Urban Lendahl
Professor, Senior
E-mail: urban.lendahl@ki.se
Visiting address: Solnavägen 9, 17165 Stockholm
Postal address: C5 Cell- och molekylärbiologi, C5 CMB Lendahl, 171 77 Stockholm
About me
- Professor of Genetics.
Research
- Notch signalling, cancer biology, vascular biology, developmental biology
Articles
- Article: EMBO REPORTS. 2025;26(21):5326-5359Pietila R; Genove G; Mocci G; Miao Y; Liu J; Leptidis S; Del Gaudio F; Uhrbom M; Vazquez-Liebanas E; Gustafsson S; Buyandelger B; Raschperger E; Bjorkegren JLM; Hansson EM; Gaengel K; Mae MA; Jeansson M; Vanlandewijck M; He L; Strell C; Peng X-R; Lendahl U; Betsholtz C; Muhl L
- Journal article: CELL. 2025;188(21):5980-5994.e28Mout R; Jing R; Tanaka-Yano M; Egan ED; Eisenach H; Kononov MA; Windisch R; Najia MAT; Tompkins A; Hensch L; Bingham T; Gunage R; Zhao Y; Edman NI; Li C; Wang D; Schlaeger TM; Zon LI; North TE; Lendahl U; Rowe RG; Baker D; Blacklow SC; Daley GQ
- Article: NATURE CARDIOVASCULAR RESEARCH. 2025;4(4):412-432Sukhavasi K; Mocci G; Ma L; Hodonsky CJ; Benevante ED; Muhl L; Liu J; Gustafsson S; Buyandelger B; Koplev S; Lendahl U; Vanlandewijck M; Singha P; Ord T; Beter M; Selvarajan I; Laakkonen JP; Vali M; den Ruijter HM; Civelek M; Hao K; Ruusalepp A; Betsholtz C; Jarve H; Kovacic JC; Miller CL; Romanoski C; Kaikkonen MU; Bjorkegren JLM
- Article: FRONTIERS IN ONCOLOGY. 2024;14:1384277Takchi A; Zhang M; Jalalirad M; Ferre RL; Shrestha R; Haddad T; Sarkaria J; Tuma A; Carter J; David H; Giridhar K; Wang L; Lange C; Lendahl U; Ingle J; Goetz M; D'Assoro AB
- Article: CIRCULATION RESEARCH. 2024;134(11):1405-1423Mocci G; Sukhavasi K; Ord T; Bankier S; Singha P; Arasu UT; Agbabiaje OO; Makinen P; Ma L; Hodonsky CJ; Aherrahrou R; Muhl L; Liu J; Gustafsson S; Byandelger B; Wang Y; Koplev S; Lendahl U; Owens GK; Leeper NJ; Pasterkamp G; Vanlandewijck M; Michoel T; Ruusalepp A; Hao K; Yla-Herttuala S; Vali M; Jarve H; Mokry M; Civelek M; Miller CJ; Kovacic JC; Kaikkonen MU; Betsholtz C; Bjorkegren JLM
- Article: BREAST CANCER RESEARCH. 2024;26(1):4Braune E-B; Geist F; Tang X; Kalari K; Boughey J; Wang L; Leon-Ferre RA; D'Assoro AB; Ingle JN; Goetz MP; Kreis J; Wang K; Foukakis T; Seshire A; Wienke D; Lendahl U
- Article: NEURON. 2023;111(23):3745-3764.e7Pietila R; Del Gaudio F; He L; Vazquez-Liebanas E; Vanlandewijck M; Muhl L; Mocci G; Bjornholm KD; Lindblad C; Fletcher-Sandersjoo A; Svensson M; Thelin EP; Liu J; van Voorden AJ; Torres M; Antila S; Xin L; Karlstrom H; Storm-Mathisen J; Bergersen LH; Moggio A; Hansson EM; Ulvmar MH; Nilsson P; Makinen T; Mae MA; Alitalo K; Proulx ST; Engelhardt B; McDonald DM; Lendahl U; Andrae J; Betsholtz C
- Journal article: MOLECULAR CANCER THERAPEUTICS. 2023;22(12_Supplement):b013Braune E-B; Geist F; Tang X; Kalari K; Boughey J; Wang L; Leon-Ferre RA; D’Assoro AB; Ingle JN; Goetz MP; Wang K; Foukakis T; Seshire A; Wienke D; Lendahl U
- Article: SCIENTIFIC REPORTS. 2023;13(1):15022Del Gaudio F; Liu D; Andaloussi Mae M; Braune E-B; Hansson EM; Wang Q-D; Betsholtz C; Lendahl U
