• Title/Summary/Keyword: Palatogenesis

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A STUDY ON FACIAL BONE GROWTH OF PALATAL CLEFTS EXPERIMENTALLY INDUCED IN MICE (실험으로 유도된 구개열 마우스의 안면골 성장에 관한 연구)

  • Chun, Youn Sic
    • The korean journal of orthodontics
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    • v.18 no.2
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    • pp.329-342
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    • 1988
  • In methods of finding causes for cleft palate, many cases have been studied by investigators using teratogenic agents. Among them, a synthetic agent known as triamcinolone acetonide (TA) was widely used. When this drug was injected into mice during palatogenesis, it induced lowered body weight and a deformed mandible. But many cases have been studied on growth changes, only of the developmental stages of the palate. Therefore, the objective of this study was to evaluate craniofacial growth in experimentally induced cleft palate mice after finishing palatogenesis namely just before birth. Normal, alcohol treated, and TA treated DDY mice were obtained at 18-days of gestation and heads were prepared for serial sectioning in the sagittal plane. The midsagittal sections were photographically enlarged (${\times}40$) and measurements made to asses the amount of growth. The obtained results were as follows. 1. The incidence of cleft palate was 41.2% when TA was injected. 2. The body weight of the cleft palate group was lower than the control group. 3. In the cleft palate group, mandibular length (H-M) was lighter than the control group. 4. In the cleft palate group, degree of staining was not distinct compared to the control group by the double staining method. 5. In the cleft palate group, anteroposterior posture of the tongue tip to facial plane (C-M) was more posterior than the control group. 6. The cause of posterior posture of the tongue tip to facial plane (C-M) in the cleft palate group, was not short and retracted tongue but the mandibular length was increased. 7. The anteroposterior relationship of hyoid cartilage to cranial base was the same in all groups.

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Mesenchymal Smad4 mediated signaling is essential for palate development (구개 형성과정에서 간엽 내 Smad4 매개 신호전달의 역할)

  • Yoon, Chi-Young;Baek, Jin-A;Cho, Eui-Sic;Ko, Seung-O
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.36 no.6
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    • pp.460-465
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    • 2010
  • Introduction: A cleft palate is a common birth defect in humans with an incidence of 1/500 to 1/1,000 births. It appears to be caused by multiple genetic and environmental factors during palatogenesis. Many molecules are involved in palate formation but the biological mechanisms underlying the normal palate formation and cleft palate are unclear. Accumulating evidence suggests that transforming growth factor $\beta$/bone morphogenetic proteins (TGF-$\beta$/BMP) family members mediate the epithelial-mesenchymal interactions during palate formation. However, their roles in palatal morphogenesis are not completely understood. Materials and Methods: To understand the roles of TGF-$\beta$/BMP signaling in vivo during palatogenesis, mice with a palatal mesenchyme- specific deletion of Smad4, a key intracellular mediator of TGF-$\beta$/BMP signaling, were generated and analyzed using the Osr2Ires-Cre mice. Results: The mutant mice were alive at the time of birth with open eyelids and complete cleft palate but died within 24 hours after birth. In skeletal preparation, the horizontal processes of the palatine bones in mutants were not formed and resulted in a complete cleft palate. At E13.5, the palatal shelves of the mutants were growing as normally as those of theirwild type littermates. However, the palatal shelves of the mutants were not elevated at E14.5 in contrast to the elevated palatal shelves of the wild type mice. At E15.5, the palatal shelves of the mutants were elevated over the tongue but did not come in contact with each other, resulting in a cleft palate. Conclusion: These results suggest that mesenchymal Smad4 mediated signaling is essential for the growth of palatal processes and suggests that TGF-$\beta$/BMP family members are essential regulators during palate development.

