
YU Hanry
Professor, Mechanobiology Institute, National University of Singapore
phsyuh@nus.edu.sg
+65 6516 3466
MD 9, #03-03; MD 1, #B1-03;
National University of Singapore
2 Medical Drive #04-01
Singapore 117597
Laboratory website
Translational Mechanobiology Laboratory
Research Program
Technology Innovation for Mechanobiology
MBI-MPG 2025 Conference: A Time and Space of Learning, Honoring and Inspiration
The MBI-MPG Conference 2025: Mechanobiology in Space and Time featured a vibrant scientific programme, communal experiences in Singapore, and moments of remembrance.
Seeking Postdoctoral Research Fellow in the Vascular Mechano-medicine Lab of Dr. Shailaja Seetharaman at the Mechanobiology Institute, NUS
We are seeking to recruit a Postdoctoral Research Fellow in the research group of Dr. Shailaja Seetharaman at the Mechanobiology Institute and Department of Physiology at the Yong Loo Lin School of Medicine, NUS.
Yiwen Tang
Research Fellow, Chan Group
Early Career Researchers’ Day: A Launchpad for Postdocs and PhD Students
A symposium for postdoctoral researchers and PhD students to present their scientific work, network with peers, and participate in career development.
Yu Hanry
Principal Investigator
Research Areas
Cell and Tissue Engineering Laboratory translates the latest biological and engineering knowledge into innovative technologies for diagnostics, therapeutics and drug testing applications in pharmaceutical and healthcare industry.
Research Interests
We adopt the latest industrial management models of teams to train future leaders of the R&D-based industry and academia. Our research expertise span from basic biological studies, biomaterials synthesis, to integrative engineering of biomedical devices that facilitate the translation of systems level understanding of biological functional processes into significant application solutions to help patients with liver diseases; and fuel biomedical industrial development in Asia. We acquire fundamental principles and technologies to quantitatively study and manipulate liver cell and tissue polarity and functions at meso-scale such that their global tissue structures and functions can be precision-engineered at mm-cm scales for applications.
Biography
Prof Yu is a Professor in the Department of Physiology, YLL School of Medicine, National University Health System, Principal Investigator at MBI, and Co-Lead Principal Investigator, Critical Analytics for Manufacturing Personalized-Medicine (CAMP), Singapore-MIT Alliance for Research and Technology (SMART). He was trained as a cell biologist but ventured into various other disciplines such as imaging, biomaterials, tissue engineering, drug testing, and computational biology of liver fibrosis. He takes pride in the interdisciplinary approach to research and graduate training; and he strives to build integrated teams to equip future graduates to readily adapt into both industrial and future academic settings.
Education
PhD, Duke University, USA
Recent Publications
- Balachander GM, Ng IC, Pai RR, Mitra K, Tasnim F, Lim YS, Kwok R, Song Y, Yaw LP, Quah CB, Zhao J, Septiana WL, Kota VG, Teng Y, Zheng K, Xu Y, Lim SH, Ng HH, and Yu H. LEADS – a comprehensive human liver-on-a-chip for non-alcoholic steatohepatitis (NASH) drug testing. Lab Chip 2025;. [PMID: 40391591]
- Wu X, Raymond JJ, Liu Y, Odermatt AJ, Sin W, Teo DBL, Natarajan M, Ng IC, Birnbaum ME, Lu TK, Han J, Springs SL, and Yu H. Rapid Universal Detection of High-Risk and Low-Abundance Microbial Contaminations in CAR-T Cell Therapy. Small Methods 2025;:e2500253. [PMID: 40159755]
- Zhou H, Loo LSW, Ong FYT, Lou X, Wang J, Myint MK, Thong A, Seow DCS, Wibowo M, Ng S, Lv Y, Kwang LG, Bennie RZ, Pang KT, Dobson RCJ, Domigan LJ, Kanagasundaram Y, and Yu H. Cost-effective production of meaty aroma from porcine cells for hybrid cultivated meat. Food Chem 2025; 473:142946. [PMID: 39864181]
- Bennie RZ, Ogilvie OJ, Loo LSW, Zhou H, Ng SK, Jin A, Trlin HJF, Wan A, Yu H, Domigan LJ, and Dobson RCJ. A risk-based approach can guide safe cell line development and cell banking for scaled-up cultivated meat production. Nat Food 2025;. [PMID: 39753758]
- Lou X, Wang J, Kwang LG, Zhou H, Ong FYT, Ng S, and Yu H. Perforated imprinting on high moisture meat analogue confers long range mechanical anisotropy resembling meat cuts. NPJ Sci Food 2024; 8(1):106. [PMID: 39706829]
