Related Experiment Video
Updated: Jan 22, 2026

Evaluation of Keratinocyte Proliferation on Two- and Three-dimensional Type I Collagen Substrates
Published on: April 22, 2019
Hydrogel scaffold with substrate elasticity mimicking physiological-niche promotes proliferation of functional
Pankaj Mogha1, Ankita Srivastava2, Sushant Kumar2
1Department of Chemical Engineering, Indian Institute of Technology Bombay, Mumbai, Maharashtra 400076, India.
Abstract:
High numbers of autologous human primary keratinocytes (HPKs) are required for patients with burns, wounds and for gene therapy of skin disorders. Although freshly isolated HPKs exhibit a robust regenerative capacity, traditional methodology fails to provide a sufficient number of cells. Here we demonstrated a well characterized, non-cytotoxic and inert hydrogel as a substrate that mimics skin elasticity, which can accelerate proliferation and generate higher numbers of HPKs compared to existing tissue culture plastic (TCP) dishes. More importantly, this novel method was independent of feeder layer or any exogenous pharmaceutical drug. The HPKs from the hydrogel-substrate were functional as demonstrated by wound-healing assay, and the expression of IFN-γ-responsive genes (CXCL10, HLADR). Importantly, gene delivery efficiency by a lentiviral based delivery system was significantly higher in HPKs cultured on hydrogels compared with TCP. In conclusion, our study provides the first evidence that cell-material mechanical interaction is enough to provide a rapid expansion of functional keratinocytes that might be used as autologous grafts for skin disorders.
Related Concept Videos
Ecological Niches
Physiology of Respiration I: Functions of the Respiratory System
Fundamental Processes in Respiration:
Elasticity
The elasticity of an object can be described by a stress-strain curve, which represents the relationship between stress...
The Eukaryotic Promoter Region
Abnormal Proliferation
Stem Cell Niche

