4.6 Article

Autophagy is involved in high glucose-induced heart tube malformation

Journal

CELL CYCLE
Volume 14, Issue 5, Pages 772-783

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15384101.2014.1000170

Keywords

autophagy; chick embryo; cell migration; heart tube; high glucose

Categories

Funding

  1. NSFC [31401230, 31071054, 30971493]
  2. Guangdong Natural Science Foundation [S2013010013392, S2011010001593]
  3. Fundamental Research Funds for the Central Universities [21614319]
  4. Guangdong Province Medical Research Foundation [B2014217]
  5. China Postdoctoral Science Foundation [2014M560694]
  6. Major Program of Guangdong College students technology innovation project
  7. Students Research Training Program Fund [CX14263]
  8. Outstanding doctors' training program of Ministry of Education

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Both pre-gestational and gestational diabetes have an adverse impact on heart development, but little is known about the influence on the early stage of heart tube formation. Using early gastrulating chick embryos, we investigated the influence of high glucose on the process of heart tube formation, specifically during the primary heart field phase. We demonstrated that high-glucose exposure resulted in 3 types of heart tube malformation: 1) ventricular hypertrophy, 2) ventricular hypertrophy with dextrocardia and 3) ventricular hypertrophy and dextrocardia with the fusion anomaly of a bilateral primary heart tube. Next, we found that these malformation phenotypes of heart tubes might mainly originate from the migratory anomaly of gastrulating precardiac mesoderm cells rather than cell proliferation in the developmental process of bilateral primary heart field primordia. The treatment of rapamycin (RAPA), an autophagy inducer, led to a similar heart tube malformation phenotype as high glucose. Additionally, high-glucose exposure promoted the expression of the key autophagy protein LC3B in early chick tissue. Atg7 is strongly expressed in the fusion site of bilateral primary heart tubes. All of these data imply that autophagy could be involved in the process of high-glucose-induced malformation of the heart tube.

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