1. Academic Validation
  2. Preparation and characterization of scutellarin loaded on ultradeformable nano-liposomes scutellarin EDTMP (S-UNL-E) and in vitro study of its osteogenesis

Preparation and characterization of scutellarin loaded on ultradeformable nano-liposomes scutellarin EDTMP (S-UNL-E) and in vitro study of its osteogenesis

  • Bioengineered. 2022 Jan;13(1):1013-1024. doi: 10.1080/21655979.2021.2016095.
Teng Minhua 1 2 Wang Dashan 1 2 Shi Xinyan 3 Yuan Xiao 2 4 Li Xiaojing 1 2 Zhao Baodong 1 2
Affiliations

Affiliations

  • 1 Department of Oral Implantology, The Affiliated Hospital of Qingdao University, Qingdao, China.
  • 2 School of Stomatology, Qingdao University, Qingdao, China.
  • 3 Party and Administration Office, the Affiliated Hospital of Qingdao University, Qingdao, China.
  • 4 Department of Orthodontics, The Affiliated Hospital of Qingdao University, Qingdao, China.
Abstract

The present research aimed to elucidate a convenient, safe and economic approach to induce the growth of endogenous bone tissue and bone regeneration. S-UNL-E was prepared using reverse-phase evaporation, and scutellarin encapsulation was subsequently compared. Meanwhile, the optimal preparation scheme was developed using an orthogonal method, and the particle size was determined using laser light scattering. In osteoblasts cultured in vitro, methyl thiazolyl tetrazolium (MTT), Alkaline Phosphatase (ALP) staining and alizarin red staining were used to detect the osteogenic effects of S-UNL-E. The results indicated that the optimal process conditions for S-UNL-E included mass ratios of phospholipid-cholesterol, phospholipid-breviscapine, phospholipid-sodium cholate, and phospholipid-stearamide were 2:1, 15:1, 7:1 and 7:1, respectively, and the mass of ethylenediamine tetramethylphosphonic acid (EDTMP) was 30 mg. The average particle size of S-UNL-E was 156.67 ± 1.76 nm, and Zeta potential was -28.77 ± 0.66 mv. S-UNL-E substantially increased the expression of ALP osteoblasts, elevated the content of osteocalcin protein and promoted the formation of mineralized nodules. Cells in the S-UNL-E group were densely distributed with integrated cell structure, and the actin filaments were clear and obvious. The findings demonstrated that S-UNL-E greatly promoted the differentiation and maturation of osteoblasts, and S-UNL-E (2.5 × 108) produced the most favorable effect in differentiation promotion. In conclusion, the present study successfully constructed an S-UNL-E material characterized by high encapsulation and high stability, which could effectively promote osteogenic differentiation and bone formation.

Keywords

S-UNL-E; encapsulation; osteogenic differentiation; scutellarin.

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