Journal of Clinical Pediatrics ›› 2025, Vol. 43 ›› Issue (9): 680-685.doi: 10.12372/jcp.2025.25e0254
• Original Article • Previous Articles Next Articles
ZHANG Wei, WANG Yang(
), DENG Wenhua, WU Yabin
Received:2025-03-17
Accepted:2025-06-25
Published:2025-09-15
Online:2025-08-27
CLC Number:
ZHANG Wei, WANG Yang, DENG Wenhua, WU Yabin. Analysis of clinical manifestations, ciliary structure and genetic characteristics of primary ciliary dyskinesia in 14 children[J].Journal of Clinical Pediatrics, 2025, 43(9): 680-685.
Table 1
Clinical characteristics and ciliary ultrastructure under TEM of 14 children with PCD"
| 患儿 | 性别 | 诊断 年龄 | 起病 年龄 | NRD | 慢性 咳嗽 | 鼻窦炎 | 中耳炎 | 内脏 转位 | 肺不张 | 支气管 扩张 | 镜下表现 | nNO/ nL·min-1 | TEM纤毛 超微结构 | TEM纤毛 缺陷分类 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 例1 | 女 | 8.0岁 | 6.5岁 | 无 | 有 | 有 | 无 | 无 | 有 | 有 | 右中叶狭窄,支气管化脓征 | 365.4 | IDA,部分ODA及微管数量异常 | Ⅰ类 |
| 例2 | 女 | 7.0岁 | 6.0岁 | 无 | 有 | 有 | 无 | 有 | 有 | 无 | 支气管化脓征 | 8.4 | ODA+部分IDA、微管数量异常 | Ⅰ类 |
| 例3 | 男 | 11.0岁 | 7.0岁 | 无 | 有 | 有 | 无 | 无 | 有 | 有 | 支气管化脓征 | 21 | 未做 | 未做 |
| 例4 | 女 | 0.2岁 | 3d | 有 | 有 | 无 | 无 | 无 | 有 | 无 | 支气管化脓征 | 未做 | 未做 | 未做 |
| 例5 | 女 | 7.0岁 | 2.0岁 | 有 | 有 | 有 | 无 | 无 | 有 | 无 | 支气管化脓征,支气管闭塞 | 15 | 未做 | 未做 |
| 例6 | 女 | 15.0岁 | 1.0岁 | 有 | 有 | 有 | 有 | 有 | 有 | 有 | 支气管化脓征 | 4.8 | 未做 | 未做 |
| 例7 | 女 | 11.0岁 | 10.0岁 | 无 | 有 | 有 | 无 | 无 | 有 | 有 | 支气管化脓症 | 26.4 | ODA+IDA | Ⅰ类 |
| 例8 | 女 | 10.0岁 | 9.0岁 | 无 | 有 | 有 | 无 | 无 | 无 | 有 | 支气管化脓征 | 10.8 | ODA+IDA | Ⅰ类 |
| 例9 | 女 | 12.0岁 | 11.0岁 | 无 | 有 | 无 | 无 | 无 | 无 | 有 | 支气管化脓征,左上叶狭窄 | 22.8 | 双联纤毛/CP,外周微管缺失或增多 | Ⅱ类 |
| 例10 | 女 | 10.0岁 | 8.0岁 | 无 | 有 | 有 | 无 | 无 | 无 | 有 | 支气管化脓征 | 142.8 | ODA+IDA,部分微管数量异常 | Ⅰ类 |
| 例11 | 男 | 8.0岁 | 7.5岁 | 无 | 有 | 有 | 无 | 无 | 无 | 无 | 支气管化脓征 | 22.2 | ODA+IDA | Ⅰ类 |
| 例12 | 女 | 3.0岁 | 2.0岁 | 无 | 有 | 有 | 无 | 无 | 有 | 有 | 支气管化脓征 | 未做 | ODA+IDA | Ⅰ类 |
| 例13 | 男 | 1.0岁 | 0.8岁 | 无 | 有 | 有 | 无 | 无 | 无 | 无 | 支气管化脓征 | 未做 | ODA | Ⅰ类 |
| 例14 | 男 | 8.0岁 | 0.1岁 | 有 | 有 | 有 | 有 | 有 | 有 | 有 | 支气管化脓征 | 未做 | CP/ODA | Ⅰ+Ⅱ类 |
Table 2
Genetic examination results of children with PCD"
| 患儿 | 基因 | 核苷酸改变 | 外显子/ 内含子 | 遗传 方式 | 来源 | ACMG证据 | 变异 评级 | 变异类型 | 变异状态 | 氨基酸改变 |
|---|---|---|---|---|---|---|---|---|---|---|
| 例1 | DNAH1 | c.2650C>T | exon16 | AR | 父亲 | PM1+PM2+PP3 | VUS | 错义突变 | 复合杂合 | p.Arg884Trp |
| DNAH1 | c.10084G>A | exon64 | AR | 母亲 | PM1+PM2+PP3 | VUS | 错义突变 | p.Val3362Met | ||
| 例2 | DNAH5 | c.1320+1G>A | IVS10 | AR | 母亲 | PVS1+PM2 | LP | 剪接突变 | 复合杂合 | p.? |
| DNAH5 | c.13510A>T | exon78 | AR | 父亲 | PVS1+PM2+PM3 | P | 无义突变 | p.Lys4504Ter | ||
| 例3 | DNAH5 | c.5563_5564insA | exon34 | AR | 父亲 | PVS1+PM2+PM3 _Strong | P | 移码突变 | 复合杂合 | p.Ile1855fsTer6 |
