product summary
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company name :
R&D Systems
product type :
antibody
product name :
Human SOX17 Antibody
catalog :
AF1924
quantity :
100 ug (also 25 ug)
price :
499 USD
clonality :
polyclonal
host :
domestic goat
conjugate :
nonconjugated
reactivity :
human, mouse, rat, dogs, chicken, bovine, chimpanzee, rhesus macaque
application :
western blot, immunohistochemistry, immunocytochemistry, neutralization, immunoprecipitation, flow cytometry, chromatin immunoprecipitation, immunohistochemistry - paraffin section, immunohistochemistry - frozen section
more info or order :
citations: 380
Published Application/Species/Sample/DilutionReference
  • immunocytochemistry; mouse; 1:300; loading ...; fig 2j
Han D, Wu G, Chen R, Drexler H, MacCarthy C, Kim K, et al. A balanced Oct4 interactome is crucial for maintaining pluripotency. Sci Adv. 2022;8:eabe4375 pubmed publisher
  • immunohistochemistry - frozen section; mouse; 1:20; loading ...; fig 3k
Xu P, Borges R, Fillatre J, de Oliveira Melo M, Cheng T, Thisse B, et al. Construction of a mammalian embryo model from stem cells organized by a morphogen signalling centre. Nat Commun. 2021;12:3277 pubmed publisher
  • immunocytochemistry; human; 1:1000; loading ...; fig 1c
Yamamura Y, Furuichi K, Murakawa Y, Hirabayashi S, Yoshihara M, Sako K, et al. Identification of candidate PAX2-regulated genes implicated in human kidney development. Sci Rep. 2021;11:9123 pubmed publisher
  • immunohistochemistry; human; 1:50
Inak G, Rybak Wolf A, Lisowski P, Pentimalli T, Jüttner R, Glažar P, et al. Defective metabolic programming impairs early neuronal morphogenesis in neural cultures and an organoid model of Leigh syndrome. Nat Commun. 2021;12:1929 pubmed publisher
  • immunocytochemistry; human; 1:100; loading ...; fig 1c
Sampaziotis F, Muraro D, Tysoe O, Sawiak S, Beach T, Godfrey E, et al. Cholangiocyte organoids can repair bile ducts after transplantation in the human liver. Science. 2021;371:839-846 pubmed publisher
Huang C, Qiu L, Zhou W, Shao C, Wang X, Zhang Q, et al. A human-induced pluripotent stem cell (iPSC) line (SMUSHi006-A) from an ALS patient carrying a mutation c.1126C > T in the FUS gene. Stem Cell Res. 2025;82:103604 pubmed publisher
Yuan W, Zhang Q, Yang Z, Zhang Y, Zhou Y, Yan T, et al. Analysis of the pluripotent and germline marker gene expression, and the state of X chromosome reactivation of primordial germ cells in pig gonads. Theriogenology. 2025;231:52-61 pubmed publisher
Spurgin S, Nguimtsop A, Chaudhry F, Michki S, Salvador J, Iruela Arispe M, et al. Spatiotemporal dynamics of primary and motile cilia throughout lung development. bioRxiv. 2024;: pubmed publisher
Merz S, Sen xe9 e V, Philippi A, Oswald F, Shaigan M, F xfc hrer M, et al. A ONECUT1 regulatory, non-coding region in pancreatic development and diabetes. Cell Rep. 2024;43:114853 pubmed publisher
McCreery K, Stubb A, Stephens R, Fursova N, Cook A, Kruse K, et al. Mechano-osmotic signals control chromatin state and fate transitions in pluripotent stem cells. bioRxiv. 2024;: pubmed publisher
Mengnan W, Yan C, Qiong X, Man X. Generation of a human induced pluripotent stem cell line (FDIBSi001-A) from a patient with ADNP syndrome carrying ADNP mutation (c. 2059 T>C). Stem Cell Res. 2024;81:103550 pubmed publisher
Okumura H, Hayashi Y, Arioka Y, Kushima I, Mori D, Ozaki N. Generation of induced pluripotent stem cells from a schizophrenia patient with heterozygous 1q21.1 deletion. Stem Cell Res. 2024;81:103555 pubmed publisher
Gerner Mauro K, Ellis L, Wang G, Nayak R, Lwigale P, Poch xe9 R, et al. Morphogenic, molecular, and cellular adaptations for unidirectional airflow in the chicken lung. bioRxiv. 2024;: pubmed publisher
