| Literature DB >> 28410554 |
Suping Huang1, Chunxia Li2, Qi Xiao3.
Abstract
In this paper, yolk-shell hollow nanospheres of amorphous calcium phosphate (ACP) are prepared, and its loading capacity is investigated by comparing with that of solid-shell hollow structure ACP and cage-shell hollow structure ACP. Results show that the products are yolk @ cage-shell of ACP with large shell's pores size (15-40 nm) and large cavity volume. Adsorption results show that the loading capacity of yolk @ cage-shell hollow spherical ACP is very high, which is more than twice that of hollow ACP and 1.5 times of cage-like ACP. The main reasons are that the big shell's pore size contributes the large molecular doxorubicin hydrochloride (DOX · HCl) to enter the inner of hollow spheres easier, and the yolk-shell structure provides larger interior space and more adsorption sites for loading drugs.Entities:
Keywords: Amorphous calcium phosphate; DOX · HCl; Loading capacity; Yolk @ cage-shell hollow nanospheres
Year: 2017 PMID: 28410554 PMCID: PMC5391342 DOI: 10.1186/s11671-017-2051-7
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1XRD patterns (a) and FT-IR spectra (b) of the ACP nanospheres obtained under different conditions
Fig. 2SEM images of ACP-24-2 (a), ACP-48-2 (b), and ACP-48-10 (c)
Fig. 3TEM images of the products. a ACP-24-2. b ACP-48-2. c, d ACP-48-10
Fig. 4The element mapping of yolk @ cage-shell hollow ACP sphere before calcination (a) and after calcination (b)
Fig. 5Nitrogen adsorption-desorption isotherms and pore size distribution graphs of ACP-24-2 (a), ACP-48-2 (b), and ACP-48-10 (c)
The surface area (SBET), pore volume, average pore size, and adsorption for samples synthesized under the different conditions
| Sample | SBET
a
| Pore volumeb
| Adsorption amount |
|---|---|---|---|
| ACP-24-2 | 17.7495 | 0.0613 | 350.4 |
| ACP-48-2 | 18.9721 | 0.1808 | 490.7 |
| ACP-48-10 | 31.7668 | 0.2008 | 1181.9 |
aCalculated from Barrett-Emmett-Teller (BET) equation
bCalculated using Barrett-Joyner-Halenda (BJH)
Fig. 6The adsorption behaviors of DOX · HCl on the ACP particles with different morphologies. a hollow spheres without big pores on shell b cage-shell hollw spheres c yolk @ cage-shell hollow spheres