Evaluating the influence on osteocyte mechanobiology within the lacunar-canalicular system for varying lacunar equancy and perilacunar elasticity: A multiscale fluid-structure interaction analysis

被引:0
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作者
Gupta, Abhisek [1 ]
Saha, Subrata [2 ]
Das, Apurba [3 ]
Chowdhury, Amit Roy [1 ]
机构
[1] Indian Inst Engn Sci & Technol, Dept Aerosp Engn & Appl Mech, Howrah, India
[2] Univ Washington, Dept Restorat Dent, Seattle, WA USA
[3] Indian Inst Engn Sci & Technol, Dept Mech Engn, Howrah, India
关键词
Osteon; Lacunar canalicular system; Lacunar morphology; Perilacunar properties; Osteocytes; FINITE-ELEMENT-ANALYSIS; BONE-CELLS; MECHANICAL ENVIRONMENT; STRAIN AMPLIFICATION; SOLUTE TRANSPORT; CORTICAL BONE; SHEAR-STRESS; FLOW; DENSITY; MODEL;
D O I
10.1016/j.jmbbm.2024.106767
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The lacunar morphology and perilacunar tissue properties of osteocytes in bone can vary under different physiological and pathological conditions. How these alterations collectively change the overall micromechanics of osteocytes in the lacunar-canalicular system (LCS) of an osteon still requires special focus. Therefore, a Haversian canal and LCS-based osteon model was established to evaluate the changes in the hydrodynamic environment around osteocytes under physiological loading using fluid-structure interaction analysis, followed by a sub-modelled finite element analysis to assess the mechanical responses of osteocytes and their components. Osteocytes were modelled with detailed configurations, including cytoplasm, nucleus, and cytoskeleton, and parametric variations in lacunar equancy (L.Eq) and perilacunar elasticity (Pl.E) were considered within the osteon model. The study aimed to conduct a comparative study among osteon models with varying L. Eq and Pl. E to check the resulting differences in osteocyte mechanobiology. The results demonstrated that the average mechanical stimulation of each subcellular component of osteocytes increased with decreases in L. Eq and Pl. E, reflecting conditions typically seen in young, healthy bone as per previous literature. However, hydrodynamic responses, such as fluid flow and fluid shear stress on osteocytes, varied proportionally with the elasticity difference between the bone matrix and the perilacunar region during Pl. E variation. Additionally, the findings revealed that a minimal percentage of energy was used to transmit mechanical responses through microtubules from the cell membrane to the nucleus, and this energy percentage increased with higher L. Eq. The outcomes of the study could help to quantify how the osteocyte microenvironment and its mechanosensitivity within cortical bone changes with L. Eq and Pl. E alterations in different bone conditions, from young to aged and healthy to diseased.
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页数:15
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