Chinese Journal of Lasers, Volume. 48, Issue 2, 0202007(2021)
Research Progress of Two-Photon Initiator with High Efficiency and Preparation of Hydrogel Microstructure in Aqueous Phase
Significance As is known, biological science research focuses on revealing the essence of life and studying the mystery of growth, development, disease, and aging. To understand all of these, we must begin with understanding the cell behavior. Cell proliferation, differentiation, migration, movement, and other behaviors are closely related to life processes. Thus, understanding the mechanism of these behaviors is of great significance.
The surface microstructure of the material can influence the biological behavior of cells, such as inducing cell growth,proliferation and migration, and promoting specific cell functions. While hydrogels are widely used in tissue engineering and regenerative medicine, drug delivery, in vitro cell culture and other fields due to their good biocompatibility and similar composition to extracellular matrix. Therefore, hydrogel micronanometer patterned surfaces and scaffolds prepared by using micro-nano manufacturing technology can provide a more simulated in vivo development environment for the growth of cells and tissues in vitro, which are of great significance for the exploration of the interaction mechanism between cells and cells, between cells and the surrounding environment.
Femtosecond laser two-photon polymerization (TPP) is a recently developed micro-nano manufacturing method that can realize the controlled preparation of two-dimensional and three-dimensional (2D/3D) micro-nano structures with high precision morphology. The micro-nano structure of hydrogels prepared by this technology, with both the biocompatibility of hydrogels and the mechanical clues, can more accurately simulate the microenvironment of cell growth in vivo, which has attracted more and more attention in the field of tissue engineering. It is worth mentioning that the resolution of the micro-nano structure fabricated by TPP depends largely on the initiator efficiency. A series of efforts has been made to improve the efficiency of photoinitiators, and significant achievements have been made. However, because most of the traditional initiator molecules are soluble in organic solvents, cytotoxicity originating from organic solvent residue in the micro-nano structure will occur. Therefore, it is particularly important to design and prepare bionontoxic water-soluble two-photon initiators.
In the past few years, many advances have been achieved in the preparation of hydrogel micro-nano structures by TPP and its application in tissue engineering. However, there are still many challenges in biosafety initiator design and in vitro cell culture experiments of hydrogel micro-nano structures. Hence, it is essential to summarize the existing relevant researchs and understand the problems in this field in a more comprehensive way, which has guiding significance for the future development direction and implementation methods of this field.
Progress In this study, the basic principle of femtosecond laser TPP (
Conclusion and Prospect In past decades, conventional TPP initiators have made significant progress. Researchers have made much effort to develop two-photon initiators with high initiation efficiency and low polymerization threshold. A series of water-soluble two-photon photoinitiators without cytotoxicity have been designed, considering biosafety, to improve the biocompatibility of the 3D microstructure of hydrogels while ensuring the two-photon absorption characteristics. At present, although the research and development of water-soluble two-photon photoinitiators have been achieved, there are still some shortcomings, such as understanding the polymerization mechanism and low initiation efficiency, which still need to be further studied. Also, the size of the current TPP hydrogel microstructure is small (nanometer level), unable to meet the needs of a large amount of cell culture and tissue growth in vitro, so the rapid preparation of large hydrogel microstructure with TPP will be an important research focus in the future.
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Weicai Zhang, Meiling Zheng. Research Progress of Two-Photon Initiator with High Efficiency and Preparation of Hydrogel Microstructure in Aqueous Phase[J]. Chinese Journal of Lasers, 2021, 48(2): 0202007
Category: laser manufacturing
Received: Aug. 27, 2020
Accepted: Oct. 26, 2020
Published Online: Jan. 7, 2021
The Author Email: Zheng Meiling (zhengmeiling@mail.ipc.ac.cn)