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Correction

Correction: Pu et al. Exosome miRNA Expression in Umbilical Cord Blood of High-Parity Sows Regulates Their Reproductive Potential. Animals 2022, 12, 2456

1
College of Animal Science and Technology, Southwest University, Chongqing 400715, China
2
Chongqing LiuJiu Animal Husbandry Technology Co., Ltd., Chongqing 409099, China
3
Chongqing Academy of Animal Sciences, Chongqing 402460, China
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Animals 2024, 14(2), 345; https://doi.org/10.3390/ani14020345
Submission received: 19 December 2023 / Accepted: 10 January 2024 / Published: 22 January 2024

Error in Figure

In the original publication [1], there was a mistake in “Figure 2C. The morphological characteristics of Umbilical Cord, and Figure 3D. The migration of HUVEC cells in vitro after 24 h of treatment with Exo-MS, Exo-OS, or PBS” as published. “This picture was improperly used due to a mistake in organizing pictures during the data handover process during the COVID-19 pandemic, but it does not affect the results and conclusions of the paper”. The corrected “Figure 2. Angiogenesis of OS pig was repressed, and Figure 3. The pro-angiogenesis role of Exo-OS was repressed.” appear below. The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.

Reference

  1. Pu, Q.; Chai, J.; Chen, L.; Liu, C.; Yang, C.; Huang, Y.; Luo, J. Exosome miRNA Expression in Umbilical Cord Blood of High-Parity Sows Regulates Their Reproductive Potential. Animals 2022, 12, 2456. [Google Scholar] [CrossRef] [PubMed]
Figure 2. Angiogenesis of OS pig was repressed. (A,B) Reproductive performance of OS and MS sows. (C) The morphological characteristics of Umbilical Cord, 40×, scale = 100 μm, umbilical vein of MS; umbilical vein of OS. (D) Umbilical vein diameter (UV-D), umbilical vein cross-sectional area (UV-CSA), Wharton’s jelly (WJA). (EG) mRNA relative expression level of pro-angiogenesis genes (VEGF, ANG1, HIF-1) in both MS and OS piglet’s tissues. (H,I) mRNA relative expression level of angiogenesis-inhibiting genes (MMP9, TSP1) in both MS and OS piglet’s tissues. * or ** represents significance at the 0.05 or 0.01 level, respectively, and ns represents no significance.
Figure 2. Angiogenesis of OS pig was repressed. (A,B) Reproductive performance of OS and MS sows. (C) The morphological characteristics of Umbilical Cord, 40×, scale = 100 μm, umbilical vein of MS; umbilical vein of OS. (D) Umbilical vein diameter (UV-D), umbilical vein cross-sectional area (UV-CSA), Wharton’s jelly (WJA). (EG) mRNA relative expression level of pro-angiogenesis genes (VEGF, ANG1, HIF-1) in both MS and OS piglet’s tissues. (H,I) mRNA relative expression level of angiogenesis-inhibiting genes (MMP9, TSP1) in both MS and OS piglet’s tissues. * or ** represents significance at the 0.05 or 0.01 level, respectively, and ns represents no significance.
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Figure 3. The pro-angiogenesis role of Exo-OS was repressed. (A) The 3D morphology of isolated pig UCB-EXO observed in electron microscope. (B) The line profile of electron microscope image size for UCB-EXO. X- and Y-axes are the size and events, respectively. (C) Cell viability was measured following Exo-OS, Exo-MS, or PBS treatment for 24 h, using the CCK8 analysis. (D) The migration of HUVEC cells in vitro after 24 h of treatment with Exo-MS, Exo-OS, or PBS was evaluated using scratch assay (n = 3). (E) Percentage of cells healed. (F) The expression level of VEGF, ANG1, TSP1, and MMP9 mRNA after treating Exo-MS, Exo-OS, or PBS. (G) Positive rate of exosome marker proteins CD63 and CD81 detected by flow cytometry. * or ** represents significance at the 0.05 or 0.01 level, respectively.
Figure 3. The pro-angiogenesis role of Exo-OS was repressed. (A) The 3D morphology of isolated pig UCB-EXO observed in electron microscope. (B) The line profile of electron microscope image size for UCB-EXO. X- and Y-axes are the size and events, respectively. (C) Cell viability was measured following Exo-OS, Exo-MS, or PBS treatment for 24 h, using the CCK8 analysis. (D) The migration of HUVEC cells in vitro after 24 h of treatment with Exo-MS, Exo-OS, or PBS was evaluated using scratch assay (n = 3). (E) Percentage of cells healed. (F) The expression level of VEGF, ANG1, TSP1, and MMP9 mRNA after treating Exo-MS, Exo-OS, or PBS. (G) Positive rate of exosome marker proteins CD63 and CD81 detected by flow cytometry. * or ** represents significance at the 0.05 or 0.01 level, respectively.
Animals 14 00345 g003
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MDPI and ACS Style

Pu, Q.; Chai, J.; Chen, L.; Liu, C.; Yang, C.; Huang, Y.; Luo, J. Correction: Pu et al. Exosome miRNA Expression in Umbilical Cord Blood of High-Parity Sows Regulates Their Reproductive Potential. Animals 2022, 12, 2456. Animals 2024, 14, 345. https://doi.org/10.3390/ani14020345

AMA Style

Pu Q, Chai J, Chen L, Liu C, Yang C, Huang Y, Luo J. Correction: Pu et al. Exosome miRNA Expression in Umbilical Cord Blood of High-Parity Sows Regulates Their Reproductive Potential. Animals 2022, 12, 2456. Animals. 2024; 14(2):345. https://doi.org/10.3390/ani14020345

Chicago/Turabian Style

Pu, Qiang, Jie Chai, Li Chen, Changbao Liu, Changfeng Yang, Yongfu Huang, and Jia Luo. 2024. "Correction: Pu et al. Exosome miRNA Expression in Umbilical Cord Blood of High-Parity Sows Regulates Their Reproductive Potential. Animals 2022, 12, 2456" Animals 14, no. 2: 345. https://doi.org/10.3390/ani14020345

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