Strategies to combine ROP with ATRP or RAFT polymerization for the synthesis of biodegradable polymeric nanoparticles for biomedical applications
文献信息
Mattia Sponchioni, Nicolò Manfredini, Matteo Maraldi, Davide Moscatelli
The architecture, composition and molecular weight (MW) of polymers and copolymers made via free radical polymerization are important parameters that affect the end-use of both these polymeric materials and the nanoparticles that they compose. In order to gain control over these parameters, several controlled radical polymerizations (CRPs)—such as atom transfer radical polymerization (ATRP) and reversible addition fragmentation chain transfer (RAFT) polymerization—have been developed over the past few decades. However, the toxicity, biocompatibility and degradation profile of these materials are emerging as key features for their final disposal and for certain applications, such as the synthesis of biomaterials. In this case, polyesters made via ring opening polymerization (ROP) are preferred due to the control over the synthesis that this technique allows as well as the biodegradability of the final material. The combination of ROP with CRP techniques has allowed for the synthesis of polymeric surfactants capable of self-assembling into biodegradable nanoparticles (NPs) for biomedical applications. This review presents and critically discusses the primary strategies for the synthesis of highly engineered colloids via the combination of ROP with two CRP techniques: ATRP and RAFT polymerization.
相关文献
Phosphaacene as a structural analogue of thienoacenes for organic semiconductors
Kyohei Matsuo, Rina Okumura, Hironobu Hayashi, Naoki Aratani, Seihou Jinnai, Yutaka Ie, Akinori Saeki, Hiroko Yamada
DOI: 10.1039/D2CC05122B
An alloy small molecule acceptor for green printing organic solar cells overcoming the scaling lag of efficiency
Ji Wan, Yao Wu, Rui Sun, Jiawei Qiao, Xiaotao Hao, Jie Min
DOI: 10.1039/D2EE03134E
Coupling electrocatalytic cathodic nitrate reduction with anodic formaldehyde oxidation at ultra-low potential over Cu2O
Lei Xiao, Weidong Dai, Shiyong Mou, Xiaoyan Wang, Qin Cheng
DOI: 10.1039/D3EE00635B
Construction of and electrophoretic fluorescence imaging with a nano-porous polyaniline–fluorescein conducting particle system
Ki-Whan Chi, Ho Yun Hwang, Sung Ho Jin, Han Mo Jeong, Koo Sik Yoon, Jong-Man Kim, Chan Woo Lee
DOI: 10.1039/B818773H
Easy conjugations between molecules via copper-catalyzed reactions of ortho-aromatic diamines with ketones
Haijun Yang, Yunhe Jin, Yuyang Jiang
DOI: 10.1039/C3GC41585F
Study on the luminescence properties of ionic [Cu(N^N)(P^P)]+ complexes: influence of ligands, counteranions and weak interactions
Zi-Xi Li, Zhen-Zhou Sun, Guo Wang, Wei Yang, Hong-Liang Han, Yu-Ping Yang, Zhong-Feng Li, Yi-Shan Yao
DOI: 10.1039/D2CE01177H
Solvent-dependent self-assembly of N-annulated perylene diimides. From dimers to supramolecular polymers
Cristina Naranjo, Azahara Doncel-Giménez, Rafael Gómez, Juan Aragó, Enrique Ortí, Luis Sánchez
DOI: 10.1039/D3SC03372D
Temperature distribution and the laser performance of LD end-pumped LuYSGG/Er:LuYSGG composite crystal
DOI: 10.1039/D3CE00374D
Highly-oxidised, sulfur-rich, mixed-valence vanadium(iv/v) complexes
Michelle K. Taylor, David J. Evans, Charles G. Young
DOI: 10.1039/B610036H
您可能还喜欢
如何储存1,2-环己二酮环乙缩醛(CAS号:4746-96-7)?
1,2-环己二酮环乙缩醛应储存在阴凉、干燥、通风良好的地方,避免阳光直射。建议使用密封容器保存,并保持环境温度在室温范围内,远离火源和热源。
Ecopladib(CAS号:381683-92-7)的市场或研究趋势如何?
Ecopladib作为一种新型的药物,主要应用于治疗高胆固醇等疾病。目前,市场和研究趋势显示,Ecopladib因其独特的药理作用而受到关注。随着对心血管疾病治...
2,3-Dimethyl-3H-imidazo[4,5-c]pyridine(CAS号:52538-09-7)通常如何合成?
2,3-二甲基-3H-咪唑[4,5-c]吡啶通常通过咪唑和2,3-二甲基吡啶的缩合反应合成。具体来说,将咪唑和2,3-二甲基吡啶在适当的溶剂中进行加热或加压反应...
2,3,4,5-tetrahydro-1H-3-苯并氮杂环;盐酸盐(CAS号:17379-01-0)的市场或研究趋势如何?
该化合物在药物化学和有机合成中有一定的应用。近年来,随着对新型药物化合物的需求增加,该化合物的研究趋势主要集中在探索其生物活性,尤其是其在神经系统疾病治疗中的潜...
如何储存盐酸甘氨酸丁酯(CAS号:13048-99-2)?
盐酸甘氨酸丁酯应储存在阴凉、干燥、通风良好的地方,避免阳光直射和高温环境,温度应控制在25℃以下。储存容器应密封,避免与空气中的水分和酸性物质接触,以防发生水解...
什么是2-Iodo-N,N-dimethylbenzamide(CAS号:54616-46-5)?
2-碘-N,N-二甲基苯胺是一种有机化合物,化学名为2-Iodo-N,N-dimethylbenzamide。其分子式为C<sub>9</sub>H<sub>1...
5-溴-2-(4H-1,2,4-三唑-4-基)吡啶(CAS号:959240-99-4)的市场或研究趋势如何?
随着医药、农药和新材料领域的发展,该化合物作为关键中间体的应用日益增多。特别是在药物合成中,由于其独特的化学性质,可以用于合成多种药物分子。未来的研究趋势可能集...
2,4-二溴-6-三氟甲基嘧啶(CAS号:785778-00-9)通常如何合成?
2,4-二溴-6-三氟甲基嘧啶通常通过溴化反应合成。首先,将6-三氟甲基嘧啶与溴化剂(如液溴)在适当的溶剂(如二氯甲烷、四氢呋喃)中反应,加入适当的催化剂(如四...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.










