Netrin-1 signaling is an essential prototypical neuronal guidance mechanism during embryonic development that also regulates tumor cell survival in a variety of adult cancer entities. In line with these data, a monoclonal netrin-1 blocking antibody (anti-netrin-1 mAb/NP137) has been preclinically developed and netrin-1 blockade has recently been investigated in phase 1 and 2 clinical trials in several adult cancers. Here, we investigate the role of netrin-1 in the most common malignant pediatric brain cancer, Medulloblastoma. Interestingly, we find that netrin-1 is upregulated in medulloblastoma subgroups associated with developmental dysregulation, in particular in medulloblastoma with Sonic Hedgehog (SHH) activation. First, we demonstrate that genetic deletion of netrin-1 or systemic treatment with the clinical-stage anti-netrin-1 blocking antibody significantly reduces tumor growth in vivo in various orthotopic models of SHH medulloblastomas. Second, in vitro and in vivo, we unexpectedly uncover that SHH medulloblastomas treated with an SHH-inhibitor targeting Smoothened (SMO) increase netrin-1 expression, paving the way for combinatorial therapy. In line with that, we next show that netrin-1 blockade potentiates the efficacy of SMO inhibitor therapy in vivo. Together, our data indicate that, netrin-1 blockade, used as monotherapy or in combination with SMO inhibitors, is a promising therapeutic strategy in SHH medulloblastomas.
Sonic hedgehog medulloblastomas are dependent on Netrin-1 for survival.
音猬因子髓母细胞瘤的存活依赖于 Netrin-1
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作者:Talbot Julie, Fombonne Joanna, Torrejon Jacob, Babcock Benjamin R, McSwain Leon F, Rama Nicolas, Lospinoso Severini Ludovica, Bonerandi Emma, Marsaud Veronique, Bernardi Flavia, Gharsalli Tarek, Guix Catherine, Ducarouge Benjamin, Neururer Verena, Basili Irene, Mercier Audrey L, Yu Hua, Forget Antoine, Indersie Emilie, Leboucher Sophie, Souphron Judith, Okonechnikov Konstantin, Wang Wanchen, Kawauchi Daisuke, Wainwright Brandon J, Frappaz Didier, Varlet Pascale, Dufour Christelle, Beccaria Kevin, Blauwblomme Thomas, Martignetti Loredana, Di Marcotullio Lucia, Puget Stéphanie, Doz François, Bourdeaut Franck, Masliah-Planchon Julien, Gershon Timothy R, Mehlen Patrick, Ayrault Olivier
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jun 3; 16(1):5137 |
| doi: | 10.1038/s41467-025-59612-6 | 研究方向: | 细胞生物学 |
| 信号通路: | Hedgehog | ||
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