Yayınlanmış 1 Ocak 2016
| Sürüm v1
Dergi makalesi
Açık
A high throughput approach for analysis of cell nuclear deformability at single cell level
Oluşturanlar
- 1. MIT, Dept Mech Engn, 77 Massachusetts Ave, Cambridge, MA 02139 USA
- 2. Stanford Univ, Canary Ctr Stanford Early Canc Detect, Dept Radiol, Sch Med,Bioacoust MEMS Med BAMM Lab, Palo Alto, CA 94304 USA
Açıklama
Various physiological and pathological processes, such as cell differentiation, migration, attachment, and metastasis are highly dependent on nuclear elasticity. Nuclear morphology directly reflects the elasticity of the nucleus. We propose that quantification of changes in nuclear morphology on surfaces with defined topography will enable us to assess nuclear elasticity and deformability. Here, we used soft lithography techniques to produce 3 dimensional (3-D) cell culture substrates decorated with micron sized pillar structures of variable aspect ratios and dimensions to induce changes in cellular and nuclear morphology. We developed a high content image analysis algorithm to quantify changes in nuclear morphology at the single-cell level in response to physical cues from the 3-D culture substrate. We present that nuclear stiffness can be used as a physical parameter to evaluate cancer cells based on their lineage and in comparison to non-cancerous cells originating from the same tissue type. This methodology can be exploited for systematic study of mechanical characteristics of large cell populations complementing conventional tools such as atomic force microscopy and nanoindentation.
Dosyalar
bib-b5bff9f5-1228-4e5b-a7ff-f8cccf4752e3.txt
Dosyalar
(189 Bytes)
| Ad | Boyut | Hepisini indir |
|---|---|---|
|
md5:30be7401300b03c94229ae54cf6f9b50
|
189 Bytes | Ön İzleme İndir |