- Article: CELL REPORTS: METHODS. 2023;3(3):100431Bjornholm KD; Del Gaudio F; Li H; Li W; Vazquez-Liebanas E; Mae MA; Lendahl U; Betsholtz C; Nilsson P; Karlstrom H; Vanlandewijck M
- Article: EMBO MOLECULAR MEDICINE. 2023;15(2):e16556Oliveira DV; Coupland KG; Shao W; Jin S; Del Gaudio F; Wang S; Fox R; Rutten JW; Sandin J; Zetterberg H; Lundkvist J; Oberstein SAL; Lendahl U; Karlstrom H
- Article: EMBO MOLECULAR MEDICINE. 2022;14(12):e15809Hankeova S; Van Hul N; Laznovsky J; Verboven E; Mangold K; Hensens N; Adori C; Verhoef E; Zikmund T; Dawit F; Kavkova M; Salplachta J; Sjoqvist M; Johansson BR; Hassan MG; Fredriksson L; Baumgartel K; Bryja V; Lendahl U; Jheon A; Alten F; Fahnehjelm KT; Fischler B; Kaiser J; Andersson ER
- Article: DEVELOPMENTAL CELL. 2022;57(20):2426-2443.e6Muhl L; Mocci G; Pietila R; Liu J; He L; Genove G; Leptidis S; Gustafsson S; Buyandelger B; Raschperger E; Hansson EM; Bjorkegren JLM; Vanlandewijck M; Lendahl U; Betsholtz C
- Journal article: CANCER RESEARCH. 2022;82(12_Supplement):3351Braune E-B; Geist F; Wienke D; Seshire A; Lendahl U
- Article: STEM CELL REPORTS. 2022;17(6):1248-1267Lendahl U
- Article: STEM CELL REPORTS. 2022;17(5):1089-1104Muhl L; He L; Sun Y; Mae MA; Pietila R; Liu J; Genove G; Zhang L; Xie Y; Leptidis S; Mocci G; Stritt S; Osman A; Anisimov A; Hemanthakumar KA; Rasanen M; Hansson EM; Bjorkegren J; Vanlandewijck M; Blomgren K; Makinen T; Peng X-R; Hu Y; Ernfors P; Arnold TD; Alitalo K; Lendahl U; Betsholtz C
- Article: NATURE. 2022;604(7907):740-748Masuda T; Amann L; Monaco G; Sankowski R; Staszewski O; Krueger M; Del Gaudio F; He L; Paterson N; Nent E; Fernandez-Klett F; Yamasaki A; Frosch M; Fliegauf M; Bosch LFP; Ulupinar H; Hagemeyer N; Schreiner D; Dorrier C; Tsuda M; Grothe C; Joutel A; Daneman R; Betsholtz C; Lendahl U; Knobeloch K-P; Laemmermann T; Priller J; Kierdorf K; Prinz M
- Article: EBIOMEDICINE. 2021;74:103689Lendahl U; Lui VCH; Chung PHY; Tam PKH
- Article: FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY. 2021;9:706687Yu R; Jin S-B; Ankarcrona M; Lendahl U; Nister M; Zhao J
- Article: BMC BIOLOGY. 2021;19(1):229Yu R; Liu T; Jin S-B; Ankarcrona M; Lendahl U; Nister M; Zhao J
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All other publications
- Preprint: BIORXIV. 2025Braune E-B; Wienke D; Seshire A; Heinrich T; Haraldsson M; Lain S; Lendahl U
- Book chapter: ENCYCLOPEDIA OF CELL BIOLOGY. 2023;p. 125-133Braune E-B; Del Gaudio F; Lendahl U
- Corrigendum: NATURE. 2022;610(7930):E1Specification of CNS macrophage subsets occurs postnatally in defined niches (vol 604, pg 740, 2022)Masuda T; Amann L; Monaco G; Sankowski R; Staszewski O; Krueger M; Del Gaudio F; He L; Paterson N; Nent E; Fernandez-Klett F; Yamasaki A; Frosch M; Fliegauf M; Bosch LFP; Ulupinar H; Hagemeyer N; Schreiner D; Dorrier C; Tsuda M; Grothe C; Joutel A; Daneman R; Betsholtz C; Lendahl U; Knobeloch K-P; Lammermann T; Priller J; Kierdorf K; Prinz M
- Preprint: BIORXIV. 2022Oliveira D; Coupland K; Jin S; Del Gaudio F; Wang S; Fox R; Rutten J; Sandin J; Lundkvist J; Lesnik Oberstein S; Lendahl U; Karlström H
