Introduction: Ataxia telangiectasia (AT) is a rare disease characterized by immunodeficiency and neurological manifestations. Ataxia, resulting from cerebella atrophy, runs a progressive incapacitating course. Clinical monitoring of the disease course is mandatory for early treatment. Aim: To study clinical severity of AT and correlate it with the degree of cerebellar atrophy. Patients and Methods: We retrospectively studied all children (less than 14 years) with AT seen at Hamad General Hospital Clinics between 1998-2013. We collected basic demographic data, parental consan-guinity, family history, AT clinical severity scores, and reviewed CBC with differential counts; alpha-fetoprotein, serum immunoglobulins and lymphocyte subsets. Cranial MRI scans of each subject were reviewed by a neuroradiologist. Cerebellar atrophy was visually and semi-quantitatively scored. Results: We analyzed data on 18 AT children (10 males and 8 females), mean age of 76.9 months. 77.8% had a positive family history of AT and 41.7% parental consanguinity. Lymphopenia was observed in 77.8% and high serum alpha-fetoprotein in 87.5% of children. Clinical severity of ataxia was 17.1 ± 8.4 (mean ± SD); 86.7% of patients were moderate-severe. MRI cerebellar atrophy score was 1.9 ± 1.3 (mean ± SD), and moderate in 51% of patients. AT clinical severity score correlated (coefficient r = 0.566) but not statistically significant p = 0.088) with MRI cerebellar atrophy scores. Conclusions: Moderate to severe ataxia and marked cerebellar atrophy are quite common in AT children. There is a correlation between AT clinical severity and cerebellar atrophy. Larger prospective studies might further determine the significance of our observations and help practicing practitioners monitor the progression of the disease.
Savitsky, K., Bar-Shira, A., Gilad, S., Rotman, G., Ziv, Y., Vanagaite, L., Tagle, D.A., Smith, S., Uziel, T., Sfez, S., Ashkenazi, M., Pecker, I., Frydman, M., Harnik, R., Patanjali, S.R., Simmons, A., Clines, G.A., Sartiel, A., Gatti, R.A., Chessa, L., Sanal, O., Lavin, M.F., Jaspers, N.G., Taylor, A.M., Arlett, C.F., Miki, T., Weissman, S.M., Lovett, M., Collins, F.S. and Shiloh, Y. (1995) A Single Ataxia Telangiectasia Gene with a Product Similar to PI-3 Kinase. Science, 268, 1749-1753. http://dx.doi.org/10.1126/science.7792600
Hoche, F., Seidel, K., Theis, M., Vlaho, S., Schubert, R., Zielen, S. and Kieslich, M. (2012) Neurodegeneration in Ataxia Telangiectasia: What Is New? What Is Evident? Neuropediatrics, 43, 119-129. http://dx.doi.org/10.1055/s-0032-1313915
Gilad, S., Chessa, L., Khosravi, R., Russell, P., Galanty, Y., Piane, M., Gatti, R.A., Jorgensen, T.J., Shiloh, Y. and Bar-Shira, A. (1998) Genotype-Phenotype Relationships in Ataxia-Telangiectasia and Variants. American Journal of Human Genetics, 62, 551-561. http://dx.doi.org/10.1086/301755
Becker-Catania, S.G., Chen, G., Hwang, M.J., Wang, Z., Sun, X., Sanal, O., Bernatowska-Matuszkiewicz, E., Chessa, L., Lee, E.Y. and Gatti, R.A. (2000) Ataxia-Telangiectasia: Phenotype/Genotype Studies of ATM Protein Expression, Mutations, and Radiosensitivity. Molecular Genetics and Metabolism, 70, 122-133. http://dx.doi.org/10.1006/mgme.2000.2998
Verhagen, M.M., Last, J.I., Hogervorst, F.B., Smeets, D.F., Roeleveld, N., Verheijen, F., Catsman-Berrevoets, C.E., Wulffraat, N.M., Cobben, J.M., Hiel, J., Brunt, E.R., Peeters, E.A., Gomez Garcia, E.B., van der Knaap, M.S., Lincke, C.R., Laan, L.A., Tijssen, M.A., van Rijn, M.A., Majoor-Krakauer, D., Visser, M., van’t Veer, L.J., Kleijer, W.J., van de Warrenburg, B.P., Warris, A., de Groot, I.J., de Groot, R., Broeks, A., Preijers, F., Kremer, B.H., Weemaes, C.M., Taylor, M.A., van Deuren, M. and Willemsen, M.A. (2012) Presence of ATM Protein and Residual Kinase Activity Correlates with the Phenotype in Ataxia-Telangiectasia: A Genotype-Phenotype Study. Human Mutation, 33, 561-571. http://dx.doi.org/10.1002/humu.22016
Spacey, S.D., Gatti, R.A. and Bebb, G. (2000) The Molecular Basis and Clinical Management of Ataxia Telangiectasia. Canadian Journal of Neurological Sciences, 27, 184-191. http://dx.doi.org/10.1017/S0317167100000822
Fatterpekar, G., Naidich, T.P. and Som, P.M. (2012) The Teaching Files: Brain and Spine Imaging. Elsevier Health Sciences, 102-103.
