4.5 Article

A Novel Method for Polyacrylamide Gel Preparation Using N-hydroxysuccinimide-acrylamide Ester to Study Cell-Extracellular Matrix Mechanical Interactions

Journal

FRONTIERS IN MATERIALS
Volume 8, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fmats.2021.637278

Keywords

polyacrylamide gel; N-hydroxysuccinimide-acrylamide ester; extracellular matrix; sulfosuccinimidyl 6-(4' -azido-2' -nitrophenylamino)hexanoate; mechanical stimulation

Funding

  1. JSPS KAKENHI [19K18482, 18K16641, 18K14063]
  2. Nanotech Career-up Alliance - Ministry of Education, Culture, Sports, Science and Technology, Japan
  3. Kyoto University Nano Technology Hub Nanotechnology Platform Project - Ministry of Education, Culture, Sports, Science and Technology, Japan
  4. Grants-in-Aid for Scientific Research [19K18482, 18K16641, 18K14063] Funding Source: KAKEN

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This study aimed to improve and simplify the preparation of PA gels using an economical crosslinker, NHS-AA ester, to increase stability in protein coating, with promising results showing similar biological behavior of cells compared to sulfo-SANPAH gels.
Mechanical stimulation by the extracellular matrix (ECM) controls physiological and pathological cellular responses, such as stem cell differentiation, organogenesis, and tumor progression. Polyacrylamide (PA) gels have been widely used to study cell-ECM mechanical interactions. Typically, sulfosuccinimidyl 6-(4 '-azido-2 '-nitrophenylamino)hexanoate (sulfo-SANPAH) is used as a protein crosslinker in these gels. However, its low solubility, unstable binding with proteins, and high cost are barriers to its application. The objective of this study was to improve and simplify the preparation of PA gels using an economical crosslinker, N-hydroxysuccinimide-acrylamide (NHS-AA) ester, to enable increased stability in protein coating. By exposing excess NHS to the gel surface, we found an optimal ratio of NHS-AA ester:AA to obtain NHS-AA ester-containing PA gels with a uniform ECM protein coating and stiffness similar to that of sulfo-SANPAH-containing PA gels. The biological behavior of MCF7 and MCF10A cells were similar on NHS-AA ester and sulfo-SANPAH gels. Acini formation in Matrigel overlay culture were also consistent on NHS-AA ester and sulfo-SANPAH gels. This novel PA gel preparation method using NHS-AA ester can effectively replace the sulfo-SANPAH method and will be immensely useful in the evaluation of cell-ECM mechanical interactions.

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