Preparation, characterization and stability assessment of keratin and albumin functionalized gold nanoparticles for biomedical applications

被引:0
作者
R. Thilagam
A. Gnanamani
机构
[1] CSIR-CLRI,Microbiology Division, Biological Materials Laboratory
[2] Tamil Nadu,undefined
来源
Applied Nanoscience | 2020年 / 10卷
关键词
Gold nanoparticles; Functionalization; Keratin; Albumin; Protein combination; pH and storage stability;
D O I
暂无
中图分类号
学科分类号
摘要
In the present study, an attempt was made to improve the biocompatibility and storage stability of gold nanoparticles by functionalization with proteins of two different nature namely globular [albumin (AP)] and fibrillar [keratin (KP)]. Nanoparticles in the form of (i) plain gold nanoparticles (AuNps); (ii) keratin functionalized gold nanoparticle (KP-AuNps); (iii) albumin functionalized gold nanoparticles (AP-AuNps); (iv) the combinations KP-AP-AuNps were prepared according to the standard protocols. Protein functionalization was confirmed through various characterization and instrumental techniques, respectively. Results reveal the variation in particle size respective to the nature of the protein used and a significant increase in size upon functionalization. In particular, compared to single protein functionalization the combinations showed an 11-fold increase in diameter. A significant difference in the zeta potential observed for all the experimental nanoparticles corroborates with the functional properties of the samples. The cytocompatibility, haemocompatibility, stability with respect to change in pH and long term (6 months) storage stability of all the prepared four Nps were studied and assessed based on the plasmon resonance. Results suggest appreciable compatibility and stability of protein functionalized nanoparticles when compared with the plain nanoparticles. Functionalization either with fibrillar/globular/combination of both augments the requisite functional attributes of gold nanoparticles for enhanced therapeutic applications.
引用
收藏
页码:1879 / 1892
页数:13
相关论文
共 276 条
[21]  
Baalousha M(2019)Ultrahigh recovery of fracture strength on mismatched fractured amorphous surfaces of silicon carbide ACS Nano 13 7483-4130
[22]  
Banoee M(2019)Unprecedented piezoresistance coefficient in strained silicon carbide Nano Lett 19 6569-2272
[23]  
Bastús NG(2013)Study of optical properties of a glutathione capped gold nanoparticles using linker (MHDA) by Fourier transform infra-red spectroscopy and surface enhanced Raman scattering World Acad Sci Eng Tech 7 80-70
[24]  
Belarmino DD(2016)Design strategy of surface decoration for efficient delivery of nanoparticles by computer simulation Sci Rep 6 26783-6217
[25]  
Ladchumananandasivam R(2015)Cytotoxicity of BSA-stabilized gold nanoclusters. In vitro and in vivo study Small 11 2571-15707
[26]  
Belarmino LD(2016)Preparation and characterization of gold nanoparticles prepared with aqueous extracts of Lamiaceae plants and the effect of follow-up treatment with atmospheric pressure glow microdischarge Arab J Chem 12 4118-4730
[27]  
Pimentel JRdM(2008)PEGylated gold nanoparticles conjugated to monoclonal F19 antibodies as targeted labelling agents for human pancreatic carcinoma tissue ACS Nano 2 2263-6581
[28]  
da Rocha BG(2007)Antibacterial efficacy of aminoglycosidic antibiotics protected gold nanoparticles—a brief study Colloids Surf A 297 63-3971
[29]  
Galvão AO(2012)Hair fiber as a nanoreactor in controlled synthesis of fluorescent gold nanoparticles Nano Lett. 12 6212-8766
[30]  
de Andrade SM(2017)pH-sensitive Au–BSA–DOX–FA nanocomposites for combined CT imaging and targeted drug delivery Int J Nanomed 12 2829-6181