H. Abels and M. Wilke, Convergence to equilibrium for the Cahn-Hilliard equation with a logarithmic free energy, Nonlinear Anal, vol.67, pp.3176-3193, 2007.

A. Agosti, P. F. Antonietti, P. Ciarletta, M. Grasselli, and M. Verani, A Cahn-Hilliard-type equation with application to tumor growth dynamics, Math. Methods Appl. Sci, vol.40, pp.7598-7626, 2017.

A. Agosti, C. Cattaneo, C. Giverso, D. Ambrosi, and P. Ciarletta, A computational framework for the personalized clinical treatment of glioblastoma multiforme, Z. Angew. Math. Mech, vol.98, pp.2307-2327, 2018.

A. Agosti, S. Marchesi, G. Scita, and P. Ciarletta, The self-organised, non-equilibrium dynamics of spontaneous cancerous buds, 2019.

J. W. Barrett, J. F. Blowey, and H. Garcke, Finite Element Approximation of the Cahn-Hilliard Equation with Degenerate Mobility, SIAM J. Numer. Anal, vol.37, pp.286-318, 1999.

M. , B. Amar, and A. Goriely, Growth and instability in elastic tissues, J. Mech. Phys. Solids, vol.53, pp.2284-2319, 2005.

J. F. Blowey and C. M. Elliott, The Cahn-Hilliard gradient theory for phase separation with nonsmooth free energy. I. Mathematical analysis, European J. Appl. Math, vol.2, pp.233-280, 1991.

H. Byrne and L. Preziosi, Modelling solid tumour growth using the theory of mixtures, Math. Med. Biol, vol.20, pp.341-66, 2004.

J. W. Cahn, On spinodal decomposition, Acta Metallurgica, vol.9, pp.795-801, 1961.

J. W. Cahn and J. E. Hilliard, Free Energy of a Nonuniform System. I. Interfacial Free Energy, J. Chem. Phys, vol.28, pp.258-267, 1958.

C. Chatelain, P. Ciarletta, and M. B. Amar, Morphological changes in early melanoma development: influence of nutrients, growth inhibitors and cell-adhesion mechanisms, J. Theor. Biol, vol.290, pp.46-59, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00743768

L. Cherfils, A. Miranville, and S. Zelik, On a generalized Cahn-Hilliard equation with biological applications, DCDS(B), pp.2013-2026, 2014.

P. Ciarletta, L. Foret, and M. B. Amar, The radial growth phase of malignant melanoma : muti-phase modelling, numerical simulation and linear stability, J. R. Soc. Interface, vol.8, pp.345-368, 2011.

M. C. Colombo, C. Giverso, E. Faggiano, C. Boffano, F. Acerbi et al., Towards the Personalized Treatment of Glioblastoma: Integrating Patient-Specific Clinical Data in a Continuous Mechanical Model, PLoS ONE, p.10, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01232383

E. Davoli, H. Ranetbauer, L. Scarpa, and L. Trussardi, Degenerate nonlocal Cahn-Hilliard equations: Well-posedness, regularity and local asymptotics, Ann. Inst. H. Poincaré C Anal. Non Linéaire, 2019.

M. Ebenbeck and H. Garcke, Analysis of a Cahn-Hilliard-Brinkman model for tumour growth with chemotaxis, J. Differential Equations, vol.266, pp.5998-6036, 2019.

C. M. Elliott and H. Garcke, On the Cahn-Hilliard Equation with Degenerate Mobility, SIAM J. Math. Anal, vol.27, pp.404-423, 1996.

C. M. Elliott and Z. Songmu, On the Cahn-Hilliard equation, Arch. Rat. Mech. Anal, vol.96, pp.339-357, 1986.

S. Frigeri, K. F. Lam, E. Rocca, and G. Schimperna, On a multi-species Cahn-Hilliard-Darcy tumor growth model with singular potentials, Commun. Math. Sci, vol.16, pp.821-856, 2018.

C. G. Gal and M. Grasselli, Asymptotic behavior of a Cahn-Hilliard-Navier-Stokes system in 2d, Ann. Inst. H. Poincaré Anal. Non Linéaire, vol.27, pp.401-436, 2010.

G. Giacomin and J. L. Lebowitz, Phase segregation dynamics in particle systems with long range interactions. I. Macroscopic limits, J. Statist. Phys, vol.87, pp.37-61, 1997.

, Phase segregation dynamics in particle systems with long range interactions. II. Interface motion, SIAM J. Appl. Math, vol.58, pp.1707-1729, 1998.

G. Gilardi, A. Miranville, and G. Schimperna, Long time behavior of the Cahn-Hilliard equation with irregular potentials and dynamic boundary conditions, Chin. Ann. Math. Ser. B, vol.31, pp.679-712, 2010.

A. Giorgini, M. Grasselli, and H. Wu, The Cahn-Hilliard-Hele-Shaw system with singular potential, Ann. Inst. H. Poincaré Anal. Non Linéaire, vol.35, pp.1079-1118, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01543386

A. Iuorio and S. Melchionna, Long-time behavior of a nonlocal Cahn-Hilliard equation with reaction, Discrete Contin. Dyn. Syst, vol.38, pp.3765-3788, 2018.

J. Lions, Quelques méthodes de résolution des problèmes aux limites non linéaires, Dunod, 1969.

J. Lowengrub, E. Titi, and K. Zhao, Analysis of a mixture model of tumor growth, European J. Appl. Math, vol.24, pp.691-734, 2013.

A. Miranville, The Cahn-Hilliard Equation: Recent Advances and Applications, CBMS-NSF Regional Conference Series in Applied Mathematics, 2019.

J. Shen, J. Xu, and J. Yang, A New Class of Efficient and Robust Energy Stable Schemes for Gradient Flows, SIAM Rev, vol.61, pp.474-506, 2019.

Z. Songmu, Asymptotic behavior of solution to the Cahn-Hillard equation, Appl. Anal, vol.23, pp.165-184, 1986.

S. M. Wise, J. S. Lowengrub, H. B. Frieboes, and V. Cristini, Three-dimensional multispecies nonlinear tumor growth-I Model and numerical method, J. Theor. Biol, vol.253, pp.524-543, 2008.