Related Experiment Video
Updated: Jan 19, 2026

In Vitro Culture of Epithelial Cells from Different Anatomical Regions of the Human Amniotic Membrane
Published on: November 28, 2019
Expression of Lubricin in the Human Amniotic Membrane
Jingyi Wang1,2, Di Chen1,2, David A Sullivan1
1Department of Ophthalmology, Schepens Eye Research Institute of Massachusetts Eye and Ear, and Harvard Medical School, Boston, MA.
Purpose:
Lubricin, a boundary lubricant, is the body's unique antiadhesive, antifibrotic, antifriction, and antiinflammatory glycoprotein. This amphiphile is produced by numerous tissues and acts to regulate a number of processes, such as homeostasis, shear stress, tissue development, innate immunity, inflammation, and wound healing. We hypothesize that lubricin is also synthesized and expressed by the amniotic membrane (AM), which also possesses antiadhesive, antifibrotic, and antiinflammatory properties. We also hypothesize that lubricin, at least in part, mediates these AM capabilities. Our goal was to test our hypothesis.
Methods:
We obtained multiple samples of fresh, cryopreserved (CP), and freeze-dried (FD) human AMs, as well as fresh placental tissue as positive controls, and processed them for light microscopy, immunofluorescence, and western blot analyses. We also evaluated the ability of recombinant human lubricin to associate with FD-AMs.
Results:
Our results demonstrate that all fresh placental, fresh AM, and CP-AM samples contained lubricin. Lubricin was expressed in placental chorionic villi, AM epithelial and stromal cells, and CP-AM epithelia. No lubricin could be detected in FD-AMs but could be restored in FD-AMs after overnight incubation with recombinant human lubricin.
Conclusions:
This study supports our hypothesis that lubricin is expressed in human AMs. In addition, our data show that preservation methods influence the extent of this expression. Indeed, the disappearance of lubricin in FD-AMs may explain why dried AM reportedly loses its antiinflammatory and antiscarring abilities. It is possible that lubricin may mediate, at least in part, many of the biological properties of AMs.
Related Concept Videos
10:00In Vitro Culture of Epithelial Cells from Different Anatomical Regions of the Human Amniotic Membrane
04:21Lumican Extraction from Amniotic Membrane and Determination of its Storage Temperature
09:34Reprogramming Primary Amniotic Fluid and Membrane Cells to Pluripotency in Xeno-free Conditions
08:24The Production of Pluripotent Stem Cells from Mouse Amniotic Fluid Cells Using a Transposon System
10:33Isolation and Characterization Of Chimeric Human Fc-expressing Proteins Using Protein A Membrane Adsorbers And A Streamlined Workflow
13:16Characterization of Membrane Transporters by Heterologous Expression in E. coli and Production of Membrane Vesicles