- Conference publication: CANCER RESEARCH. 2022;82(12)Braune E-B; Geist F; Wienke D; Seshire A; Lendahl U
- Review: NATURE COMMUNICATIONS. 2022;13(1):3409Lendahl U; Muhl L; Betsholtz C
- Review: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. 2022;23(11):6241D'Assoro AB; Leon-Ferre R; Braune E-B; Lendahl U
- Review: OPEN BIOLOGY. 2022;12(4):220004Del Gaudio F; Liu D; Lendahl U
- Corrigendum: NATURE GENETICS. 2022;54(3):358-360Janier M; Almadjub M; Beuf O; Billotey C; Bolbos R; Canaple L; Chereul E; Grenier D; Hiba B; Odet C; Langlois J-B; Lartizien C; Magnier L; Ma W; Zouagui T; Lathrop M; Gut I; Puech A; Herault Y; Blanquet V; Brault V; Samarut J; Aubert D; Plateroti M; Rosenthal N; Al Banchaabouchi M; Carter J; Ermakova O; Gale K; Gonzalez J; Perlas E; Rientjes J; Spanner A; Trillat A-C; Tocchini-Valentini G; Mandillo S; Golini E; Marazziti D; Deidda G; Rossi N; Matteoni R; Raspa M; Scavizzi F; Barbacid M; Campuzano MV; Dubus P; Perez Gallego L; Guerra Gonzalez C; Balling R; Frischmann U; Hauser H; Lengeling A; Muller W; Pasche B; Hrabe de Angelis M; Wurst W; Abe K; Beckers J; Busch DH; Dalke C; Gailus Durner V; Elvert R; Franz TJ; Fuchs H; Graw J; Holter SM; Jakob T; Kalaydjiev S; Kallnik M; Klempt M; Klingenspor M; Klopstock T; Lengger C; Quintanilla Martinez L; Pedersen V; Puk O; Schneider I; Vogt Weisenhorn D; Wagner S; Wolf E; Chambon P; Auwerx J; Ali-Hadji D; Champy M-F; Frossard N; Helwig J-J; Mark M; Monassier L; Antal MC; Barthelmebs M; Bloch-Zupan A; Constantinesco A; Doll P; El Fertak L; Gofflot F; Juillard L; Krezel W; Meziane H; Ouagazzal A-M; Pons F; Romand R; Selloum M; Sorg T; Teletin M; Vasseur L; Wendling O; Avner P; Chantalat S; Lendahl U; Wilbertz J; Davies K; Oliver P; Brown S; Cheeseman M; Coghill E; Cox R; Bentley L; Ferguson S; Gates H; Gkoutos G; Green E; Hancock J; Hough T; Johnson R; Lad H; Mallon A-M; Nolan P; Parker A; Quarterman J; Smith A; Studley M; Shukla A; Tateossian H; Tucci V; Weekes J; Jackson I; Cross S; Davidson D; Hart A; Murray A; Berns A; Breuer M; van Garderen E; Jonkers J; Song JY; van der Valk M; Neyses L; Cartwright E; Oceandy D; Emerson M; Wahli W; Delgado MB; Desvergne B; Michalik L; Bedu E; Duboule D; Kmita M; Zakany J; Animage; Bradley A; Warren M
- Preprint: SSRN ELECTRONIC JOURNAL. 2022Del Gaudio F; He L; Pietilä R; Vanlandewijck M; Muhl L; Mocci G; Bjørnholm KD; Liu J; van Voorden J; Torres M; Moggio A; Antilla S; Storm-Mathisen J; Bergersen LH; Nilsson P; Hansson E; Alitalo K; Lendahl U; Andrae J; Betsholtz C
- Preprint: SSRN ELECTRONIC JOURNAL. 2022Bjørnholm KD; Del Gaudio F; Li H; Li W; Vázquez Liébanas E; Mäe MA; Lendahl U; Betsholtz C; Nilsson P; Karlström H; Vanlandewijck M
- Preprint: BIORXIV. 2021Bjørnholm KD; Vanlandewijck M; Del Gaudio F; Lendahl U; Nilsson P; Karlström H; Betsholtz C
- Preprint: BIORXIV. 2021Hankeova S; Van Hul N; Laznovsky J; Mangold K; Hensens N; Verhoef E; Zikmund T; Dawit F; Kavkova M; Salplachta J; Sjöqvist M; Johansson B; Hassan M; Fredriksson L; Bryja V; Lendahl U; Jheon A; Alten F; Fahnehjelm KT; Fischler B; Kaiser J; Andersson E