Sun T, Chen B, Zhang D, Xu X, Gao J, Sun J, et al. Generation of hereditary spastic paraplegia patient-derived induced pluripotent stem cell line UJSi003-A. Stem Cell Res. 2024;81:103535 pubmed publisher
Sun J, Ren L, Canel Rivero G, Xu L, Ladabaum U, C Wu J. Generation of two induced pluripotent stem cell lines from patients with Li-Fraumeni Syndrome carrying TP53 mutation. Stem Cell Res. 2024;81:103527 pubmed publisher
Qin H, Yu Y, Ye S, Alonzo M, Garg V, Zhao M. Generation of an induced pluripotent stem cell line (NCHi016-A) from a 5-year-old female with pulmonary atresia with intact ventricular septum and one-and-half ventricle palliation. Stem Cell Res. 2024;80:103530 pubmed publisher
Tang P, Keshi E, Wilken S, Wutsdorff L, Mougnekabol J, Pratschke J, et al. Generation of an induced pluripotent stem cell (iPSC) line (EXSURGi001-A) from a patient homozygous for the p.Ala165Thr mutation in the MTARC1 gene. Stem Cell Res. 2024;80:103516 pubmed publisher
Ma X, Dai L, Tan C, Li J, He X, Wang Y, et al. β-catenin mediates endodermal commitment of human ES cells via distinct transactivation functions. Cell Biosci. 2024;14:96 pubmed publisher
Sekulovski N, Carleton A, Rengarajan A, Lin C, Juga L, Whorton A, et al. Temporally resolved single cell transcriptomics in a human model of amniogenesis. bioRxiv. 2024;: pubmed publisher
Fran xe7 a G, Baron M, King B, Bossowski J, Bjornberg A, Pour M, et al. Cellular adaptation to cancer therapy along a resistance continuum. Nature. 2024;631:876-883 pubmed publisher
Juchem M, Lehmann N, Behrens Y, B xe4 r C, Thum T, Hoepfner J. CRISPR/Cas9-based GLA knockout to generate the female Fabry disease human induced pluripotent stem cell line MHHi001-A-15. Stem Cell Res. 2024;79:103478 pubmed publisher
Ltaief S, Elsayed A, Al Shammari A. Generation of nine induced pluripotent stem cell lines from six young children with autism spectrum disorder and three matched control subjects from the Qatari population. Stem Cell Res. 2024;79:103470 pubmed publisher
Schumacher S, Fernkorn M, Marten M, Chen R, Kim Y, Bedzhov I, et al. Tissue-intrinsic beta-catenin signals antagonize Nodal-driven anterior visceral endoderm differentiation. Nat Commun. 2024;15:5055 pubmed publisher
Dai Y, Zhu W, Flores Banuelos A, Li J, Mukherjee S, Algaze C, et al. Generation of two induced pluripotent stem cell lines from patients with Williams syndrome. Stem Cell Res. 2024;78:103460 pubmed publisher
Wang S, Leng L, Wang Q, Gu Y, Li J, An Y, et al. A single-cell transcriptome atlas of human euploid and aneuploid blastocysts. Nat Genet. 2024;56:1468-1481 pubmed publisher
Wang J, Bering J, Alonzo M, Ye S, Texter K, Garg V, et al. Generation of iPSC line NCHi015-A from a patient with truncus arteriosus carrying heterozygous variants in KMT2D and NOTCH1. Stem Cell Res. 2024;78:103457 pubmed publisher
Yin T, Liao Y, Li X, Wang H, Wu B, Dong X. Characterization of a human induced pluripotent stem cell line (FDCHi015-A) derived from PBMCs of a patient harbouring ALDOB mutation. Stem Cell Res. 2024;78:103451 pubmed publisher
Tonin R, Feo F, Falliano S, Giunti L, Calamai M, Procopio E, et al. Generation of a human induced pluripotent stem cell line from a patient with GM3 synthase deficiency using self-replicating RNA vector. Stem Cell Res. 2024;77:103431 pubmed publisher
Barnhoorn S, Milanese C, Li T, Dons L, Ghazvini M, Sette M, et al. Orthogonal analysis of mitochondrial function in Parkinson's disease patients. Cell Death Dis. 2024;15:243 pubmed publisher
