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Research interests
The focus of the Mak Research Lab is centered on 3 inter-related directions: 1) Uncovering principles of cell mechanosensing of complex multifactorial signals, 2) synthesizing more realistic extracellular matrix material states, and 3) building next generation functional tissues and organs. Together, these directions mutually advance each other and aim to provide: biophysical and mechanobiological insights toward understanding disease and development, especially in cancer, fibrosis, morphogenesis, and organogenesis; tools for improved biomaterials and biomimetics, with applications in novel therapeutics; and user-designable functional tissue and organ systems for advanced disease modeling and regenerative medicine. Toward understanding and building mechanobiological systems, our lab takes interdisciplinary and integrated approaches involving biomedical design, tissue engineering, biophysics, mechanics, materials science, biofabrication, bioprinting, microfluidics, computational modeling, bioinformatics, quantitative microscopy, and novel experimental systems.
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Collaborations and top research areas from the last five years
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Renewal: Systems Biophysics of Multiscale State Transitions in Cells and Tissues
Mak, M. (PI)
National Institute of General Medical Sciences
07/1/26 → 06/30/27
Project: Research
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3D bioprinting of cell-laden constructs: technologies, bioink design, and biomedical applications
Xing, Q., Liu, Y., Thomas, J. L., Zhang, W., Riaz, M., Mak, M. & Qyang, Y., Feb 1 2026, In: Biomedical materials (Bristol, England). 21, 1, 012001.Research output: Contribution to journal › Review article › peer-review
3 Scopus citations -
Advanced tissue-engineered pulsatile conduit using human induced pluripotent stem cell-derived cardiomyocytes
Luo, H., Anderson, C. W., Li, X., Lu, Y., Hoareau, M., Xing, Q., Fooladi, S., Liu, Y., Xu, Z., Park, J., Fallon, M. E., Thomas, J., Gruber, P. J., Elder, R. W., Mak, M., Riaz, M., Campbell, S. G. & Qyang, Y., Feb 2026, In: Acta Biomaterialia. 211, p. 92-103 12 p.Research output: Contribution to journal › Article › peer-review
Open Access2 Scopus citations -
Development of collagenous filaments with tuneable mechanical properties using a 3D bioprinter and molecular crowding
Martinez, A. R., Liang, Z., Zhou, Z., Gong, X., Nguyen, R., Jordan, S. N. & Mak, M., Jun 2026, In: Biofabrication. 18, 2, 025039.Research output: Contribution to journal › Article › peer-review
Open Access -
Nanoparticle-mediated bone regeneration: From molecular mechanisms to clinical translation
Wang, S., Zhai, S., Wang, B., Yan, Y., Gong, X., Liang, Z., Medina, G., Mak, D., Caron, J. & Mak, M., Jan 10 2026, In: Journal of Controlled Release. 389, 114409.Research output: Contribution to journal › Review article › peer-review
2 Scopus citations -
Adaptation to Volumetric Compression Drives an Apoptosis-Resistant and Invasive Phenotype in Liver Cancer
Gong, X., Ogino, N., Leite, M. F., Zhang, D., Chen, Z., Nguyen, R. Y., Liu, R., Kruglov, E., Flores, K., Cabral, A. T., de Mendes, G. M. M., Ehrlich, B. E. & Mak, M., Aug 2025, In: Cancer Research. 85, 16, p. 3156-3175 20 p.Research output: Contribution to journal › Article › peer-review
Open Access4 Scopus citations