| DNAH5 | c.4147_4148delAinsTCC | exon27 | AR | 母亲 | PVS1+PM2+PM3 | P | 移码突变 | p.Ile1383fsTer22 | ||
| 例4 | CCNO | c.258_262dup | exon1 | AR | 父亲 | PVS1+PM3+PP1 | P | 移码突变 | 纯合 | p.Gln88ArgfsTer8 |
| CCNO | c.258_262dup | exon1 | AR | 母亲 | PVS1+PM3+PP1 | P | 移码突变 | p.Gln88ArgfsTer8 | ||
| 例5 | CCNO | c.317A>C | exon1 | AR | 父亲 | PM2+PM3+PP3+PP4 | VUS | 错义突变 | 复合杂合 | p.Tyr106ser |
| CCNO | c.253_262dup | exon1 | AR | 母亲 | PVS1+PM2+PP1 | P | 移码突变 | p.Gin88ArgfsTer51 | ||
| 例6 | DNAH5 | c.8569G>T | exon51 | AR | - | PVS1+PM2 | LP | 无义突变 | 杂合 | p.Glu2857Ter |
| [1] | 中国罕见病联盟呼吸病学分会, 原发性纤毛运动障碍诊断与治疗中国共识专家组. 原发性纤毛运动障碍诊断与治疗中国专家共识[J]. 上海医学, 2020, 43(4) : 193-202. |
| Chinese Alliance for Rare Diseases Respiratory Branch, Chinese Expert Consensus Group on the Diagnosis and Treatment of Primary Ciliary Dyskinesia. Chinese expert consensus on the diagnosis and treatment of primary ciliary dyskinesia[J]. Shanghai Yixue, 2020, 43(4): 193-202. | |
| [2] | 杨琴, 马红玲, 郑跃杰, 等. HYDIN基因复合杂合突变导致原发性纤毛运动障碍1 例报告[J]. 临床儿科杂志, 2019, 37(4): 268-272. |
| Yang Q, Ma HL, Zheng YJ, et al. Primary ciliary dyskinesia caused by novel compound heterozygous mutation in HYDIN gene: a case report[J]. Linchuang Erke Zazhi, 2019, 37(4): 268-272. | |
| [3] | Despotes KA, Zariwala MA, Davis SD, et al. Primary ciliary dyskinesia: a clinical review[J]. Cells, 2024, 13(11): 974. |
| [4] | Raidt J, Riepenhausen S, Pennekamp P, et al. Analyses of 1236 genotyped primary ciliary dyskinesia individuals identify regional clusters of distinct DNA variants and significant genotype-phenotype correlations[J]. Eur Respir J, 2024, 64(2): 2301769. |
| [5] |
Guan Y, Yang H, Yao X, et al. Clinical and genetic spectrum of children with primary ciliary dyskinesia in China[J]. Chest, 2021, 159(5): 1768-1781.
doi: 10.1016/j.chest.2021.02.006 pmid: 33577779 |
| [6] |
Kuehni CE, Frischer T, Strippoli MP, et al. Factors influencing age at diagnosis of primary ciliary dyskinesia in European children[J]. Eur Respir J, 2010, 36(6): 1248-1258.
doi: 10.1183/09031936.00001010 pmid: 20530032 |
| [7] | Welch JE, Hogan MB, Wilson NW, et al. Ten-year experience using a plastic, disposable curette for the diagnosis of primary ciliary dyskinesia[J]. Ann Allergy Asthma Immunol, 2004, 93(2): 189-92. |
| [8] | Guo Z, Chen W, Wang L, et al. Clinical and genetic spectrum of children with primary ciliary dyskinesia in China[J]. J Pediatr, 2020, 225: 157-165. |
| [9] | Goutaki M, Halbeisen FS, Barbato A, et al. Late diagnosis of infants with PCD and neonatal respiratory distress[J]. J Clin Med, 2020, 9(9): 2871. |
| [10] |
Goutaki M, Shoemark A. Diagnosis of primary ciliary dyskinesia[J]. Clin Chest Med, 2022, 43(1): 127-140.
