Proband only exome sequencing in 403 Indian children with neurodevelopmental disorders: Diagnostic yield, utility and challenges in a resource-limited setting

被引:10
作者
Chand, Rayabarapu Pranav [1 ]
Vinit, Wankhede [2 ]
Vaidya, Varsha [3 ]
Iyer, Anand Subramaniam [4 ]
Shelke, Madhavi [5 ]
Aggarwal, Shagun [6 ]
Magar, Suvarna [7 ]
Danda, Sumita [8 ]
Moirangthem, Amita [9 ]
Phadke, Shubha Rajendra [9 ]
Goyal, Manisha [10 ]
Ranganath, Prajnya [6 ]
Mistri, Mehul [1 ]
Shah, Parth [1 ]
Shah, Nidhi [1 ]
Kotecha, Udhaya Hardik [1 ,11 ]
机构
[1] Neuberg Ctr Genom Med, Ahmadabad 380059, Gujarat, India
[2] Kids Neuro Clin & Child Rehabil Ctr, Nagpur, Maharashtra, India
[3] Kpond Children Super Specialty Hosp, Aurangabad, Maharashtra, India
[4] Apollo Hosp, Ahmadabad, India
[5] Integrated Ctr Child Neurodev, Aurangabad, Maharashtra, India
[6] Nizams Inst Med Sci, Hyderabad, India
[7] MGM Med Coll & Hosp, Aurangabad, India
[8] Christian Med Coll & Hosp, Vellore, India
[9] Sanjay Gandhi Postgrad Inst Med Sci, Lucknow, India
[10] SMS Med Coll & Hosp, Jaipur, India
[11] Neuberg Ctr Genom Med, Near GTPL House,Opp Armieda,Sindhu Bhavan Rd, Ahmadabad 380059, Gujarat, India
关键词
Neurodevelopmental disorders; Next generation sequencing; Exome sequencing; Copy number variations; GENOMICS;
D O I
10.1016/j.ejmg.2023.104730
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Whole exome sequencing is recommended as the first tier test for neurodevelopmental disorders (NDDs) with trio being an ideal option for the detection of de novo variants. Cost constraints have led to adoption of sequential testing i.e. proband-only whole exome followed by targeted testing of parents. The reported diagnostic yield for proband exome approach ranges between 31 and 53%. Typically, these study designs have aptly incorporated targeted parental segregation before concluding a genetic diagnosis to be confirmed. The reported estimates however do not accurately reflect the yield of proband only standalone whole-exome, a question commonly posed to the referring clinician in self pay medical systems like India. To assess the utility of standalone proband exome (without follow up targeted parental testing), we retrospectively evaluated 403 cases of neurodevelopmental disorders referred for proband-only whole exome sequencing at Neuberg Centre for Genomic Medicine (NCGM), Ahmedabad during the period of January 2019 and December 2021. A diagnosis was considered confirmed only upon the detection of Pathogenic/Likely Pathogenic variants in concordance with patient's phenotype as well as established inheritance pattern. Targeted parental/familial segregation analysis was recommended as a follow up test where applicable. The diagnostic yield of the proband-only standalone whole exome was 31.5%. Only 20 families submitted samples for follow up targeted testing, and a genetic diagnosis was confirmed in twelve cases increasing the yield to 34.5%. To understand factors leading to poor uptake of sequential parental testing, we focused on cases where an ultra-rare variant was detected in hitherto described de novo dominant neurodevelopmental disorder. A total of 40 novel variants in genes associated with de novo autosomal dominant disorders could not be reclassified as parental segregation was denied. Semi-structured telephonic interviews were conducted upon informed consent to comprehend reasons for denial. Major factors influencing decision making included lack of definitive cure in the detected disorders; especially when couples not planning further conception and financial constraints to fund further targeted testing. Our study thus depicts the utility and challenges of proband-only exome approach and highlights the need for larger studies to understand factors influencing decision making in sequential testing.
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相关论文
共 34 条
[1]   Diagnostic yield of next-generation sequencing in 87 families with neurodevelopmental disorders [J].
Alvarez-Mora, Maria Isabel ;
Sanchez, Aurora ;
Rodriguez-Revenga, Laia ;
Corominas, Jordi ;
Rabionet, Raquel ;
Puig, Susana ;
Madrigal, Irene .
ORPHANET JOURNAL OF RARE DISEASES, 2022, 17 (01)
[2]   Towards a Change in the Diagnostic Algorithm of Autism Spectrum Disorders: Evidence Supporting Whole Exome Sequencing as a First-Tier Test [J].
Arteche-Lopez, Ana ;
Gomez Rodriguez, Maria Jose ;
Sanchez Calvin, Maria Teresa ;
Francisco Quesada-Espinosa, Juan ;
Lezana Rosales, Jose Miguel ;
Palma Milla, Carmen ;
Gomez-Manjon, Irene ;
Hidalgo Mayoral, Irene ;
Perez de la Fuente, Ruben ;
Diaz de Bustamante, Arancha ;
Teresa Darnaude, Maria ;
Gil-Fournier, Belen ;
Ramiro Leon, Soraya ;
Ramos Gomez, Patricia ;
Sierra Tomillo, Olalla ;
Juarez Rufian, Alexandra ;
Arranz Cano, Maria Isabel ;
Villares Alonso, Rebeca ;
Morales-Perez, Pablo ;
Segura-Tudela, Alejandro ;
Camacho, Ana ;
Nunez, Noemi ;
Simon, Rogelio ;
Moreno-Garcia, Marta ;
Isabel Alvarez-Mora, Maria .
