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本文引用的文献

1
Spectrum of Lysosomal storage disorders at a medical genetics center in northern India.印度北部一家医学遗传学中心的溶酶体贮积症谱。
Indian Pediatr. 2012 Oct;49(10):799-804. doi: 10.1007/s13312-012-0192-4. Epub 2012 Mar 30.
2
Diagnostic strategy for mucolipidosis II/III.黏脂贮积症 II/III 的诊断策略。
Indian Pediatr. 2012 Dec;49(12):975-7. doi: 10.1007/s13312-012-0247-6. Epub 2012 Jun 10.
3
Identification of novel mutations in HEXA gene in children affected with Tay Sachs disease from India.在印度患有泰萨二氏病的儿童中鉴定 HEXA 基因突变。
PLoS One. 2012;7(6):e39122. doi: 10.1371/journal.pone.0039122. Epub 2012 Jun 18.
4
Lysosomal storage disorders: molecular basis and laboratory testing.溶酶体贮积症:分子基础与实验室检测。
Hum Genomics. 2011 Mar;5(3):156-69. doi: 10.1186/1479-7364-5-3-156.
5
Molecular and structural analysis of metachromatic leukodystrophy patients in Indian population.对印度人群中脑硫脂沉积病患者的分子和结构分析。
J Neurol Sci. 2011 Feb 15;301(1-2):38-45. doi: 10.1016/j.jns.2010.11.007. Epub 2010 Dec 16.
6
The birth prevalence of lysosomal storage disorders in the Czech Republic: comparison with data in different populations.捷克共和国溶酶体贮积症的出生患病率:与不同人群数据的比较。
J Inherit Metab Dis. 2010 Aug;33(4):387-96. doi: 10.1007/s10545-010-9093-7. Epub 2010 May 20.
7
Newborn screening of lysosomal storage disorders.新生儿溶酶体贮积症筛查。
Clin Chem. 2010 Jul;56(7):1071-9. doi: 10.1373/clinchem.2009.141622. Epub 2010 May 20.
8
Lysosomal storage disease: revealing lysosomal function and physiology.溶酶体贮积症:揭示溶酶体的功能和生理学。
Physiology (Bethesda). 2010 Apr;25(2):102-15. doi: 10.1152/physiol.00041.2009.
9
Plasma chitotriosidase activity in children with lysosomal storage disorders.溶酶体贮积症患儿的血浆壳三糖苷酶活性。
Indian J Pediatr. 2010 Feb;77(2):203-5. doi: 10.1007/s12098-009-0249-0.
10
Lysosome biogenesis and lysosomal membrane proteins: trafficking meets function.溶酶体生物发生与溶酶体膜蛋白:运输与功能的交汇
Nat Rev Mol Cell Biol. 2009 Sep;10(9):623-35. doi: 10.1038/nrm2745. Epub 2009 Aug 12.

印度溶酶体贮积症的负担:来自单一诊断机构的387名患病儿童的情况

Burden of lysosomal storage disorders in India: experience of 387 affected children from a single diagnostic facility.

作者信息

Sheth Jayesh, Mistri Mehul, Sheth Frenny, Shah Raju, Bavdekar Ashish, Godbole Koumudi, Nanavaty Nidhish, Datar Chaitanya, Kamate Mahesh, Oza Nrupesh, Ankleshwaria Chitra, Mehta Sanjeev, Jackson Marie

机构信息

Department of Biochemical and Molecular Genetics, FRIGE's Institute of Human Genetics, FRIGE House, Satellite, Ahmedabad, 380015, Gujarat, India,

出版信息

JIMD Rep. 2014;12:51-63. doi: 10.1007/8904_2013_244. Epub 2013 Jul 13.

DOI:10.1007/8904_2013_244
PMID:23852624
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3897787/
Abstract

Lysosomal storage disorders (LSDs) are considered to be a rare metabolic disease for the national health forum, clinicians, and scientists. This study aimed to know the prevalence of different LSDs, their geographical variation, and burden on the society. It included 1,110 children from January 2002 to December 2012, having coarse facial features, hepatomegaly or hepatosplenomegaly, skeletal dysplasia, neuroregression, leukodystrophy, developmental delay, cerebral-cerebellar atrophy, and abnormal ophthalmic findings. All subjects were screened for I-cell disease, glycolipid storage disorders (Niemann-Pick disease A/B, Gaucher), and mucopolysaccharide disorders followed by confirmatory lysosomal enzymes study from leucocytes and/or fibroblasts. Niemann-Pick disease-C (NPC) was confirmed by fibroblasts study using filipin stain. Various storage disorders were detected in 387 children (34.8 %) with highest prevalence of glycolipid storage disorders in 48 %, followed by mucopolysaccharide disorders in 22 % and defective sulfatide degradation in 14 % of the children. Less common defects were glycogen degradation defect and protein degradation defect in 5 % each, lysosomal trafficking protein defect in 4 %, and transport defect in 3 % of the patients. This study demonstrates higher incidence of Gaucher disease (16 %) followed by GM2 gangliosidosis that includes Tay-Sachs disease (10 %) and Sandhoff disease (7.8 %) and mucopolysaccharide disorders among all LSDs. Nearly 30 % of the affected children were born to consanguineous parents and this was higher (72 %) in children with Batten disease. Our study also demonstrates two common mutations c.1277_1278insTATC in 14.28 % (4/28) and c.964G>T (p.D322Y) in 10.7 % (3/28) for Tay-Sachs disease in addition to the earlier reported c.1385A>T (p.E462V) mutation in 21.42 % (6/28).

摘要

对于国家卫生论坛、临床医生和科学家而言,溶酶体贮积症(LSDs)被视为一种罕见的代谢性疾病。本研究旨在了解不同溶酶体贮积症的患病率、地域差异及其对社会的负担。研究纳入了2002年1月至2012年12月期间的1110名儿童,这些儿童具有粗糙面容、肝肿大或肝脾肿大、骨骼发育异常、神经退行性变、脑白质营养不良、发育迟缓、大脑小脑萎缩以及眼科异常表现。所有受试者均接受了I型细胞病、糖脂贮积症(尼曼-匹克病A/B型、戈谢病)和黏多糖病的筛查,随后对白细胞和/或成纤维细胞进行溶酶体酶的确诊研究。尼曼-匹克病C型(NPC)通过使用制霉菌素染色的成纤维细胞研究得以确诊。在387名儿童(34.8%)中检测到了各种贮积症,其中糖脂贮积症的患病率最高,为48%,其次是黏多糖病,占22%,14%的儿童存在硫酸脑苷脂降解缺陷。较少见的缺陷包括糖原降解缺陷和蛋白质降解缺陷,各占5%,溶酶体运输蛋白缺陷占4%,患者中运输缺陷占3%。本研究表明,在所有溶酶体贮积症中,戈谢病的发病率较高(16%),其次是GM2神经节苷脂贮积症,其中包括泰-萨克斯病(10%)和桑德霍夫病(7.8%)以及黏多糖病。近30%的患病儿童父母为近亲结婚,在患有巴顿病的儿童中这一比例更高(72%)。我们研究还发现,除了先前报道的21.42%(6/28)的泰-萨克斯病c.1385A>T(p.E462V)突变外,还有两种常见突变,即14.28%(4/28)的c.1277_1278insTATC和10.7%(3/28)的c.964G>T(p.D322Y)。