References
1 Tril VE, Burlutskaya AV, Polischuk LV. Metabolic cardiomyopathy in pediatrics[J]. Rev Cardiovasc Med, 2019, 20(2): 73-80. PMID: 31344999. DOI: 10.31083/j.rcm.2019.02.5151.
2 Lee TM, Hsu DT, Kantor P, et al. Pediatric cardiomyopathies[J]. Circ Res, 2017, 121(7): 855-873. PMID: 28912187. PMCID: PMC5657298. DOI: 10.1161/CIRCRESAHA.116.309386.
3 De Angelis G, Bobbo M, Paldino A, et al. Cardiomyopathies in children: classification, diagnosis and treatment[J]. Curr Opin Organ Transplant, 2020, 25(3): 218-230. PMID: 32374574. DOI: 10.1097/MOT.0000000000000755.
4 郑奎, 张英谦, 刘露, 等. 32例儿童心肌病基因检测与临床特征分析[J]. 临床心血管病杂志, 2022, 38(7): 566-571. DOI: 10.13201/j.issn.1001-1439.2022.07.010.
5 郑奎, 刘露, 张英谦. MYH7基因突变致儿童肥厚型心肌病的研究进展[J]. 中国当代儿科杂志, 2023, 25(4): 425-430. PMID: 37073850. PMCID: PMC10120347. DOI: 10.7499/j.issn.1008-8830.2211044.
6 Ware SM, Bhatnagar S, Dexheimer PJ, et al. The genetic architecture of pediatric cardiomyopathy[J]. Am J Hum Genet, 2022, 109(2): 282-298. PMID: 35026164. PMCID: PMC8874151. DOI: 10.1016/j.ajhg.2021.12.006.
7 傅立军, 张浩. AHA儿童心肌病的分类和诊断科学声明解读[J]. 中国循环杂志, 2019, 34(增1): 49-53. DOI: 10.3969/j.issn.1000-3614.2019.增刊.011.
8 Richards S, Aziz N, Bale S, et al. Standards and guidelines for the interpretation of sequence variants: a joint consensus recommendation of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology[J]. Genet Med, 2015, 17(5): 405-424. PMID: 25741868. PMCID: PMC4544753. DOI: 10.1038/gim.2015.30.
9 Kantor PF, Lougheed J, Dancea A, et al. Presentation, diagnosis, and medical management of heart failure in children: Canadian Cardiovascular Society guidelines[J]. Can J Cardiol. 2013;29(12):1535-1552. PMID: 24267800. DOI:10.1016/j.cjca.2013.08.008.
10 Atemin S, Todorov T, Maver A, et al. MYH7-related disorders in two Bulgarian families: novel variants in the same region associated with different clinical manifestation and disease penetrance[J]. Neuromuscul Disord, 2021, 31(7): 633-641. PMID: 34053846. DOI: 10.1016/j.nmd.2021.04.004.
11 Marian AJ, Braunwald E. Hypertrophic cardiomyopathy: genetics, pathogenesis, clinical manifestations, diagnosis, and therapy[J]. Circ Res, 2017, 121(7): 749-770. PMID: 28912181. PMCID: PMC5654557. DOI: 10.1161/CIRCRESAHA.117.311059.
12 周源. MYH7基因突变相关儿童心肌病的临床表型分析及发病机制的初步探讨[D]. 上海: 上海交通大学, 2020.
13 Hershkovitz T, Kurolap A, Ruhrman-Shahar N, et al. Clinical diversity of MYH7-related cardiomyopathies: insights into genotype-phenotype correlations[J]. Am J Med Genet A, 2019, 179(3): 365-372. PMID: 30588760. DOI: 10.1002/ajmg.a.61017.
14 Fadl S, W?hlander H, Fall K, et al. The highest mortality rates in childhood dilated cardiomyopathy occur during the first year after diagnosis[J]. Acta Paediatr, 2018, 107(4): 672-677. PMID: 29224255. PMCID: PMC5887975. DOI: 10.1111/apa.14183.
15 Yotti R, Seidman CE, Seidman JG. Advances in the genetic basis and pathogenesis of sarcomere cardiomyopathies[J]. Annu Rev Genomics Hum Genet, 2019, 20: 129-153. PMID: 30978303. DOI: 10.1146/annurev-genom-083118-015306.