Jahn C, Juchem M, Sonnenschein K, Gietz A, Buchegger T, Lachmann N, et al. Generation of human induced pluripotent stem cell line MHHi029-A from a male Fabry disease patient carrying c.959A > T mutation. Stem Cell Res. 2024;77:103404 pubmed publisher
Korneck M, Leonhardt A, Sch xf6 ls L, Hauser S. Generation of homozygous and heterozygous REEP1 knockout induced pluripotent stem cell lines by CRISPR/Cas9 gene editing. Stem Cell Res. 2024;77:103378 pubmed publisher
Manibarathi K, Pham T, Hengel H, Synofzik M, Nagel M, Sch xfc le R. An iPSC model for POLR3A-associated spastic ataxia: Generation of three unrelated patient cell lines. Stem Cell Res. 2024;76:103363 pubmed publisher
CUKIER H, Simon S, Tang E, Golightly C, Laverde Paz M, Adams L, et al. Generation of an induced pluripotent stem cell line (UMi043-A) from an African American patient with Alzheimer's disease carrying an ABCA7 deletion (p.Arg578Alafs). Stem Cell Res. 2024;76:103364 pubmed publisher
Ge Y, Cheng Y, Yin T, Peng X, Xiong Z, Wu B, et al. Generation of a human induced pluripotent stem cell line (FDCHi012-A) from a patient with DYRK1A-related intellectual disability syndrome carrying DYRK1A mutation (c.1024G > T). Stem Cell Res. 2024;76:103345 pubmed publisher
Kruger R, Frum T, Brumm A, Hickey S, Niakan K, Aziz F, et al. Smad4 is essential for epiblast scaling and morphogenesis after implantation, but nonessential prior to implantation in the mouse. bioRxiv. 2024;: pubmed publisher
Ouchi K, Isono K, Ohya Y, Shiraki N, Tasaki M, Inomata Y, et al. Characterization of heterozygous ATTR Tyr114Cys amyloidosis-specific induced pluripotent stem cells. Heliyon. 2024;10:e24590 pubmed publisher
Daya N, D xf6 ring K, Zhuge H, Volke L, Stab V, Dietz J, et al. Generation of two hiPSCs lines of two patients carrying truncating mutations in the dimerization domain of filamin C. Stem Cell Res. 2024;76:103320 pubmed publisher
H xf6 pperger S, Spathopoulou A, Mayer Suess L, Suarez Cubero M, Sillaber K, Spreiz A, et al. Generation of the human induced pluripotent stem cell line (IBKMOLi003-A) from PBMCs of a vascular Ehlers-Danlos syndrome (vEDS) patient carrying the heterozygous nonsense mutation c.430C > T (p.Q105*) in the COL3A1 gene. Stem Cell Res. 2024;75:103321 pubmed publisher
Tripathi D, Manhas A, Noishiki C, Wu D, Adkar S, Sallam K, et al. Generation of induced pluripotent stem cell line from a patient suffering from arterial calcification due to deficiency of CD73 (ACDC). Stem Cell Res. 2024;75:103285 pubmed publisher
Tang M, Xiong M, Zhou W, Lei J, Huang M, Huang C, et al. Generation of a human induced pluripotent stem cell line (SMUSHi002-A) from an ALS patient carrying a heterozygous mutation c.1562G > A in the FUS gene. Stem Cell Res. 2024;74:103286 pubmed publisher
Park S, Park C, Eom J, Jo M, Hur H, Choi S, et al. Preclinical and dose-ranging assessment of hESC-derived dopaminergic progenitors for a clinical trial on Parkinson's disease. Cell Stem Cell. 2024;31:25-38.e8 pubmed publisher
Isaac E, Berg D, Pfeffer P. Using extended growth of cattle embryos in culture to gain insights into bovine developmental events on embryonic days 8 to 10. Theriogenology. 2024;214:10-20 pubmed publisher
Lu X, Luo Y, Nie X, Zhang B, Wang X, Li R, et al. Single-cell multi-omics analysis of human testicular germ cell tumor reveals its molecular features and microenvironment. Nat Commun. 2023;14:8462 pubmed publisher
Driver K, Vo C, Scriba C, Saker S, Larmonier T, Malfatti E, et al. Generation of two induced pluripotent stem cell lines from a 33-year-old central core disease patient with a heterozygous dominant c.14145_14156delCTACTGGGACA (p.Asn4715_Asp4718del) deletion in the RYR1 gene. Stem Cell Res. 2023;73:103258 pubmed publisher
