iFluor® 594 goat anti-mouse IgG (H+L)
AAT Bioquest's iFluor® dyes are optimized for labeling proteins, in particular, antibodies. These dyes are bright, photostable and have minimal quenching on proteins. They can be well excited by the major laser lines of fluorescence instruments (e.g., 350, 405, 488, 555 and 633 nm). iFluor® 594 goat anti-mouse IgG (H+L) conjugate has fluorescence excitation and emission maxima of ~592 nm and ~614 nm respectively. These spectral characteristics make them an excellent alternative to Alexa Fluor® 594 goat anti-mouse IgG (H+L) conjugate (Alexa Fluor® is the trademark of Invitrogen).
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Product family
Name | Excitation (nm) | Emission (nm) | Extinction coefficient (cm -1 M -1) | Quantum yield | Correction Factor (260 nm) | Correction Factor (280 nm) |
iFluor® 350 goat anti-mouse IgG (H+L) | 345 | 450 | 200001 | 0.951 | 0.83 | 0.23 |
iFluor® 405 goat anti-mouse IgG (H+L) | 403 | 427 | 370001 | 0.911 | 0.48 | 0.77 |
iFluor® 488 goat anti-mouse IgG (H+L) | 491 | 516 | 750001 | 0.91 | 0.21 | 0.11 |
iFluor® 514 goat anti-mouse IgG (H+L) | 511 | 527 | 750001 | 0.831 | 0.265 | 0.116 |
iFluor® 532 goat anti-mouse IgG (H+L) | 537 | 560 | 900001 | 0.681 | 0.26 | 0.16 |
iFluor® 555 goat anti-mouse IgG (H+L) | 557 | 570 | 1000001 | 0.641 | 0.23 | 0.14 |
iFluor® 633 goat anti-mouse IgG (H+L) | 640 | 654 | 2500001 | 0.291 | 0.062 | 0.044 |
iFluor® 647 goat anti-mouse IgG (H+L) | 656 | 670 | 2500001 | 0.251 | 0.03 | 0.03 |
iFluor® 680 goat anti-mouse IgG (H+L) | 684 | 701 | 2200001 | 0.231 | 0.097 | 0.094 |
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Citations
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SLC7A5 regulates tryptophan uptake and PD-L1 expression levels via the kynurenine pathway in ovarian cancer
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Journal: Oncology Letters (2025): 1--15
Authors: Jiang, Ruibin and Jin, Bo and Sun, Yuting and Chen, Zhongjian and Wan, Danying and Feng, Jianguo and Ying, Lisha and Peng, Chanjuan and Gu, Linhui
Journal: Oncology Letters (2025): 1--15
Aspirin alleviates fibronectin-induced preeclampsia phenotypes in a mouse model and reverses fibronectin-mediated trophoblast invasiveness under hypoxia by regulating ciliogenesis and Akt and MAPK signaling
Authors: Tsai, Pei-Yin and Lee, Chih-I and Tam, Hoi-Lam and Su, Mei-Tsz
Journal: Biochemical Pharmacology (2024): 116423
Authors: Tsai, Pei-Yin and Lee, Chih-I and Tam, Hoi-Lam and Su, Mei-Tsz
Journal: Biochemical Pharmacology (2024): 116423
Effects and mechanism of action of neonatal versus adult astrocytes on neural stem cell proliferation after traumatic brain injury
Authors: Dai, Yong and Sun, Feifan and Zhu, Hui and Liu, Qianqian and Xu, Xide and Gong, Peipei and Jiang, Rui and Jin, Guohua and Qin, Jianbing and Chen, Jian and others,
Journal: Stem Cells (2019): 1344--1356
Authors: Dai, Yong and Sun, Feifan and Zhu, Hui and Liu, Qianqian and Xu, Xide and Gong, Peipei and Jiang, Rui and Jin, Guohua and Qin, Jianbing and Chen, Jian and others,
Journal: Stem Cells (2019): 1344--1356
Overexpression of CXCR2 predicts poor prognosis in patients with colorectal cancer
Authors: Zhao, Jingkun and Ou, Baochi and Feng, Hao and Wang, Puxiongzhi and Yin, Shuai and Zhu, Congcong and Wang, Shenjie and Chen, Chun and Zheng, Minhua and Zong, Yaping and others,
Journal: Oncotarget (2017): 28442
Authors: Zhao, Jingkun and Ou, Baochi and Feng, Hao and Wang, Puxiongzhi and Yin, Shuai and Zhu, Congcong and Wang, Shenjie and Chen, Chun and Zheng, Minhua and Zong, Yaping and others,
Journal: Oncotarget (2017): 28442
Up-regulation of chemokine receptor CCR4 is associated with Human Hepatocellular Carcinoma malignant behavior
Authors: Cheng, Xi and Wu, Huo and Jin, Zhi-Jian and Ma, Ding and Yuen, Stanley and Jing, Xiao-Qian and Shi, Min-Min and Shen, Bai-Yong and Peng, Cheng-Hong and Zhao, Ren and others,
Journal: Scientific reports (2017): 1--14
Authors: Cheng, Xi and Wu, Huo and Jin, Zhi-Jian and Ma, Ding and Yuen, Stanley and Jing, Xiao-Qian and Shi, Min-Min and Shen, Bai-Yong and Peng, Cheng-Hong and Zhao, Ren and others,
Journal: Scientific reports (2017): 1--14
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