Aranda Said, Riske Karin A, Lipowsky Reinhard, Dimova Rumiana
Biophys J. 2008 Jul;95(2):L19-21. doi: 10.1529/biophysj.108.132548. Epub 2008 May 16.
When subjected to alternating electric fields in the frequency range 10(2)-10(8) Hz, giant lipid vesicles attain oblate, prolate, and spherical shapes and undergo morphological transitions between these shapes as one varies the field frequency and/or the conductivities lambda(in) and lambda(ex) of the aqueous solution inside and outside the vesicles. Four different transitions are observed with characteristic frequencies that depend primarily on the conductivity ratio lambda(in)/lambda(ex). The theoretical models that have been described in the literature are not able to describe all of these morphological transitions.
当受到频率范围为10² - 10⁸Hz的交变电场作用时,巨型脂质囊泡会呈现扁球形、长球形和球形,并随着电场频率和/或囊泡内外水溶液的电导率λ(in)和λ(ex)的变化而在这些形状之间发生形态转变。观察到四种不同的转变,其特征频率主要取决于电导率比λ(in)/λ(ex)。文献中描述的理论模型无法描述所有这些形态转变。