Insulin for oral bone tissue engineering: a review on innovations in targeted insulin-loaded nanocarrier scaffold

被引:1
作者
Rahaman, Jiyaur [1 ,2 ]
Mukherjee, Dhrubojyoti [1 ]
机构
[1] SVKMS Narsee Monjee Inst Management Studies, Sch Pharm & Technol Management, Dept Pharmacol, Shirpur, India
[2] Deemed Univ, SVKMs Narsee Monjee Inst Management Studies NMIMS, Shobhaben Pratapbhai Patel Sch Pharm & Technol Man, Mumbai, India
关键词
Insulin; IGF-1; osteoblasts; oral bone tissue regeneration; scaffolds; polymeric biomaterials; GROWTH-FACTOR-I; COMPOSITE SCAFFOLD; MORPHOGENETIC PROTEIN-2; PLGA MICROSPHERES; VIVO EVALUATION; DELIVERY; REGENERATION; CHITOSAN; NANOPARTICLES; GELATIN;
D O I
10.1080/1061186X.2024.2445737
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The occurrence of oral bone tissue degeneration and bone defects by osteoporosis, tooth extraction, obesity, trauma, and periodontitis are major challenges for clinicians. Traditional bone regeneration methods often come with limitations such as donor site morbidity, limitation of special shape, inflammation, and resorption of the implanted bone. The treatment oriented with biomimetic bone materials has achieved significant attention recently. In the oral bone tissue engineering arena, insulin has gained considerable attention among all the known biomaterials for osteogenesis and angiogenesis. It also exhibits osteogenic and angiogenic properties by interacting with insulin receptors on osteoblasts. Insulin influences bone remodelling both directly and indirectly. It acts directly through the PI3K/Akt and MAPK signalling pathways and indirectly by modulating the RANK/RANKL/OPG pathway, which helps reduce bone resorption. The current review reports the role of insulin in bone remodelling and bone tissue regeneration in the oral cavity in the form of scaffolds and nanomaterials. Different insulin delivery systems, utilising nanomaterials and scaffolds functionalised with polymeric biomaterials have been explored for oral bone tissue regeneration. The review put forward a theoretical basis for future research in insulin delivery in the form of scaffolds and composite materials for oral bone tissue regeneration.
引用
收藏
页码:648 / 665
页数:18
相关论文
共 153 条
[61]   Insulin promotes the bone formation capability of human dental pulp stem cells through attenuating the IIS/PI3K/AKT/mTOR pathway axis [J].
Lingling, E. ;
Shan, Yanbo ;
Luo, Yuxi ;
Feng, Lin ;
Dai, Yawen ;
Gao, Mingzhu ;
Lv, Yan ;
Zhang, Chaoran ;
Liu, Hongchen ;
Wen, Ning ;
Zhang, Rong .
STEM CELL RESEARCH & THERAPY, 2024, 15 (01)
[62]  
Liu Mei, 2009, Hua Xi Kou Qiang Yi Xue Za Zhi, V27, P451
[63]   Delivery of Growth Factors Using a Smart Porous Nanocomposite Scaffold to Repair a Mandibular Bone Defect [J].
Liu, Xian ;
Zhao, Kun ;
Gong, Tao ;
Song, Jian ;
Bao, Chongyun ;
Luo, En ;
Weng, Jie ;
Zhou, Shaobing .
BIOMACROMOLECULES, 2014, 15 (03) :1019-1030
[64]   Review: Development of clinically relevant scaffolds for vascularised bone tissue engineering [J].
Liu, Yuchun ;
Lim, Jing ;
Teoh, Swee-Hin .
BIOTECHNOLOGY ADVANCES, 2013, 31 (05) :688-705
[65]   A journey through the history of PEGylated drug delivery nanocarriers [J].
Lopez-Estevez, Ana M. ;
Gref, Ruxandra ;
Alonso, Maria J. .
DRUG DELIVERY AND TRANSLATIONAL RESEARCH, 2024, 14 (08) :2026-2031
[66]   Insight into the roles of melatonin in bone tissue and bone-related diseases (Review) [J].
Lu, Xiaofeng ;
Yu, Shaoling ;
Chen, Guangjin ;
Zheng, Wenhao ;
Peng, Jinfeng ;
Huang, Xiaofei ;
Chen, Lili .
INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2021, 47 (05)
[67]  
Malafaya PB, 2010, TISSUE ENG PT A, V16, P735, DOI [10.1089/ten.tea.2008.0679, 10.1089/ten.TEA.2008.0679]
[68]   Osteogenic differentiation and proliferation potentials of human bone marrow and umbilical cord-derived mesenchymal stem cells on the 3D-printed hydroxyapatite scaffolds [J].
Meesuk, Ladda ;
Suwanprateeb, Jintamai ;
Thammarakcharoen, Faungchat ;
Tantrawatpan, Chairat ;
Kheolamai, Pakpoom ;
Palang, Iyapa ;
Tantikanlayaporn, Duangrat ;
Manochantr, Sirikul .
SCIENTIFIC REPORTS, 2022, 12 (01)
[69]   Localized insulin-like growth factor I delivery to enhance new bone formation [J].
Meinel, L ;
Zoidis, E ;
Zapf, J ;
Hassa, P ;
Hottiger, MO ;
Auer, JA ;
Schneider, R ;
Gander, B ;
Luginbuehl, V ;
Bettschart-Wolfisberger, R ;
Illi, OE ;
Merkle, HP ;
von Rechenberg, B .
BONE, 2003, 33 (04) :660-672
[70]   Review on the strategies to improve the mechanical strength of highly porous bone bioceramic scaffolds [J].
Miri, Zahra ;
Haugen, Havard Jostein ;
Loca, Dagnija ;
Rossi, Filippo ;
Perale, Giuseppe ;
Moghanian, Amirhossein ;
Ma, Qianli .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2024, 44 (01) :23-42