![[(1S,2S,3R,4S,7R,9S,10S,12R,15S)-4,12-Diacetyloxy-15-[(2R,3S)-3-benzamido-3-phenyl-2-(2,2,2-trichloroethoxycarbonyloxy)propanoyl]oxy-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.03,10.04,7]heptadec-13-en-2-yl] benzoate structure [(1S,2S,3R,4S,7R,9S,10S,12R,15S)-4,12-Diacetyloxy-15-[(2R,3S)-3-benzamido-3-phenyl-2-(2,2,2-trichloroethoxycarbonyloxy)propanoyl]oxy-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.03,10.04,7]heptadec-13-en-2-yl] benzoate structure](https://cnstatic.chemtradehub.com/structs/100/100431-55-8-7104.webp)

![N-[2-(4-Hydroxyphenoxy)-4-nitrophenyl]methanesulfonamide structure N-[2-(4-Hydroxyphenoxy)-4-nitrophenyl]methanesulfonamide structure](https://cnstatic.chemtradehub.com/structs/109/109032-22-6-7c88.webp)

![(3R,5R)-1-[(Benzyloxy)carbonyl]-5-methyl-3-piperidinecarboxylic acid structure (3R,5R)-1-[(Benzyloxy)carbonyl]-5-methyl-3-piperidinecarboxylic acid structure](https://cnstatic.chemtradehub.com/structs/126/1269757-29-0-c552.webp)