Unilamellar Characteristic Analysis of 1,2-dioleoyl-sn-3-phosphocholine Liposome of Various Sizes via Atomic Force Microscopy and Patch-Clamp

Author:

Lee Chi Hyung1,Kwak Jong Hyeok2,Sung Soon Ki1,Lee Sang Weon1,Kwak Jinsung3,Kim Kyung-wan4,Kang Hyo Seok5,Kim Gyeong Rip1

Affiliation:

1. Department of Neurosurgery, Pusan National University Yang-san Hospital, Yangsan, 50612, Korea

2. Department of Radiology, Pusan National University Yang-san Hospital, Yangsan, 50612, Korea

3. Department of Physics, Changwon National University, Changwon, 51140, Korea

4. Department of Radiology, Inje University Haeundae Paik Hospital, Busan, 48108, Korea

5. Nuclear Safery Management, Busan Metropolitan city, Busan, 47545, Korea

Abstract

DOPC liposome properties of various sizes were analyzed via atomic force microscopy (AFM) and patch-clamp. The unilamellarity of small DOPC liposome (below 1 μm) was confirmed via Cryogenic transmission electron microscopy (Cryo-TEM). Small DOPC liposome (below 1 μm) showed a bending modulus (kbend) ranging (between 10−18 and 10−20 J). The bending modulus value was a size dependence. In order words, it decreased as DOPC liposome size increased. For DOPC liposome (above 1 μm), patch-clamp was used to achieve electrically tight whole-cell configurations. Our result showed that the unilamellar DOPC liposome (above 1 μm) exhibit RC circuit response property. It was similar to theoretical values (τ = 4.52 ms) of the unilamellar liposome. In this study, the uniform lamellarity of the DOPC liposome of various sizes was confirmed through electrical and mechanical properties of DOPC liposome.

Publisher

American Scientific Publishers

Subject

Biomedical Engineering,Medicine (miscellaneous),Bioengineering,Biotechnology

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