TY - JOUR
T1 - A Unique and Potent Protein Binding Nature of Liposome Containing Polyethylenimine and Polyethylene Glycol
T2 - A Nondisplaceable Property
AU - Liu, Yen-Ku
AU - Lin, Yu-Ling
AU - Chen, Chia-Hung
AU - Lin, Ching-Min
AU - Ma, Kuan-Lun
AU - Chou, Fu-Hsuan
AU - Tsai, Jin-Sheng
AU - Lin, Hsin-Yu
AU - Chen, Fu-Rong
AU - Cheng, Tian-Lu
AU - Chang, Chia-Ching
AU - Liao, Kuang-Wen
PY - 2011/6
Y1 - 2011/6
N2 - Most of the currently available targeting vectors are produced via the linkage of targeting molecules. However, the coupling process is complicated, and the covalent linkage may attenuate the activity of certain targeting molecules. In this study, we have developed a cationic liposome complexed with polyethylenimine and polyethylene glycol polymers (LPPC) that can capture various proteins without covalent conjugation. Characterizations of prepared LPPC revealed that the maximal-binding capacity was about 170μg of bovine serum albumin to 40μg of sphere-shaped LPPC (180nm). The proteins were essentially located at or near the surface when analyzed by atomic force or transmission electron microscopy. We demonstrate that polyethylenimine was an essential component to bind the proteins. Upon the saturation of captured proteins, a given protein could not be displaced by other additional proteins and still retained its biological activity. Using a variety of functional proteins, we show some typical examples of the utility of incorporated beta-glucuronidase and antibodies onto the LPPC. The beta-glucuronidase can be used for the study of antigen-antibody interactions, whereas in studies with the antibody complex, we used anti-CD3 as an agonist to stimulate the proliferation of peripheral blood mononuclear cells via a receptor-mediated mechanism and anti-VEGFR for cell staining. In conclusion, the prepared LPPC can provide a platform to capture biologically and biochemically functional proteins on its surface for various applications, such as cell signaling, cell profiling, noncovalent enzyme-linked immunoassays, and others not mentioned.
AB - Most of the currently available targeting vectors are produced via the linkage of targeting molecules. However, the coupling process is complicated, and the covalent linkage may attenuate the activity of certain targeting molecules. In this study, we have developed a cationic liposome complexed with polyethylenimine and polyethylene glycol polymers (LPPC) that can capture various proteins without covalent conjugation. Characterizations of prepared LPPC revealed that the maximal-binding capacity was about 170μg of bovine serum albumin to 40μg of sphere-shaped LPPC (180nm). The proteins were essentially located at or near the surface when analyzed by atomic force or transmission electron microscopy. We demonstrate that polyethylenimine was an essential component to bind the proteins. Upon the saturation of captured proteins, a given protein could not be displaced by other additional proteins and still retained its biological activity. Using a variety of functional proteins, we show some typical examples of the utility of incorporated beta-glucuronidase and antibodies onto the LPPC. The beta-glucuronidase can be used for the study of antigen-antibody interactions, whereas in studies with the antibody complex, we used anti-CD3 as an agonist to stimulate the proliferation of peripheral blood mononuclear cells via a receptor-mediated mechanism and anti-VEGFR for cell staining. In conclusion, the prepared LPPC can provide a platform to capture biologically and biochemically functional proteins on its surface for various applications, such as cell signaling, cell profiling, noncovalent enzyme-linked immunoassays, and others not mentioned.
KW - Cell staining
KW - Lipid coating
KW - Liposomes
KW - Polyethylenimine
KW - Protein capturing
UR - http://www.scopus.com/inward/record.url?scp=79954583042&partnerID=8YFLogxK
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-79954583042&origin=recordpage
U2 - 10.1002/bit.23048
DO - 10.1002/bit.23048
M3 - RGC 21 - Publication in refereed journal
C2 - 21192002
SN - 0006-3592
VL - 108
SP - 1318
EP - 1327
JO - Biotechnology and Bioengineering
JF - Biotechnology and Bioengineering
IS - 6
ER -