Articles with public access mandates - Harpinder SainiLearn more
Not available anywhere: 2
Gold nanorod-incorporated gelatin-based conductive hydrogels for engineering cardiac tissue constructs
A Navaei, H Saini, W Christenson, RT Sullivan, R Ros, M Nikkhah
Acta biomaterialia 41, 133-146, 2016
Mandates: US National Institutes of Health
Fabrication Method of a High-Density Co-Culture Tumor–Stroma Platform to Study Cancer Progression
H Saini, M Nikkhah
Programmed Morphogenesis: Methods and Protocols, 241-255, 2021
Mandates: US National Science Foundation
Available somewhere: 5
A human organotypic microfluidic tumor model permits investigation of the interplay between patient-derived fibroblasts and breast cancer cells
DD Truong, A Kratz, JG Park, ES Barrientos, H Saini, T Nguyen, B Pockaj, ...
Cancer research 79 (12), 3139-3151, 2019
Mandates: US National Science Foundation, US National Institutes of Health
Advanced biomaterials and microengineering technologies to recapitulate the stepwise process of cancer metastasis
N Peela, D Truong, H Saini, H Chu, S Mashaghi, SL Ham, S Singh, ...
Biomaterials 133, 176-207, 2017
Mandates: US National Science Foundation
The role of tumor-stroma interactions on desmoplasia and tumorigenicity within a microengineered 3D platform
H Saini, KR Eliato, J Veldhuizen, A Zare, M Allam, C Silva, A Kratz, ...
Biomaterials 247, 119975, 2020
Mandates: US National Science Foundation, US National Institutes of Health
The role of desmoplasia and stromal fibroblasts on anti-cancer drug resistance in a microengineered tumor model
H Saini, K Rahmani Eliato, C Silva, M Allam, G Mouneimne, R Ros, ...
Cellular and molecular bioengineering 11, 419-433, 2018
Mandates: US National Science Foundation
Reversible control of gelatin hydrogel stiffness by using DNA crosslinkers
A Buchberger, H Saini, KR Eliato, A Zare, R Merkley, Y Xu, J Bernal, ...
ChemBioChem 22 (10), 1755-1760, 2021
Mandates: US National Science Foundation, US Department of Defense
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