Dong A, Rivella S, Breda L: Gene therapy for hemoglobinopathies: Progress and challenges, Trans Res 161:293–306, 2013.[TL:failed]
Duan D, Goemans N, Takeda S, et al: Duchenne muscular dystrophy, Nat Rev Dis Primers 7:13, 2021.[TL:failed]
Gaspar HB, Qasim W, Davies EG, et al: How I treat severe combined immunodeficiency, Blood 122:3749–3758, 2013.[TL:failed]
Gaziev J, Lucarelli G: Hematopoietic stem cell transplantation for thalassemia, Curr Stem Cell Res Ther 6:162–169, 2011.[TL:failed]
Goemans NM, Tulinius M, van den Akker JT: Systemic administration of PRO051 in Duchenne’s muscular dystrophy, N Engl J Med 364: 1513–1522, 2011.[TL:failed]
Groenink M, den Hartog AW, Franken R, et al: Losartan reduces aortic dilatation rate in adults with Marfan syndrome: A randomized controlled trial, Eur Heart J 34:3491–3500, 2013.[TL:failed]
Hanna JH, Saha K, Jaenisch R: Pluripotency and cellular reprogramming: facts, hypotheses, unresolved issues, Cell 143:508–525, 2010.[TL:failed]
Hanrahan JW, Sampson HM, Thomas DY: Novel pharmacological strategies to treat cystic fibrosis, Trends Pharmacol Sci 34:119–125, 2013.[TL:failed]
High KA: Gene therapy in clinical medicine.[TL:failed]
In Longo D, Fauci A, Kasper D, editors: Harrison's principles of internal medicine, ed 19, New York, 2015, Mc Graw-Hill.[TL:failed]
Huang R, Southall N, Wang Y, et al: The NCGC Pharmaceutical Collection: A comprehensive resource of clinically approved drugs enabling repurposing and chemical genomics, Sci Transl Med 3:80ps 16, 2011.[TL:failed]
Iftikhar M, Frey J, Shohan MJ, et al: Current and emerging therapies for Duchenne muscular dystrophy and spinal muscular atrophy, Pharmacol Ther 220:107719, 2021.[TL:failed]
Jarmin S, Kymalainen H, Popplewell L, et al: New developments in the use of gene therapy to treat Duchenne muscular dystrophy, Expert Opin Biol Ther 14:209–230, 2014.[TL:failed]
Johnson SM, Connelly S, Fearns C, et al: The transthyretin amyloidoses: from delineating the molecular mechanism of aggregation linked to pathology to a regulatory agency approved drug, J Mol Biol 421: 185–203, 2012.[TL:failed]
Kim J, Hu C, El Achkar MC, et al: Patient-customized oligonucleotide therapy for a rare genetic disease, N Engl J Med 381(17): 1644–1652, 2019. 1813279 Li M, Suzuki K, Kim NY, et al: A cut above the rest: Targeted genome editing technologies in human pluripotent stem cells, J Biol Chem 289:4594–4599, 2014.[TL:failed]
Mallack EJ, Turk B, Yan H, et al: The landscape of hematopoietic stem cell transplant and gene therapy for X-linked adrenoleukodystrophy, Curr Treat Options Neurol 21(12):61, 2019. org/10. 1007/s 11940-019-0605-y Mukherjee S, Thrasher AJ: Gene therapy for primary immunodeficiency disorders: Progress, pitfalls and prospects, Gene 525:174– 181, 2013.[TL:failed]
Nathwani AC, Tuddenham EGD, Rangarajan S: Adenovirus-associated virus vector–mediated gene transfer in hemophilia B, N Engl J Med 365:2357–2365, 2011.[TL:failed]
Nicolau S, Waldrop MA, Connolly AM, et al: Spinal muscular atrophy, Semin Pediatr Neurol 37:100878, 2021.[TL:failed]
Okam MM, Ebert BL: Novel approaches to the treatment of sickle cell disease: the potential of histone deacetylase inhibitors, Expert Rev Hematol 5:303–311, 2012.[TL:failed]
Otsuru S, Gordon PL, Shimono K, et al: Transplanted bone marrow mononuclear cells and MSCs impart clinical benefit to children with osteogenesis imperfecta through different mechanisms, Blood 120: 1933–1941, 2012.[TL:failed]
Peltz SW, Morsy M, Welch EW, et al: Ataluren as an agent for therapeutic nonsense suppression, Ann Rev Med 64:407–425, 2013.[TL:failed]
Perrine SP, Pace BS, Faller DV: Targeted fetal hemoglobin induction for treatment of beta hemoglobinopathies, Hematol Oncol Clin North Am 28:233–248, 2014.[TL:failed]
