TY - JOUR
T1 - Neurodegeneration, Intracranial Calcifications, Microcephaly and Drug-Resistant Epilepsy Caused by a Novel Homozygous Missense Variant in the NRROS Gene
T2 - A Case Report
AU - Al-Omari, Mohammed A.
N1 - Publisher Copyright:
© 2025 Al-Omari.
PY - 2025
Y1 - 2025
N2 - Negative regulator of reactive oxygen species (NRROS)-related microgliopathy (MIM# 618875) is a rare autosomal recessive neurodegenerative disorder. This case report describes a Saudi Arabian child with a novel homozygous NRROS variant, NM_198565.2: c.257T>C (p.Leu86Pro) presenting with drug-resistant epilepsy, rapid developmental regression, microcephaly, dystonia, and intracranial calcifications. Neuroimaging revealed bilateral intracranial calcifications, generalized brain volume loss, and connatal cysts; EEG showed a slow, suppressed background with multifocal epileptiform discharges. The variant is predicted to be deleterious by multiple in silico tools, suggesting a pathogenic effect on microglial function. This case underscores the importance of considering NRROS-related microgliopathy in children with early-onset neurodegeneration, drug-resistant epilepsy, and intracranial calcifications, enabling targeted genetic testing, diagnosis, and counseling.
AB - Negative regulator of reactive oxygen species (NRROS)-related microgliopathy (MIM# 618875) is a rare autosomal recessive neurodegenerative disorder. This case report describes a Saudi Arabian child with a novel homozygous NRROS variant, NM_198565.2: c.257T>C (p.Leu86Pro) presenting with drug-resistant epilepsy, rapid developmental regression, microcephaly, dystonia, and intracranial calcifications. Neuroimaging revealed bilateral intracranial calcifications, generalized brain volume loss, and connatal cysts; EEG showed a slow, suppressed background with multifocal epileptiform discharges. The variant is predicted to be deleterious by multiple in silico tools, suggesting a pathogenic effect on microglial function. This case underscores the importance of considering NRROS-related microgliopathy in children with early-onset neurodegeneration, drug-resistant epilepsy, and intracranial calcifications, enabling targeted genetic testing, diagnosis, and counseling.
KW - intracranial calcification
KW - microgliopathy
KW - NRROS gene
UR - https://www.scopus.com/pages/publications/105007452200
U2 - 10.2147/IMCRJ.S516299
DO - 10.2147/IMCRJ.S516299
M3 - Article
AN - SCOPUS:105007452200
SN - 1179-142X
VL - 18
SP - 651
EP - 655
JO - International Medical Case Reports Journal
JF - International Medical Case Reports Journal
ER -