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PMID: 18339367  
PMID: 18339367  
http://www.ncbi.nlm.nih.gov/pubmed/18339367
http://www.ncbi.nlm.nih.gov/pubmed/18339367
===The development of Meckel's cartilage in staged human embryos during the 5th week===
Folia Morphol (Warsz). 2005 Feb;64(1):23-8.
Lorentowicz-Zagalak M, Przystańska A, Woźniak W.
Department of Anatomy, University School of Medical Sciences, 60-781 Poznán, Poland.
Abstract
The study was conducted on 15 embryos aged 5 weeks. The primordium of Meckel's cartilage appears at stage 13 (32 days) as a rounded structure composed of fusiform and polygonal cells, which blend with other cells of the mandibular process. At stages 14 and 15 (33 and 36 days) Meckel's cartilage forms a well delineated core of small densely packed cells.
PMID: 15832266

Revision as of 01:48, 19 October 2010

2010

The Meckel's cartilage in human embryonic and early fetal periods

Anat Sci Int. 2010 Aug 27.

Wyganowska-Świątkowska M, Przystańska A.

Department of Conservative Dentistry and Periodontology, Poznan University of Medical Sciences, 70 Bukowska Street, 60-812, Poznan, Poland, marzena.wyganowska@periona.pl. Abstract The Meckel's cartilage itself and the mandible are derived from the first branchial arch, and their development depends upon the contribution of the cranial neural crest cells. The prenatal development of the Meckel's cartilage, along with its relationship to the developing mandible and the related structures, were studied histologically in human embryos and fetuses. The material was obtained from a collection of the Department of Anatomy, and laboratory procedures were used to prepare sections, which were stained according to standard light-microscopy methods. The formation of the Meckel's cartilage and its related structures was observed and documented. Some critical moments in the development of the Meckel's cartilage are suggested. The sequential development of the Meckel's cartilage started as early as stage 13 (32 days) with the appearance of condensation of mesenchymal cells within the mandibular prominence. During stage 17 (41 days), the primary ossification center of the mandible appeared on the inferior margin of the Meckel's cartilage. The muscular attachments to the Meckel's cartilage in embryos were observed at stage 18 (44 days). Their subsequent movement into the developing mandible during the 10th week seemed to diminish the role of the Meckel's cartilage as the supportive core; simultaneously, the process of regression within the cartilage was induced. During the embryonic period, the bilateral Meckel's cartilages were in closest contact at the posterior surface of their superior margins, preceding formation of the symphyseal cartilage at this site. The event sequence in the development of the Meckel's cartilage is finally discussed.

PMID: 20799009 http://www.ncbi.nlm.nih.gov/pubmed/20799009


Cells Tissues Organs. 2010 Sep 28. [Epub ahead of print] Incidence and Development of the Human Supracochlear Cartilage. Mérida Velasco JR, Rodríguez Vázquez JF, de la Cuadra Blanco C, Sanz Casado JV, Mérida Velasco JA.

Departamento de Anatomía y Embriología Humana II, Facultad de Medicina, Universidad Complutense de Madrid, Madrid, Spain. Abstract The supracochlear cartilage is known as an accessory cartilage of the chondrocranium situated between the otic capsule and the trigeminal ganglion. Although claimed to appear regularly during human development, its incidence and development have been reported only scarcely in the literature. The aim of this study was to describe the position and relationships of the supracochlear cartilage during its development. This study was made in 96 human specimens of 7-17 weeks of development, belonging to a collection of the Embryology Institute of Complutense University of Madrid. In addition, three-dimensional reconstruction of the supracochlear cartilage was made from 1 specimen. This cartilage, spherical in shape, appeared bilaterally in 23 specimens and unilaterally (left side) in 5. In our results, the supracochlear cartilage was found in 26.5% of the cases and was related to the trigeminal ganglion, the dura mater of the trigeminal cavity and the otic capsule. In 4 specimens, bilaterally, the supracochlear cartilage was continuous with the otic capsule. This work suggests that, based on the structures to which the supracochlear cartilage is related, it could be derived from the cranial neural crest.

PMID: 20881354 http://www.ncbi.nlm.nih.gov/pubmed/20881354


2009

The role of macrophages in the disappearance of Meckel's cartilage during mandibular development in mice

Tsuzurahara F, Soeta S, Kawawa T, Baba K, Nakamura M. Acta Histochem. 2009 Oct 22. [Epub ahead of print] PMID: 19853894

2008

Roles of FGFR3 during morphogenesis of Meckel's cartilage and mandibular bones

Havens BA, Velonis D, Kronenberg MS, Lichtler AC, Oliver B, Mina M. Dev Biol. 2008 Apr 15;316(2):336-49. Epub 2008 Feb 13.

To address the functions of FGFR2 and FGFR3 signaling during mandibular skeletogenesis, we over-expressed in the developing chick mandible, replication-competent retroviruses carrying truncated FGFR2c or FGFR3c that function as dominant negative receptors (RCAS-dnFGFR2 and RCAS-dnFGFR3). Injection of RCAS-dnFGFR3 between HH15 and 20 led to reduced proliferation, increased apoptosis, and decreased differentiation of chondroblasts in Meckel's cartilage. These changes resulted in the formation of a hypoplastic mandibular process and truncated Meckel's cartilage. This treatment also affected the proliferation and survival of osteoprogenitor cells in osteogenic condensations, leading to the absence of five mandibular bones on the injected side. Injection of RCAS-dnFGFR2 between HH15 and 20 or RCAS-dnFGFR3 at HH26 did not affect the morphogenesis of Meckel's cartilage but resulted in truncations of the mandibular bones. RCAS-dnFGFR3 affected the proliferation and survival of the cells within the periosteum and osteoblasts. Together these results demonstrate that FGFR3 signaling is required for the elongation of Meckel's cartilage and FGFR2 and FGFR3 have roles during intramembranous ossification of mandibular bones.

PMID: 18339367 http://www.ncbi.nlm.nih.gov/pubmed/18339367


The development of Meckel's cartilage in staged human embryos during the 5th week

Folia Morphol (Warsz). 2005 Feb;64(1):23-8.

Lorentowicz-Zagalak M, Przystańska A, Woźniak W. Department of Anatomy, University School of Medical Sciences, 60-781 Poznán, Poland.

Abstract The study was conducted on 15 embryos aged 5 weeks. The primordium of Meckel's cartilage appears at stage 13 (32 days) as a rounded structure composed of fusiform and polygonal cells, which blend with other cells of the mandibular process. At stages 14 and 15 (33 and 36 days) Meckel's cartilage forms a well delineated core of small densely packed cells.

PMID: 15832266