Tuberous sclerosis complex renal disease

Author(s):  
Bradley P. Dixon ◽  
J. Christopher Kingswood ◽  
John J. Bissler

Tuberous sclerosis complex (TSC) is an autosomal dominant genetic disorder affecting almost all organs. It has wider phenotypic variation than often appreciated, with less than half showing the combination of characteristic facial angiofibromas, epilepsy, and mental retardation. Renal angiomyolipomata or cysts are found in 90% and renal failure was historically a common mode of adult death from the disease. Pulmonary lymphangioleiomyomatosis is restricted to females. Angiomyolipomata or cystic disease, or both, may cause renal failure. Angiomyolipomata may also haemorrhage, especially from larger lesions. Manifestations of brain involvement substantially complicate management of many patients with TSC. The causative genes TSC1 and TSC2 encode tuberin and hamartin which are involved in control of the mammalian target of rapamycin pathway. Inhibitors of that pathway, such as sirolimus and everolimus, are therefore logical approaches to therapy and have been shown to be effective in reducing angiomyolipomata volume. It remains to be seen whether they can protect renal function.

2021 ◽  
pp. 95-96
Author(s):  
Fabricio Andrés Lasso Andrade ◽  
Jorge Alejandro Cadena Arteaga ◽  
Ángela Maria Fajardo Arteaga ◽  
Viviana Lizeth Echeverry Morillo ◽  
David Alfredo Acevedo Vargas ◽  
...  

Tuberous Sclerosis Complex (TSC) also known as Bournneville disease. TSC is a multisystemic genetic disorder with autosomal dominant inheritance, of variable expression, which is mainly characterized by the presence of benign tumors or hamartomas in the nervous system and skin, but which may also be present in the heart, kidney, lung and other organs. The most frequent symptom is epilepsy, affecting 80-90% of patients with TSC which manifests itself in childhood between 1 to 3 years of age. We present a case of sporadic onset tuberous sclerosis with epilepsy that had a causal link with TSC after admission to the emergency room in a convulsive status.


Author(s):  
Howard Weiner ◽  
Peter B. Crino

Tuberous sclerosis complex (TSC) is a multisystem, genetic disorder that results from mutations in TSC1 or TSC2 genes. Neurological and neuropsychiatric disabilities include epilepsy, intellectual disability, autism, attention deficit disorder, and generalized anxiety. Cortical dysplasias (also known as tubers) are developmental abnormalities of the cerebral cortex that are believed to be responsible for seizures, cognitive disability, and autism. Subependymal giant cell astrocytomas (SEGAs) are intraventricular tumours that can cause hydrocephalus, increased intracranial pressure, and death. TSC results from hyperactivation of the mammalian target of rapamycin (mTOR) pathway in neurons in the brain. This chapter reviews the clinical presentations of TSC as well as diagnostic approaches for epilepsy and SEGAs. It discusses the genetics and cellular pathogenesis of TSC as well as reviewing the link to mTOR signalling. This chapter also presents evidence for different treatment modalities for seizures and SEGAs. It is written for qualified specialist physicians and caregivers.


2014 ◽  
Vol 2 (4) ◽  
pp. 208-210
Author(s):  
Sushma Shrestha ◽  
Sabina Shrestha ◽  
Anil Raj Ojha

Tuberous Sclerosis Complex is a rare genetic disorder inherited in autosomal dominant fashion. It is a multisystem disorder involving brain, skin, kidneys, heart, eyes and lungs which becomes apparent only in late childhood, limiting the usefulness of early diagnosis in infancy. Here, we report a case of an 11 year male child with tuberous sclerosis.DOI: http://dx.doi.org/10.3126/jkmc.v2i4.11798Journal of Kathmandu Medical CollegeVol. 2, No. 4, Issue 6, Oct.-Dec., 2013Page : 208-210


2017 ◽  
Vol 187 ◽  
pp. 318-322.e2 ◽  
Author(s):  
Brian J. Siroky ◽  
Alexander J. Towbin ◽  
Andrew T. Trout ◽  
Hannah Schäfer ◽  
Anna R. Thamann ◽  
...  

2020 ◽  
Vol 7 (1) ◽  
Author(s):  
Saba Ahmad ◽  
Luis Manon ◽  
Gifty Bhat ◽  
Jerry Machado ◽  
Alice Zalan ◽  
...  

