Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering

Objective(s): Fabricating a biomimetic scaffold platform combined with controlled release of bioactive agents is a practical approach for bone tissue engineering. Controlled delivery of peptides and growth factors which play a significant role in osteogenesis is an important issue reducing the assoc...

Full description

Bibliographic Details
Main Authors: Marzieh Mohammadi, Mona Alibolandi, Khalil Abnous, Zahra Salmasi, Mahmoud Reza Jaafari, Mohammad Ramezani
Format: Article
Language:English
Published: Mashhad University of Medical Sciences 2020-07-01
Series:Nanomedicine Journal
Subjects:
Online Access:http://nmj.mums.ac.ir/article_15575_7b12a876c8dfcb2d09e9b72f81c8d6d7.pdf
id doaj-601579c659f948d0ac15ff786862e175
record_format Article
spelling doaj-601579c659f948d0ac15ff786862e1752020-11-25T03:52:13ZengMashhad University of Medical SciencesNanomedicine Journal2322-30492322-59042020-07-017322523010.22038/nmj.2020.07.000615575Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineeringMarzieh Mohammadi0Mona Alibolandi1Khalil Abnous2Zahra Salmasi3Mahmoud Reza Jaafari4Mohammad Ramezani5Department of Pharmaceutics, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran| Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranDepartment of Pharmaceutical Nanotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranDepartment of Pharmaceutical Nanotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran|Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran| Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranObjective(s): Fabricating a biomimetic scaffold platform combined with controlled release of bioactive agents is a practical approach for bone tissue engineering. Controlled delivery of peptides and growth factors which play a significant role in osteogenesis is an important issue reducing the associated adverse effects and leading to cost-effectiveness. <br />Materials and Methods: We developed two liposomal formulations of bone morphogenetic protein-2 (BMP-2) peptide designated as F1 and F2 with controlled release properties. Due to high negative zeta potential of F1 formulation, the surface of the liposomes was decorated with positively charged BMP-2 peptide while the peptide was encapsulated in F2 formulation. Then, we evaluated the hypothesis that whether the electrostatically loaded peptide could act as a ligand and improve the cellular uptake and osteogenic differentiation of mesenchymal stem cells.<br />Results: Both formulations were less than 100 nm in size. The release study revealed that both formulations showed a sustained release pattern for 21 days. However, the cumulative releases were 60% and 40% in F1 and F2 formulations, respectively. Flow cytometry analysis indicated that cell internalization of F1 liposomes was more than the other formulation. In the next step, F1 and F2 formulations were attached covalently to our previously developed nanofibrous electrospun scaffold and biocompatibility and osteogenic differentiation of each formulation were studied. The results indicated that the proliferation of the cells seeded on F1 liposcaffold was significantly more than F2 liposcaffold at days 1 and 3. Furthermore, F1 liposcaffold showed superior osteogenic differentiation through measurement of alkaline phosphatase activity which could be due to the higher release pattern of F1 liposomes and their improved cellular uptake. <br />Conclusion: Our findings revealed that controlled release BMP-2 decorated liposomal formulations immobilized on nanofibrous electrospun scaffold platform could be a promising candidate for bone regeneration therapeutics and merits further investigation.http://nmj.mums.ac.ir/article_15575_7b12a876c8dfcb2d09e9b72f81c8d6d7.pdfbmp-2 peptidebone regenerationmscsliposomeosteogenic differentiationscaffold
collection DOAJ
language English
format Article
sources DOAJ
author Marzieh Mohammadi
Mona Alibolandi
Khalil Abnous
Zahra Salmasi
Mahmoud Reza Jaafari
Mohammad Ramezani
spellingShingle Marzieh Mohammadi
Mona Alibolandi
Khalil Abnous
Zahra Salmasi
Mahmoud Reza Jaafari
Mohammad Ramezani
Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
Nanomedicine Journal
bmp-2 peptide
bone regeneration
mscs
liposome
osteogenic differentiation
scaffold
author_facet Marzieh Mohammadi
Mona Alibolandi
Khalil Abnous
Zahra Salmasi
Mahmoud Reza Jaafari
Mohammad Ramezani
author_sort Marzieh Mohammadi
title Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
title_short Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
title_full Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
title_fullStr Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
title_full_unstemmed Comparison of liposomal formulations incorporating BMP-2 peptide to induce bone tissue engineering
title_sort comparison of liposomal formulations incorporating bmp-2 peptide to induce bone tissue engineering
publisher Mashhad University of Medical Sciences
series Nanomedicine Journal
issn 2322-3049
2322-5904
publishDate 2020-07-01
description Objective(s): Fabricating a biomimetic scaffold platform combined with controlled release of bioactive agents is a practical approach for bone tissue engineering. Controlled delivery of peptides and growth factors which play a significant role in osteogenesis is an important issue reducing the associated adverse effects and leading to cost-effectiveness. <br />Materials and Methods: We developed two liposomal formulations of bone morphogenetic protein-2 (BMP-2) peptide designated as F1 and F2 with controlled release properties. Due to high negative zeta potential of F1 formulation, the surface of the liposomes was decorated with positively charged BMP-2 peptide while the peptide was encapsulated in F2 formulation. Then, we evaluated the hypothesis that whether the electrostatically loaded peptide could act as a ligand and improve the cellular uptake and osteogenic differentiation of mesenchymal stem cells.<br />Results: Both formulations were less than 100 nm in size. The release study revealed that both formulations showed a sustained release pattern for 21 days. However, the cumulative releases were 60% and 40% in F1 and F2 formulations, respectively. Flow cytometry analysis indicated that cell internalization of F1 liposomes was more than the other formulation. In the next step, F1 and F2 formulations were attached covalently to our previously developed nanofibrous electrospun scaffold and biocompatibility and osteogenic differentiation of each formulation were studied. The results indicated that the proliferation of the cells seeded on F1 liposcaffold was significantly more than F2 liposcaffold at days 1 and 3. Furthermore, F1 liposcaffold showed superior osteogenic differentiation through measurement of alkaline phosphatase activity which could be due to the higher release pattern of F1 liposomes and their improved cellular uptake. <br />Conclusion: Our findings revealed that controlled release BMP-2 decorated liposomal formulations immobilized on nanofibrous electrospun scaffold platform could be a promising candidate for bone regeneration therapeutics and merits further investigation.
topic bmp-2 peptide
bone regeneration
mscs
liposome
osteogenic differentiation
scaffold
url http://nmj.mums.ac.ir/article_15575_7b12a876c8dfcb2d09e9b72f81c8d6d7.pdf
work_keys_str_mv AT marziehmohammadi comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
AT monaalibolandi comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
AT khalilabnous comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
AT zahrasalmasi comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
AT mahmoudrezajaafari comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
AT mohammadramezani comparisonofliposomalformulationsincorporatingbmp2peptidetoinducebonetissueengineering
_version_ 1724483652684873728