TY - JOUR
T1 - Effect of UV Photofunctionalization on Osseointegration in Aged Rats
AU - Ishijima, Manabu
AU - Ghassemi, Amirreza
AU - Soltanzadeh, Pooya
AU - Tanaka, Miyuki
AU - Nakhaei, Kourosh
AU - Park, Wonhee
AU - Hirota, Makoto
AU - Tsukimura, Naoki
AU - Ogawa, Takahiro
N1 - Publisher Copyright:
© 2016 Wolters Kluwer Health, Inc. All rights reserved.
PY - 2016/12/1
Y1 - 2016/12/1
N2 - Objectives: This study evaluated the effect of photofunctionalization on osseointegration under the biologically adverse conditions of aging. Materials: First of all, bone marrow-derived osteoblastic cells from young (8 weeks old) and aged (15 months old) rats were biologically characterized. Then, the osteoblasts from aged rats were seeded on titanium discs with and without photofunctionalization, and assessed for initial cell attachment and osteoblastic functions. Titanium mini-implants, with and without photofunctionalization, were placed in the femur of aged rats, and the strength of osseointegration was measured at week 2 of healing. Periimplant tissue was examined morphologically and chemically using scanning electron microscopy and energy dispersive x-ray spectroscopy, respectively. Results: Cells from the aged rats showed substantially reduced biological capabilities compared with those derived from young rats. The cells from aged rats showed significantly increased cell attachment and the expression of osteoblastic function on photofunctionalized titanium than on untreated titanium. In addition, the strength of osseointegration was increased by 40% in aged rats carrying the photofunctionalized implants. Robust bone formation was observed around the photofunctionalized implants with strong elemental peaks of calcium and phosphorus, whereas the tissue around untreated implants showed weaker calcium and phosphate signals than titanium ones. Conclusion: These in vivo and in vitro results corroboratively demonstrate that photofunctionalization is effective for enhancing osseointegration in aged rats.
AB - Objectives: This study evaluated the effect of photofunctionalization on osseointegration under the biologically adverse conditions of aging. Materials: First of all, bone marrow-derived osteoblastic cells from young (8 weeks old) and aged (15 months old) rats were biologically characterized. Then, the osteoblasts from aged rats were seeded on titanium discs with and without photofunctionalization, and assessed for initial cell attachment and osteoblastic functions. Titanium mini-implants, with and without photofunctionalization, were placed in the femur of aged rats, and the strength of osseointegration was measured at week 2 of healing. Periimplant tissue was examined morphologically and chemically using scanning electron microscopy and energy dispersive x-ray spectroscopy, respectively. Results: Cells from the aged rats showed substantially reduced biological capabilities compared with those derived from young rats. The cells from aged rats showed significantly increased cell attachment and the expression of osteoblastic function on photofunctionalized titanium than on untreated titanium. In addition, the strength of osseointegration was increased by 40% in aged rats carrying the photofunctionalized implants. Robust bone formation was observed around the photofunctionalized implants with strong elemental peaks of calcium and phosphorus, whereas the tissue around untreated implants showed weaker calcium and phosphate signals than titanium ones. Conclusion: These in vivo and in vitro results corroboratively demonstrate that photofunctionalization is effective for enhancing osseointegration in aged rats.
KW - UV light
KW - dental implant
KW - old age
KW - surface conditioning
KW - titanium
UR - https://www.scopus.com/pages/publications/84981495602
UR - https://www.scopus.com/pages/publications/84981495602#tab=citedBy
UR - https://www.mendeley.com/catalogue/858ca3dd-bc19-3162-af5a-f55eeed4f6e2/
U2 - 10.1097/ID.0000000000000459
DO - 10.1097/ID.0000000000000459
M3 - Article
C2 - 27513161
SN - 1056-6163
VL - 25
SP - 744
EP - 750
JO - Implant Dentistry
JF - Implant Dentistry
IS - 6
ER -