4.7 Article

Nanoparticles functionalized with stem cell secretome and CXCR4-overexpressing endothelial membrane for targeted osteoporosis therapy

期刊

JOURNAL OF NANOBIOTECHNOLOGY
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12951-021-01231-6

关键词

Osteoporosis; CXCR4; Secretome; Mesenchymal stem cells; Bone targeting; Nanoparticles

资金

  1. NC State University College of Veterinary Medicine
  2. National Natural Science Foundation of China [81772426, 81974330, 81501897]
  3. Shanghai Committee of Science and Technology [20ZR1451800]

向作者/读者索取更多资源

This study proposes a method using cell-mimicking and targeted therapeutic nanoparticles to replace stem cells. The results show that in a rat model of osteoporosis, this treatment can accumulate in bone, inhibit osteoclast differentiation, and promote osteogenic proliferation. Additionally, this treatment reduces bone mass attenuation in rats with ovariectomy-induced bone loss.
Background: Osteoporosis is a chronic condition affecting patients' morbidity and mortality and represents a big socioeconomic burden. Because stem cells can proliferate and differentiate into bone-forming cells, stem cell therapy for osteoporosis has been widely studied. However, cells as a live drug face multiple challenges because of their instability during preservation and transportation. In addition, cell therapy has potential adverse effects such as embolism, tumorigenicity, and immunogenicity. Results: Herein, we sought to use cell-mimicking and targeted therapeutic nanoparticles to replace stem cells. We fabricated nanoparticles (NPs) using polylactic-co-glycolic acid (PLGA) loaded with the secretome (Sec) from mesenchymal stem cells (MSCs) to form MSC-Sec NPs. Furthermore, we cloaked the nanoparticles with the membranes from C-X-C chemokine receptor type 4 (CXCR4)-expressing human microvascular endothelial cells (HMECs) to generate MSC-Sec/CXCR4 NP. CXCR4 can target the nanoparticles to the bone microenvironment under osteoporosis based on the CXCR4/SDF-1 axis. Conclusions: In a rat model of osteoporosis, MSC-Sec/CXCR4 NP were found to accumulate in bone, and such treatment inhibited osteoclast differentiation while promoting osteogenic proliferation. In addition, our results showed that MSC-Sec/CXCR4 NPs reduce OVX-induced bone mass attenuation in OVX rats.

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