Semi-IPN- and IPN-Based Hydrogels

被引:28
作者
Zoratto, Nicole [1 ]
Matricardi, Pietro [1 ]
机构
[1] Sapienza Univ Roma, Dept Drug Chem & Technol, Rome, Italy
来源
OSTEOCHONDRAL TISSUE ENGINEERING: CHALLENGES, CURRENT STRATEGIES, AND TECHNOLOGICAL ADVANCES | 2018年 / 1059卷
关键词
Semi-IPN; IPN; Hydrogels; Polysaccharides; Proteins; INTERPENETRATING POLYMER NETWORKS; CONTROLLED-RELEASE; HYALURONIC-ACID; IN-SITU; DRUG-DELIVERY; GELLAN GUM; POLYSACCHARIDE HYDROGELS; BIOMEDICAL APPLICATIONS; DEXTRAN METHACRYLATE; POLYVINYL-ALCOHOL;
D O I
10.1007/978-3-319-76735-2_7
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Semi-interpenetrating polymer networks (semi-IPNs) and interpenetrating polymeric networks (IPNs) have emerged as innovative materials for biomedical and pharmaceutical applications. The interest in these structures is due to the possibility of combining the favorable properties of each polymeric component of the IPNs or semi-IPNs leading to a new system with properties that often differ from those of the two single components. In this respect, polysaccharides represent an opportunity in this field, combining a general biocompatibility and a good availability. Moreover, the functional groups along the polymer chains allow chemical derivatization, widening the possibilities in semi-IPNs and IPNs building up. At the same time, materials based on proteins are often used in this field, due to their similarity to the materials present in the human body. All these overall properties allow tailoring new materials, thus designing desired properties and preparing new hydrogels useful in the biomedical field. In the present chapter, we chose to describe systems prepared starting from the most important and studied hydrogel-forming polysaccharides: alginate, hyaluronic acid, chitosan, dextran, gellan, and scleroglucan. Besides, systems based on proteins, such as gelatin, collagen, and elastin, are also described. With this chapter, we aim describing the routes already traveled in this field, depicting the state of the art and hoping to raise interest in designing new promising strategies useful in biomedical and pharmaceutical applications.
引用
收藏
页码:155 / 188
页数:34
相关论文
共 50 条
  • [41] Synthesis of chitosan based semi-IPN hydrogels using epichlorohydrine as crosslinker to study the adsorption kinetics of Rhodamine B
    Al-Mubaddel, Fahad S.
    Aijaz, Muhammad Omer
    Haider, Sajjad
    Haider, Adnan
    Almasry, Waheed A.
    Al-Fatesh, Ahmed Sadeq
    DESALINATION AND WATER TREATMENT, 2016, 57 (37) : 17523 - 17536
  • [42] Three component terpolymer and IPN hydrogels with response to stimuli
    Alzari, Valeria
    Ruiu, Andrea
    Nuvoli, Daniele
    Sanna, Roberta
    Martinez, Javier Illescas
    Appelhans, Dietmar
    Voit, Brigitte
    Zschoche, Stefan
    Mariani, Alberto
    POLYMER, 2014, 55 (21) : 5305 - 5313
  • [43] Modification of Na-bentonite by polycations for fabrication of amphoteric semi-IPN nanocomposite hydrogels
    Huang, Xiaojuan
    Xu, Shimei
    Zhong, Mei
    Wang, Jide
    Feng, Shun
    Shi, Ruifen
    APPLIED CLAY SCIENCE, 2009, 42 (3-4) : 455 - 459
  • [44] Semi-IPN hydrogels based on alginate-Ca2+ network and PNIPAAm:: Hydrophilic, morphological and mechanical properties
    de Moura, Marcia R.
    Rubira, Adley F.
    Muniz, Edvani C.
    POLIMEROS-CIENCIA E TECNOLOGIA, 2008, 18 (02): : 132 - 137
  • [45] Synthesis, characterization, and swelling behaviors of chitosan-g-poly(acrylic acid)/poly(vinyl alcohol) semi-IPN superabsorbent hydrogels
    Liu, Jianghua
    Wang, Wenbo
    Wang, Aiqin
    POLYMERS FOR ADVANCED TECHNOLOGIES, 2011, 22 (05) : 627 - 634
  • [46] Nanocellulose-Based Interpenetrating Polymer Network (IPN) Hydrogels for Cartilage Applications
    Naseri, Narges
    Deepa, B.
    Mathew, Aji P.
    Oksman, Kristiina
    Girandon, Lenart
    BIOMACROMOLECULES, 2016, 17 (11) : 3714 - 3723
  • [47] Gelation behavior of polysaccharide-based interpenetrating polymer network (IPN) hydrogels
    Choudhary, Soumitra
    White, Joseph C.
    Stoppel, Whitney L.
    Roberts, Susan C.
    Bhatia, Surita R.
    RHEOLOGICA ACTA, 2011, 50 (01) : 39 - 52
  • [48] UV-induced synthesis of chitosan-g-polyacrylamide semi-IPN superabsorbent hydrogels
    Saber-Samandari, Samaneh
    Gazi, Mustafa
    Yilmaz, Elvan
    POLYMER BULLETIN, 2012, 68 (06) : 1623 - 1639
  • [49] Fabrication of Salecan/poly(AMPS-co-HMAA) semi-IPN hydrogels for cell adhesion
    Hu, Xinyu
    Wang, Yongmei
    Zhang, Liangliang
    Xu, Man
    Dong, Wei
    Zhang, Jianfa
    CARBOHYDRATE POLYMERS, 2017, 174 : 171 - 181
  • [50] POSS Hybrid Robust Biomass IPN Hydrogels with Temperature Responsiveness
    Chen, Yi
    Zhou, Yueyun
    Liu, Wenyong
    Pi, Hejie
    Zeng, Guangsheng
    POLYMERS, 2019, 11 (03)