8 Publications

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[8]
2023 | Journal Article | IST-REx-ID: 14378 | OA
M. C. Ucar et al., “Self-organized and directed branching results in optimal coverage in developing dermal lymphatic networks,” Nature Communications, vol. 14. Springer Nature, 2023.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[7]
2021 | Journal Article | IST-REx-ID: 9259 | OA
K. Vaahtomeri, C. Moussion, R. Hauschild, and M. K. Sixt, “Shape and function of interstitial chemokine CCL21 gradients are independent of heparan sulfates produced by lymphatic endothelium,” Frontiers in Immunology, vol. 12. Frontiers, 2021.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[6]
2018 | Journal Article | IST-REx-ID: 275 | OA
M. Brown et al., “Lymphatic exosomes promote dendritic cell migration along guidance cues,” Journal of Cell Biology, vol. 217, no. 6. Rockefeller University Press, pp. 2205–2221, 2018.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[5]
2017 | Journal Article | IST-REx-ID: 672 | OA
K. Vaahtomeri et al., “Locally triggered release of the chemokine CCL21 promotes dendritic cell transmigration across lymphatic endothelia,” Cell Reports, vol. 19, no. 5. Cell Press, pp. 902–909, 2017.
[Published Version] View | Files available | DOI
 
[4]
2017 | Journal Article | IST-REx-ID: 674
J. Schwarz et al., “Dendritic cells interpret haptotactic chemokine gradients in a manner governed by signal to noise ratio and dependent on GRK6,” Current Biology, vol. 27, no. 9. Cell Press, pp. 1314–1325, 2017.
View | DOI
 
[3]
2016 | Journal Article | IST-REx-ID: 1142 | OA
Martins R, Maier J, Gorki A, Huber K, Sharif O, Starkl P, Saluzzo S, Quattrone F, Gawish R, Lakovits K, Aichinger M, Radic Sarikas B, Lardeau C, Hladik A, Korosec A, Brown M, Vaahtomeri K, Duggan M, Kerjaschki D, Esterbauer H, Colinge J, Eisenbarth S, Decker T, Bennett K, Kubicek S, Sixt MK, Superti Furga G, Knapp S. 2016. Heme drives hemolysis-induced susceptibility to infection via disruption of phagocyte functions. Nature Immunology. 17(12), 1361–1372.
[Submitted Version] View | DOI | Download Submitted Version (ext.)
 
[2]
2016 | Journal Article | IST-REx-ID: 1490 | OA
E. Russo et al., “Intralymphatic CCL21 promotes tissue egress of dendritic cells through afferent lymphatic vessels,” Cell Reports, vol. 14, no. 7. Cell Press, pp. 1723–1734, 2016.
[Published Version] View | Files available | DOI
 
[1]
2014 | Journal Article | IST-REx-ID: 1877
M. K. Sixt and K. Vaahtomeri, “Physiology: Relax and come in,” Nature, vol. 514, no. 7523. Springer Nature, pp. 441–442, 2014.
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8 Publications

Mark all

[8]
2023 | Journal Article | IST-REx-ID: 14378 | OA
M. C. Ucar et al., “Self-organized and directed branching results in optimal coverage in developing dermal lymphatic networks,” Nature Communications, vol. 14. Springer Nature, 2023.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[7]
2021 | Journal Article | IST-REx-ID: 9259 | OA
K. Vaahtomeri, C. Moussion, R. Hauschild, and M. K. Sixt, “Shape and function of interstitial chemokine CCL21 gradients are independent of heparan sulfates produced by lymphatic endothelium,” Frontiers in Immunology, vol. 12. Frontiers, 2021.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[6]
2018 | Journal Article | IST-REx-ID: 275 | OA
M. Brown et al., “Lymphatic exosomes promote dendritic cell migration along guidance cues,” Journal of Cell Biology, vol. 217, no. 6. Rockefeller University Press, pp. 2205–2221, 2018.
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
[5]
2017 | Journal Article | IST-REx-ID: 672 | OA
K. Vaahtomeri et al., “Locally triggered release of the chemokine CCL21 promotes dendritic cell transmigration across lymphatic endothelia,” Cell Reports, vol. 19, no. 5. Cell Press, pp. 902–909, 2017.
[Published Version] View | Files available | DOI
 
[4]
2017 | Journal Article | IST-REx-ID: 674
J. Schwarz et al., “Dendritic cells interpret haptotactic chemokine gradients in a manner governed by signal to noise ratio and dependent on GRK6,” Current Biology, vol. 27, no. 9. Cell Press, pp. 1314–1325, 2017.
View | DOI
 
[3]
2016 | Journal Article | IST-REx-ID: 1142 | OA
Martins R, Maier J, Gorki A, Huber K, Sharif O, Starkl P, Saluzzo S, Quattrone F, Gawish R, Lakovits K, Aichinger M, Radic Sarikas B, Lardeau C, Hladik A, Korosec A, Brown M, Vaahtomeri K, Duggan M, Kerjaschki D, Esterbauer H, Colinge J, Eisenbarth S, Decker T, Bennett K, Kubicek S, Sixt MK, Superti Furga G, Knapp S. 2016. Heme drives hemolysis-induced susceptibility to infection via disruption of phagocyte functions. Nature Immunology. 17(12), 1361–1372.
[Submitted Version] View | DOI | Download Submitted Version (ext.)
 
[2]
2016 | Journal Article | IST-REx-ID: 1490 | OA
E. Russo et al., “Intralymphatic CCL21 promotes tissue egress of dendritic cells through afferent lymphatic vessels,” Cell Reports, vol. 14, no. 7. Cell Press, pp. 1723–1734, 2016.
[Published Version] View | Files available | DOI
 
[1]
2014 | Journal Article | IST-REx-ID: 1877
M. K. Sixt and K. Vaahtomeri, “Physiology: Relax and come in,” Nature, vol. 514, no. 7523. Springer Nature, pp. 441–442, 2014.
View | DOI
 

Search

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