Boeing A, Mavrommatis L, Daya N, Zhuge H, Volke L, Kocabas A, et al. Generation of two human iPSC lines (HIMRi002-A and HIMRi003-A) derived from Caveolinopathy patients with rippling muscle disease. Stem Cell Res. 2023;72:103220 pubmed publisher
Lyu X, Rowley M, Kulik M, Dalton S, Corces V. Regulation of CTCF loop formation during pancreatic cell differentiation. Nat Commun. 2023;14:6314 pubmed publisher
Kitagawa Y, Ikenaka A, Sugimura R, Niwa A, Saito M. ZEB2 and MEIS1 independently contribute to hematopoiesis via early hematopoietic enhancer activation. iScience. 2023;26:107893 pubmed publisher
Limouse C, Smith O, Jukam D, Fryer K, Greenleaf W, Straight A. Global mapping of RNA-chromatin contacts reveals a proximity-dominated connectivity model for ncRNA-gene interactions. Nat Commun. 2023;14:6073 pubmed publisher
Balducci V, Scardigli F, Harakalová M, Peter van Tintelen J, Doevendans P, Costa K, et al. Generation and characterization of novel human induced pluripotent stem cell (iPSC) lines originating from five asymptomatic individuals carrying the PLN-R14del pathogenic variant and a non-carrier relative. Stem Cell Res. 2023;72:103208 pubmed publisher
Pollock S, Galicia Silva I, Liu M, Gruskin Z, Alvarez Dominguez J. Scalable generation of 3D pancreatic islet organoids from human pluripotent stem cells in suspension bioreactors. STAR Protoc. 2023;4:102580 pubmed publisher
Militi S, Nibhani R, Jalali M, Pauklin S. RBL2-E2F-GCN5 guide cell fate decisions during tissue specification by regulating cell-cycle-dependent fluctuations of non-cell-autonomous signaling. Cell Rep. 2023;42:113146 pubmed publisher
Irie N, Lee S, Lorenzi V, Xu H, Chen J, Inoue M, et al. DMRT1 regulates human germline commitment. Nat Cell Biol. 2023;25:1439-1452 pubmed publisher
Karvas R, Zemke J, Ali S, Upton E, Sane E, Fischer L, et al. 3D-cultured blastoids model human embryogenesis from pre-implantation to early gastrulation stages. Cell Stem Cell. 2023;30:1148-1165.e7 pubmed publisher
Iwatsuki K, Oikawa M, Kobayashi H, Penfold C, Sanbo M, Yamamoto T, et al. Rat post-implantation epiblast-derived pluripotent stem cells produce functional germ cells. Cell Rep Methods. 2023;3:100542 pubmed publisher
Li B, Jin X, Chan H. Effects of low doses of methylmercury (MeHg) exposure on definitive endoderm cell differentiation in human embryonic stem cells. Arch Toxicol. 2023;97:2625-2641 pubmed publisher
Cunningham D, Stanberry I, Ye S, Alonzo M, Zhao M, Garg V, et al. Generation of iPSC line NCHi012-A from a patient with Alagille syndrome and heterozygous pathogenic variant in the JAG1 gene. Stem Cell Res. 2023;71:103177 pubmed publisher
Lau H, Amirruddin N, Loo L, Chan J, Iich E, Krishnan V, et al. FGFR-mediated ERK1/2 signaling contributes to mesendoderm and definitive endoderm formation in vitro. iScience. 2023;26:107265 pubmed publisher
Banerjee K, Lin Y, Gahn J, Cordero J, Gupta P, Mohamed I, et al. SMAD4 maintains the fluid shear stress set point to protect against arterial-venous malformations. J Clin Invest. 2023;133: pubmed publisher
Goissis M, BRADSHAW B, Pósfai E, Rossant J. Influence of FGF4 and BMP4 on FGFR2 dynamics during the segregation of epiblast and primitive endoderm cells in the pre-implantation mouse embryo. PLoS ONE. 2023;18:e0279515 pubmed publisher
Hsu F, Wu Q, Fabyanic E, Wei A, Wu H, Clark A. TET1 facilitates specification of early human lineages including germ cells. iScience. 2023;26:107191 pubmed publisher
Pikkupeura L, Bressan R, Guiu J, Chen Y, Maimets M, Mayer D, et al. Transcriptional and epigenomic profiling identifies YAP signaling as a key regulator of intestinal epithelium maturation. Sci Adv. 2023;9:eadf9460 pubmed publisher
