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Original Research

Anti-salusin-β antibody enhances angiogenesis after myocardial ischemia reperfusion injury

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Pages 1003-1009 | Published online: 19 Jul 2013

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Tao Geng, Zhi-Yuan Song, Jing-Xian Xing, Bing-Xun Wang, Shi-Peng Dai & Ze-Sheng Xu. (2020) Exosome Derived from Coronary Serum of Patients with Myocardial Infarction Promotes Angiogenesis Through the miRNA-143/IGF-IR Pathway. International Journal of Nanomedicine 15, pages 2647-2658.
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Articles from other publishers (14)

Ming-xin Chen, Bo-yan Deng, Shu-ting Liu, Zong-bao Wang & Shu-zhi Wang. (2023) Salusins: advance in cardiovascular disease research. Journal of Pharmacy and Pharmacology 75:3, pages 363-369.
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Ahmet Karagöz, Devrim Kurt, Zeki Yüksel Günaydın, Aslı Vural, Murat Usta, Alptekin Tosun, Mustafa Yenercag & Fatih Özdemir. (2022) A New Insight Into Pathophysiological Mechanism of Abdominal Aortic Aneurysm With Novel Parameters Salusin-β and Arterial Stiffness. Texas Heart Institute Journal 49:6.
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Chan Wu, Binghong Liu, Ruiying Wang & Gang Li. (2022) The Regulation Mechanisms and Clinical Application of MicroRNAs in Myocardial Infarction: A Review of the Recent 5 Years. Frontiers in Cardiovascular Medicine 8.
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Adi Litmanovich, Offir Ertracht, Yair Blumberg, Mussa Saad, Gassan Moady & Nir Qvit. 2022. Peptide and Peptidomimetic Therapeutics. Peptide and Peptidomimetic Therapeutics 615 654 .
Qing-Bo Lu, Qiong Du, Hui-Ping Wang, Zi-Han Tang, Yuan-Ben Wang & Hai-Jian Sun. (2020) Salusin-β mediates tubular cell apoptosis in acute kidney injury: Involvement of the PKC/ROS signaling pathway. Redox Biology 30, pages 101411.
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Ayhan Tanyeli, Ersen Eraslan, Elif Polat & Tuğba Bal. (2017) Protective effect of salusin-α and salusin-β against ethanol-induced gastric ulcer in rats. Journal of Basic and Clinical Physiology and Pharmacology 28:6, pages 623-630.
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Xuexue Zhu, Yuetao Zhou, Weiwei Cai, Haijian Sun & Liying Qiu. (2017) Salusin-β mediates high glucose-induced endothelial injury via disruption of AMPK signaling pathway. Biochemical and Biophysical Research Communications 491:2, pages 515-521.
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Kazumi Fujimoto, Akinori Hayashi, Yoshio Kodera, Tatsuya Saito, Takuya Toki, Akifumi Ogawa, Yuji Kamata, Koji Takano, Hideki Katakami & Masayoshi Shichiri. (2017) Identification and quantification of plasma free salusin-β, an endogenous parasympathomimetic peptide. Scientific Reports 7:1.
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Fu-Jia Xie, Chen Chai, Ping Zhu, Bin Li, Hong-Yan Cai, Yan Lu & Nong Cao. (2017) The cardiovascular functions of salusin-β mediated by muscarinic receptors, glutamate receptors or L-type calcium channels within the rostral ventrolateral medulla of rats. Microscopy Research and Technique 80:7, pages 812-819.
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Fu-Jia Xie, Chen Chai, De-Hong Li, Wei-Lin Yang, Yan Lu & Nong Cao. (2017) The time changes of endogenous salusin-β in septic rats. European Journal of Inflammation 15:1, pages 15-21.
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Tao Xu, Zhifei Zhang, Ting Liu, Wei Zhang, Jie Liu, Wang Wang & Jun Wang. (2016) Salusin-β contributes to vascular inflammation associated with pulmonary arterial hypertension in rats. The Journal of Thoracic and Cardiovascular Surgery 152:4, pages 1177-1187.
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Leszek Niepolski & Alicja E. Grzegorzewska. (2016) Salusins and adropin: New peptides potentially involved in lipid metabolism and atherosclerosis. Advances in Medical Sciences 61:2, pages 282-287.
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Hai-Jian SunMing-Xia ZhaoXing-Sheng RenTong-Yan LiuQi ChenYue-Hua LiYu-Ming KangJue-Jin WangGuo-Qing Zhu. (2016) Salusin-β Promotes Vascular Smooth Muscle Cell Migration and Intimal Hyperplasia After Vascular Injury via ROS/NFκB/MMP-9 Pathway . Antioxidants & Redox Signaling 24:18, pages 1045-1057.
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Kengo Sato, Rena Watanabe, Fumiko Itoh, Masayoshi Shichiri & Takuya Watanabe. (2013) Salusins: Potential Use as a Biomarker for Atherosclerotic Cardiovascular Diseases. International Journal of Hypertension 2013, pages 1-8.
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