- Letter: CIRCULATION. 2021;143(8):865-868McCracken IR; Saginc G; He L; Huseynov A; Daniels A; Fletcher S; Peghaire C; Kalna V; Andaloussi-Mae M; Muhl L; Craig NM; Griffiths SJ; Haas JG; Tait-Burkard C; Lendahl U; Birdsey GM; Betsholtz C; Noseda M; Baker AH; Randi AM
- Corrigendum: MOLECULAR THERAPY. 2021;29(1):409Foo KS; Lehtinen ML; Leung CY; Lian X; Xu J; Keung W; Geng L; Kolstad TRS; Thams S; Wong AO-T; Wong N; Bylund K; Zhou C; He X; Jin S-B; Clarke J; Lendahl U; Li RA; Louch WE; Chien KR
- Preprint: BIORXIV. 2020McCracken I; Saginc G; He L; Huseynov A; Daniels A; Fletcher S; Peghaire C; Kalna V; Andaloussi-Mäe M; Muhl L; Craig NM; Griffiths SJ; Haas JG; Tait-Burkard C; Lendahl U; Birdsey GM; Betsholtz C; Noseda M; Baker A; Randi AM
- Corrigendum: NATURE COMMUNICATIONS. 2020;11(1):4493Muhl L; Genove G; Leptidis S; Liu J; He L; Mocci G; Sun Y; Gustafsson S; Buyandelger B; Chivukula IV; Segerstolpe A; Raschperger E; Hansson EM; Bjoerkegren JLM; Peng X-R; Vanlandewijck M; Lendahl U; Betsholtz C
- Conference publication: JOURNAL OF HEPATOLOGY. 2020;73:S542Masek J; Hankeova S; Jin S-B; Lendahl U; Andersson E
- Conference publication: JOURNAL OF HEPATOLOGY. 2020;73:S43Hankeova S; Salplachta J; Zikmund T; Kavkova M; Van Hul NKM; Brinek A; Smekalova V; Laznovsky J; Jaros J; Bryja V; Lendahl U; Ellis E; Hannezo E; Kaiser J; Andersson E
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Grants
- Swedish Research Council1 January 2025 - 31 December 2028CADASIL is the most common monogenic form of cerebral small vessel disease (SVD), a group of diseases affecting more than 5.000 individuals per year in Sweden. CADASIL is caused by mutations in the NOTCH3 gene and CADASIL patients experience arteriopathy and ischemic infarcts, ultimately leading to cognitive impairment and premature death. There are currently no therapies for CADASIL, and we will therefore explore two novel therapy strategies in a CADASIL mouse model: immunization and neuroinflammation/STING blockade. To monitor disease progression in CADASIL patients, better biomarkers are warranted. We will identify potential biomarkers from a large-scale transcriptomic dataset from a CADASIL mouse model, evaluate candidate biomarkers in human and mouse histological material and assess their efficacy in blood samples from CADASIL patients, with a particular focus on neuroinflammation. Finally, non-CADASIL disease-causing NOTCH3 mutations are emerging, and we will search for such mutations in a small cohort of “atypical” SVD and migraine patients and establish how non-CADASIL NOTCH3 mutations affect Notch signalling. Information about non-CADASIL NOTCH3 mutations is important for future therapy considerations. In sum, through a multipronged approach spanning from preclinical transcriptomic and mouse model analysis to biomarker analysis in CADASIL patients, we expect to make progress beyond the state-of-the-art in CADASIL therapy and monitoring of disease progress.
