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References:
¡¡¡¡1. Day, J.R., et al., The impact of functional groups of poly(ethylene glycol) macromers on the physical properties of photo-polymerized hydrogels and the local inflammatory response in the host, Acta Biomaterialia, 2018, 67, P. 42-52.
¡¡¡¡2. Ozdemir, T., et al., Bottom-up assembly of salivary gland microtissues for assessing myoepithelial cell function, Biomaterials, 2017, V. 142, P. 124-135.
¡¡¡¡3. Azam, A., et al., Type III secretion as a generalizable strategy for the production of full-length biopolymer-forming proteins, Biotechnol. Bioeng., 2015.
¡¡¡¡4. Yu, W., et al., PEGylated recombinant human interferon-ω as a long-acting antiviral agent: Structure, antiviral activity and pharmacokinetics. Antiviral Research, 2014, 108: p. 142-147.
¡¡¡¡5. Tang, L., et al., Separation and detection of bis-maleimide-polyethylene glycol and mono-maleimide-polyethylene glycol by reversed-phase high pressure liquid chromatography, Journal of Chromatography A, 2012, 1246, p: 117–122.
¡¡¡¡6. Soon, A.S.C., Exploiting fibrin knob:hole interactions for the control of fibrin polymerization, Georgia Institute of Technology, 2011.
¡¡¡¡7. Soon, A.S.C., et al., Modulation of fibrin matrix properties via knob:hole affinity interactions using peptide–PEG conjugates, Biomaterials, 2011, 32:19, P. 4406-4414.
8. He, X., et al., Intelligent lesion blood brain barrier targeting nano-missiles for Alzheimer's disease treatment by anti-neuroinflammation and neuroprotection. Acta Pharmaceutica Sinica B. 2022.
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