Wnt16 Increases Bone-to-Implant Contact in an Osteopenic Rat Model by Increasing Proliferation and Regulating the Differentiation of Bone Marrow Stromal Cells.

Annals of biomedical engineering 2024 Vol.52(6) p. 1744-1762

Berger MB, Bosh K, Deng J, Jacobs TW, Cohen DJ, Boyan BD, Schwartz Z

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Abstract

Osseointegration is a complex biological cascade that regulates bone regeneration after implant placement. Implants possessing complex multiscale surface topographies augment this regenerative process through the regulation of bone marrow stromal cells (MSCs) that are in contact with the implant surface. One pathway regulating osteoblastic differentiation is Wnt signaling, and upregulation of non-canonical Wnts increases differentiation of MSCs on these titanium substrates. Wnt16 is a non-canonical Wnt shown to regulate bone morphology in mouse models. This study evaluated the role of Wnt16 during surface-mediated osteoblastic differentiation of MSCs in vitro and osseointegration in vivo. MSCs were cultured on Ti substrates with different surface properties and non-canonical Wnt expression was determined. Subsequently, MSCs were cultured on Ti substrates +/-Wnt16 (100 ng/mL) and anti-Wnt16 antibodies (2 μg/mL). Wnt16 expression was increased in cells grown on microrough surfaces that were processed to be hydrophilic and have nanoscale roughness. However, treatment MSCs on these surfaces with exogenous rhWnt16b increased total DNA content and osteoprotegerin production, but reduced osteoblastic differentiation and production of local factors necessary for osteogenesis. Addition of anti-Wnt16 antibodies blocked the inhibitor effects of Wnt16. The response to Wnt16 was likely independent of other osteogenic pathways like Wnt11-Wnt5a signaling and semaphorin 3a signaling. We used an established rat model of cortical and trabecular femoral bone impairment following botox injections (2 injections of 8 units/leg each, starting and maintenance doses) to assess Wnt16 effects on whole bone morphology and implant osseointegration. Wnt16 injections did not alter whole bone morphology significantly (BV/TV, cortical thickness, restoration of trabecular bone) but were effective at increasing cortical bone-to-implant contact during impaired osseointegration in the botox model. The mechanical quality of the increased bone was not sufficient to rescue the deleterious effects of botox. Clinically, these results are important to understand the interaction of cortical and trabecular bone during implant integration. They suggest a role for Wnt16 in modulating bone remodeling by reducing osteoclastic activity. Targeted strategies to temporally regulate Wnt16 after implant placement could be used to improve osseointegration by increasing the net pool of osteoprogenitor cells.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 botox 보툴리눔독소 주사 dict 3
해부 Bone Marrow Stromal Cells scispacy 1
해부 bone scispacy 1
해부 MSCs → marrow stromal cells scispacy 1
해부 cells scispacy 1
해부 DNA scispacy 1
해부 cortical scispacy 1
해부 botox injections scispacy 1
해부 BV/TV scispacy 1
해부 osteoprogenitor cells scispacy 1
약물 titanium C0040302
titanium
scispacy 1
질환 femoral bone impairment scispacy 1
질환 osteoblastic scispacy 1
질환 osteoclastic scispacy 1
기타 Wnt16 scispacy 1
기타 Wnt scispacy 1
기타 Wnts scispacy 1
기타 mouse scispacy 1
기타 osteoprotegerin scispacy 1
기타 semaphorin 3a scispacy 1
기타 rat scispacy 1
기타 trabecular femoral bone scispacy 1
기타 trabecular bone scispacy 1
기타 cortical scispacy 1

MeSH Terms

Animals; Wnt Proteins; Mesenchymal Stem Cells; Cell Differentiation; Rats; Rats, Sprague-Dawley; Cell Proliferation; Osseointegration; Bone Diseases, Metabolic; Male; Titanium; Disease Models, Animal; Cells, Cultured

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