keyword
https://read.qxmd.com/read/36709935/-clinical-features-and-genetic-analysis-of-a-child-with-acute-form-of-tyrosinemia-type-i-due-to-a-novel-variant-of-fah-gene
#41
JOURNAL ARTICLE
Qinghua Zhang, Chuan Zhang, Yupei Wang, Weikai Wang, Ruifeng Xu, Ling Hui, Xuan Feng, Xing Wang, Lei Zheng, Binbo Zhou, Yan Jiang, Shengju Hao
OBJECTIVE: To analyze the clinical phenotype and genetic basis for a child with acute form of tyrosinemia type I (TYRSN1). METHODS: A child with TYRSN1 who presented at the Gansu Provincial Maternal and Child Health Care Hospital in October 2020 was selected as the subject. The child was subjected to tandem mass spectrometry (MS-MS) and urine gas chromatography-mass spectrometry (GC-MS) for the detection of inherited metabolic disorders, in addition with whole exome sequencing (WES)...
February 10, 2023: Zhonghua Yi Xue Yi Chuan Xue za Zhi, Zhonghua Yixue Yichuanxue Zazhi, Chinese Journal of Medical Genetics
https://read.qxmd.com/read/36695235/tenofovir-as-a-cause-of-acquired-fanconi-s-syndrome
#42
Monisha Simon, Ameena Meah
Fanconi's syndrome is a disorder that results in generalized involvement of the proximal tubule of the kidney. It is characterized by variable degrees of phosphate, glucose, and amino acid wasting in the urine and a hyperchloremic normal anion gap metabolic acidosis - secondary to defective hydrogen ion excretion and bicarbonate ion absorption. There are hereditary variants such as cystinosis (most common), hereditary fructose intolerance, galactosemia, tyrosinemia, Dents disease, and acquired variants of Fanconi's syndrome...
2023: Annals of African Medicine
https://read.qxmd.com/read/36471409/the-mutation-spectrum-and-ethnic-distribution-of-non-hepatorenal-tyrosinemia-types-ii-iii
#43
REVIEW
Zahra Beyzaei, Sara Nabavizadeh, Sara Karimzadeh, Bita Geramizadeh
BACKGROUND: Different types of non-hepatorenal tyrosinemia are among the rare forms of tyrosinemia. Tyrosinemia type II and III are autosomal recessive disorders caused by pathogenic variants in the tyrosine aminotransferase (TAT), and 4-hydroxyphenyl-pyruvate dioxygenas (HPPD) genes, respectively. There are still unclarified aspects in their clinical presentations, mutational spectrum, and genotype-phenotype correlation. MAIN BODY: In this study, we evaluated the spectrum of TAT and HHPD gene mutations in patients with tyrosinemia type II and III...
December 5, 2022: Orphanet Journal of Rare Diseases
https://read.qxmd.com/read/36463171/identification-and-functional-characterization-of-a-novel-homozygous-intronic-variant-in-the-fumarylacetoacetate-hydrolase-gene-in-a-chinese-patient-with-tyrosinemia-type-1
#44
JOURNAL ARTICLE
Jiao Chen, Junhui Sun, Xuefang Li, Mengmeng Du
BACKGROUND: Hereditary tyrosinemia type 1 (HT1; OMIM# 276700) is a genetic metabolism disorder caused by disease-causing variants in the fumarylacetoacetate hydrolase (FAH) gene encoding the last enzyme of the tyrosine catabolic pathway. Herein, we describe the clinical features and genetic characteristics of HT1 in a five years and seven months old Chinese patient. METHODS: After clinical diagnosis of the proband with HT1, genetic testing was performed by Sanger sequencing of the FAH gene in all family members...
