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​​​​​​​​2023
23. Cortada, E.*, Yao, J.*, Xia, Y.*, Dündar, F., Zumbo, P., Yang, B., Rubio-Navarro, A., Perder, B., Qiu, M., Pettinato, A. M., Homan, E. A., Stoll, L., Betel, D.#, Cao, J.# & Lo, J. C.# Cross-species single-cell comparison of systemic and cardiac inflammatory responses after cardiac injury. bioRxiv, 2023.2003.2015.532865 (2023).

22. Rubio-Navarro A., Gómez-Banoy N., Stoll L., Dündar F., Mawla A.M., Ma L., Cortada E., Zumbo P., Li A., Reiterer M., Montoya-Oviedo N., Homan E.A., Imai N., Gilani A., Liu C., NajiA., Yang B., Chong A.C.N., Cohen D.E., Chen S., Cao J., Pitt G.S., Huising M.O., Betel D., Lo J.C. A beta cell subset with enhanced insulin secretion and glucose metabolism reduced in type 2 diabetes. Nat. Cell Biol. (2023). https://www.nature.com/articles/s41556-023-01103-1 

2022
21. Xia Y., Duca S., Perder B., Dündar F., Zumbo P., Qiu M., Yao J., Cao Y., Harrison M.R., Zangi L., Betel D., Cao J. Activation of a transient progenitor state in the epicardium is required for zebrafish heart regeneration. Nat Commun 13, 7704 (2022). https://doi.org/10.1038/s41467-022-35433-9

20. Shin K., Begeman I.J., Cao J., Kang J. Leptin b and its regeneration enhancer illustrate the regenerative features of zebrafish hearts. Dev. Dyn 2022, 10 December 2022. https://doi.org/10.1002/dvdy.556

. Xia Y., Duca S., Perder B., Dündar F., Zumbo P., Qiu M., Yao J., Cao Y., Harrison M.R., Zangi L., Betel D., Cao J. Activation of an injury-associated transient progenitor state in the epicardium is required for zebrafish heart regeneration. bioRxiv 2022.10.26.513031; doi: https://doi.org/10.1101/2022.10.26.513031

19. Sun F., Ou J., Shoffner A.R., Luan Y., Yang H., Song L., Safi A., Cao J., Yue F., Crawford G.E., Poss K.D. Enhancer selection dictates gene expression responses in remote organs during tissue regeneration. Nat. Cell Biol. 2022 May;24(5):685-696. doi: 10.1038/s41556-022-00906-y. PubMed.

18. Cao Y., Xia Y., Balowski, J.J., Ou J., Song L., Safi A., Curtis, T., Crawford, G.E., Poss K.D., Cao J. Identification of enhancer regulatory elements that direct epicardial gene expression during zebrafish heart regeneration. Development 2022. 149 (4): dev200133. doi: https://doi.org/10.1242/dev.200133

          This is a related article: The people behind the papers – Yingxi Cao, Ken Poss and Jingli Cao

2021
. Cao Y., Xia Y., Balowski, J.J., Ou J., Song L., Safi A., Curtis, T., Crawford, G.E., Poss K.D., Cao J. Identification of enhancer regulatory elements that direct epicardial gene expression during zebrafish heart regeneration. bioRxiv 2021.08.23.457406; doi: https://doi.org/10.1101/2021.08.23.457406

17. Duca, S., and Cao J. Ex vivo techniques to study heart regeneration in zebrafish.  Methods Mol. Biol., 2021;2158:211-222.
 doi: 10.1007/978-1-0716-0668-1_16. PubMed

​​2020
16. Cao Y. Duca, S., and Cao J. Epicardium in heart development.  Cold Spring Harbor Perspectives, 2020 Feb 3;12(2):a037192.
doi: 10.1101/cshperspect.a037192. PubMed

2019
15. Cao Y. and Cao J. Covering and re-covering the heart: development and regeneration of the epicardium. J. Cardiovasc. Dev. Dis., 2019, 6 (1), 3. PubMed

