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Oktober 2025
Science Advances
Chen H, Cretu C, Trebilcock A, Evdokimova N, Babai N, Feldmann L, Leidner F, Benseler F, Mutschall S, Esch K, Szabo CZK, Pena V, Pape C, Grubmüller H, Strenzke N, Brose N, Wichmann C, Preobraschenski J, Moser T
September 2025
Med
Fan X, Gao Z, Zhong J, Chen Y, Chen X, Landegger LD, Moser T, Zeng FG, Sun Y, Jin X, Nash R, Chien WW, Jiang D, Greinwald JH, Bance M, Rodriguez MM, Lee SY, Feng G, Yang H, Wu CC, Xu L, Yuan W, Feng Y, Zhao Y, Vona BC, Stenzke N, Beutner D, Amin N, Arwyn-Jones J, Chandrasekeharan D, Shi D, Zhang D, Yang J, Qi J, Wang Q, Yin Y, Cheng YF, Tao Y, Yu Y, Wang D, Jiang L, Guo L, Chen L, Cheng X, Cui C, Lv J, Han S, Wang W, Li Y, Gao X, Liu XZ, Zha D, Shi H, Chen B, Wang Q, Yuan H, Yang S, Yin S, Wu H, Wang Z, Li H, Rubinstein JT, Lustig LR, Chai R, Chen ZY, Shu Y
September 2025
Molecular Neurodegeneration
Brücke C, Al-Azzani M, Ramalingam N, Ramón M, Sousa RL, Buratti F, Zech M, Sicking K, Amaral L, Gelpi E, Chandran A, Agarwal A, Chaves SR, Fernández CO, Dettmer U, Lautenschläger J, Zweckstetter M, Busnadiego RF, Zimprich A, Outeiro TF
September 2025
Arxiv
Groppe M, Niemöller L, Hundrieser S, Ventzke D, Blob A, Köster S, Munk A
September 2025
Science Advances
Kapoor R, Kim H, Garlick E, Lima MARBF, Ruhwedel T, Moebius W, Wolf F, Moser T
September 2025
Biological Chemistry
Dahal D, Cruz-Zargoza LD, Rehling P
September 2025
The journal of Physical Chemistry Letters
Chizhik AI, Sakhapov DI, Gregor I, Karedla N, Enderlein J
September 2025
The Journal of Physical Chemistry Letters
Chizhik AI, Sakhapov DI, Gregor I, Karedla N, Enderlein J
September 2025
Science
Siegenthaler D, Denny H, Carrasco SS, Mayer JL, Levenstein D, Peyrache A, Trenholm S, Macé E
September 2025
Nature
Sakthivelu V, Schmitt A, Odenthal F, Ndoci K, Touet M, Shaib AH, Chihab A, Wani GA, Nieper P, Hartmann GG, Pintelon I, Kisis I, Boecker M, Eckert NM, Iannicelli Caiaffa M, Ibruli O, Weber J, Maresch R, Bebber CM, Chitsaz A, Lütz A, Kim Alves Carpinteiro M, Morris KM, Franchino CA, Benz J, Pérez-Revuelta L, Soriano-Campos JA, Huetzen MA, Goergens J, Jevtic M, Jahn-Kelleter HM, Zempel H, Placzek A, Hennrich AA, Conzelmann KK, Tumbrink HL, Hunold P, Isensee J, Werr L, Gaedke F, Schauss A, Minère M, Müller M, Fenselau H, Liu Y, Heimsoeth A, Gülcüler Balta GS, Walczak H, Frezza C, Jachimowicz RD, George J, Schmiel M, Brägelmann J, Hucho T, von Karstedt S, Peifer M, Annibaldi A, Hänsel-Hertsch R, Persigehl T, Grüll H, Sos ML, Reifenberger G, Fischer M, Adriaensen D, Büttner R, Sage J, Brouns I, Rad R, Thomas RK, Anstötz M, Rizzoli SO, Bergami M, Motori E, Reinhardt HC, Beleggia F

Authors

Sakthivelu V, Schmitt A, Odenthal F, Ndoci K, Touet M, Shaib AH, Chihab A, Wani GA, Nieper P, Hartmann GG, Pintelon I, Kisis I, Boecker M, Eckert NM, Iannicelli Caiaffa M, Ibruli O, Weber J, Maresch R, Bebber CM, Chitsaz A, Lütz A, Kim Alves Carpinteiro M, Morris KM, Franchino CA, Benz J, Pérez-Revuelta L, Soriano-Campos JA, Huetzen MA, Goergens J, Jevtic M, Jahn-Kelleter HM, Zempel H, Placzek A, Hennrich AA, Conzelmann KK, Tumbrink HL, Hunold P, Isensee J, Werr L, Gaedke F, Schauss A, Minère M, Müller M, Fenselau H, Liu Y, Heimsoeth A, Gülcüler Balta GS, Walczak H, Frezza C, Jachimowicz RD, George J, Schmiel M, Brägelmann J, Hucho T, von Karstedt S, Peifer M, Annibaldi A, Hänsel-Hertsch R, Persigehl T, Grüll H, Sos ML, Reifenberger G, Fischer M, Adriaensen D, Büttner R, Sage J, Brouns I, Rad R, Thomas RK, Anstötz M, Rizzoli SO, Bergami M, Motori E, Reinhardt HC, Beleggia F

Journal

Nature

Citation

Nature. 2025 Sep 10.

Abstract

Small cell lung cancer (SCLC) is a highly aggressive type of lung cancer, characterized by rapid proliferation, early metastatic spread, frequent early relapse and a high mortality rate1-3. Recent evidence has suggested that innervation has an important role in the development and progression of several types of cancer4,5. Cancer-to-neuron synapses have been reported in gliomas6,7, but whether peripheral tumours can form such structures is unknown. Here we show that SCLC cells can form functional synapses and receive synaptic transmission. Using in vivo insertional mutagenesis screening in conjunction with cross-species genomic and transcriptomic validation, we identified neuronal, synaptic and glutamatergic signalling gene sets in mouse and human SCLC. Further experiments revealed the ability of SCLC cells to form synaptic structures with neurons in vitro and in vivo. Electrophysiology and optogenetic experiments confirmed that cancer cells can receive NMDA receptor- and GABAA receptor-mediated synaptic inputs. Fitting with a potential oncogenic role of neuron-SCLC interactions, we showed that SCLC cells derive a proliferation advantage when co-cultured with vagal sensory or cortical neurons. Moreover, inhibition of glutamate signalling had therapeutic efficacy in an autochthonous mouse model of SCLC. Therefore, following malignant transformation, SCLC cells seem to hijack synaptic signalling to promote tumour growth, thereby exposing a new route for therapeutic intervention.

DOI

10.1038/s41586-025-09434-9 (Published Erratum: 10.1038/s41586-025-09638-z)
 
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