Extracorporeal human bone-like tissue generation

Author:

Rosenberg N.1,Rosenberg O.2

Affiliation:

1. Ruth and Bruce Rappaport Faculty of Medicine, Technion – Israel Institute of Technology, POB 9602, Haifa 31096, Israel

2. Sheltagen Medical LTD, Yafe Nof 22A, 30300 Atlit, Israel

Abstract

Objectives The need for bone tissue supplementation exists in a wide range of clinical conditions involving surgical reconstruction in limbs, the spine and skull. The bone supplementation materials currently used include autografts, allografts and inorganic matrix components; but these pose potentially serious side-effects. In particular the availability of the autografts is usually limited and their harvesting causes surgical morbidity. Therefore for the purpose of supplementation of autologous bone graft, we have developed a method for autologous extracorporeal bone generation. Methods Human osteoblast-like cells were seeded on porous granules of tricalcium phosphate and incubated in osteogenic media while exposed to mechanical stimulation by vibration in the infrasonic range of frequencies. The generated tissue was examined microscopically following haematoxylin eosin, trichrome and immunohistochemical staining. Results Following 14 days of incubation the generated tissue showed histological characteristics of bone-like material due to the characteristic eosinophilic staining, a positive staining for collagen trichrome and a positive specific staining for osteocalcin and collagen 1. Macroscopically, this tissue appeared in aggregates of between 0.5 cm and 2 cm. Conclusions We present evidence that the interaction of the cellular, inorganic and mechanical components in vitro can rapidly generate three-dimensional bone-like tissue that might be used as an autologous bone graft.

Publisher

British Editorial Society of Bone & Joint Surgery

Subject

Orthopedics and Sports Medicine,Surgery

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Whole-Body Vibration Enhances Bone Regeneration: For Treatment of Osteoporosis;Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration;2023

2. Determination of In Vitro Generated Bone Tissue;Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration;2023

3. Selected Research Methodologies of Biophysical Stimulation of Osteoblast;Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration;2023

4. Photobiomodulation of human osteoblast‐like cellsin vitroby low‐intensity‐pulsed LED light;FEBS Open Bio;2020-05-28

5. Safety and efficacy of in vitro generated bone-like material for in vivo bone regeneration – a feasibility study;Heliyon;2020-01

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