Gianluca GRENCI

Research Assistant Professor, Department of Biomedical Engineering, National University of Singapore

Facility Manager, Nano and Microfabrication Core

mbigg@nus.edu.sg
Level 10 T-Lab
National University of Singapore
5A Engineering Drive 1
Singapore 117411

Curriculum Vitae

What are podosomes?

What are podosomes? Podosomes are actin-rich, adhesive structures that are present at the ventral surface of cells of the monocytic myeloid lineage, stimulated endothelial cells [1] and cultured Src-transformed cancer cells. These structures are [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What are podosomes?

What are the functions of podosomes?

What are the functions of podosomes? Both focal adhesions and podosomes are intimately involved in cell motility, with podosomes specifically implicated in cell invasion. Invasiveness is achieved through the secretion of matrix metalloproteinases (MMPs) [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What are the functions of podosomes?

What mechanisms drive cytoskeleton extension within podosomes?

What mechanisms drive cytoskeleton extension within podosomes? Interactions between the extracellular matrix (ECM) and cell surface integrins leads to podosome formation. The initiating signal is transduced through mechanosensing integrins to the cytoskeleton, upon which [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What mechanisms drive cytoskeleton extension within podosomes?

What are stress fibers?

What are stress fibers? Stress fibers are higher order cytoskeletal structures composed of cross-linked actin filament bundles, and in many cases, myosin motor proteins, that span a length of 1-2 micrometers [1]. At least [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What are stress fibers?

What is the function of stress fibers?

What is the function of stress fibers? Stress fibers are contractile in nature. By exerting and maintaining tension on the underlying substratum, they form a key element of the mechanotransduction apparatus that links the [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What is the function of stress fibers?

What is the first step in podosome assembly?

What is the first step in podosome assembly? Podosome initiation and assembly is highly regulated, both spatially and temporally. Dendritic cells best exemplify the temporal regulation of podosome formation. Following activation by an antigen [...]

By Management|Nov 30th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What is the first step in podosome assembly?

Gianluca Grenci

Research Assistant Professor, Facility Manager

Research Interests

Microfluidics, Micro-optical systems for live cell imaging

Our laboratory is primarily interested in the application of micro/nano fabrication technology to biological science. We exploit standard and advanced micro-fabrication tools in order to design and produce systems and devices for cell culturing and imaging. Examples of such devices are: topographically and/or chemically micro-textured environments, microfluidic devices, micro-optical systems and more.

We are also interested in developing microfluidic devices for FTIR spectromicroscopy of living cells. FTIR is an imaging technique that is intrinsically label-free and requires minimal sample preparation; when coupled with microscopy and high brilliance IR sources it allows the acquisition of chemical maps at a resolution which is diffraction limited. Absorption of IR photons induces very low or no damage at all, therefore it is in principle possible to observe for prolonged time the behaviour of living cells. Our research activity is intended to develope microfludic platforms suitable for FTIR (key parameters are optical transparency and low IR absorption) while keeping cells alive and healthy; a beneficial feature provided by micro-fabrication approach is the possibility to control of the chemical environment at the micro-scale.

Research Areas

Micro/nano engineering, microfluidic, FTIR

Biography

Dr Gianluca Grenci joined MBI in 2012 as a research fellow and head of the Micro Fabrication Core facility. Previously he was employed at the LILIT micro/nano fabrication group (IOM-CNR, Trieste, IT) for a total of 6 years, during which he was mainly involved in the design and fabrication of microfluidic devices for synchrotron-light related spectroscopic techniques, such as SAXS and FTIR. He thus developed extensive practical knowledge on all the major lithographic technologies (UV and EB lithography, wet/dry etching, soft-lithography, thin films deposition), plus some less usual and/or more advanced technique, such as X-ray Lithography and LIGA.

He did his PhD in the field of applied superconductivity, in a project aimed to develop a current cryo-comparator (CCC) using high critical temperature superconductors of the cuprate family (YBCO) in the form of a thick film deposited onto a large area, complex shaped silver substrate.

