1 |
CHEN Q, SHI Y, WANG Y T, et al. Patterns of disease distribution of lower extremity peripheral arterial disease[J]. Angiology, 2015, 66(3):211-218.
|
2 |
AKPAN I S, ENABULELE O, ADEWOLE A J. An overview of peripheral artery disease in the elderly: A study in a tertiary hospital southern Nigeria[J]. Niger Med J, 2020, 61(1):1-5.
|
3 |
BECKER R A, CLUFF K, DURAISAMY N, et al. Optical probing of gastrocnemius in patients with peripheral artery disease characterizes myopathic biochemical alterations and correlates with stage of disease[J]. Physiol Rep, 2017, 5(5).DOI:10.14814/phy2.13161.
doi: 10.14814/phy2.13161
|
4 |
FOLEY T R, ARMSTRONG E J, WALDO S W. Contemporary evaluation and management of lower extremity peripheral artery disease[J]. Heart, 2016, 102(18):1436-1441.
|
5 |
OURIEL K. Comparison of surgical and thrombolytic treatment of peripheral arterial disease[J]. Rev Cardiovasc Med, 2002, 3():S7-16.
|
6 |
熊 江. 累及股总动脉的复杂外周动脉病变杂交手术:技术与效果[J]. 中国普通外科杂志, 2017, 26(12):1525-1528.
|
7 |
KANG J M, YOON J K, OH S J, et al. Synergistic therapeutic effect of three-dimensional stem cell clusters and angiopoietin-1 on promoting vascular regeneration in ischemic region[J]. Tissue Eng Part A, 2018, 24(7/8):616-630.
|
8 |
HÖBAUS C, PESAU G, HERZ C T, et al. Angiopoietin-2 and survival in peripheral artery disease patients[J]. Thromb Haemost, 2018, 118(4):791-797.
|
9 |
徐 毅. 脉管Ⅱ号胶囊治疗肢体动脉硬化闭塞症及对IL-1水平影响临床观察[J]. 亚太传统医药, 2014, 10(22):102-103.
|
10 |
王世军, 张美吉, 杨尾莲, 等. 脉管Ⅱ号胶囊对Ang-1/Tie2信号通路及人脐静脉内皮细胞的影响[J]. 中国烧伤创疡杂志, 2020, 32(1):15-21.
|
11 |
张美吉, 张 勇, 王世军, 等. 脉管Ⅱ号胶囊治疗下肢动脉硬化闭塞症的临床研究[J]. 中国烧伤创疡杂志, 2016, 28(3):208-211.
|
12 |
陈 兵, 罗 涛, 佟 铸, 等. Lewis大鼠慢性后肢缺血模型的制备与评价[J]. 中国普外基础与临床杂志, 2012, 19(12):1291-1297.
|
13 |
白 超, 杨 琨, 王 洋, 等. 后肢急性缺血大鼠模型的构建及评估[J]. 中国组织工程研究, 2015, 19(40):6492-6497.
|
14 |
陈荣明, 卞慧敏, 杨能华, 等. 通塞脉片对大鼠缺血后肢侧支循环建立的作用及其机理探讨[J]. 新中医, 2009, 41(8):110-111.
|
15 |
POLDERVAART M T, GREMMELS H, KVAN DEVENTER, et al. Prolonged presence of VEGF promotes vascularization in 3D bioprinted scaffolds with defined architecture[J]. J Control Release, 2014, 184:58-66.
|
16 |
DE PAULA E V, FLORES-NASCIMENTO M C, ARRUDA V R, et al. Dual gene transfer of fibroblast growth factor-2 and platelet derived growth factor-BB using plasmid deoxyribonucleic acid promotes effective angiogenesis and arteriogenesis in a rodent model of hindlimb ischemia[J]. Transl Res, 2009, 153(5):232-239.
|
17 |
邹 伟, 钱 程, 张婷婷, 等. 隐丹参酮对小鼠下肢缺血的保护作用研究[J]. 中药药理与临床, 2019, 35(2):40-45.
|
18 |
SUDHIR S, MANSON S R, HEEDOO L, et al. Tubular overexpression of angiopoietin-1 attenuates renal fibrosis[J]. PLoS One, 2016, 11(7):e0158908.
|
19 |
PUDDU A, SANGUINETI R, MAGGI D, et al. Advanced glycation end-products and hyperglycemia increase angiopoietin-2 production by impairing angiopoietin-1-Tie-2 system[J]. J Diabetes Res, 2019, 2019:1-7.
|
20 |
ENGIN H, USTÜNDAĞ Y, OZEL TEKIN I, et al. Plasma concentrations of Ang-1, Ang-2 and Tie-2 in gastric cancer[J]. Eur Cytokine Netw, 2012, 23(1):21-24.
|
21 |
KIM S, LEE J C, CHO E S, et al. COMP-Ang1 promotes chondrogenic and osteogenic differentiation of multipotent mesenchymal stem cells through the Ang1/Tie2 signaling pathway[J].J Orthop Res,2013,31(12):1920-1928.
|
22 |
CHEN X J, WANG H Y, JIANG Y X, et al. Neovascularization in carotid atherosclerotic plaques can be effectively evaluated by superb microvascular imaging (SMI): Initial experience[J]. Vasc Med, 2020, 25(4):328-333.
|
23 |
武相锋, 汪涛, 刘韬, 等. Thbs4基因编辑BMSCs移植对糖尿病后肢缺血大鼠VEGF和Ang-1的影响及相关作用机制[J]. 国际生物医学工程杂志, 2019, 42(4):294-300.
|
24 |
陈澎, 陈传磊, 侯爱武, 等. miR-132表达上调对局灶性脑缺血大鼠皮层Ang-1/Tie2表达的影响[J]. 中华神经医学杂志, 2017, 16(8):772-776.
|