[1] WANG L, LIU X, ZHUANG H. Cellular mechanisms in liver fibrosis regression[J]. J Clin Hepatol, 2018, 34 (4) :862-866. (in Chinese) 王林, 刘学恩, 庄辉.多种细胞在肝纤维化逆转中的作用[J].临床肝胆病杂志, 2018, 34 (4) :862-866.
|
[2] WANG B, ZHAO L, FISH M, et al. Self-renewing diploid Axin2 (+) cells fuel homeostatic renewal of the liver[J]. Nature, 2015, 524 (7564) :180-185.
|
[3] RAFII S, BUTLER JM, DING BS. Angiocrine functions of organ-specific endothelial cells[J]. Nature, 2016, 529 (7586) :316-325.
|
[4] LEIBING T, GRAUD C, AUGUSTIN I, et al. Angiocrine Wnt signaling controls liver growth and metabolic maturation in mice[J]. Hepatology, 2018, 68 (2) :707-722.
|
[5] ROCHA AS, VIDAL V, MERTZ M, et al. The angiocrine factor rspondin3 is a key determinant of liver zonation[J]. Cell Rep, 2015, 13 (9) :1757-1764.
|
[6] DING BS, NOLAN DJ, BUTLER JM, et al. Inductive angiocrine signals from sinusoidal endothelium are required for liver regeneration[J]. Nature, 2010, 468 (7321) :310-315.
|
[7] LORENZ L, AXNICK J, BUSCHMANN T, et al. Mechanosensing by beta1 integrin induces angiocrine signals for liver growth and survival[J]. Nature, 2018, 562 (7725) :128-132.
|
[8] JIN WX, WANG B, ZHANG YL, et al. Effects of hepatic blood inflow on liver ultrastructure and regeneration after extensive liver resection in rats with cirrhosis[J]. Exp Ther Med, 2018, 16 (3) :2573-2583.
|
[9] DELEVE LD. Liver sinusoidal endothelial cells in hepatic fibrosis[J]. Hepatology, 2015, 61 (5) :1740-1746.
|
[10] XU M, WANG X, ZOU Y, et al. Key role of liver sinusoidal endothelial cells in liver fibrosis[J]. Biosci Trends, 2017, 11 (2) :163-168.
|
[11] DELEVE LD, WANG X, GUO Y. Sinusoidal endothelial cells prevent rat stellate cell activation and promote reversion to quiescence[J]. Hepatology, 2008, 48 (3) :920-930.
|
[12] XIE G, WANG X, WANG L, et al. Role of differentiation of liver sinusoidal endothelial cells in progression and regression of hepatic fibrosis in rats[J]. Gastroenterology, 2012, 142 (4) :918-927, e6.
|
[13] MARETTI-MIRA AC, WANG X, WANG L, et al. Incomplete differentiation of engrafted bone marrow endothelial progenitor cells initiates hepatic fibrosis in the rat[J]. Hepatology, 2019, 69 (3) :1259-1272.
|
[14] DUAN JL, RUAN B, YAN XC, et al. Endothelial Notch activation reshapes the angiocrine of sinusoidal endothelia to aggravate liver fibrosis and blunt regeneration in mice[J]. Hepatology, 2018, 68 (2) :677-690.
|
[15] DING BS, CAO Z, LIS R, et al. Divergent angiocrine signals from vascular niche balance liver regeneration and fibrosis[J]. Nature, 2014, 505 (7481) :97-102.
|
[16] CHAN LK, GERSTENLAUER M, KONUKIEWITZ B, et al. Epithelial NEMO/IKKgamma limits fibrosis and promotes regeneration during pancreatitis[J]. Gut, 2017, 66 (11) :1995-2007.
|
[17] NEESSE A, ELLENRIEDER V. NEMO-CXCL12/CXCR4 axis:A novel vantage point for antifibrotic therapies in chronic pancreatitis?[J]. Gut, 2017, 66 (2) :211-212.
|
[18] GRIFFITHS K, HABIEL DM, JAFFAR J, et al. Anti-fibrotic effects of CXCR4-targeting i-body AD-114 in preclinical models of pulmonary fibrosis[J]. Sci Rep, 2018, 8 (1) :3212.
|
[19] QIN L, QIN J, ZHEN X, et al. Curcumin protects against hepatic stellate cells activation and migration by inhibiting the CXCL12/CXCR4 biological axis in liver fibrosis:A study in vitro and in vivo[J]. Biomed Pharmacother, 2018, 101:599-607.
|