Overeem A, Chang Y, Moustakas I, Roelse C, Hillenius S, Helm T, et al. Efficient and scalable generation of primordial germ cells in 2D culture using basement membrane extract overlay. Cell Rep Methods. 2023;3:100488 pubmed publisher
Cho G, Hyun K, Choi J, Shin E, Kim B, Kim H, et al. Arginine 65 methylation of Neurogenin 3 by PRMT1 is required for pancreatic endocrine development of hESCs. Exp Mol Med. 2023;55:1506-1519 pubmed publisher
Lee J, Lee C, Son H, Lee J, Kang M, Chai J, et al. SOX17-mediated LPAR4 expression plays a pivotal role in cardiac development and regeneration after myocardial infarction. Exp Mol Med. 2023;55:1424-1436 pubmed publisher
Yu Y, Alonzo M, Ye S, Fang A, Manickam K, Garg V, et al. Generation of an induced pluripotent stem cell line (NCHi010-A) from a 6-year-old female with Down syndrome and without congenital heart disease. Stem Cell Res. 2023;71:103155 pubmed publisher
Che Y, Choi I, Song C, Park C, Lim S, Kim J, et al. Peripheral Neuron-Organoid Interaction Induces Colonic Epithelial Differentiation via Non-Synaptic Substance P Secretion. Int J Stem Cells. 2023;16:269-280 pubmed publisher
Li J, Bai Y, Liu Y, Song Z, Yang Y, Zhao Y. Transcriptome-based chemical screens identify CDK8 as a common barrier in multiple cell reprogramming systems. Cell Rep. 2023;42:112566 pubmed publisher
Castillo Venzor A, Penfold C, Morgan M, Tang W, Kobayashi T, Wong F, et al. Origin and segregation of the human germline. Life Sci Alliance. 2023;6: pubmed publisher
Merkert S, Haase A, Dahlmann J, G xf6 hring G, Waqas F, Pessler F, et al. Generation of two human NRF2 knockout iPSC clones using CRISPR/Cas9 editing. Stem Cell Res. 2023;69:103090 pubmed publisher
Ukaji T, Takahashi Shibata M, Arai D, Tsutsumi H, Tajima S, Akamatsu W, et al. Generation and characterization of a human iPSC line (JUFMDOi007-A) from a patient with Usher syndrome due to mutation in USH2A. Stem Cell Res. 2023;69:103100 pubmed publisher
Gao Y, Cheng Y, Wen J, Xiao D, Xu J, Cai C, et al. Efficient generation of induced pluripotent stem cell lines from peripheral blood mononuclear cells. Stem Cell Res. 2023;69:103088 pubmed publisher
Zeng W, Kong X, Alamana C, Liu Y, Guzmán J, Pang P, et al. Generation of two induced pluripotent stem cell lines from spinal muscular atrophy type 1 patients carrying no functional copies of SMN1 gene. Stem Cell Res. 2023;69:103095 pubmed publisher
Liu K, Xu X, Bai D, Li Y, Zhang Y, Jia Y, et al. Bilineage embryo-like structure from EPS cells can produce live mice with tetraploid trophectoderm. Protein Cell. 2023;14:262-278 pubmed publisher
Cossec J, Traboulsi T, Sart S, Loe Mie Y, Guthmann M, Hendriks I, et al. Transient suppression of SUMOylation in embryonic stem cells generates embryo-like structures. Cell Rep. 2023;42:112380 pubmed publisher
Li J, Zhu Q, Cao J, Liu Y, Lu Y, Sun Y, et al. Cynomolgus monkey embryo model captures gastrulation and early pregnancy. Cell Stem Cell. 2023;30:362-377.e7 pubmed publisher
Almad A, Garcia L, Takanohashi A, Gagne A, Yang W, Ann McGuire J, et al. Generation of three induced Pluripotent Stem Cell lines from individuals with Hypomyelination with Atrophy of Basal Ganglia and Cerebellum caused by a c.745G>A (p.D249N) autosomal dominant mutation in TUBB4A. Stem Cell Res. 2023;69:103083 pubmed publisher
Ozguldez H, Govindasamy N, Fan R, Long H, Mildner K, Zeuschner D, et al. Polarity inversion reorganizes the stem cell compartment of the trophoblast lineage. Cell Rep. 2023;42:112313 pubmed publisher
