Genes Dev. 2005 Feb 1;19(3):397-410</RefSource>
<PMID Version="1">15687262</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Nat Genet. 2009 Apr;41(4):396-8</RefSource>
<PMID Version="1">19287381</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Biol Chem. 2005 Jul 15;280(28):26216-24</RefSource>
<PMID Version="1">15878864</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Clin Invest. 2011 Aug;121(8):2984-92</RefSource>
<PMID Version="1">21765212</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Microcirculation. 2010 Apr;17(3):206-25</RefSource>
<PMID Version="1">20374484</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Biochem J. 2011 Jul 15;437(2):169-83</RefSource>
<PMID Version="1">21711246</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Int J Dev Biol. 2011;55(4-5):483-94</RefSource>
<PMID Version="1">21858772</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Science. 2010 May 7;328(5979):749-52</RefSource>
<PMID Version="1">20339029</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Eur J Clin Invest. 2011 May;41(5):487-97</RefSource>
<PMID Version="1">21128936</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>J Biomed Opt. 2010 Mar-Apr;15(2):021303</RefSource>
<PMID Version="1">20459225</PMID>
</CommentsCorrections>
<CommentsCorrections RefType="Cites">
<RefSource>Blood. 2010 Jul 29;116(4):661-70</RefSource>
<PMID Version="1">20363774</PMID>
</CommentsCorrections>
</CommentsCorrectionsList>
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