Literature DB >> 16905376

Evaluation of fetal bone structure and mineralization in IGF-I deficient mice using synchrotron radiation microtomography and Fourier transform infrared spectroscopy.

Andrew J Burghardt1, Yongmei Wang, Hashem Elalieh, Xavier Thibault, Daniel Bikle, Françoise Peyrin, Sharmila Majumdar.   

Abstract

The role of insulin like growth factor-I (IGF-I) during pre-natal development has not been evaluated in detail. However, the high degree of growth retardation and peri-natal mortality in IGF-I deficient mouse models indicates that it plays a critical role during this time. Techniques to assess the structure and quality of bone in small animal fetuses could be beneficial in better understanding its role in bone metabolism and skeletal development. Synchrotron microtomography (SR-microCT) and Fourier transform infrared spectroscopy (FTIR) may provide methods to visualize and quantify differences in the structure and mineral density of bone in small animal fetuses. Tibia and spine from IGF-I deficient and wildtype fetal mice (18th day gestation) were imaged using SR-microCT. Three-dimensional structural indices and the degree of mineralization were determined for each sample. Mineralization was also assessed using FTIR and von Kossa staining. Bone volume was systematically lower in IGF-I -/- animals (tibia: -15%, p<0.05) while both sites were found to have a more rod-like architecture (24%, p<0.05; 113%, p<0.01) and lower trabecular separation (-16%, p<0.05; -21%, p<0.05). These structural results were mostly consistent with those seen in adult models of IGF-I deficiency. The degree of mineralization as measured by SR-microCT was higher in the IGF-I tibial metaphysis (11.7%, p<0.0001), while FTIR of the whole bone showed mineralization to be lower in the knockout group (-11%, p<0.05). Interestingly, von Kossa staining revealed no mineral content in the IGF-I -/- spinal ossification center while SR-microCT clearly indicated the presence of highly attenuating components, if somewhat lower in IGF-I -/- animals (-2.2%, p<0.05). This indicates that IGF-I deficiency is linked to subtle differences in the mineral environment and mineralization progression. The advantages unique to SR-microCT allow for 3D visualization and quantification of pre-natal bone microstructure and mineral density in mice which was not previously possible.

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Year:  2006        PMID: 16905376     DOI: 10.1016/j.bone.2006.06.017

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


  8 in total

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Journal:  Osteoporos Int       Date:  2009-06       Impact factor: 4.507

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Journal:  J Orthop Surg Res       Date:  2011-02-09       Impact factor: 2.359

3.  DSPP effects on in vivo bone mineralization.

Authors:  Kostas Verdelis; Yunfeng Ling; Taduru Sreenath; Naoto Haruyama; Mary MacDougall; Marjolein C H van der Meulen; Lyudmila Lukashova; Lyudmila Spevak; Ashok B Kulkarni; Adele L Boskey
Journal:  Bone       Date:  2008-08-16       Impact factor: 4.398

4.  The Effect of Ethanol Consumption on Composition and Morphology of Femur Cortical Bone in Wild-Type and ALDH2*2-Homozygous Mice.

Authors:  Andrey V Malkovskiy; Lauren D Van Wassenhove; Yury Goltsev; Kwame Osei-Sarfo; Che-Hong Chen; Bradley Efron; Lorraine J Gudas; Daria Mochly-Rosen; Jayakumar Rajadas
Journal:  Calcif Tissue Int       Date:  2020-10-17       Impact factor: 4.333

Review 5.  Insulin-like growth factors in embryonic and fetal growth and skeletal development (Review).

Authors:  Georgios D Agrogiannis; Stavros Sifakis; Efstratios S Patsouris; Anastasia E Konstantinidou
Journal:  Mol Med Rep       Date:  2014-05-21       Impact factor: 2.952

6.  Structural strength of cancellous specimens from bovine femur under cyclic compression.

Authors:  Kaori Endo; Satoshi Yamada; Masahiro Todoh; Masahiko Takahata; Norimasa Iwasaki; Shigeru Tadano
Journal:  PeerJ       Date:  2016-01-25       Impact factor: 2.984

7.  HA-g-CS Implant and Moderate-intensity Exercise Stimulate Subchondral Bone Remodeling and Promote Repair of Osteochondral Defects in Mice.

Authors:  Ke Shen; Xiaonan Liu; Hanjun Qin; Yu Chai; Lei Wang; Bin Yu
Journal:  Int J Med Sci       Date:  2021-10-22       Impact factor: 3.738

8.  Pancreas deficiency modifies bone development in the ovine fetus near term.

Authors:  Stuart A Lanham; Dominique Blache; Richard O C Oreffo; Abigail L Fowden; Alison J Forhead
Journal:  J Endocrinol       Date:  2021-11-24       Impact factor: 4.286

  8 in total

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