这是一篇来自已证抗体库的有关人类 TYRP1的综述,是根据12篇发表使用所有方法的文章归纳的。这综述旨在帮助来邦网的访客找到最适合TYRP1 抗体。
TYRP1 同义词: CAS2; CATB; GP75; OCA3; TRP; TRP1; TYRP; b-PROTEIN

圣克鲁斯生物技术
小鼠 单克隆(23)
  • 免疫印迹; 小鼠; 1:200; 图 1b
圣克鲁斯生物技术 TYRP1抗体(Santa Cruz Biotechnology, Sc-136388)被用于被用于免疫印迹在小鼠样本上浓度为1:200 (图 1b). Invest Ophthalmol Vis Sci (2018) ncbi
小鼠 单克隆(TA99)
  • 免疫印迹; 大鼠; 图 s1
圣克鲁斯生物技术 TYRP1抗体(Santa Cruz, sc58438)被用于被用于免疫印迹在大鼠样本上 (图 s1). Sci Rep (2016) ncbi
小鼠 单克隆(G-9)
  • 免疫印迹; 人类
圣克鲁斯生物技术 TYRP1抗体(Santa Cruz, SC-166857)被用于被用于免疫印迹在人类样本上. Mol Vis (2014) ncbi
艾博抗(上海)贸易有限公司
小鼠 单克隆(TA99)
  • 免疫细胞化学; 人类; 1:40; 图 4g
  • 免疫细胞化学; 小鼠; 1:200; 图 1b
艾博抗(上海)贸易有限公司 TYRP1抗体(Abcam, TA99)被用于被用于免疫细胞化学在人类样本上浓度为1:40 (图 4g) 和 被用于免疫细胞化学在小鼠样本上浓度为1:200 (图 1b). Nat Commun (2017) ncbi
domestic rabbit 单克隆(EPR13063)
  • 免疫印迹; 小鼠; 1:10,000; 图 2e
艾博抗(上海)贸易有限公司 TYRP1抗体(Abcam, ab178676)被用于被用于免疫印迹在小鼠样本上浓度为1:10,000 (图 2e). Redox Biol (2016) ncbi
小鼠 单克隆(TA99)
  • 免疫组化-冰冻切片; 小鼠; 图 4
艾博抗(上海)贸易有限公司 TYRP1抗体(Abcam, ab3312)被用于被用于免疫组化-冰冻切片在小鼠样本上 (图 4). J Immunol (2016) ncbi
小鼠 单克隆(TA99)
  • 免疫印迹; 小鼠; 图 4
艾博抗(上海)贸易有限公司 TYRP1抗体(Abcam, ab3312)被用于被用于免疫印迹在小鼠样本上 (图 4). Oncoimmunology (2014) ncbi
BioLegend
小鼠 单克隆(TA99)
  • 免疫组化-冰冻切片; 人类; 图 2b
BioLegend TYRP1抗体(Covance, Ta99)被用于被用于免疫组化-冰冻切片在人类样本上 (图 2b). Cancer Res (2016) ncbi
小鼠 单克隆(TA99)
  • 免疫组化; 人类; 1:100; 图 6j
BioLegend TYRP1抗体(BioLegend, 917801)被用于被用于免疫组化在人类样本上浓度为1:100 (图 6j). Burns Trauma (2016) ncbi
小鼠 单克隆(TA99)
  • 免疫细胞化学; 人类
BioLegend TYRP1抗体(Covance, Sig-38150)被用于被用于免疫细胞化学在人类样本上. Nat Commun (2014) ncbi
Bio X Cell
小鼠 单克隆(TA99)
  • 抑制或激活实验; 小鼠; ; 图 2b
Bio X Cell TYRP1抗体(BioXCell, TA99)被用于被用于抑制或激活实验在小鼠样本上浓度为 (图 2b). J Clin Invest (2019) ncbi
西格玛奥德里奇
domestic rabbit 多克隆
  • 免疫细胞化学; 人类; 图 2
西格玛奥德里奇 TYRP1抗体(Sigma-Aldrich, SAB2102617)被用于被用于免疫细胞化学在人类样本上 (图 2). Exp Ther Med (2017) ncbi
文章列表
  1. Rasoulouniriana D, Santana Magal N, Gutwillig A, Farhat Younis L, Wine Y, Saperia C, et al. A distinct subset of FcγRI-expressing Th1 cells exert antibody-mediated cytotoxic activity. J Clin Invest. 2019;129:4151-4164 pubmed 出版商
  2. Onojafe I, Megan L, Melch M, Aderemi J, Alur R, Abu Asab M, et al. Minimal Efficacy of Nitisinone Treatment in a Novel Mouse Model of Oculocutaneous Albinism, Type 3. Invest Ophthalmol Vis Sci. 2018;59:4945-4952 pubmed 出版商