December 3, 2022: BMC Medical Genomics
https://read.qxmd.com/read/36447403/an-infant-with-bilateral-keratitis-from-infectious-to-genetic-diagnosis
#45
JOURNAL ARTICLE
Louis-Philippe Thibault, Grant A Mitchell, Brigitte Parisien, Patrick Hamel, Ana C Blanchard
BACKGROUND Tyrosinemia Type II (TYRII) is a rare autosomal recessive inborn error of metabolism caused by deficiency of tyrosine aminotransferase (TAT), leading to hypertyrosinemia. TYRII patients often present in the first year of life with ocular and cutaneous findings, including corneal ulcers, pseudodendritic keratitis, and palmoplantar hyperkeratosis. The corneal involvement is often mistaken for herpes simplex virus (HSV) keratitis, which is a much commoner condition. CASE REPORT A previously healthy 10-month-old male infant was referred to Ophthalmology for acute onset photophobia...
November 30, 2022: American Journal of Case Reports
https://read.qxmd.com/read/36393896/initial-presentation-management-and-follow-up-data-of-33-treated-patients-with-hereditary-tyrosinemia-type-1-in-the-absence-of-newborn-screening
#46
JOURNAL ARTICLE
Hela Hajji, Apolline Imbard, Anne Spraul, Ludmia Taibi, Valérie Barbier, Dalila Habes, Anaïs Brassier, Jean-Baptiste Arnoux, Juliette Bouchereau, Samia Pichard, Samira Sissaoui, Florence Lacaille, Muriel Girard, Dominique Debray, Pascale de Lonlay, Manuel Schiff
Hereditary tyrosinemia type 1 (HT1) is a rare autosomal recessive disorder of phenylalanine and tyrosine catabolism due to a deficiency of fumarylacetoacetate hydrolase. HT1 has a large clinical spectrum with acute forms presenting before six months of age, subacute forms with initial symptoms occurring between age 6 and 12 months, and chronic forms after 12 months of age. Without treatment, HT1 results in the accumulation of toxic metabolites leading to liver disease, proximal tubular dysfunction, and porphyria-like neurological crises...
December 2022: Molecular Genetics and Metabolism Reports
https://read.qxmd.com/read/36369907/the-compound-heterozygous-mutations-of-c-607g-a-and-c-657delc-in-the-fah-gene-are-associated-with-renal-damage-with-hereditary-tyrosinemia-type-1-ht1
#47
JOURNAL ARTICLE
Huan Chi, Chun Gan, Yaru Jiang, Dan Chen, Jiawen Qiu, Qing Yang, Yaxi Chen, Mo Wang, Haiping Yang, Wei Jiang, Qiu Li
BACKGROUND: Hereditary tyrosinemia type 1 (HT1) is a rare inherited metabolic disease characterized by severe liver and renal dysfunction. Early identification in affected children is critical for improved treatment options and prognosis. METHODS: In this study, we identified novel compound heterozygous mutations (NM_000137: c.657delC (p.K220Rfs*12) and c.607G>A (p.A203T)) in the fumarylacetoacetate hydrolase (FAH) gene in a family. We also characterized the clinical phenotype of the proband and verified the pathogenic effects of the mutations...
November 12, 2022: Molecular Genetics & Genomic Medicine
https://read.qxmd.com/read/36281509/comprehensive-evaluation-of-the-neobase-2-non-derivatized-msms-assay-and-exploration-of-analytes-with-significantly-different-concentrations-between-term-and-preterm-neonates
#48
JOURNAL ARTICLE
Beomki Lee, Won Young Heo, Jee Ah Kim, Hyun-Seung Lee, Narae Hwang, Hyung-Doo Park, Se In Sung, Yun Sil Chang, Won Soon Park, Soo-Youn Lee
Background: Despite the popularity of the NeoBase 2 Non-derivatized MSMS assay (PerkinElmer, Turku, Finland), there are no reports of its comprehensive evaluation, including the ability to distinguish transient tyrosinemia of the newborn (TTN) from tyrosinemia type 1 (TYR 1) using succinylacetone (SUAC). No newborn screening (NBS) cutoffs for preterm neonates in the Korean population have been suggested. We evaluated the NeoBase 2 assay and identified analytes requiring different cutoffs in preterm neonates...
