Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics
Many pharmaceutics are aqueous dispersions of small or large molecules, often self-assembled in complexes from a few to hundreds of molecules. In many cases, the dispersing liquid is non-aqueous. Many pharmaceutical preparations are very viscous. The efficacy of those dispersions is in many cases a...
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doaj-d321db70574349deaf03ba224f5a483b2021-07-23T14:00:37ZengMDPI AGPharmaceutics1999-49232021-07-01131015101510.3390/pharmaceutics13071015Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled PharmaceuticsNa’ama Koifman0Yeshayahu Talmon1Department of Chemical Engineering and The Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa 3200003, IsraelDepartment of Chemical Engineering and The Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa 3200003, IsraelMany pharmaceutics are aqueous dispersions of small or large molecules, often self-assembled in complexes from a few to hundreds of molecules. In many cases, the dispersing liquid is non-aqueous. Many pharmaceutical preparations are very viscous. The efficacy of those dispersions is in many cases a function of the nanostructure of those complexes or aggregates. To study the nanostructure of those systems, one needs electron microscopy, the only way to obtain nanostructural information by recording direct images whose interpretation is not model-dependent. However, these methodologies are complicated by the need to make liquid systems compatible with high vacuum in electron microscopes. There are also issues related to the interaction of the electron beam with the specimen such as micrograph contrast, electron beam radiation damage, and artifacts associated with specimen preparation. In this article, which is focused on the state of the art of imaging self-assembled complexes, we briefly describe cryogenic temperature transmission electron microscopy (cryo-TEM) and cryogenic temperature scanning electron microcopy (cryo-SEM). We present the principles of these methodologies, give examples of their applications as analytical tools for pharmaceutics, and list their limitations and ways to avoid pitfalls in their application.https://www.mdpi.com/1999-4923/13/7/1015drug deliverycryo-TEMcryo-SEMvesiclesliposomesself-assembly |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Na’ama Koifman Yeshayahu Talmon |
spellingShingle |
Na’ama Koifman Yeshayahu Talmon Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics Pharmaceutics drug delivery cryo-TEM cryo-SEM vesicles liposomes self-assembly |
author_facet |
Na’ama Koifman Yeshayahu Talmon |
author_sort |
Na’ama Koifman |
title |
Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics |
title_short |
Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics |
title_full |
Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics |
title_fullStr |
Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics |
title_full_unstemmed |
Cryogenic Electron Microscopy Methodologies as Analytical Tools for the Study of Self-Assembled Pharmaceutics |
title_sort |
cryogenic electron microscopy methodologies as analytical tools for the study of self-assembled pharmaceutics |
publisher |
MDPI AG |
series |
Pharmaceutics |
issn |
1999-4923 |
publishDate |
2021-07-01 |
description |
Many pharmaceutics are aqueous dispersions of small or large molecules, often self-assembled in complexes from a few to hundreds of molecules. In many cases, the dispersing liquid is non-aqueous. Many pharmaceutical preparations are very viscous. The efficacy of those dispersions is in many cases a function of the nanostructure of those complexes or aggregates. To study the nanostructure of those systems, one needs electron microscopy, the only way to obtain nanostructural information by recording direct images whose interpretation is not model-dependent. However, these methodologies are complicated by the need to make liquid systems compatible with high vacuum in electron microscopes. There are also issues related to the interaction of the electron beam with the specimen such as micrograph contrast, electron beam radiation damage, and artifacts associated with specimen preparation. In this article, which is focused on the state of the art of imaging self-assembled complexes, we briefly describe cryogenic temperature transmission electron microscopy (cryo-TEM) and cryogenic temperature scanning electron microcopy (cryo-SEM). We present the principles of these methodologies, give examples of their applications as analytical tools for pharmaceutics, and list their limitations and ways to avoid pitfalls in their application. |
topic |
drug delivery cryo-TEM cryo-SEM vesicles liposomes self-assembly |
url |
https://www.mdpi.com/1999-4923/13/7/1015 |
work_keys_str_mv |
AT naamakoifman cryogenicelectronmicroscopymethodologiesasanalyticaltoolsforthestudyofselfassembledpharmaceutics AT yeshayahutalmon cryogenicelectronmicroscopymethodologiesasanalyticaltoolsforthestudyofselfassembledpharmaceutics |
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