- Liu Y, Raymond JJ, Wu X, Chua PWL, Ling SYH, Chan CC, Chan C, Loh JXY, Song MXY, Ong MYY, Ho P, Mcbee ME, Springs SL, Yu H, and Han J. Electrostatic microfiltration (EM) enriches and recovers viable microorganisms at low-abundance in large-volume samples and enhances downstream detection. Lab Chip 2024;. [PMID: 39189168]
- Ma Y, Li Z, Luo Y, Chen Y, Ma L, Liu X, Xiao J, Huang M, Li Y, Jiang H, Wang M, Wang X, Li J, Kong J, Shi P, Yu H, Jiang X, and Guo Q. Biodegradable Microembolics with Nanografted Polyanions Enable High-Efficiency Drug Loading and Sustained Deep-Tumor Drug Penetration for Locoregional Chemoembolization Treatment. ACS Nano 2024;. [PMID: 38946122]
- Wu Y, Cheng J, Qi J, Hang C, Dong R, Low BC, Yu H, and Jiang X. Three-dimensional liquid metal-based neuro-interfaces for human hippocampal organoids. Nat Commun 2024; 15(1):4047. [PMID: 38744873]
- Luo X, Wang J, Tan C, Dou Q, Han Z, Wang Z, Tasnim F, Wang X, Zhan Q, Li X, Zhou Q, Cheng J, Liao F, Yip HC, Jiang J, Tan RT, Liu S, and Yu H. Rapid Endoscopic Diagnosis of Benign Ulcerative Colorectal Diseases with an Artificial Intelligence Contextual Framework. Gastroenterology 2024;. [PMID: 38583724]
Lab Members
Recent Lab Alumni
What are intermediate filaments?
What are intermediate filaments? Intermediate filaments are a primary component of the cytoskeleton, although they are not found in all eukaryotes, and are absent in fungi and plants [1]. These filaments, which extend throughout [...]
How are intermediate filaments assembled?
How are intermediate filaments assembled? The soluble subunit for creating intermediate filaments is a tetramer. The tetramer is created from monomers in a stepwise fashion (as reviewed in [1]). First, two monomers associate via [...]
What are microtubules?
What are microtubules? Microtubules are hollow cylinders [1] that are approximately 25nm in diameter [2] and vary in length from 200 nm to 25 μm. They are formed by the lateral association of between [...]
How does the tubulin complex assemble?
How does the tubulin complex assemble? Microtubules are made up of repeating units of α/β- tubulin heterodimers, which are assembled on a γ-tubulin ring complex (a complex of γ-tubulin and other protein components), during [...]
How is microtubule assembly/disassembly regulated?
How is microtubule assembly/disassembly regulated? GTP hydrolysis has been shown to be a key regulator of microtubule polymerization dynamics. Although the exact mechanisms are poorly understood, two opposing models have been proposed to describe [...]
What is microtubule dynamic instability?
What is microtubule dynamic instability? In most cell types, thirteen protofilaments associate laterally to form a microtubule. In a few cases microtubules contain more or fewer protofilaments [1]. Numerous interactions between the subunits give [...]
What is the role of microtubules in mechanotransduction?
What is the role of microtubules in mechanotransduction? Microtubules exist in all cells, however their influence in the mechanotransduction of mechanical stimuli has been described at length in cardiac striated muscle [1]. Mechanical stimuli [...]
What are Contractile Fibers?
What are Contractile Fibers? Certain myosin isoforms (i.e. myosin II) form bipolar assemblies via the extended coiled-coil domains in the heavy chains (see also “thick filaments”). Actin “thin filaments” with opposite polarity associate with [...]
How is actomoysin contractility regulated?
How does the contractome protein network regulate actomyosin contractility? Non-muscle myosin II isoforms have a similar structure and function to their muscle equivalents. However, their interaction with actin serves to generate cellular forces rather [...]
What are Blebs?
What are Blebs? Blebs are blister-like protrusions that occur at the cell surface (reviewed in [1]). Blebs form, and function, in a series of defined steps. They typically grow to a length of around [...]
What is Actomyosin?
What is Actomyosin? Actomyosin refers to the actin-myosin complex that forms within the cytoskeleton. Actomyosin is inherently contractile, with the myosin motor protein able to pull on actin filaments. This property gives rise to [...]
How do filopodia move dynamically?
What causes filopodia retraction and collapse? Binding of filopodia to certain ligands or substratum may hinder filament assembly, thereby leading to changes that promote retraction, collapse or growth cone turning [1][2]. For example, substrate [...]