Meshram, C.M., Sawhney, I.M.S., Prabhakar, S. and Chopra, J.S. (1986) Ataxia Telangiectasia in Identical Twins: Unusual Features. Journal of Neurology, 233, 304-305. http://dx.doi.org/10.1007/BF00314163
Lin, D.D.M., Barker, P.B., Lederman, H.M. and Crawford, T.O. (2014) Cerebral Abnormalities in Adults with Ataxia-Telangiectasia. American Journal of Neuroradiology, 35, 119-123. http://dx.doi.org/10.3174/ajnr.A3646
Sahama, I., Sinclair, K., Pannek, K., Lavin, M. and Rose, S. (2014) Radiological Imaging in Ataxia Telangiectasia: A Review. The Cerebellum, 13, 521-530. http://dx.doi.org/10.1007/s12311-014-0557-4
Volkow, N.D., Tomasi, D., Wang, G.J., Studentsova, Y., Margus, B. and Crawford, T.O. (2014) Brain Glucose Metabolism in Adults with Ataxia-Telangiectasia and Their Asymptomatic Relatives. Brain, 137, 1753-1761. http://dx.doi.org/10.1093/brain/awu092
Schmitz-Hubsch, T., du Montcel, S.T., Baliko, L., Berciano, J., Boesch, S., Depondt, C., Giunti, P., Globas, C., Infante, J., Kang, J.S., Kremer, B., Mariotti, C., Melegh, B., Pandolfo, M., Rakowicz, M., Ribai, P., Rola, R., Schols, L., Szymanski, S., van de Warrenburg, B.P., Durr, A., Klockgether, T. and Fancellu, R. (2006) Scale for the Assessment and Rating of Ataxia: Development of a New Clinical Scale. Neurology, 66, 1717-1720. http://dx.doi.org/10.1212/01.wnl.0000219042.60538.92
Saviozzi, S., Saluto, A., Taylor, A.M., Last, J.I., Trebini, F., Paradiso, M.C., Grosso, E., Funaro, A., Ponzio, G., Migone, N. and Brusco, A. (2002) A Late Onset Variant of Ataxia-Telangiectasia with a Compound Heterozygous Genotype, A8030G/7481insA. Journal of Medical Genetics, 39, 57-61. http://dx.doi.org/10.1136/jmg.39.1.57
Sutton, I.J., Last, J.I., Ritchie, S.J., Harrington, H.J., Byrd, P.J. and Taylor, A.M. (2004) Adult-Onset Ataxia Telangiectasia Due to ATM 5762ins137 Mutation Homozygosity. Annals of Neurology, 55, 891-895. http://dx.doi.org/10.1002/ana.20139
Burk, K., Schulz, S.R. and Schulz, J.B. (2013) Monitoring Progression in Friedreich Ataxia (FRDA): The Use of Clinical Scales. Journal of Neurochemistry, 126, 118-124. http://dx.doi.org/10.1111/jnc.12318
Crawford, T.O., Mandir, A.S., Lefton-Greif, M.A., Goodman, S.N., Goodman, B.K., Sengul, H. and Lederman, H.M. (2000) Quantitative Neurologic Assessment of Ataxia-Telangiectasia. Neurology, 54, 1505-1509. http://dx.doi.org/10.1212/WNL.54.7.1505
Schmitz-Hubsch, T., Tezenas du Montcel, S., Baliko, L., Boesch, S., Bonato, S., Fancellu, R., Giunti, P., Globas, C., Kang, J.S., Kremer, B., Mariotti, C., Melegh, B., Rakowicz, M., Rola, R., Romano, S., Schols, L., Szymanski, S., van de Warrenburg, B.P., Zdzienicka, E., Durr, A. and Klockgether, T. (2006) Reliability and Validity of the International Cooperative Ataxia Rating Scale: A Study in 156 Spinocerebellar Ataxia Patients. Movement Disorders, 21, 699-704. http://dx.doi.org/10.1002/mds.20781
