本文图 4F(下图) 图 5K 来自 "Long Non-coding RNA MIR570MG Causes Regorafenib Resistance in Colon Cancer by Repressing miR-145/SMAD3 Signaling" (Wei et al 2020) 图 5E 来自 "Long Non-coding RNA CCAT1 Acts as an Oncogene and Promotes Sunitinib Resistance in Renal Cell Carcinoma" (Shan et al 2020)
[左] 本文 图5D(下图) [右] 图 4F 来自 "Fangchinoline targets PI3K and suppresses PI3K/AKT signaling pathway in SGC7901 cells" (Tian et al 2015)
图 4F 来自 "Ursolic acid suppresses the biological function of osteosarcoma cells" (Pei et al 2019),也与以上图像高度相似
本文图2C,5B(下图
图 4F,G 来自 "Sulfated polysaccharide of Sepiella maindroni ink targets Akt and overcomes resistance to the FGFR inhibitor AZD4547 in bladder cancer" (Shan et al 2019)
图 2C, 3C 来自 "The role of Zeb1 in the pathogenesis of morbidly adherent placenta" (Li et al 2019) 图 6B 来自 "miR-489 promotes apoptosis and inhibits invasiveness of glioma cells by targeting PAK5/RAF1 signaling pathways" (Wang et al 2019) [已撤稿]
图4A中的MCF-7细胞30 µM处理组似乎与图4B中的MCF-7细胞30 µM处理组图像重复。 图4B中的MCF-7细胞DMSO处理组似乎与图4B中的MCF-7细胞10 µM处理组图像重复。 图4C中的MDA-MB-231细胞DMSO处理组似乎与图4D中的MDA-MB-231细胞30 µM处理组图像重复。 图4C中的MDA-MB-231细胞10 µM处理组似乎与图4C中的MDA-MB-231细胞30 µM处理组,图4D中的MDA-MB-231细胞DMSO处理组,以及图4D中的MDA-MB-231细胞10 µM处理组图像重复。
本文图2B(下图)
图 4B 来自 "miR-495 inhibits the growth of fibroblasts in hypertrophic scars" (Guo et al 2019):
图4A 来自 "miR-627-3p inhibits osteosarcoma cell proliferation and metastasis by targeting PTN" (He et al 2019) 本文图 4B 本文图 5A
图 4A 来自 "miR-627-3p inhibits osteosarcoma cell proliferation and metastasis by targeting PTN" (He et al 2019) 图 4B from He et al,2019 本文图 5A 本文图 5B
[左]图 2D 来自 "Sulfated polysaccharide of Sepiella maindroni ink targets Akt and overcomes resistance to the FGFR inhibitor AZD4547 in bladder cancer" (Shan et al 2019). [右] 本文图 3D
[左] 本文图 4A,B [右] 图 2E,F 来自 "Naringin targets Zeb1to suppress osteosarcoma cell proliferation and metastasis" (He et al 2018)
图 2A,B 来自 "Naringin suppresses the growth and motility of hypertrophic scar fibroblasts by inhibiting the kinase activity of Akt" (Song et al 2018)
图3C 来自 "Oxymatrine suppresses the growth and invasion of MG63 cells by up-regulating PTEN and promoting its nuclear translocation" (He et al 2017)
图 4C, D and 6C 来自 "miR-141-3p is a key negative regulator of the EGFR pathway in osteosarcoma" (Wang et al 2018)
图 5B 来自 "miR-548d-3p inhibits osteosarcoma by downregulating KRAS" (Chen et al 2019) 图 1G 来自 "miR-141-3p is a key negative regulator of the EGFR pathway in osteosarcoma" (Wang et al 2018) 本文图 4C
图 1F 来自 "MiR-411 suppresses the development of bladder cancer by regulating ZnT1" (Liu et al 2018) 图 5B 来自 "miR-548d-3p inhibits osteosarcoma by downregulating KRAS" (Chen et al 2019) 图 1G 来自 "miR-141-3p is a key negative regulator of the EGFR pathway in osteosarcoma" (Wang et al 2018) [已撤稿] 本文图 4C
[左] 图 5A 来自 "The tumor suppressive roles of ARHGAP25 in lung cancer cells" (Xu et al 2020) [右] 本文图 3B
[左]本文图 S1 [右] 图 6A 来自 "Electroacupuncture Promoting Axonal Regeneration in Spinal Cord Injury Rats via Suppression of Nogo/ NgR and Rho/ROCK Signaling Pathway" (Xiao et al 2019)
[左] 图4A 来自 "miR-194 is a negative regulator of GEF-H1 pathway in melanoma" (Guo et al 2016) [右] 本文图4F