AbstractTuberous sclerosis complex (TSC) is an autosomal dominant disease associated with tumors and malformed tissues in the brain and other vital organs. We report a novel de novo frameshift variant of the TSC1 gene (c.434dup;p. Ser146Valfs*8) in a child with TSC who initially presented with a sacral teratoma. This previously unreported association between TSC and teratoma has broad implications for the pathophysiology of embryonic tumors and mechanisms underlying cellular differentiation.


2020 ◽  
Vol 22 (Supplement_3) ◽  
pp. iii447-iii447
Author(s):  
Naomi Evans ◽  
Katherine Paton ◽  
Harinder Kaur Gill ◽  
Juliette Hukin

Abstract INTRODUCTION Everolimus is an inhibitor of mTORC1 (mammalian target of rapamycin complex 1), it is Health Canada and FDA approved for SEGA and renal angiomyolipoma in the setting of tuberous sclerosis complex (TSC). There is little data available in regards to this treatment of TSC associated retinal astrocytoma (RA). Although the behaviour of RA is often indolent or slowly progressive, aggressive behaviour with retinal detachment and neovascular glaucoma requiring enucleation has been reported in several patients. Definite TSC diagnosis is established when either two major features or one major and two minor features are present. Probable TSC diagnosis is established when one major plus one minor feature is present. METHODS We report a child with probable TSC mosaicism, with negative serum NGS for TSC but RA and retinal achromic patch on the left. A left retinal peripapillary astrocytoma around optic nerve and very close to fovea was noted. There was concern that if it grew or there were to be any leakage it would cause visual impairment. This lead to therapy with everolimus 4.5 mg/m2/d aiming for level between 5 and 10 mcg/L. RESULTS This boy has had a gradual reduction of the RA over the last 29 months, with healthy retina in the region no longer occupied by the lesion and preserved vision. He has tolerated therapy well with occasional mouth ulcers. CONCLUSION mTORC1 inhibition is effective therapy to preserve vision in the setting of retinal astrocytoma and tuberous sclerosis mosaicism.


2018 ◽  
pp. bcr-2018-226662
Author(s):  
Tiago Maio ◽  
José Lemos ◽  
Jorge Moreira ◽  
Filipa Sampaio

The tuberous sclerosis complex is a rare disease, with autosomal dominant transmission, with multisystemic involvement including ophthalmologic. Retinal hamartomas and retinal achromic patch are the most frequent ocular findings. Other ophthalmic signs and symptoms are relatively rare in this disease.We describe the case of a young woman with tuberous sclerosis who presented with horizontal binocular diplopia and decreased visual acuity without complaints of nausea, vomiting or headache. She had right abducens nerve palsy, pale oedema of both optic discs and retinal hamartomas. An obstructive hydrocephalus caused by an intraventricular expansive lesion was identified in brain CT.Observation by the ophthalmologist is indicated in all confirmed or suspected cases of tuberous sclerosis to aid in clinical diagnosis, monitoring of retinal hamartomas or identification of poorly symptomatic papilloedema.


2019 ◽  
Vol 30 (4) ◽  
pp. 2199-2214
Author(s):  
Benoit Scherrer ◽  
Anna K Prohl ◽  
Maxime Taquet ◽  
Kush Kapur ◽  
Jurriaan M Peters ◽  
...  

Abstract Tuberous sclerosis complex (TSC) is a rare genetic disorder characterized by benign tumors throughout the body; it is generally diagnosed early in life and has a high prevalence of autism spectrum disorder (ASD), making it uniquely valuable in studying the early development of autism, before neuropsychiatric symptoms become apparent. One well-documented deficit in ASD is an impairment in face processing. In this work, we assessed whether anatomical connectivity patterns of the fusiform gyrus, a central structure in face processing, capture the risk of developing autism early in life. We longitudinally imaged TSC patients at 1, 2, and 3 years of age with diffusion compartment imaging. We evaluated whether the anatomical connectivity fingerprint of the fusiform gyrus was associated with the risk of developing autism measured by the Autism Observation Scale for Infants (AOSI). Our findings suggest that the fusiform gyrus connectivity captures the risk of developing autism as early as 1 year of age and provides evidence that abnormal fusiform gyrus connectivity increases with age. Moreover, the identified connections that best capture the risk of developing autism involved the fusiform gyrus and limbic and paralimbic regions that were consistent with the ASD phenotype, involving an increased number of left-lateralized structures with increasing age.


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