Because early diagnosis of the disease is difficult, clinical signs and the patient's current profile at the time of referral will be very helpful.
Sunday, June 20, 2021
The cardiomyopathy of Friedreich's ataxia common in a family: A case report
Amini O, Lakziyan R, Abavisani M, Sarchahi Z. Ann Med Surg (Lond). 2021 May 24;66:102408. doi: 10.1016/j.amsu.2021.102408.
Thursday, June 17, 2021
New biotech kid on the block making news
June 17, 2021. Capsida Biotherapeutics, a Newbury Park-based startup that recently raised $140 million in Series A funding, is partnering with a high-profile biotech company to develop treatment for Lou Gehrig’s disease (amyotrophic lateral sclerosis) and Friedreich’s ataxia, another neurodegenerative disease.
CRISPR, a publicly traded company valued at around $9 billion, will lead the Friedreich’s ataxia program, and Capsida will lead the ALS program. Should their efforts be successful, the companies would equally share all research, development and commercialization costs and profits worldwide related to the collaboration product, according to the release.
Inicio Ronda de Inversión Biointaxis con Capital Cell
06.17.2021. Biointaxis es una spin-off biotecnológica surgida del Instituto de Investigación Germans Trias i Pujol (IGTP) y del grupo farmacéutico multinacional Gentec S.A. en 2018 establecida en el campus de Can Ruti de Badalona.
Nuestro objetivo en Biointaxis es llevar el fármaco de terapia génica BTX-101 que ha demostrado unos perfiles de seguridad y eficacia excelentes en 2 modelos de ratón de la enfermedad, uno crónico y otro agudo, al tratamiento curativo del paciente con Ataxia de Friedreich. La ataxia de Friedreich es una enfermedad hereditaria actualmente incurable que está causada por los déficits de la proteína frataxina. Con esta ronda de inversión Biointaxis con Capital Cell demostrará la seguridad y biodistribución adecuadas en primates no humanos para solicitar a la Agencia Europea del Medicamento su autorización para la fase clínica en pacientes con la enfermedad.
Wednesday, June 16, 2021
CRISPR Therapeutics and Capsida Biotherapeutics Announce Strategic Collaboration to Develop Gene-Edited Therapies for Amyotrophic Lateral Sclerosis and Friedreich’s Ataxia
ZUG, Switzerland and CAMBRIDGE, Mass. and THOUSAND OAKS, Calif., June 15, 2021 (GLOBE NEWSWIRE) -- CRISPR Therapeutics (Nasdaq: CRSP), a biopharmaceutical company focused on developing transformative gene-based medicines for serious diseases, and Capsida Biotherapeutics Inc., a biotechnology company dedicated to developing breakthrough gene therapies using fully integrated adeno-associated virus (AAV) engineering, cargo development and manufacturing, today announced a strategic partnership to research, develop, manufacture and commercialize in vivo gene editing therapies delivered with engineered AAV vectors for the treatment of familial amyotrophic lateral sclerosis (ALS) and Friedreich’s ataxia.
Tuesday, June 15, 2021
A pathogenic role for histone H3 copper reductase activity in a yeast model of Friedreich's Ataxia
Oscar A Campos, Narsis Attar, Nathan V Mallipeddi, Chen Cheng, Maria Vogelauer, Stefan Schmollinger, Sabeeha S Merchant, Siavash K Kurdistani; bioRxiv 2021.06.14.448268; doi:10.1101/2021.06.14.448268
Campos OA, Attar N, Cheng C, Vogelauer M, Mallipeddi NV, Schmollinger S, Matulionis N, Christofk HR, Merchant SS, Kurdistani SK. A pathogenic role for histone H3 copper reductase activity in a yeast model of Friedreich's ataxia. Sci Adv. 2021 Dec 17;7(51):eabj9889. doi: 10.1126/sciadv.abj9889. Epub 2021 Dec 17.