  3. Patwardhan A, Bardin S, Miserey Lenkei S, Larue L, Goud B, Raposo G, et al. Routing of the RAB6 secretory pathway towards the lysosome related organelle of melanocytes. Nat Commun. 2017;8:15835 pubmed 出版商
  4. Zhu M, Ma H, Zhan Z, Liu C, Luo W, Zhao G. Detection of auto antibodies and transplantation of cultured autologous melanocytes for the treatment of vitiligo. Exp Ther Med. 2017;13:23-28 pubmed 出版商
  5. Klarquist J, Tobin K, Farhangi Oskuei P, Henning S, Fernandez M, Dellacecca E, et al. Ccl22 Diverts T Regulatory Cells and Controls the Growth of Melanoma. Cancer Res. 2016;76:6230-6240 pubmed
  6. Hahn J, McFarland K, Combs K, Supp D. Partial epithelial-mesenchymal transition in keloid scars: regulation of keloid keratinocyte gene expression by transforming growth factor-?1. Burns Trauma. 2016;4:30 pubmed 出版商
  7. Asalla S, Girada S, Kuna R, Chowdhury D, Kandagatla B, Oruganti S, et al. Restoring Mitochondrial Function: A Small Molecule-mediated Approach to Enhance Glucose Stimulated Insulin Secretion in Cholesterol Accumulated Pancreatic beta cells. Sci Rep. 2016;6:27513 pubmed 出版商
  8. Chaiprasongsuk A, Onkoksoong T, Pluemsamran T, Limsaengurai S, Panich U. Photoprotection by dietary phenolics against melanogenesis induced by UVA through Nrf2-dependent antioxidant responses. Redox Biol. 2016;8:79-90 pubmed 出版商
  9. Bandyopadhyay S, Quinn T, Scandiuzzi L, Basu I, Partanen A, Tomé W, et al. Low-Intensity Focused Ultrasound Induces Reversal of Tumor-Induced T Cell Tolerance and Prevents Immune Escape. J Immunol. 2016;196:1964-76 pubmed 出版商
  10. Liechtenstein T, Perez Janices N, Blanco Luquin I, Goyvaerts C, Schwarze J, Dufait I, et al. Anti-melanoma vaccines engineered to simultaneously modulate cytokine priming and silence PD-L1 characterized using ex vivo myeloid-derived suppressor cells as a readout of therapeutic efficacy. Oncoimmunology. 2014;3:e945378 pubmed
  11. Lowdon R, Zhang B, Bilenky M, Mauro T, Li D, Gascard P, et al. Regulatory network decoded from epigenomes of surface ectoderm-derived cell types. Nat Commun. 2014;5:5442 pubmed 出版商
  12. Poliakov E, Strunnikova N, Jiang J, Martinez B, Parikh T, Lakkaraju A, et al. Multiple A2E treatments lead to melanization of rod outer segment-challenged ARPE-19 cells. Mol Vis. 2014;20:285-300 pubmed