March 1, 2023: Annals of Laboratory Medicine
https://read.qxmd.com/read/36258038/activation-of-homology-directed-dna-repair-plays-key-role-in-crispr-mediated-genome-correction
#49
JOURNAL ARTICLE
Gourish Mondal, Caitlin J VanLith, Clara T Nicolas, Whitney S Thompson, William S Cao, Lori Hillin, Benjamin J Haugo, Daniel R O' Brien, Jean-Pierre Kocher, Robert A Kaiser, Joseph B Lillegard
Gene editing for the cure of inborn errors of metabolism (IEMs) has been limited by inefficiency of adult hepatocyte targeting. Here, we demonstrate that in utero CRISPR/Cas9-mediated gene editing in a mouse model of hereditary tyrosinemia type 1 provides stable cure of the disease. Following this, we performed an extensive gene expression analysis to explore the inherent characteristics of fetal/neonatal hepatocytes that make them more susceptible to efficient gene editing than adult hepatocytes. We showed that fetal and neonatal livers are comprised of proliferative hepatocytes with abundant expression of genes involved in homology-directed repair (HDR) of DNA double-strand breaks (DSBs), key for efficient gene editing by CRISPR/Cas9...
April 2023: Gene Therapy
https://read.qxmd.com/read/36204180/in-vivo-quantitative-photoacoustic-evaluation-of-the-liver-and-kidney-pathology-in-tyrosinemia
#50
JOURNAL ARTICLE
Guojia Huang, Jing Lv, Yong He, Jian Yang, Lvming Zeng, Liming Nie
Hereditary tyrosinemia type Ⅰ (HT1) is a severe autosomal recessive inherited metabolic disease, which can result in severe damage of liver and kidney. Photoacoustic imaging (PAI) uses pulsed laser light to induce ultrasonic signals to facilitate the visualization of lesions that are strongly related to disease progression. In this study, the structural and functional changes of liver and kidney in HT1 was investigated by cross-scale PAI. The results showed that the hepatic lobule and renal tubule were severely damaged during HT1 progression...
December 2022: Photoacoustics
https://read.qxmd.com/read/36118278/a-child-with-dendritiform-eye-lesions-and-developmental-delay
#51
Vasiliki Gliagias, Ksenia Denisova, Joann J Kang
Purpose: Tyrosinemia Type II (Richner-Hanhart syndrome) is a rare autosomal recessive disease that occurs due to deficiency in the enzyme tyrosine aminotransferase and can result in an ulcerated keratitis. We present a case of a young patient with oculocutaneous tyrosinemia despite a negative newborn screen. Observations: A 15 month old boy with an uncomplicated birth history and negative newborn screen presented with a unilateral central irregular epithelial defect and hyperkeratotic lesions on his fingertips and soles...
December 2022: American Journal of Ophthalmology Case Reports
https://read.qxmd.com/read/36030102/patch-grafting-of-organoids-of-stem-progenitors-into-solid-organs-can-correct-genetic-based-disease-states
#52
JOURNAL ARTICLE
Wencheng Zhang, Eliane Wauthier, Giacomo Lanzoni, Homayoun Hani, Xianwen Yi, Diletta Overi, Lei Shi, Sean Simpson, Amanda Allen, Carolyn Suitt, Jennifer Ashley Ezzell, Domenico Alvaro, Vincenzo Cardinale, Eugenio Gaudio, Guido Carpino, Glenn Prestwich, Juan Dominguez-Bendala, David Gerber, Kyle Mathews, Jorge Piedrahita, Christopher Adin, Praveen Sethupathy, Zhiying He, Lola M Reid
Patch grafting, a novel strategy for transplantation of stem/progenitor organoids into porcine livers, has been found successful also for organoid transplantation into other normal or diseased solid organs in pigs and mice. Each organoid contained ∼100 cells comprised of biliary tree stem cells (BTSCs), co-hepato/pancreatic stem/progenitors, and partnered with early lineage stage mesenchymal cells (ELSMCs), angioblasts and precursors to endothelia and stellate cells. Patch grafting enabled transplantation into livers or pancreases of ≥108th (pigs) or ≥106th-7th (mice) organoids/patch...