16 Masarone D, Kaski JP, Pacileo G, et al. Epidemiology and clinical aspects of genetic cardiomyopathies[J]. Heart Fail Clin, 2018, 14(2): 119-128. PMID: 29525641. DOI: 10.1016/j.hfc.2017.12.007.
17 Gao Y, Peng L, Zhao C. MYH7 in cardiomyopathy and skeletal muscle myopathy[J]. Mol Cell Biochem, 2023. Epub ahead of print. PMID: 37079208. DOI: 10.1007/s11010-023-04735-x.
18 Tajsharghi H, Fyhr IM. Structural effects of the slow/b-cardiac myosin heavy chain R453C mutation in cardiac and skeletal muscle[J]. Scand Cardiovasc J, 2008, 42(2): 153-156. PMID: 18365899. DOI: 10.1080/14017430701762701.
19 Marschall C, Moscu-Gregor A, Klein HG. Variant panorama in 1,385 index patients and sensitivity of expanded next-generation sequencing panels in arrhythmogenic disorders[J]. Cardiovasc Diagn Ther, 2019, 9(Suppl 2): S292-S298. PMID: 31737537. PMCID: PMC6837920. DOI: 10.21037/cdt.2019.06.06.
20 Abdallah AM, Carlus SJ, Al-Mazroea AH, et al. Digenic inheritance of LAMA4 and MYH7 mutations in patient with infantile dilated cardiomyopathy[J]. Medicina (Kaunas), 2019, 55(1): 17. PMID: 30650640. PMCID: PMC6359299. DOI: 10.3390/medicina55010017.
21 Armel TZ, Leinwand LA. Mutations at the same amino acid in myosin that cause either skeletal or cardiac myopathy have distinct molecular phenotypes[J]. J Mol Cell Cardiol, 2010, 48(5): 1007-1013. PMID: 19854198. PMCID: PMC2854248. DOI: 10.1016/j.yjmcc.2009.10.011.
22 Meredith C, Herrmann R, Parry C, et al. Mutations in the slow skeletal muscle fiber myosin heavy chain gene (MYH7) cause laing early-onset distal myopathy (MPD1)[J]. Am J Hum Genet, 2004, 75(4): 703-708. PMID: 15322983. PMCID: PMC1182058. DOI: 10.1086/424760.
23 Hirono K, Hata Y, Miyao N, et al. Increased burden of ion channel gene variants is related to distinct phenotypes in pediatric patients with left ventricular noncompaction[J]. Circ Genom Precis Med, 2020, 13(4): e002940. PMID: 32600061. DOI: 10.1161/CIRCGEN.119.002940.
24 Vershinina T, Fomicheva Y, Muravyev A, et al. Genetic spectrum of left ventricular non-compaction in paediatric patients[J]. Cardiology, 2020, 145(11): 746-756. PMID: 33049752. DOI: 10.1159/000510439.
25 Mazzarotto F, Hawley MH, Beltrami M, et al. Systematic large-scale assessment of the genetic architecture of left ventricular noncompaction reveals diverse etiologies[J]. Genet Med, 2021, 23(5): 856-864. PMID: 33500567. PMCID: PMC8105165. DOI: 10.1038/s41436-020-01049-x.
26 Franaszczyk M, Truszkowska G, Chmielewski P, et al. Analysis of de novo mutations in sporadic cardiomyopathies emphasizes their clinical relevance and points to novel candidate genes[J]. J Clin Med, 2020, 9(2): 370. PMID: 32013205. PMCID: PMC7073782. DOI: 10.3390/jcm9020370.
27 de Frutos F, Ochoa JP, Navarro-Pe?alver M, et al. Natural history of MYH7-related dilated cardiomyopathy[J]. J Am Coll Cardiol, 2022, 80(15): 1447-1461. PMID: 36007715. DOI: 10.1016/j.jacc.2022.07.023.
28 郑奎, 武菲, 娄美娜, 等. 儿童原发性扩张型心肌病的临床特征及遗传学分析[J]. 中国当代儿科杂志, 2023, 25(7): 726-731. PMID: 37529955. PMCID: PMC10414173. DOI: 10.7499/j.issn.1008-8830.2303077.