[左] 本文图 4E [右] 图 5A 来自 "miR‑593 inhibits proliferation and invasion and promotes apoptosis in non‑small cell lung cancer cells by targeting SLUG‑associated signaling pathways" (Wei et al 2019)
[左] 本文图 4B [右] 图 5B 来自 "miR‑489 promotes apoptosis and inhibits invasiveness of glioma cells by targeting PAK5/RAF1 signaling pathways" (Wang et al 2019) [已撤稿]
[左] 本文图 3A [右] 图 3F 来自 "Effects of mild intrauterine hypoperfusion in the second trimester on memory and learning function in rat offspring" (Yin et al 2020)
以下是本文图2C和3C
图6B 来自 "miR-489 promotes apoptosis and inhibits invasiveness of glioma cells by targeting PAK5/RAF1 signaling pathways" (Wang et al 2019) [已撤稿]
图2C, 5B 来自 "LncRNA HAND2-AS1 exerts anti-oncogenic efects on bladder cancer via restoration of RARB as a sponge of microRNA-146" (Shan et al 2021)
图 4F,G 来自 "Sulfated polysaccharide of Sepiella maindroni ink targets Akt and overcomes resistance to the FGFR inhibitor AZD4547 in bladder cancer" (Shan et al 2019)
图 4D 来自 "miR‐627‐3p inhibits osteosarcoma cell proliferation and metastasis by targeting PTN" (He et al 2019) 图 4C 来自 "MicroRNA‐506‐3p inhibits osteosarcoma cell proliferation and metastasis by suppressing RAB3D expression" (Wang et al 2018) 本文图 3C,D
图 4A,B 来自 "Apigenin inhibits growth and migration of fibroblasts by suppressing FAK signaling" (Wang et al 2019)
本文图3E,F [左] 图 1H,I 来自 "Apigenin inhibits growth and migration of fibroblasts by suppressing FAK signaling" (Wang et al 2019) [右] 图 4A, 5B 来自 "miR-627-3p inhibits osteosarcoma cell proliferation and metastasis by targeting PTN" (He et al 2019)
[上] 图 5D 来自 "Sulfated polysaccharide of Sepiella maindroni ink targets Akt and overcomes resistance to the FGFR inhibitor AZD4547 in bladder cancer" (Shan et al 2019) [下] 图 5B 来自 "MicroRNA-506-3p inhibits osteosarcoma cell proliferation and metastasis by suppressing RAB3D expression" (Wang et al 2018)
[左] 图 4B 来自 "MicroRNA-506-3p inhibits osteosarcoma cell proliferation and metastasis by suppressing RAB3D expression" (Wang et al 2018) [右] 图 4A 来自 miR-627-3p inhibits osteosarcoma cell proliferation and metastasis by targeting PTN" (He et al 2019)
[上] 本文图 6C [下] 图 5F 来自 He et al (2019)
本文图 5B 图 1G 来自 "miR-141-3p is a key negative regulator of the EGFR pathway in osteosarcoma" (Wang et al 2018) 图 4C 来自 "MicroRNA-141 suppresses growth and metastatic potential of head and neck squamous cell carcinoma" (Zhao et al 2019)
图 1F 来自 "MiR-411 suppresses the development of bladder cancer by regulating ZnT1" (Liu et al 2018) 本文图 5B 图 1G 来自 "miR-141-3p is a key negative regulator of the EGFR pathway in osteosarcoma" (Wang et al 2018) [已撤稿] 图 4C 来自 "MicroRNA-141 suppresses growth and metastatic potential of head and neck squamous cell carcinoma" (Zhao et al 2019)
消息来源:
1. https://pubpeer.com/publications/64E6CB1CA3991F6306E7B5CC638F2D#3
2. https://pubpeer.com/publications/2F11A922EA4489543DE919368E29E3#4
3. https://pubpeer.com/publications/EC2331AF143180AEC98BDA895FC19D#
4. https://pubpeer.com/publications/B20ECCC0BBE59E0412E0C0F8C4D617#4
5. https://pubpeer.com/publications/B07B4AFC1C6F49E6C37EF6210242CC#1
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7. https://pubpeer.com/publications/890720CC76639224720511F7B51B18
8. https://pubpeer.com/publications/1EE335DBC5E635537799FB66417CAF#2
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