International Cooperative Ataxia Rating Scale. http://checkyone.bplaced.net/dokus/ICARS.pdf
Saute, J.A., Donis, K.C., Serrano-Munuera, C., Genis, D., Ramirez, L.T., Mazzetti, P., Perez, L.V., Latorre, P., Sequeiros, J., Matilla-Duenas, A. and Jardim, L.B. (2012) Ataxia Rating Scales—Psychometric Profiles, Natural History and Their Application in Clinical Trials. The Cerebellum, 11, 488-504. http://dx.doi.org/10.1007/s12311-011-0316-8
Schmahmann, J.D., Gardner, R., MacMore, J. and Vangel, M.G. (2009) Development of a Brief Ataxia Rating Scale (BARS) Based on a Modified Form of the ICARS. Movement Disorders, 24, 1820-1828. http://dx.doi.org/10.1002/mds.22681
Brandsma, R., Spits, A.H., Kuiper, M.J., Lunsing, R.J., Burger, H., Kremer, H.P. and Sival, D.A. (2014) Ataxia Rating Scales Are Age-Dependent in Healthy Children. Developmental Medicine & Child Neurology, 56, 556-563. http://dx.doi.org/10.1111/dmcn.12369
Sardanelli, F., Parodi, R.C., Ottonello, C., Renzetti, P., Saitta, S., Lignana, E. and Mancardi, G.L. (1995) Cranial MRI in Ataxia-Telangiectasia. Neuroradiology, 37, 77-82. http://dx.doi.org/10.1007/BF00588526
Currie, S., Hadjivassiliou, M., Craven, I.J., Wilkinson, I.D., Griffiths, P.D. and Hoggard, N. (2013) Magnetic Resonance Imaging Biomarkers in Patients with Progressive Ataxia: Current Status and Future Direction. The Cerebellum, 12, 245-266. http://dx.doi.org/10.1007/s12311-012-0405-3
Baldarcara, L., Currie, S., Hadjivassiliou, M., Hoggard, N., Jack, A., Jackowski, A.P., Mascalchi, M., Parazzini, C., Reetz, K., Righini, A., Schulz, J.B., Vella, A., Webb, S.J. and Habas, C. (2014) Consensus Paper: Radiological Biomarkers of Cerebellar Diseases. Cerebellum, 14, 175-196.
Wallis, L.I., Griffiths, P.D., Ritchie, S.J., Romanowski, C.A., Darwent, G. and Wilkinson, I.D. (2007) Proton Spectroscopy and Imaging at 3T in Ataxia-Telangiectasia. American Journal of Neuroradiology, 28, 79-83.
Ministry of Development, Planning, and Statistics (2013) Qatar Information Exchange. http://www.qsa.gov.qa/eng/index.htm
Genetics Home Reference (2014) Ataxia-Telangiectasia. http://ghr.nlm.nih.gov/condition/ataxia-telangiectasia
Ehlayel, M., Bener, A. and Abu Laban, M. (2013) Effects of Family History and Consanguinity in Primary Immunodeficiency Diseases in Children in Qatar. Open Journal of Immunology, 3, 47-53. http://dx.doi.org/10.4236/oji.2013.32008