Retinoic Acid Induces Abnormal Palate During Embryogenesis in Rat

  • Shin, Jeong-Oh;Park, Hyoung-Woo;Bok, Jin-Woong;Kim, Myoung-Hee
    • Biomedical Science Letters
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    • v.16 no.1
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    • pp.1-9
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    • 2010
  • In order to understand the effects of all-trans-RA on palate development, RA was injected into the abdominal cavity of pregnant mice and then the embryos were taken in the following days and analyzed morphologically as well as molecular biologically. When RA was administered at the stage of E11 or E15, the overall craniofacial development was retarded. The length from jaw to eye was shortened, compared to that of normal group. When the E11 embryos were exposed to RA, cleft lip was also found along with the cleft palate. In vitro palate culture experiment also revealed that RA caused cleft palate. When RT-PCR was performed, early stage administration of RA at E11 inhibited the upregulation of Hoxa7 expression at E15 through E17. Whereas in control group, high level of Hoxa7 expression was detected in the palate of E15 to E17. In the case of Bax, the expression was decreased from E16, while remaining constant in control group. When TUNEL analysis was performed following the RA treatment at E15, TUNEL positive cells were detected in the mesenchymal cells as well as epithelial cells of palatal shelves of E16 and in E17 embryos. Whereas in normal control, TUNEL positive cells were observed mostly at the epithelium around the nasal cavity and oral cavity where rugae is made. These results altogether indicate that exposure to RA during palate development causes facial deformity including cleft palate and cleft lip by modulating the expression of homeotic genes such as Hoxa7 as well as an apoptosis-related gene, Bax, and thus malregulating the apoptosis.

A STUDY OF $TGF-{\beta}$ EXPRESSION DURING PALATOGENESIS IN RATS WITH CLEFT PALATE INDUCED BY BAPN (($TGF-{\beta}$ 발현이 BAPN으로 유도된 구개열 백서의 구개 형성에 미치는 영향에 대한 실험적 연구)

  • Tae, Ki-Chul;Lee, Dong-Kun;Kim, Jeng-Ghee
    • Maxillofacial Plastic and Reconstructive Surgery
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    • v.23 no.3
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    • pp.205-211
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    • 2001
  • Cleft palate is one of the most serious congenital anomalies in human that causes a sucking problem in newborn babies and morphologic deformity that usually leads to death in newborn mouse offspring due to an insufficient ability to suck milk. Therefore cleft palate had been researched with epidemiologic and molecular methods, and many etiologic factors were examined closely. Among of the research methods, biologic molecule researches have been more important method for cleft palate formation study. The $TGF-{\beta}$ had an important role in the cell migration, epithelial-mesenchymal transdifferentiation, extracellular matrix synthesis and deposition. But there was a little research which was study about correlation cleft palate induced by beta-aminonitroproprionitrile(BAPN) with $TGF-{\beta}$ expression. A purpose of this presented study was examed how $TGF-{\beta}$ expression in cleft palate mice. At gestation days 13, BAPN-monofumarate salts($(C_3H_6N_2)_2$ ${\cdot}$ $C_4H_4O_4$, Sigma Co.) was single oral administered to 4 pregnant rats according to 1g/kg body weight. And pregnant rats were sacrificed on day 20 post coitus(p.c.), The $TGF-{\beta}$ expression patterns of cleft formed fetus mice was followed that; 1.Osteoblast, mesenchymal cell and epithelial cell of cleft mice were low expression compare to control mice. 2.There was no $TGF-{\beta}$ difference expression pattern of osteocyte of cleft mice compare to control mice. 3. In western blot analysis, thickness of band of $TGF-{\beta}$ in cleft mice was thin and dilute compare to control mice.

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Effects of TGF-$\beta$3 on Epithelial-mesenchymal transformation and Epidermal growth factor receptor expression in palatogenesis of chicken embryo (계태아 발생시 TGF-$\beta$3가 구개판 내측돌기상피의 상피간엽변환 및 상피성장인자수용체 발현에 미치는 영향)