Oh J, Lee M, Choe G, Lee D, Choi K, Kim S, et al. The number of primitive endoderm cells in the inner cell mass is regulated by platelet-derived growth factor signaling in porcine preimplantation embryos. Anim Biosci. 2023;36:1180-1189 pubmed publisher
Kim A, Lee H, Kim H, Jung J, Seol H, Choi E, et al. Establishment of TUBB3-mCherry knock-in human pluripotent stem cell line using CRISPR/Cas9 (SNUe003-A-4). Stem Cell Res. 2023;69:103064 pubmed publisher
Luo Q, Pui H, Chen J, Yu L, Jannig P, Pei Y, et al. Epiblast-like stem cells established by Wnt/β-catenin signaling manifest distinct features of formative pluripotency and germline competence. Cell Rep. 2023;42:112021 pubmed publisher
Pierson Smela M, Kramme C, Fortuna P, Adams J, Su R, Dong E, et al. Directed differentiation of human iPSCs to functional ovarian granulosa-like cells via transcription factor overexpression. elife. 2023;12: pubmed publisher
Chiang I, Graus M, Kirschnick N, Davidson T, Luu W, Harwood R, et al. The blood vasculature instructs lymphatic patterning in a SOX7-dependent manner. EMBO J. 2023;42:e109032 pubmed publisher
Madrigal P, Deng S, Feng Y, Militi S, Goh K, Nibhani R, et al. Epigenetic and transcriptional regulations prime cell fate before division during human pluripotent stem cell differentiation. Nat Commun. 2023;14:405 pubmed publisher
Yammine K, Mirda Abularach S, Sampurno L, Bateman J, Lamand xe9 S, Shoulders M. Using CRISPR/Cas9 to generate a heterozygous COL2A1 p.R719C iPSC line (MCRIi019-A-6) model of human precocious osteoarthritis. Stem Cell Res. 2023;67:103020 pubmed publisher
Zushin P, Zhou Y, Li A, Ashley E, Wheeler M, Wu J. Generation of two human iPSC lines with Exon 3 mutations in BCL2-Associated Athanogene 3 (BAG3) from dilated cardiomyopathy patients. Stem Cell Res. 2023;67:103019 pubmed publisher
Fonseca M, Haro M, Wright K, Lin X, Abbasi F, Sun J, et al. Single-cell transcriptomic analysis of endometriosis. Nat Genet. 2023;55:255-267 pubmed publisher
Li L, Si X, Yang J, Lei M, Liu H, Ruan J, et al. Generation of a human iPSC line (CIBi014-A) from a patient with Parkinson's disease carrying a novel heterozygotic PARK8 (LRRK2) mutation. Stem Cell Res. 2023;66:102995 pubmed publisher
Yang L, Lu S, Yang Z, Yao J, Zhou P, Zhao M. Generation of an induced pluripotent stem cell line (IPCASi001-A) from an autism spectrum disorder individual without intellectual disability. Stem Cell Res. 2023;66:102994 pubmed publisher
Horschitz S, Frank J, Koch P. Generation of three induced pluripotent stem cell lines carrying different variants of the BDNF (Val66Met) polymorphism. Stem Cell Res. 2023;66:102989 pubmed publisher
Uchida A, Imaimatsu K, Suzuki H, Han X, Ushioda H, Uemura M, et al. SOX17-positive rete testis epithelium is required for Sertoli valve formation and normal spermiogenesis in the male mouse. Nat Commun. 2022;13:7860 pubmed publisher
Shang D, Lan T, Wang Y, Li X, Liu Q, Dong H, et al. PGCLCs of human 45,XO reveal pathogenetic pathways of neurocognitive and psychosocial disorders. Cell Biosci. 2022;12:194 pubmed publisher
Miller D, Lisowski P, Lickfett S, Mlody B, B xfc nning M, Genehr C, et al. Generation of induced pluripotent stem cells from three individuals with Huntington's disease. Stem Cell Res. 2022;65:102976 pubmed publisher
Chen I, Olshausen J, Thomas D, Lai C, McLaughlin T, Wu J. Generation of three induced pluripotent stem cell lines to model and investigate diseases affecting Hispanics. Stem Cell Res. 2022;65:102969 pubmed publisher
Ruangrung K, Chakritbudsabong W, Thongon S, Rungarunlert S, Wattanapanitch M, Boonarkart C, et al. Analysis of Influenza A virus infection in human induced pluripotent stem cells (hiPSCs) and their derivatives. Virus Res. 2022;323:199009 pubmed publisher