Disruptions to iron-sulfur (Fe-S) clusters, essential cofactors for a broad range of proteins, cause widespread cellular defects resulting in human disease. An underappreciated source of damage to Fe-S clusters are cuprous (Cu1+) ions. Since histone H3 enzymatically produces Cu1+ to support copper-dependent functions, we asked whether this activity could become detrimental to Fe-S clusters. Here, we report that histone H3-mediated Cu1+ toxicity is a major determinant of cellular Fe-S cluster quotient. Inadequate Fe-S cluster supply, either due to diminished assembly as occurs in Friedreich's Ataxia or defective distribution, causes severe metabolic and growth defects in S. cerevisiae. Decreasing Cu1+ abundance, through attenuation of histone cupric reductase activity or depletion of total cellular copper, restored Fe-S cluster-dependent metabolism and growth. Our findings reveal a novel interplay between chromatin and mitochondria in Fe-S cluster homeostasis, and a potential pathogenic role for histone enzyme activity and Cu1+ in diseases with Fe-S cluster dysfunction.
Monday, June 14, 2021
Evaluation of the Effect of Artesunate in Friedreich Ataxia (FA) (ARTEMIS)
ClinicalTrials.gov Identifier: NCT04921930; Sponsor: Institut National de la Santé Et de la Recherche Médicale, France Collaborator: Imagine Institute
This dose-escalation study is aimed at investigating a novel application for artesunate in the treatment of Friedreich ataxia. It will evaluate this novel application of oral artesunate using a surrogate biological marker as primary endpoint in a phase I-II open trial.
Saturday, June 12, 2021
Automatic speech recognition in neurodegenerative disease
Authors: Benjamin G. Schultz, Venkata S. Aditya Tarigoppula, Gustavo Noffs, Sandra Rojas, Anneke van der Walt, David B. Grayden, Adam P. Vogel; International Journal of Speech Technology, doi:10.1007/s10772-021-09836-w
Automatic speech recognition (ASR) could potentially improve communication by providing transcriptions of speech in real time. ASR is particularly useful for people with progressive disorders that lead to reduced speech intelligibility or difficulties performing motor tasks. ASR services are usually trained on healthy speech and may not be optimized for impaired speech, creating a barrier for accessing augmented assistance devices. We tested the performance of three state-of-the-art ASR platforms on two groups of people with neurodegenerative disease and healthy controls. We further examined individual differences that may explain errors in ASR services within groups, such as age and sex. Speakers were recorded while reading a standard text. Speech was elicited from individuals with multiple sclerosis, Friedreich’s ataxia, and healthy controls. Recordings were manually transcribed and compared to ASR transcriptions using Amazon Web Services, Google Cloud, and IBM Watson.
Thursday, June 10, 2021
Blindness and Deafness – an Extreme Phenotype in Friedreich Ataxia
Joana Damásio, Ana Sardoeira, Maria Araújo, Isabel Carvalho, Jorge Sequeiros, José Barros; Research Square; 2021. DOI: 10.21203/rs.3.rs-573040/v1.
Severe vision loss and extreme deafness has been described in very few patients with Friedreich ataxia. Long duration, severe disease and large expanded alleles may account for such an extreme phenotype; nonetheless, the role of factors as modifying genes warrants further investigation in this subset of patients.
Tuesday, June 8, 2021
Luz verde a un ensayo clínico con calcitriol para validar su potencial terapéutico para tratar la Ataxia de Friedreich
Comunicación y Prensa IRBLleida; Lunes, 7 de junio de 2021
Un ensayo clínico podría validar el uso del calcitriol, la forma activa de la vitamina D, para tratar la Ataxia de Friedreich, tal como propone el grupo de investigación Bioquímica del Estrés Oxidativo del Instituto de Investigación Biomédica de Lleida (IRBLleida) y la Universidad de Lleida (UdL). Su investigación es la base de este ensayo que realizarán la Unidad de Ataxias del Hospital Josep Trueta de Girona y del Hospital Santa Caterina del Parc Hospitalari Martí i Julià de Salt conjuntamente con el Instituto de Investigación Biomédica de Girona (IDIBGI).
A clinical trial with calcitriol has begun to validate its therapeutic potential for treating Friedreich's Ataxia
Biotech-spain.com; 07/06/2021
A clinical trial could validate the use of calcitriol, the active form of vitamin D, to treat Friedreich's Ataxia, as proposed by the Biochemistry of Oxidative Stress Group at the Biomedical Research Institute of Lleida (IRBLleida) and the University of Lleida (UdL). Their research is the basis of this trial to be carried out by the Ataxia Unit of the Josep Trueta Hospital in Girona and the Santa Caterina Hospital of the Parc Hospitalari Martí i Julià de Salt in conjunction with the Institute for Research in Biomedicine of Girona (IDIBGI).
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