The effect of step-wise increased stretching on rat calvarial osteoblast collagen production.

Abstract:

:Mechanical forces regulate the function of bone cells. In this paper, the effects of cyclic stretching on osteoblasts derived from rat calvaria were studied at a magnitude occurring in physiological loaded bone tissue. A four-point bending apparatus was used to apply cyclic stretching on osteoblasts. Stretching at 500 microepsilon for 2-24 h resulted in an increase in matrix synthesis(P<0.01). In contrast, the cyclic stretching at 1000 and 1500 microepsilon for 2-24 h inhibited osteoblast collagen production (P<0.01). We also described our new loading method to increase strain magnitude step-by-step. The strain magnitude increased by 500 microepsilon increments from 500 to 1500 microepsilon every 2 or 12 h, respectively. Results showed that osteoblasts could absorb large amount of proline for collagen synthesis when stretched at 500 microepsilon. However, not all the absorbed proline was used to synthesize collagen. Some of it was stored in cells. When the suitable signal (500 microepsilon) was changed to an inhibiting signal (1000 microepsilon), cells responded to it accordingly and released proline to medium. These results demonstrate that the response of osteoblasts is dependent on the magnitude of the strain applied and cells can adjust their bio-chemical response to adapt to the changing environmental stimulation.

journal_name

J Biomech

journal_title

Journal of biomechanics

authors

Tang LL,Wang YL,Pan J,Cai SX

doi

10.1016/s0021-9290(03)00237-9

keywords:

subject

Has Abstract

pub_date

2004-01-01 00:00:00

pages

157-61

issue

1

eissn

0021-9290

issn

1873-2380

pii

S0021929003002379

journal_volume

37

pub_type

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