Journal of Southern Medical University ›› 2013, Vol. 33 ›› Issue (09): 1308-.
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Abstract: Objective To prepare a new targeted liposome ultrasonic contrast agent with anti-KDR antibody that bindsspecifically with KDR as the main receptor of VEGF and evaluate its physical characteristics, biological activity and specificbinding capability in vitro. Methods A sonicator was used to prepare the biotinylated lipid micro-bubbles (MB-B), andbiotin-avidin-mediated technique was used for attachment of anti-mouse KDR monoclonal antibody to the micro-bubble shellto generate MB-BAB-KDR. MB-BAB-KDR was incubated with fluorescent second antibody to assess the link condition, and thecontrol groups were the MB-B and micro-bubbles with the antibody alone (MB-B-KDR). A parallel plate flow chamber systemwas used to characterize micro-bubbles attachment efficiency to KDR Fc. Results The surface of the micro-bubbles could carryKDR antibody through the biotin-avidin bridge and MB-BAB-KDR were spherical and well-distributed. After incubation withthe second antibody, MB-BAB-KDR could be observed to emit bright green fluorescence (Grade II) as compared with little orweak fluorescence in the control MB-B group (Grade 0) and MB-B-KDR group (Grade I). Targeted micro-bubbles bound toKDR Fc increased as the KDR Fc concentration increased (P<0.05). Conclusion The targeted liposome contrast agent linkedwith KDR antibody by biotin-avidin bridge we prepared shows an increased binding number as the KDR Fc concentrationincreases, which provides a novel approach to molecular imaging study of endometrial receptivity.
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https://www.j-smu.com/EN/Y2013/V33/I09/1308