  • Yang Byoung-Eun;Lee Jong-Ho
    • Korean Journal of Cleft Lip And Palate
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    • v.4 no.1
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    • pp.13-26
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    • 2001
  • Cleft lip and/or palate is the congenital orofacial malformation most commonly occurred in humans, The disease is multifactorial and is probably caused by genetic and/or environmental factors, So, there are many problems in research concerning etiology and in treatment of the disease, Even the most practiced and sophisticated methods of surgical repair are necessarily followed by scar contraction and fibrosis, which result in skeletal defects, dental abnormalities, cosmetic disfigurement, and speech impairment, As a result, Fetal surgery can be considered but practiced rarely when the deformity is not fatal to life, And treatment of cleft palate is performed in the form of medicine projection into uterus in animal experiments, Many studies show that growth factor and its receptor emerge from the developing palate; and the epidermal growth factor receptors have a important role in craniofacial development and in palatal fusion, The palatal morphogenesis of the avine is different from the mammal's; it takes the form of physiologic cleft palate, Recently, cleft palate fusion experiment was performed when the avine were in the period of palate formation through the exogenous TGF-β3 addition, and it showed that the exogenous TGF-β3 makes fusion of divided palate through certain process when cleft palate is occurred in palatal formation, In this study, I had the conformation of the fusion of cleft palate through the addition of TGF-β in case of chicken embryo, and observed the effect of TGF-β in EGF receptor distribution, And the following is the results of this study, 1. In case of the TGF-βl and β3 addition group, there was the decrease of EGFR(Epidermal Growth Factor Receptor) immunoreactivity in mesenchymal cells beneath the medial edge epithelium and also in epithelial mesenchymal interface which is between medial edge epithelium and nasal septum in 72 hours, 2, The immunoreactivity of the control group resembles that of normal chicken embryo palate in development, 3. In the view through fluorescence confocal microscopy, there was confluence in TGF-β3 addition group, This shows that the confluence induced by exogenous TGF-β3 is related to EGFR expression in palate of chicken embryo, which is a physiologic cleft palate model.

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Identification of intrinsic regulators in the secondary palate morphogenesis (이차구개 형태분화의 내적 조절유전자 규명)

  • Lee, Jae-Guk;Jang, Eun-Ha;Im, Yang-Hee;Kim, Ki-Byeung;Ko, Seung-O;Cho, Eui-Sic;Shin, Hyo-Keun
    • Korean Journal of Cleft Lip And Palate
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    • v.10 no.1
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    • pp.1-16
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    • 2007
  • 이차구개는 발생과정에서 구개선반의 형성과 성장, 거상과 융합의 과정을 통해 형성된다. 이와 같은 이차구개의 형성과정은 미세한 분자유전학적 신호전달기전에 의해 조절되는 것으로 알려져 있어서, 신호전달과정에 관여하는 유전인자의 발현이상이 되면 정상적인 이차구개가 형성되지 못하고 구개파열이라는 선천성 기형이 발생된다. 구개파열의 유발인자들에 대한 많은 연구에도 불구하고 현재까지 정상적인 이차구개의 형성을 조절하는 분자유전학적 기전에 대해서는 명확히 알려져 있지 않다. 따라서 본 연구에서는 이차구개의 형태분화를 조절하는 분자유전학적 기전을 알아보고자, 이차구개 형성의 내적 조절인자 중 핵심유전자로 알려져 있는 Osr2가 결손된 생쥐의 이차구개 형성과정에서 정상생쥐에 비해 발현의 변동이 나타나는 유전자를 확인하였다. 유전자 발현의 변동은 발생 14.5일(E14.5)의 구개선반으로부터 추출한 total RNA를 이용하여 ACP-based GeneFishing PCR을 시행하여 확인하였고, 각각의 변동된 유전자를 동정하여 정상생쥐의 이차구개 형성과정에서의 발현양상을 in situ hybridization을 시행하여 확인하였다. 총 120쌍의 primer를 이용한 검색을 통해서 정상생쥐의 구개선반에 비해 mutant에서 발현이 변동된 유전자는 7개가 검출되었고, 이들은 모두 정상생쥐에 비해 mutant에서 발현이 증가되는 것으로 확인되었다. 검출된 유전자는 vimentin(Vim), ${\beta}$-tropomyosin 2(Tpm2), thioredoxin-like 5(Txnl5), procollagen type II alpha 1(Col2a1), Insulin-like growth factor binding protein 7(IGFbp7), Sui 1 homologs(Sui 1), Defender against cell death1(Dad1)이었다. 검출된 유전자를 동정하여 정상생쥐의 구개 형성과정에서의 발현양상을 알아본 결과, Col2a1 을 제외한 유전자들은 모두 E13.5의 구개선반에서 특이적으로 발현되고 있었으나 구개선반이 융합된 E15.5에서는 Vim, Txnl5 그리고 Dad1 만이 봉합선을 따라 발현이 지속되고 있었다. 이상의 결과로 보아 검출된 유전자들은 구개선반의 형태분화과정에서 발현되어 이차구개의 형성과정에 관여할 것으로 여겨진다. 또한 이들은 이차구개 형성의 내적조절인자인 Osr2의 downstream target 으로 구개선반의 성장과 융합과정에 직접적으로 관여하는 유전물질일 것으로 추정된다.

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