GENES, 2021, 12 (04)
[3]  
Battle Dolores Elaine, 2013, CoDAS, V25, P190
[4]   De novo variants in neurodevelopmental disorders-experiences from a tertiary care center [J].
Brunet, Theresa ;
Jech, Robert ;
Brugger, Melanie ;
Kovacs, Reka ;
Alhaddad, Bader ;
Leszinski, Gloria ;
Riedhammer, Korbinian M. ;
Westphal, Dominik S. ;
Mahle, Isabella ;
Mayerhanser, Katharina ;
Skorvanek, Matej ;
Weber, Sandrina ;
Graf, Elisabeth ;
Berutti, Riccardo ;
Necpal, Jan ;
Havrankova, Petra ;
Pavelekova, Petra ;
Hempel, Maja ;
Kotzaeridou, Urania ;
Hoffmann, Georg F. ;
Leiz, Steffen ;
Makowski, Christine ;
Roser, Timo ;
Schroeder, Sebastian A. ;
Steinfeld, Robert ;
Strobl-Wildemann, Gertrud ;
Hoefele, Julia ;
Borggraefe, Ingo ;
Distelmaier, Felix ;
Strom, Tim M. ;
Winkelmann, Juliane ;
Meitinger, Thomas ;
Zech, Michael ;
Wagner, Matias .
CLINICAL GENETICS, 2021, 100 (01) :14-28
[5]   New Candidates for Autism/Intellectual Disability Identified by Whole-Exome Sequencing [J].
Bruno, Lucia Pia ;
Doddato, Gabriella ;
Valentino, Floriana ;
Baldassarri, Margherita ;
Tita, Rossella ;
Fallerini, Chiara ;
Bruttini, Mirella ;
Lo Rizzo, Caterina ;
Mencarelli, Maria Antonietta ;
Mari, Francesca ;
Pinto, Anna Maria ;
Fava, Francesca ;
Fabbiani, Alessandra ;
Lamacchia, Vittoria ;
Carrer, Anna ;
Caputo, Valentina ;
Granata, Stefania ;
Benetti, Elisa ;
Zguro, Kristina ;
Furini, Simone ;
Renieri, Alessandra ;
Ariani, Francesca .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (24)
[6]   Whole exome sequencing in neurogenetic odysseys: An effective, cost- and time-saving diagnostic approach [J].
Cordoba, Marta ;
Alejandro Rodriguez-Quiroga, Sergio ;
Analia Vega, Patricia ;
Salinas, Valeria ;
Perez-Maturo, Josefina ;
Amartino, Hernan ;
Vasquez-Dusefante, Cecilia ;
Medina, Nancy ;
Gonzalez-Moron, Dolores ;
Andres Kauffman, Marcelo .
PLOS ONE, 2018, 13 (02)
[7]   Utility of clinical exome sequencing in the evaluation of neonates with suspected genetic condition-An observational study from tertiary neonatal care unit in South India [J].
Devi, R. Usha ;
Kumar, J. Thinesh ;
Jan, Shaik Mohammad Shafi ;
Chandrasekaran, Ashok ;
Amboiram, Prakash ;
Koshy, Teena ;
Balakrishnan, Umamaheswari .
EUROPEAN JOURNAL OF MEDICAL GENETICS, 2021, 64 (07)
[8]  
Dhankhar Anushikha, 2021, Asian Pac J Cancer Prev, V22, P671, DOI [10.31557/apjcp.2021.22.3.671, 10.31557/APJCP.2021.22.3.671]
[9]   Feasibility of Follow-Up Studies and Reclassification in Spinocerebellar Ataxia Gene Variants of Unknown Significance [J].
Ghorbani, Fatemeh ;
Alimohamed, Mohamed Z. ;
Vilacha, Juliana F. ;
Van Dijk, Krista K. ;
De Boer-Bergsma, Jelkje ;
Fokkens, Michiel R. ;
Lemmink, Henny ;
Sijmons, Rolf H. ;
Sikkema-Raddatz, Birgit ;
Groves, Matthew R. ;
Verschuuren-Bemelmans, Corien C. ;
Verbeek, Dineke S. ;
Van Diemen, Cleo C. ;
Westers, Helga .
FRONTIERS IN GENETICS, 2022, 13
[10]   Genetic and phenotypic analysis of 101 patients with developmental delay or intellectual disability using whole-exome sequencing [J].
Hiraide, Takuya ;
Yamoto, Kaori ;
Masunaga, Yohei ;
Asahina, Miki ;
Endoh, Yusaku ;
Ohkubo, Yumiko ;
Matsubayashi, Tomoko ;
Tsurui, Satoshi ;
Yamada, Hidetaka ;
Yanagi, Kumiko ;
Nakashima, Mitsuko ;
Hirano, Kouichi ;
Sugimura, Haruhiko ;
Fukuda, Tokiko ;
Ogata, Tsutomu ;
Saitsu, Hirotomo .
CLINICAL GENETICS, 2021, 100 (01) :40-50