1 |
WILLIAMS K, CARSON J, LO C. Genetics of congenital heart disease[J].Biomolecules,2019,9(12):879.
|
2 |
王 维. 新生儿先天性心脏病防控措施研究进展[J]. 武警后勤学院学报(医学版), 2021, 30(1):80-84.
|
3 |
TAKSANDE A, JAMEEL P Z. Critical congenital heart disease in neonates: a review article[J]. Curr Pediatr Rev, 2021, 17(2):120-126.
|
4 |
CHEN T, LI S J, CHEN B, et al. Akt3 is a target of miR-29c-3p and serves an important function in the pathogenesis of congenital heart disease[J]. Int J Mol Med, 2019, 43(2):980-992.
|
5 |
BUIJTENDIJK M F J, BARNETT P, HOFF M J B. Development of the human heart[J]. Am J Med Genet, 2020, 184(1): 7-22.
|
6 |
FEULNER L, VAN VLIET P P, PUCEAT M, et al. Endocardial regulation of cardiac development[J]. J Cardiovasc Dev Dis, 2022, 9(5): 122.
|
7 |
AQUILA G, KOSTINA A, VIECELI D S F, et al. The Notch pathway: a novel therapeutic target for cardiovascular diseases?[J]. Expert Opin Ther Targets, 2019, 23(8):695-710.
|
8 |
CHAPMAN G, MOREAU J L M, I P E, et al. Functional genomics and gene-environment interaction highlight the complexity of congenital heart disease caused by Notch pathway variants[J]. Hum Mol Genet, 2020, 29(4):566-579.
|
9 |
THOMPSON B, DAVIDSON E A, LIU W, et al. Overview of PAX gene family: analysis of human tissue-specific variant expression and involvement in human disease[J]. Hum Genet, 2021, 140(3):381-400.
|
10 |
BOUDJADI S, CHATTERJEE B, SUN W Y, et al.The expression and function of PAX3 in development and disease[J]. Gene, 2018, 666:145-157.
|
11 |
MONSORO-BURP A H. PAX transcription factors in neural crest development[J]. Semin Cell Dev Biol, 2015, 44:87-96.
|
12 |
YAMAGISHI H. Cardiac neural crest[J]. Cold Spring Harb Perspect Biol, 2021, 13(1):a036715.
|
13 |
YORK J R, MCCAULEY D W. The origin and evolution of vertebrate neural crest cells[J]. Open Biol, 2020, 10(1):190285.
|
14 |
XU M, LI Y L, DU J F, et al. PAX3 promotes cell migration and CXCR4 gene expression in neural crest cells[J]. J Mol Neurosci, 2018, 64(1):1-8.
|
15 |
WANG J, MA X Q, ZHANG Q, et al. The interaction analysis of SNP variants and DNA methylation identifies novel methylated pathogenesis genes in congenital heart diseases[J]. Front Cell Dev Biol, 2021, 9:665514.
|
16 |
MACGROGAN D, MÜNCH J, DE LA POMPA J L. Notch and interacting signalling pathways in cardiac development, disease, and regeneration[J]. Nat Rev Cardiol, 2018, 15(11):685-704.
|
17 |
DERGILEV K V, ZUBKOVA Е S, BELOGLAZOVA I B, et al. Notch signal pathway- therapeutic target for regulation of reparative processes in the heart[J]. Ter Arkh, 2018, 90(12):112-121.
|
18 |
WU K H, XIAO Q R, YANG Y, et al. MicroRNA-34a modulates the Notch signaling pathway in mice with congenital heart disease and its role in heart development[J]. J Mol Cell Cardiol,2018,114:300-308.
|
19 |
胡丹慧, 罗慧臣. MiR-25-3p下调ADAM10表达阻断Notch信号通路抑制P19细胞向心肌细胞分化[J].细胞与分子免疫学杂志, 2019, 35(5):405-411.
|
20 |
MAGLI A, BAIK J, MILLS L J, et al. Time-dependent Pax3-mediated chromatin remodeling and cooperation with Six4 and Tead2 specify the skeletal myogenic lineage in developing mesoderm[J]. PLoS Biol, 2019, 17(2):e3000153.
|