- European Commission1 June 2024 - 31 May 2027In response to the HORIZON-INFRA-2023-DEV-01-03 call, INFRAPLUS aims to expand INFRAFRONTIER's capacity for human disease modelling, refine its service portfolio by reducing animal usage and developing alternative cellular models, and optimise the use of resources. INFRAPLUS seeks to achieve several objectives: Developing national node capacities and expertise for providing innovative in vivo, in vitro and preclinical services, developing novel model systems and services to meet the demands of existing and novel user communities, and reducing environmental impact. To achieve these objectives, INFRAPLUS will focus on launching pilot services, refining new technologies, emphasising alternate cellular models, designing and implementing special training programmes and optimising resources for the entire consortium. The project includes a defined service development strategy supported by a strong IT and data management backbone and is built upon the needs of the scientific community. Ultimately, INFRAPLUS will enhance and evolve INFRAFRONTIER's capacity for modelling human diseases and enable breakthrough research by providing researchers cutting-edge tools and services to respond to global biomedical challenges.
- New diagnostic tools and treatments for Alzheimers Disease, Traumatic brain injury and small vascular diseaseErling-Perssons Stiftelse1 January 2020 - 31 December 2022
- Swedish Research Council1 January 2018 - 31 December 2022
- Consequences of misregulated Notch signaling in breast cancerSwedish Cancer Society1 January 2015Breast cancer, with 7,000 new patients annually, despite improved treatment, continues to pose a major medical problem, and there are many aspects of breast cancer that we do not yet understand. In recent years, it has become increasingly apparent that an important signaling mechanism called Notch signaling is often misregulated in breast cancer. This is evident, among other things, through a connection between high Notch signaling and poor prognosis for the patient. Notch signaling is important for most of the body's organs and tissues that develop normally, but when it is mutated or expressed at too high a level, this can lead to cancer. Increased Notch signaling is linked to breast cancer, and we want to understand the role this plays in several important stages of the tumor process. In this application, we want to find out how Notch in animal models can initiate breast cancer, and what other genes are involved in this. We also want to understand how Notch affects the interaction between tumor and surrounding stroma tissue. Finally, we also want to learn more about how Notch signaling interacts with other important signaling pathways in the tumor cells, inter alia with the mechanism that handles situations with low oxygen pressure in the tissue, which often occurs in tumors. The overall and long-term aim of the project is to be able to contribute to developing new and improved therapies for breast cancer. It is becoming increasingly clear that misregulated Notch signaling contributes to breast cancer, and we focus our research on understanding how this error regulation leads both to tumor emergence and how the tumor interacts with and benefits from surrounding tissue. We also hope to contribute to the development of principles for new combination treatments where at the same time you counter Notch signaling and other signal mechanisms to obtain a better and more specific treatment for breast cancer.
- Consequences of misregulated Notch signaling in breast cancerSwedish Cancer Society1 January 2014Breast cancer, with 7,000 new patients annually, despite improved treatment, continues to pose a major medical problem, and there are many aspects of breast cancer that we do not yet understand. In recent years, it has become increasingly apparent that an important signaling mechanism called Notch signaling is often misregulated in breast cancer. This is evident, among other things, through a connection between high Notch signaling and poor prognosis for the patient. Notch signaling is important for most of the body's organs and tissues that develop normally, but when it is mutated or expressed at too high a level, this can lead to cancer. Increased Notch signaling is linked to breast cancer, and we want to understand the role this plays in several important stages of the tumor process. In this application, we want to find out how Notch in animal models can initiate breast cancer, and what other genes are involved in this. We also want to understand how Notch affects the interaction between tumor and surrounding stroma tissue. Finally, we also want to learn more about how Notch signaling interacts with other important signaling pathways in the tumor cells, inter alia with the mechanism that handles situations with low oxygen pressure in the tissue, which often occurs in tumors. The overall and long-term aim of the project is to be able to contribute to developing new and improved therapies for breast cancer. It is becoming increasingly clear that misregulated Notch signaling contributes to breast cancer, and we focus our research on understanding how this error regulation leads both to tumor emergence and how the tumor interacts with and benefits from surrounding tissue. We also hope to contribute to the development of principles for new combination treatments where at the same time you counter Notch signaling and other signal mechanisms to obtain a better and more specific treatment for breast cancer.
- Swedish Research Council1 January 2014 - 31 December 2018
- Swedish Research Council1 January 2014 - 31 December 2018
- Knut and Alice Wallenberg Foundation1 January 2013 - 1 January 2016
- Swedish Research Council1 January 2013 - 31 December 2015
- Swedish Research Council1 January 2011 - 31 December 2013
- Swedish Research Council1 July 2009 - 30 June 2014
Employments
- Professor, Senior, Department of Cell and Molecular Biology, Karolinska Institutet, 2026-2027
- Professor, Department of Cell and Molecular Biology, Karolinska Institutet, 1997-2026