14. Han Y., Chen A., Umansky K.B., Oonk K.A., Choi W.Y., Dickson A.L., Ou J., Cigliola V., Yifa O., Cao J., Tornini V.A., Cox B.D., Tzahor E., Poss K.D. Vitamin D Stimulates Cardiomyocyte Proliferation and Controls Organ Size and Regeneration in Zebrafish. Dev. Cell, 2019 Jan 30. doi: 10.1016/j.devcel.2019.01.001. PubMed

2018
13. Cao J.# and Poss K.D.# The epicardium as a hub for heart regeneration. Nat. Rev. Cardiol., 2018. 15(10):631-647 (#corresponding author). PubMed

12. Li G., Huang S., Yang S., Wang J., Cao J., Czajkowsky D., and Shao Z. and Zhu X. abLIM1 constructs non-erythroid cortical actin networks to prevent mechanical tension-induced blebbing. Cell Discov., 2018. 4:42. doi: 10.1038/s41421-018-0040-3. PubMed
 
2017
11. Cao J., Wang J., Jackman C.P., Cox A.H., Trembley M.A., Balowski J.J., Cox B.D., De Simone A., Dickson A.L., Di Talia S., Small E.M., Kiehart D.P., Bursac N., and Poss K.D. Tension creates an endoreplication wavefront that leads regeneration of epicardial tissue. Dev. Cell, 2017. 42: 600–615. PubMed
 
2016
10. Cao J. and Poss K.D. Explant culture of adult zebrafish hearts for epicardial regeneration studies. Nat. Protoc., 2016. 11(5):872-81. PubMed
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9. Foglia M.J., Cao J., Tornini V.A., and Poss K.D. Multicolor mapping of the cardiomyocyte proliferation dynamics that construct the atrium. Development, 2016. 143(10):1688-96. PubMed

8. Cao J., Navis A., Cox B.D., Dickson A.L., Gemberling M., Karra R., Bagnat M., and Poss K.D. Single epicardial cell transcriptome sequencing identifies Caveolin-1 as an essential factor in zebrafish heart regeneration. Development, 2016. 143(2):232-43. PubMed
 
2015
7. Wang J.*, Cao J.*, Dickson A.L. and Poss K.D. Epicardial regeneration is guided by cardiac outflow tract and Hedgehog signalling. Nature, 2015. 522(7555): 226-30. (*co-first author). PubMed

6. Xu Y., Cao J., Huang S., Feng D., Zhang W., Zhu X. and Yan X. Characterization of tetratricopeptide repeat-containing proteins critical for cilia formation and function. PLoS ONE, 2015. 10(4): e0124378. Doi:10.1371/ journal.pone.0124378. PubMed
 
2013
5. Zhao H.,Zhu L., Zhu Y., Cao J., Huang Q., Yan X. and Zhu X. Cep63 paralog Deup1 enables massive de novocentriole biogenesis for vertebrate multiciliogenesis. Nat. Cell Biol., 2013. 15(12): 1434-44. PubMed
 
2012
4. Cao J.*, Shen Y.*, Zhu L., Xu Y., Zhou Y., Wu Z., Li Y., Yan X. and Zhu X. miR-129-3p controls cilia assembly by regulating CP110 and actin dynamics. Nat. Cell Biol., 2012. 14(7): 697-706 (*co-first author). PubMed
 
2010
3. Cao J. and Zhu X. The Epithelial Cell Polarity. Chinese Journal of Cell Biology, 2010. 32(2): 163-168.
 
2009
2. Zhang Q., Wang F., Cao J., Shen Y., Huang Q., Bao L. and Zhu X. Nudel promotes axonal lysosome clearance and endo-lysosome formation via dynein-mediated transport. Traffic, 2009. 10(9): 1337-49. PubMed
 
2008
1. Wang F., Zhang Q., Cao J., Huang Q and Zhu X. The microtubule plus end-binding protein EB1 is involved in Sertoli cell plasticity in testicular seminiferous tubules. Exp. Cell Res., 2008. 314(1): 213-26. PubMed
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