August 7, 2022: Biomaterials
https://read.qxmd.com/read/36008405/in-vivo-lentiviral-vector-gene-therapy-to-cure-hereditary-tyrosinemia-type-1-and-prevent-development-of-precancerous-and-cancerous-lesions
#53
JOURNAL ARTICLE
Clara T Nicolas, Caitlin J VanLith, Raymond D Hickey, Zeji Du, Lori G Hillin, Rebekah M Guthman, William J Cao, Benjamin Haugo, Annika Lillegard, Diya Roy, Aditya Bhagwate, Daniel O'Brien, Jean-Pierre Kocher, Robert A Kaiser, Stephen J Russell, Joseph B Lillegard
Conventional therapy for hereditary tyrosinemia type-1 (HT1) with 2-(2-nitro-4-trifluoromethylbenzoyl)-1,3-cyclohexanedione (NTBC) delays and in some cases fails to prevent disease progression to liver fibrosis, liver failure, and activation of tumorigenic pathways. Here we demonstrate cure of HT1 by direct, in vivo administration of a therapeutic lentiviral vector targeting the expression of a human fumarylacetoacetate hydrolase (FAH) transgene in the porcine model of HT1. This therapy is well tolerated and provides stable long-term expression of FAH in pigs with HT1...
August 25, 2022: Nature Communications
https://read.qxmd.com/read/35949297/mrna-based-therapy-proves-superior-to-the-standard-of-care-for-treating-hereditary-tyrosinemia-1-in-a-mouse-model
#54
JOURNAL ARTICLE
Maximiliano L Cacicedo, Christine Weinl-Tenbruck, Daniel Frank, Sebastian Wirsching, Beate K Straub, Jana Hauke, Jürgen G Okun, Nigel Horscroft, Julia B Hennermann, Fred Zepp, Frédéric Chevessier-Tünnesen, Stephan Gehring
Hereditary tyrosinemia type 1 is an inborn error of amino acid metabolism characterized by deficiency of fumarylacetoacetate hydrolase (FAH). Only limited treatment options (e.g., oral nitisinone) are available. Patients must adhere to a strict diet and face a life-long risk of complications, including liver cancer and progressive neurocognitive decline. There is a tremendous need for innovative therapies that standardize metabolite levels and promise normal development. Here, we describe an mRNA-based therapeutic approach that rescues Fah -deficient mice, a well-established tyrosinemia model...
September 8, 2022: Molecular Therapy. Methods & Clinical Development
https://read.qxmd.com/read/35944460/a-tyrosine-catabolic-intermediate-4-hydroxyphenylpyruate-attenuates-murine-endotoxic-shock-by-blocking-nlrp3-inflammasome-activation
#55
JOURNAL ARTICLE
Yanxia Wei, Mengnan Liu, Jinzhi Han, Haohan Huang, Shihong Xu, Shenghan Zhang, Qiyue Jing, Hanying Wang, Huimin Bu, Yanbo Kou, Zhuanzhuan Liu, Kuiyang Zheng, Yugang Wang
The metabolic alterations of amino acid metabolism are closely associated with inflammatory response. However, relatively little is known about the roles of phenylalanine (Phe)/tyrosine (Tyr) catabolites during inflammation. Nitisinone (NTBC) is an orphan drug used to treat hereditary tyrosinemia type I potentially by changing Phe/Tyr metabolic flow. In this study, we used NTBC as a tool to investigate the potential role of the Phe/Tyr catabolic pathway in inflammatory responses. We found that NTBC was effective in tempering the bacterial endotoxin lipopolysaccharide (LPS)-induced septic shock in mice...
August 6, 2022: International Immunopharmacology
https://read.qxmd.com/read/35903835/-advances-in-separation-and-analysis-of-aromatic-amino-acids-in-food
#56
REVIEW
Chenhui Lu, Yi Zhang, Yujie Su, Wenlong Wang, Yongwei Feng
Amino acids are important building blocks of proteins in the human body, which are involved in many metabolic pathways. Patients with metabolic diseases such as phenylketonuria, tyrosinemia, and hepatic encephalopathy are genetically defective and cannot metabolize aromatic amino acids (AAA) in food; hence, a regular diet may lead to permanent physiological damage. For this reason, it is necessary to restrict the intake of AAA in their daily diet by limiting natural protein intake, while ensuring normal intake of low protein foods and supplementation with low-AAA protein equivalents...