Education

PhD Polytechnic of Torino, DISPEA

 

Recent Publications

  1. Zhang Z, Canela A, Kurisu J, Zou P, Kawaue T, Nakazawa N, Takeda N, Saeki M, Utsunomiya M, Bilgic M, Ishidate F, Grenci G, Furuta T, Kishi Y, Sasanuma H, and Kengaku M. Confined migration induces non-lethal DNA damage in developing neurons. Nature 2026;. [PMID: 42310452]
  2. Gandin A, Torresan V, Panciera T, Grenci G, Vanni G, Citron A, Marchionni M, Battilana G, Pelosin M, Busetto R, Piccolo S, and Brusatin G. Flexible high-resolution ECM micropatterning. Nat Protoc 2026;. [PMID: 42129485]
  3. Dunsing-Eichenauer V, Hummert J, Chardès C, Schönau T, Guignard L, Galland R, Grenci G, Tillmann M, Koberling F, Nock C, Sibarita J, Viasnoff V, Antolovic IM, Erdmann R, and Lenne P. Fast volumetric fluorescence lifetime imaging of multicellular systems using single-objective light-sheet microscopy. Commun Biol 2025;. [PMID: 41315677]
  4. Jiang X, Xu P, Feng F, Grenci G, and Saw TB. Revealing Electromechanical Control of Tissue Homeostasis Using a Two-Layer Microfluidic Device. J Vis Exp 2025;(223). [PMID: 41052031]
  5. Cabillic M, Forriere H, Bettarel L, Butler C, Neuhaus A, Idrissi I, Sambrano-Lopez ME, Rossbroich J, Müller L, Ries J, Grenci G, Viasnoff V, Levet F, Sibarita J, and Galland R. In-depth single molecule localization microscopy using adaptive optics and single objective light-sheet microscopy. Nat Commun 2025; 16(1):8362. [PMID: 40993142]
  6. Mu B, Rutkowski DM, Grenci G, Vavylonis D, and Zhang D. Ca2+-dependent vesicular and non-vesicular lipid transfer controls hypoosmotic plasma membrane expansion. BMC Biol 2025; 23(1):207. [PMID: 40629316]
  7. Ong HT, Karatas E, Poquillon T, Grenci G, Furlan A, Dilasser F, Mohamad Raffi SB, Blanc D, Drimaracci E, Mikec D, Galisot G, Johnson BA, Liu AZ, Thiel C, Ullrich O, , Racine V, and Beghin A. Digitalized organoids: integrated pipeline for high-speed 3D analysis of organoid structures using multilevel segmentation and cellular topology. Nat Methods 2025;. [PMID: 40369245]
  8. Arora A, Rizvi MS, Grenci G, Dilasser F, Fu C, Ganguly M, Vaishnavi S, Paramsivam K, Budnar S, Noordstra I, Yap AS, and Viasnoff V. Viscous dissipation in the rupture of cell-cell contacts. Nat Mater 2025;. [PMID: 40355570]
  9. Nakazawa N, Grenci G, Kameo Y, Takeda N, Sawada T, Kurisu J, Zhang Z, Toma K, Adachi T, Nonomura K, and Kengaku M. PIEZO1-dependent mode switch of neuronal migration in heterogeneous microenvironments in the developing brain. Cell Rep 2025; 44(3):115405. [PMID: 40053456]
  10. Suryana M, Produit T, Yang H, Birarda G, Shanmugar JV, Krivitsky L, Paterova A, and Grenci G. Infrared imaging with visible light in microfluidic devices: the water absorption barrier. Analyst 2024;. [PMID: 39692693]

Lab Members

2021 Bootcamp on Mechanobiology

Jul 1st, 2021|Comments Off on 2021 Bootcamp on Mechanobiology

THIS EVENT HAS BEEN POSTPONED.

The group is growing!

Jun 23rd, 2021|Comments Off on The group is growing!

Warm welcome to the first members of Mammalian Development & Tissue Hydraulics Lab! Fantastic team that helps to build the lab despite the challenges during the pandemic… Kudos to all and looking forward to exciting times ahead!

Zihao Wu

May 21st, 2021|Comments Off on Zihao Wu

Alumni, Chan Group

MBI PIs win MOE AcRF Tier 3 grant to study endomembrane aging

Apr 1st, 2021|Comments Off on MBI PIs win MOE AcRF Tier 3 grant to study endomembrane aging

A research team led by Mechanobiology Institute (MBI) Principal Investigators Assoc. Prof. Tony Kanchanawong and Prof. Rong Li was recently awarded a Ministry of Education Academic Research Fund (MOE AcRF) Tier 3 grant.

