Ovarian tumor cells gain competitive advantage by actively reducing the cellular fitness of microenvironment cells
- DOI
- 10.1038/s41587-024-02453-3
- Published
- 2024-12-09
- Container
- Nature Biotechnology
- Publisher
- Springer Science and Business Media LLC
- Open access
- unknown
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BibTeX
@article{allodium:10.1038/s41587-024-02453-3,
title = {Ovarian tumor cells gain competitive advantage by actively reducing the cellular fitness of microenvironment cells},
author = {Esha Madan and António M. Palma and Vignesh Vudatha and Amit Kumar and Praveen Bhoopathi and Jochen Wilhelm and Tytus Bernas and Patrick C. Martin and Gaurav Bilolikar and Aenya Gogna and Maria Leonor Peixoto and Isabelle Dreier and Thais Fenz Araujo and Elena Garre and Anna Gustafsson and Kalpana Deepa Priya Dorayappan and Narsimha Mamidi and Zhaoyu Sun and Michail Yekelchyk and Davide Accardi and Amalie Lykke Olsen and Lin Lin and Asaf Ashkenazy Titelman and Michael Bianchi and Phil Jessmon and Elnaz Abbasi Farid and Anjan K. Pradhan and Lena Neufeld and Eilam Yeini and Santanu Maji and Christopher J. Pelham and Hyobin Kim and Daniel Oh and Hans Olav Rolfsnes and Rita C. Marques and Amy Lu and Masaki Nagane and Sahil Chaudhary and Kartik Gupta and Keshav C. Gogna and Ana Bigio and Karthikeya Bhoopathi and Padmanabhan Mannangatti and K. Gopinath Achary and Javed Akhtar and Sara Belião and Swadesh Das and Isabel Correia and Cláudia L. da Silva and Arsénio M. Fialho and Michael J. Poellmann and Kaila Javius-Jones and Adam M. Hawkridge and Sanya Pal and Kumari S. Shree and Emad A. Rakha and Sambhav Khurana and Gaoping Xiao and Dongyu Zhang and Arjun Rijal and Charles Lyons and Steven R. Grossman and David P. Turner and Raghavendra Pillappa and Karanvir Prakash and Gaurav Gupta and Gary L. W. G. Robinson and Jennifer Koblinski and Hongjun Wang and Gita Singh and Sujay Singh and Sagar Rayamajhi and Manny D. Bacolod and Hope Richards and Sadia Sayeed and Katherine P. Klein and David Chelmow and Ronit Satchi-Fainaro and Karuppaiyah Selvendiran and Denise Connolly and Frits Alan Thorsen and Rolf Bjerkvig and Kenneth P. Nephew and Michael O. Idowu and Mark P. Kühnel and Christopher Moskaluk and Seungpyo Hong and William L. Redmond and Göran Landberg and Antonio Lopez-Beltran and Andrew S. Poklepovic and Arun Sanyal and Paul B. Fisher and George M. Church and Usha Menon and Ronny Drapkin and Andrew K. Godwin and Yonglun Luo and Maximilian Ackermann and Alexandar Tzankov and Kirsten D. Mertz and Danny Jonigk and Allan Tsung and David Sidransky and Jose Trevino and Arturo P. Saavedra and Robert Winn and Kyoung Jae Won and Eduardo Moreno and Rajan Gogna},
year = {2024},
journal = {Nature Biotechnology},
doi = {10.1038/s41587-024-02453-3},
url = {https://doi.org/10.1038/s41587-024-02453-3}
}RIS
TY - JOUR TI - Ovarian tumor cells gain competitive advantage by actively reducing the cellular fitness of microenvironment cells AU - Esha Madan AU - António M. Palma AU - Vignesh Vudatha AU - Amit Kumar AU - Praveen Bhoopathi AU - Jochen Wilhelm AU - Tytus Bernas AU - Patrick C. Martin AU - Gaurav Bilolikar AU - Aenya Gogna AU - Maria Leonor Peixoto AU - Isabelle Dreier AU - Thais Fenz Araujo AU - Elena Garre AU - Anna Gustafsson AU - Kalpana Deepa Priya Dorayappan AU - Narsimha Mamidi AU - Zhaoyu Sun AU - Michail Yekelchyk AU - Davide Accardi AU - Amalie Lykke Olsen AU - Lin Lin AU - Asaf Ashkenazy Titelman AU - Michael Bianchi AU - Phil Jessmon AU - Elnaz Abbasi Farid AU - Anjan K. Pradhan AU - Lena Neufeld AU - Eilam Yeini AU - Santanu Maji AU - Christopher J. Pelham AU - Hyobin Kim AU - Daniel Oh AU - Hans Olav Rolfsnes AU - Rita C. Marques AU - Amy Lu AU - Masaki Nagane AU - Sahil Chaudhary AU - Kartik Gupta AU - Keshav C. Gogna AU - Ana Bigio AU - Karthikeya Bhoopathi AU - Padmanabhan Mannangatti AU - K. Gopinath Achary AU - Javed Akhtar AU - Sara Belião AU - Swadesh Das AU - Isabel Correia AU - Cláudia L. da Silva AU - Arsénio M. Fialho AU - Michael J. Poellmann AU - Kaila Javius-Jones AU - Adam M. Hawkridge AU - Sanya Pal AU - Kumari S. Shree AU - Emad A. Rakha AU - Sambhav Khurana AU - Gaoping Xiao AU - Dongyu Zhang AU - Arjun Rijal AU - Charles Lyons AU - Steven R. Grossman AU - David P. Turner AU - Raghavendra Pillappa AU - Karanvir Prakash AU - Gaurav Gupta AU - Gary L. W. G. Robinson AU - Jennifer Koblinski AU - Hongjun Wang AU - Gita Singh AU - Sujay Singh AU - Sagar Rayamajhi AU - Manny D. Bacolod AU - Hope Richards AU - Sadia Sayeed AU - Katherine P. Klein AU - David Chelmow AU - Ronit Satchi-Fainaro AU - Karuppaiyah Selvendiran AU - Denise Connolly AU - Frits Alan Thorsen AU - Rolf Bjerkvig AU - Kenneth P. Nephew AU - Michael O. Idowu AU - Mark P. Kühnel AU - Christopher Moskaluk AU - Seungpyo Hong AU - William L. Redmond AU - Göran Landberg AU - Antonio Lopez-Beltran AU - Andrew S. Poklepovic AU - Arun Sanyal AU - Paul B. Fisher AU - George M. Church AU - Usha Menon AU - Ronny Drapkin AU - Andrew K. Godwin AU - Yonglun Luo AU - Maximilian Ackermann AU - Alexandar Tzankov AU - Kirsten D. Mertz AU - Danny Jonigk AU - Allan Tsung AU - David Sidransky AU - Jose Trevino AU - Arturo P. Saavedra AU - Robert Winn AU - Kyoung Jae Won AU - Eduardo Moreno AU - Rajan Gogna PY - 2024 JO - Nature Biotechnology DO - 10.1038/s41587-024-02453-3 UR - https://doi.org/10.1038/s41587-024-02453-3 ER -
APA
Madan, E., Palma, A. M., Vudatha, V., Kumar, A., Bhoopathi, P., Wilhelm, J., Bernas, T., Martin, P. C., Bilolikar, G., Gogna, A., Peixoto, M. L., Dreier, I., Araujo, T. F., Garre, E., Gustafsson, A., Dorayappan, K. D. P., Mamidi, N., Sun, Z., Yekelchyk, M., Accardi, D., Olsen, A. L., Lin, L., Titelman, A. A., Bianchi, M., Jessmon, P., Farid, E. A., Pradhan, A. K., Neufeld, L., Yeini, E., Maji, S., Pelham, C. J., Kim, H., Oh, D., Rolfsnes, H. O., Marques, R. C., Lu, A., Nagane, M., Chaudhary, S., Gupta, K., Gogna, K. C., Bigio, A., Bhoopathi, K., Mannangatti, P., Achary, K. G., Akhtar, J., Belião, S., Das, S., Correia, I., Silva, C. L. D., Fialho, A. M., Poellmann, M. J., Javius-Jones, K., Hawkridge, A. M., Pal, S., Shree, K. S., Rakha, E. A., Khurana, S., Xiao, G., Zhang, D., Rijal, A., Lyons, C., Grossman, S. R., Turner, D. P., Pillappa, R., Prakash, K., Gupta, G., Robinson, G. L. W. G., Koblinski, J., Wang, H., Singh, G., Singh, S., Rayamajhi, S., Bacolod, M. D., Richards, H., Sayeed, S., Klein, K. P., Chelmow, D., Satchi-Fainaro, R., Selvendiran, K., Connolly, D., Thorsen, F. A., Bjerkvig, R., Nephew, K. P., Idowu, M. O., Kühnel, M. P., Moskaluk, C., Hong, S., Redmond, W. L., Landberg, G., Lopez-Beltran, A., Poklepovic, A. S., Sanyal, A., Fisher, P. B., Church, G. M., Menon, U., Drapkin, R., Godwin, A. K., Luo, Y., Ackermann, M., Tzankov, A., Mertz, K. D., Jonigk, D., Tsung, A., Sidransky, D., Trevino, J., Saavedra, A. P., Winn, R., Won, K. J., Moreno, E., & Gogna, R. (2024). Ovarian tumor cells gain competitive advantage by actively reducing the cellular fitness of microenvironment cells. Nature Biotechnology. https://doi.org/10.1038/s41587-024-02453-3
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- crossref · retrieved 2026-09-25T01:09:02.739Z