doi: 10.1016/j.ccm.2021.11.008 pmid: 35236553 |
| [11] | 陈其慧, 李莹. 原发性纤毛运动障碍研究进展[J]. 临床医学进展, 2023, 13(5): 8627-8633. |
| Chen QH, Li Y. Research progress on primary ciliary dyskinesia[J]. Linchuang Yixue Jinzhan, 2023, 13(5): 8627-8633. | |
| [12] | Shoemark A, Dell S, Shapiro A, et al. ERS and ATS diagnostic guidelines for primary dyskinesia: similarities and differences in approach to diagnosis[J]. Eur Respir J, 2019, 54(3): 1901066. |
| [13] | Shapiro AJ, Davis SD, Polineni D, et al. Diagnosis of primary ciliary dyskinesia. An official american thoracic society clinical practice guideline[J]. Am J Respir Crit Care Med, 2018, 197(12): e24-e39. |
| [14] | Zhang X, Wang X, Li H, et al. The value of nasal nitric oxide measurement in the diagnosis of primary ciliary dyskinesia[J]. Pediatr Invest, 2019, 3(4): 209-213. |
| [15] |
Legendre M, Thouvenin G, Taytard J, et al. High nasal nitric oxide, cilia analyses, and genotypes in a retrospective cohort of children with primary ciliary dyskinesia[J]. Ann Am Thorac Soc, 2022, 19(10): 1704-1712.
doi: 10.1513/AnnalsATS.202110-1175OC pmid: 35622418 |
| [16] | Raidt J, Krenz H, Tebbe J, et al. Limitations of nasal nitric oxide measurement for diagnosis of primary ciliary dyskinesia with normal ultrastructure[J]. Ann Am Thorac Soc, 2022, 19: 1275-1284. |
| [17] | Shoemark A, Boon M, Brochhausen C, et al. International consensus guideline for reporting transmission electron microscopy results in the diagnosis of primary ciliary dyskinesia (BEAT PCD TEM Criteria)[J]. Eur Respir J, 2020, 55(4): 1900725. |
| [18] | Lucas JS, Barbato A, Collins SA, et al. European Respiratory Society guidelines for the diagnosis of primary ciliary dyskinesia[J]. Eur Respir J, 2017, 49(1): 1601090. |
| [19] |
Hannah WB, Seifert BA, Truty R, et al. The global prevalence and ethnic heterogeneity of primary ciliary dyskinesia gene variants: a genetic database analysis[J]. Lancet Respir Med, 2022, 10(5): 459-468.
doi: 10.1016/S2213-2600(21)00453-7 pmid: 35051411 |
| [20] | Benkhelifa M, Coutton C, Zouari R, et al. Mutations in DNAH1, which encodes an inner arm heavy chain dynein, lead to male infertility from multiple morphological abnormalities of the sperm flagella[J]. Am J OF Hum Genet, 2014, 94(1): 95-104. |
| [21] |
Imtiaz F, Allam R, Ramzan K, et al. Variation in DNAH1 may contribute to primary ciliary dyskinesia[J]. BMC Med Genet, 2015, 16: 14.
doi: 10.1186/s12881-015-0162-5 pmid: 25927852 |
| [22] | Wang L, Gao L, Chen Y, et al. Transcriptional regulation of CCNO during the formation of multiple motile cilia[J]. Biochem Biophys Res Commun, 2024, 735: 150428. |
| [23] | Goutaki M, Halbeisen FS, Barbato A, et al. Late diagnosis of infants with PCD and neonatal respiratory distress[J]. J Clin Med, 2020, 9(9): 2871. |
| [24] |
Legendre M, Zaragosi LE, Mitchison HM. Motile cilia and airway disease[J]. Semin Cell Dev Biol, 2021, 110: 19-33.
doi: 10.1016/j.semcdb.2020.11.007 pmid: 33279404 |
| [25] | Despotes KA, Zariwala MA, Davis SD, et al. Primary ciliary dyskinesia: a clinical review[J]. Cells, 2024, 13(11): 974. |
| [26] | Paff T, Omran H, Nielsen KG, et al. Current and future treatments in primary ciliary dyskinesia[J]. Int J Mol Sci, 2021, 22(18): 9834. |
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