Pillai NR, Stroup BM, Poliner A, et al: Liver transplantation in propionic and methylmalonic acidemia: A single center study with literature review, Mol Genet Metab 128(4):431–443, 2019. org/10. 1016/j. ymgme. 2019. 11. 001 Prasad VK, Kurtzberg J: Cord blood and bone marrow transplantation in inherited metabolic diseases: Scientific basis, current status and future directions, Br J Haematol 148:356–372, 2009.[TL:failed]
Pritchard AB, Izumi K, Payan-Walters I, et al: Inborn error of metabolism patients after liver transplantation: Outcomes of 35 patients over 27 years in one pediatric quaternary hospital, Am J Med Genet A 188(5):1443–1447, 2022.[TL:failed]
Ramdas S, Servais L: New treatments in spinal muscular atrophy: An overview of currently available data, Exp Opin Pharmacother 21:307–315, 2020.[TL:failed]
Ramsey BW, Davies J, Mc Elvaney NG, et al: A CFTR potentiator in patients with cystic fibrosis and the G551D mutation, N Engl J Med 365:1663–1672, 2011.[TL:failed]
Robinton DA, Daley GQ: The promise of induced pluripotent stem cells in research and therapy, Nature 481:295–305, 2012.[TL:failed]
Salmaninejad A, Abarghan JY, Qomi BS, et al: Common therapeutic advances for Duchenne muscular dystrophy (DMD), Int J Neurosci 131:370–389, 2021.[TL:failed]
Sander JD, Joung JK: CRISPR-Cas systems for editing, regulating and targeting genomes, Nat Biotechnol 32:347–355, 2014.[TL:failed]
Schorling DC, Pechmann A, Kirschner J: Advances in treatment of spinal muscular atrophy – new phenotypes, new challenges, new implications for care, J Neuromuscul Dis 7:1–13, 2020.[TL:failed]
Sheikh O, Yokota T: Developing DMD therapeutics: A review of the effectiveness of small molecules, stop-codon readthrough, dystrophin gene replacement, and exon-skipping therapies, Expert Opin Investig Drugs 30:167–176, 2021.[TL:failed]
Sosicka P, Ng BG, Freeze HH: Chemical therapies for congenital disorders of glycosylation, ACS Chem Biol, 2021. acschembio. 1c00601 Southwell AL, Skotte NH, Bennett CF, et al: Antisense oligonucleotide therapeutics for inherited neurodegenerative diseases, Trends Mol Med 18:634–643, 2012.[TL:failed]
Tebas P, Stein D, Tang WW, et al: Gene editing of CCR5 in autologous CD4 T cells of persons infected with HIV, N Engl J Med 370:901–910, 2014. van Ommen G-JB, Aartsma-Rus A: Advances in therapeutic RNAtargeting, Trends Mol Med 18:634–643, 2012.[TL:failed]
Verhaart IEC, Aarsma-Rus A: Therapeutic developments for Duchenne muscular dystrophy, Nat Rev Neurol 15:373–386, 2019.[TL:failed]
Verma IM: Gene therapy that works, Science 341:853–855, 2013.[TL:failed]
Xu J, Peng C, Sankaran VG, et al: Correction of sickle cell disease in adult mice by interference with fetal hemoglobin silencing, Science 334:993–996, 2011.[TL:failed]
USEFUL WEBSITES Registry and results database of publicly and privately supported clinical studies of human participants conducted around the world: Gene Therapy Clinical Trials Worldwide: legacy/wileychi/genmed/clinical/ PROBLEMS 1.[TL:failed]
X-linked chronic granulomatous disease (CGD) is characterized by a defect in host defense that leads to severe, recurrent, and often fatal pyogenic infections beginning in early childhood.[TL:failed]
The X-linked CGD locus encodes the heavy chain of cytochrome b, a component of the oxidase that generates superoxide in phagocytes.[TL:failed]
Because interferon-γ (IFN-γ) enhances the oxidase activity of normal phagocytes, IFN-γ was administered to boys with X-linked CGD to see whether their oxidase activity increased.[TL:failed]
Before treatment, unlike those of severely affected patients, the phagocytes of some less severely affected patients had small but detectable bursts of oxidase activity, suggesting that their increased activity resulted from greater production of cytochrome b from the affected locus.[TL:failed]
In these cases, IFN-γ increased the cytochrome b content, superoxide production, and killing continued[TL:failed]