Preventing mistakes in chromosomal segregation

Apr 1st, 2021|Comments Off on Preventing mistakes in chromosomal segregation

A recent study from the Li Lab at the Mechanobiology Institute, National University of Singapore and Johns Hopkins University, USA has revealed new aspects on the involvement of p53 protein in preventing mistakes in chromosomal segregation. Learn more

Jin Zhu

Mar 26th, 2021|Comments Off on Jin Zhu

Senior Research Fellow, Facility Manager

Wan Jun Gan

Mar 16th, 2021|Comments Off on Wan Jun Gan

Research Fellow, Chan Group

Meng Yue

Feb 1st, 2021|Comments Off on Meng Yue

Research Assistant, Class of January 2021, Kanchanawong Group

Pan Yuping

Feb 1st, 2021|Comments Off on Pan Yuping

Research Assistant, Class of January 2021, Toyama Group

Jashan Preet Singh

Feb 1st, 2021|Comments Off on Jashan Preet Singh

PhD Student, Class of January 2021, Young Group

Seah Sock Hong

Feb 1st, 2021|Comments Off on Seah Sock Hong

Research Fellow, Class of January 2021, Low Group

Former Lab Members

2021 Bootcamp on Mechanobiology

Jul 1st, 2021|Comments Off on 2021 Bootcamp on Mechanobiology

THIS EVENT HAS BEEN POSTPONED.

The group is growing!

Jun 23rd, 2021|Comments Off on The group is growing!

Warm welcome to the first members of Mammalian Development & Tissue Hydraulics Lab! Fantastic team that helps to build the lab despite the challenges during the pandemic… Kudos to all and looking forward to exciting times ahead!

Zihao Wu

May 21st, 2021|Comments Off on Zihao Wu

Alumni, Chan Group

MBI PIs win MOE AcRF Tier 3 grant to study endomembrane aging

Apr 1st, 2021|Comments Off on MBI PIs win MOE AcRF Tier 3 grant to study endomembrane aging

A research team led by Mechanobiology Institute (MBI) Principal Investigators Assoc. Prof. Tony Kanchanawong and Prof. Rong Li was recently awarded a Ministry of Education Academic Research Fund (MOE AcRF) Tier 3 grant.

Preventing mistakes in chromosomal segregation

Apr 1st, 2021|Comments Off on Preventing mistakes in chromosomal segregation

A recent study from the Li Lab at the Mechanobiology Institute, National University of Singapore and Johns Hopkins University, USA has revealed new aspects on the involvement of p53 protein in preventing mistakes in chromosomal segregation. Learn more

Jin Zhu

Mar 26th, 2021|Comments Off on Jin Zhu

Senior Research Fellow, Facility Manager

Wan Jun Gan

Mar 16th, 2021|Comments Off on Wan Jun Gan

Research Fellow, Chan Group

Meng Yue

Feb 1st, 2021|Comments Off on Meng Yue

Research Assistant, Class of January 2021, Kanchanawong Group

Pan Yuping

Feb 1st, 2021|Comments Off on Pan Yuping

Research Assistant, Class of January 2021, Toyama Group

Jashan Preet Singh

Feb 1st, 2021|Comments Off on Jashan Preet Singh

PhD Student, Class of January 2021, Young Group

Seah Sock Hong

Feb 1st, 2021|Comments Off on Seah Sock Hong

Research Fellow, Class of January 2021, Low Group

By Management|2023-05-09T13:21:29+08:00Apr 7th, 2017|Categories: Facility Manager|Comments Off on Gianluca Grenci

About the National University of Singapore

About NUSA leading global university centred in Asia, NUS is Singapore's flagship university, offering a global approach to education and research with a focus on Asian perspectives and expertise.

About the Mechanobiology Institute, National University of Singapore

About MBIOne of four Research Centres of Excellence at NUS, MBI is working to identify, measure and describe how the forces for motility and morphogenesis are expressed at the molecular, cellular and tissue level.
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