August 2022: Se Pu, Chinese Journal of Chromatography
https://read.qxmd.com/read/35868243/biochemical-and-behavioural-profile-of-ntbc-treated-tyrosinemie-type-1-mice
#57
JOURNAL ARTICLE
Willem G van Ginkel, Shelley R Winn, Sandra Dudley, Destine Krenik, Ruby Perez, Nicole Rimann, Beat Thöny, Jacob Raber, Cary O Harding
BACKGROUND: Tyrosinemia type 1 (HT1) is a rare metabolic disorder caused by a defect in the tyrosine catabolic pathway. Since HT1 patients are treated with NTBC, outcome improved and life expectancy greatly increased. However extensive neurocognitive and behavioural problems have been described, which might be related to treatment with NTBC, the biochemical changes induced by NTBC, or metabolites accumulating due to the enzymatic defect characterizing the disease. OBJECTIVE: To study the possible pathophysiological mechanisms of brain dysfunction in HT1, we assessed blood and brain LNAA, and brain monoamine neurotransmitter metabolite levels in relation to behavioural and cognitive performance of HT1 mice...
2022: Molecular Genetics and Metabolism
https://read.qxmd.com/read/35832601/genome-guided-personalized-drug-therapy-in-attention-deficit-hyperactivity-disorder
#58
JOURNAL ARTICLE
Jan Haavik
ADHD is a common behavioral syndrome with a heritability of 70-80%. Genome wide sequencing and association studies indicate that ADHD risk variants are distributed across a wide range of allele frequencies and relative risks. Several common single nucleotide variants (SNPs) have been identified that increase the risk of ADHD with a few percent. Many of the reported risk genes and copy number variants are shared with other neuropsychiatric disorders. Moreover, ADHD often coexists with common or rare somatic diseases, including rare Mendelian neurometabolic diseases that can affect normal brain development and function...
2022: Frontiers in Psychiatry
https://read.qxmd.com/read/35811581/adenine-base-editing-in-vivo-with-a-single-adeno-associated-virus-vector
#59
JOURNAL ARTICLE
Han Zhang, Nathan Bamidele, Pengpeng Liu, Ogooluwa Ojelabi, Xin D Gao, Tomás Rodriguez, Haoyang Cheng, Karen Kelly, Jonathan K Watts, Jun Xie, Guangping Gao, Scot A Wolfe, Wen Xue, Erik J Sontheimer
Base editors (BEs) have opened new avenues for the treatment of genetic diseases. However, advances in delivery approaches are needed to enable disease targeting of a broad range of tissues and cell types. Adeno-associated virus (AAV) vectors remain one of the most promising delivery vehicles for gene therapies. Currently, most BE/guide combinations and their promoters exceed the packaging limit (∼5 kb) of AAVs. Dual-AAV delivery strategies often require high viral doses that impose safety concerns. In this study, we engineered an adenine base editor (ABE) using a compact Cas9 from Neisseria meningitidis (Nme2Cas9)...
June 1, 2022: GEN Biotechnol
https://read.qxmd.com/read/35800472/a-case-report-of-two-siblings-with-hypertyrosinemia-type-1-presenting-with-hepatic-disease-with-different-onset-time-and-severity
#60
Kazuo Kawabata, Jun Kido, Takanobu Yoshida, Shirou Matsumoto, Kimitoshi Nakamura
Hereditary tyrosinemia type 1 (HT1) is an autosomal recessive disorder caused by a defect in fumarylacetoacetate hydroxylase (FAH) encoded by the FAH gene. Patients with HT1 disorder present with increased blood tyrosine, succinyl acetoacetate, and succinyl acetone levels, and develop clinical manifestations including liver failure, kidney tubular dysfunction, growth failure, rickets, pseudo-porphyric crises, and hepatocellular carcinoma. We encountered two siblings with HT1. Among the siblings, the elder brother developed acute liver failure with coagulopathy at the age of 2 months and was rescued by liver transplantation (LT) following combination therapy with continuous hemodiafiltration and plasma exchange...
September 2022: Molecular Genetics and Metabolism Reports
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