Preparation and Study of Folate Modified Albumin Targeting Microspheres
Author(s) -
Quanbin Zha,
Ling Zhang,
Yuhua Guo,
Rui Bao,
Feng Shi,
Yongkang Shi
Publication year - 2022
Publication title -
journal of oncology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.228
H-Index - 54
eISSN - 1687-8469
pISSN - 1687-8450
DOI - 10.1155/2022/3968403
Subject(s) - albumin , zeta potential , nintedanib , bovine serum albumin , medicine , microsphere , serum albumin , solubility , folic acid , surface modification , phosphate buffered saline , nuclear chemistry , pharmacology , chromatography , chemistry , nanotechnology , chemical engineering , materials science , organic chemistry , nanoparticle , idiopathic pulmonary fibrosis , lung , engineering
In this study, folate modified bovine serum albumin was successfully synthesized, while preparation of Nintedanib albumin microspheres (ND-FSA NPs) as a carrier was carried out via electrospinning technology. Folate modified albumin was used to enhance the targeting potential of the prepared microspheres. The prepared microspheres had spherical appearance and smooth outer surface. The diameters of microspheres (764.68 ± 88.46 nm) and zeta potential (- 18.38 ± 0.41 mV) were acceptable. The prepared ND-FSA NPs demonstrated a good degree of modification, wherein the modification rate was 28.1%. In vitro release was significantly increased in three different media (double deionized water-DDW, HCl-pH 1.2, and phosphate buffered solution containing 0.5% Tween 80). It is worth noting that incorporation of Nintedanib into folic acid modified albumin microspheres resulted in an enhanced uptake of the drug into MCF-7 breast cancer cells coupled with higher inhibition rate. Altogether, incorporation of Nintedanib into folate modified albumin microspheres is a new approach to improve water solubility and targeting effect of the drug.
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