Zywitza V, Frahm S, Kr xfc ger N, Weise A, G xf6 ritz F, Hermes R, et al. Induced pluripotent stem cells and cerebral organoids from the critically endangered Sumatran rhinoceros. iScience. 2022;25:105414 pubmed publisher
HESS S, Kendall T, Pena M, Yamane K, Soong D, Adams L, et al. In vivo partial reprogramming by bacteria promotes adult liver organ growth without fibrosis and tumorigenesis. Cell Rep Med. 2022;3:100820 pubmed publisher
Krawczyk K, Wilczak K, Szczepa x144 ska K, Maleszewski M, Suwi x144 ska A. Paracrine interactions through FGFR1 and FGFR2 receptors regulate the development of preimplantation mouse chimaeric embryo. Open Biol. 2022;12:220193 pubmed publisher
Lin H, Ye S, Xu Z, Penaloza J, Aljuhani M, Vetter T, et al. Generation and characterization of a human induced pluripotent stem cell (iPSC) line from a patient with congenital heart disease (CHD). Stem Cell Res. 2022;65:102958 pubmed publisher
Song J, Choi J, Hong Y, La H, Hong T, Hong K, et al. Developmental Potency and Metabolic Traits of Extended Pluripotency Are Faithfully Transferred to Somatic Cells via Cell Fusion-Induced Reprogramming. Cells. 2022;11: pubmed publisher
Oh J, Jeong J, Lee M, Choe G, Lee D, Choi K, et al. Characterization of multitype colonies originating from porcine blastocysts produced in vitro. Front Cell Dev Biol. 2022;10:918222 pubmed publisher
Jaboreck M, L xfc hmann J, Mielenz M, Stanke F, G xf6 hring G, Martin U, et al. Generation of two TMEM16A knockout iPSC clones each from a healthy human iPSC line, from a Cystic Fibrosis patient specific line with p.Phe508del mutation and from the gene corrected iPSC line. Stem Cell Res. 2022;64:102918 pubmed publisher
Nakashima Y, Miyagi Shiohira C, Saitoh I, Watanabe M, Matsushita M, Tsukahara M, et al. Induced hepatic stem cells are suitable for human hepatocyte production. iScience. 2022;25:105052 pubmed publisher
Steiner T, Zink A, Henke M, Cecchetto G, Buenning M, Rossi A, et al. RNA-based generation of iPSCs from a boy carrying the mutation m.9185 T>C in the mitochondrial gene MT-ATP6 and from his healthy mother. Stem Cell Res. 2022;64:102920 pubmed publisher
Tomita H, Hines K, Herron J, Li A, Baggett D, Xu L. 7-Dehydrocholesterol-derived oxysterols cause neurogenic defects in Smith-Lemli-Opitz syndrome. elife. 2022;11: pubmed publisher
Zheng Y, Yan R, Sun S, Kobayashi M, Xiang L, Yang R, et al. Single-cell analysis of embryoids reveals lineage diversification roadmaps of early human development. Cell Stem Cell. 2022;29:1402-1419.e8 pubmed publisher
Pham T, Panda A, Kagawa H, To S, Ertekin C, Georgolopoulos G, et al. Modeling human extraembryonic mesoderm cells using naive pluripotent stem cells. Cell Stem Cell. 2022;29:1346-1365.e10 pubmed publisher
Trinh L, Osipovich A, Sampson L, Wong J, Wright C, Magnuson M. Differential regulation of alternate promoter regions in Sox17 during endodermal and vascular endothelial development. iScience. 2022;25:104905 pubmed publisher
Mukherjee S, Luedeke D, McCoy L, Iwafuchi M, Zorn A. SOX transcription factors direct TCF-independent WNT/β-catenin responsive transcription to govern cell fate in human pluripotent stem cells. Cell Rep. 2022;40:111247 pubmed publisher
Alonzo M, Contreras J, Ye S, Lin H, Hernandez Rosario L, McBride K, et al. Characterization of an iPSC line NCHi006-A from a patient with hypoplastic left heart syndrome (HLHS). Stem Cell Res. 2022;64:102892 pubmed publisher
Contreras J, Alonzo M, Ye S, Lin H, Hernandez Rosario L, McBride K, et al. Generation of an induced pluripotent stem cell line NCHi003-A from a 11-year-old male with pulmonary atresia with intact ventricular septum (PA-IVS). Stem Cell Res. 2022;64:102893 pubmed publisher
