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Gazi U, Martinez-Pomares L (2009). "Influence of the mannose receptor in host immune responses". Immunobiology214 (7): 554–61. PMID19162368. doi:10.1016/j.imbio.2008.11.004.
Stahl PD, Ezekowitz RA (1998). "The mannose receptor is a pattern recognition receptor involved in host defense". Current Opinion in Immunology10 (1): 50–5. PMID9523111. doi:10.1016/S0952-7915(98)80031-9.
Mullin NP, Hitchen PG, Taylor ME (1997). "Mechanism of Ca2+ and monosaccharide binding to a C-type carbohydrate-recognition domain of the macrophage mannose receptor". Journal of Biological Chemistry272 (9): 5668–81. PMID9038177. doi:10.1074/jbc.272.9.5668.
Jordens R, Thompson A, Amons R, Koning F (1999). "Human dendritic cells shed a functional, soluble form of the mannose receptor". International Immunology11 (11): 1775–80. PMID10545481. doi:10.1093/intimm/11.11.1775.
Martínez-Pomares L, Mahoney JA, Káposzta R, Linehan SA, Stahl PD, Gordon S (1998). "A functional soluble form of the murine mannose receptor is produced by macrophages in vitro and is present in mouse serum". Journal of Biological Chemistry273 (36): 23376–80. PMID9722572. doi:10.1074/jbc.273.36.23376.
Su Y, Bakker T, Harris J, Tsang C, Brown GD, Wormald MR, Gordon S, Dwek RA, Rudd PM, Martinez-Pomares L (2005). "Glycosylation influences the lectin activities of the macrophage mannose receptor". Journal of Biological Chemistry280 (38): 32811–20. PMID15983039. doi:10.1074/jbc.M503457200.
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Chakraborty R, Chakraborty P, Basu MK (1998). "Macrophage mannosyl fucosyl receptor: its role in invasion of virulent and avirulent L. donovani promastigotes". Bioscience Reports18 (3): 129–42. PMID9798785.
Chakraborty P, Ghosh D, Basu MK (2001). "Modulation of macrophage mannose receptor affects the uptake of virulent and avirulent Leishmania donovani promastigotes". Journal of Parasitology87 (5): 1023–7. PMID11695359. doi:10.1645/0022-3395(2001)087[1023:MOMMRA]2.0.CO;2.
Tachado SD, Zhang J, Zhu J, Patel N, Cushion M, Koziel H (2007). "Pneumocystis-mediated IL-8 release by macrophages requires coexpression of mannose receptors and TLR2". Journal of Leukocyte Biology81 (1): 205–11. PMID17020928. doi:10.1189/jlb.1005580.
Chang CF, Wan J, Li Q, Renfroe SC, Heller NM, Wang J (July 2017). "Alternative activation-skewed microglia/macrophages promote hematoma resolution in experimental intracerebral hemorrhage". Neurobiology of Disease103: 54–69. PMID28365213. doi:10.1016/j.nbd.2017.03.016.
Rodriguez-Teja M, Gronau JH, Minamidate A, Darby S, Gaughan L, Robson C, et al. (March 2015). "Survival Outcome and EMT Suppression Mediated by a Lectin Domain Interaction of Endo180 and CD147". Molecular Cancer Research13 (3): 538–47. PMID25381222. doi:10.1158/1541-7786.MCR-14-0344-T.
Rodriguez-Teja M, Gronau JH, Breit C, Zhang YZ, Minamidate A, Caley MP, et al. (March 2015). "AGE-modified basement membrane cooperates with Endo180 to promote epithelial cell invasiveness and decrease prostate cancer survival". The Journal of Pathology235 (4): 581–92. PMID25408555. doi:10.1002/path.4485.
Sturge J (March 2016). "Endo180 at the cutting edge of bone cancer treatment and beyond". The Journal of Pathology238 (4): 485–8. PMID26576691. doi:10.1002/path.4673.