Jiang Z, Gu X, Su W, Duan Q, Lin J, Cao B, et al. Production of a human iPSC line from an early-onset Parkinson's disease patient with a novel CHCHD2 gene truncated mutation. Stem Cell Res. 2022;64:102881 pubmed publisher
Okumura H, Arioka Y, Kushima I, Mori D, Ozaki N. Establishment of induced pluripotent stem cells from a patient with 16p13.11 duplication and VPS13B deletion. Stem Cell Res. 2022;64:102884 pubmed publisher
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product information
master code :
AF1924
SKU :
AF1924
product name :
Human SOX17 Antibody
unit size :
100 ug (also 25 ug)
description :
The Human SOX17 Antibody from R&D Systems is a goat polyclonal antibody to SOX17. This antibody reacts with bovine,canine,chicken,feline,human,mouse,porcine,primate - callithrix jacchus (common marmoset),primate - macaca fascicularis (crab-eating monkey or cynomolgus macaque),primate - macaca mulatta (rhesus macaque),primate - pan troglodytes (chimpanzee),rat,transgenic mouse,xenograft. The Human SOX17 Antibody has been validated for the following applications: Immunohistochemistry,Immunocytochemistry,Western Blot,Flow Cytometry,Bioassay,ICC/F,Immunofluorescence,Immunocytochemistry/Immunofluorescence,Flow Cyomtetry,Immunoprecipitation,Neutralization,Functional Assay,Immunohistochemistry-Paraffin,Immunohistochemistry-Frozen,Simple Western,Chromatin Immunoprecipitation (ChIP).
target :
SOX17
category :
Primary Antibodies
buffer :
Lyophilized from a 0.2 ╡m filtered solution in PBS with Trehalose. *Small pack size (SP) is supplied either lyophilized or as a 0.2 ╡m filtered solution in PBS.
clonality :
Polyclonal
concentration :
LYOPH
conjugate :
Unconjugated
host :
Goat
immunogen :
E. coli -derived recombinant human SOX17, Asp177-Val414, Accession # Q9H6I2
isotype :
IgG
purity :
Antigen Affinity-purified
species :
Bovine,Canine,Chicken,Feline,Human,Mouse,Porcine,Primate - Callithrix jacchus (Common Marmoset),Primate - Macaca fascicularis (Crab-eating Monkey or Cynomolgus Macaque),Primate - Macaca mulatta (Rhesus Macaque),Primate - Pan troglodytes (Chimpanzee),Rat,Transgenic Mouse,Xenograft
specificity :
Detects human SOX17 in direct ELISAs and Western blots. In direct ELISAs, less than 1% cross-reactivity with recombinant human (rh) SOX18 is observed.
gene symbol :
SOX17
top caption :
Detection of Human SOX17 antibody by Western Blot.
accessionNumbers :
Q9H6I2
applications :
Immunocytochemistry,Immunohistochemistry,Western Blot,Flow Cytometry,Bioassay,ICC/F,Immunofluorescence,Immunocytochemistry/Immunofluorescence,Flow Cyomtetry,Immunoprecipitation,Neutralization,Functional Assay,Immunohistochemistry-Paraffin,Immunohistochemistry-Frozen,Simple Western,Chromatin Immunoprecipitation (ChIP)
USD :
499 USD
alt names :
FLJ22252, SRY (sex determining region Y)-box 17, SRY-related HMG-box transcription factor SOX17, transcription factor SOX-17, VUR3
storage :
Use a manual defrost freezer and avoid repeated freeze-thaw cycles. 12 months from date of receipt, -20 to -70 ░C as supplied. 1 month, 2 to 8 ░C under sterile conditions after reconstitution. 6 months, -20 to -70 ░C under sterile conditions after reconstitution.
more info or order :
company information
R&D Systems
614 McKinley Place N.E.
Minneapolis, MN 55413
info@RnDSystems.com
https://www.rndsystems.com
800 343-7475
headquarters: USA
R&D Systems develops and manufactures high-quality proteins and serves as a world leader in immunoassays. R&D Systems also produces quality antibodies, antibody arrays, stem cell and cell culture products, and cell selection and detection products, serving the life science and diagnostics industry.