scholarly journals Study of nano-hydroxyapatite/zirconia stabilized with yttria in bone healing: histopathological study in rabbit model

2014 ◽  
Vol 1 ◽  
pp. 40-47 ◽  
Author(s):  
Gholamreza Abedi ◽  
Amirali Jahanshahi ◽  
Mohamad Hosein Fathi ◽  
Iraj Sohrabi Haghdost ◽  
Abas Veshkini
2018 ◽  
Vol 2018 ◽  
pp. 1-7 ◽  
Author(s):  
Antonio Scarano ◽  
Ezio Crocetta ◽  
Alessandro Quaranta ◽  
Felice Lorusso

Background. Pure titanium continues to be the first choice for dental implants and represents the gold standard for their biocompatibility and physical and mechanical characteristics, while the titanium alloy (Ti6Al4V) has good mechanical properties. The surface structure of the titanium oxide layer formation on the surface influences and improves the bone response around dental implants. Purpose. The purpose of this study is to evaluate the influence of a thermal treatment of Ti6Al4V implant surfaces and the bone healing response in a rabbit model. Methods. Altogether sixteen implants with same design were inserted into the distal femoral metaphysis. A screw (13 mm long, 4 mm in diameter) was inserted in an implant bed. Each rabbit received two implants, one in the left femur and one in the right femur. The samples were histologically and histomorphometrically evaluated at 8 weeks. Results. A statistically significant difference (p = 0.000034) was present histologically in the percentages of bone-implant contact (BIC) between the test group (BIC = 69.25±4.49%.) and control group (BIC = 56.25 ± 4.8%) by one-way analysis of variance (ANOVA). Significance was set at p ≤ 0.05. Conclusions. The outcome of the present study indicates a novel approach to improving bone healing around titanium implants.


2018 ◽  
Vol 10 (1) ◽  
pp. 99 ◽  
Author(s):  
Xiao Ning Liu ◽  
Cheol-Jung Yang ◽  
Ji Eui Kim ◽  
Zhen Wu Du ◽  
Ming Ren ◽  
...  

2018 ◽  
Vol 46 (8) ◽  
pp. 1901-1908 ◽  
Author(s):  
Jieun Kwon ◽  
Yun Hee Kim ◽  
Sung-Min Rhee ◽  
Tae In Kim ◽  
Jimin Lee ◽  
...  

Background: The failure of rotator cuffs to heal after repair is an unresolved surgical issue. There have been substantial efforts, including the use of biological supplements, to enhance tendon healing. Dermal fibroblasts are a good candidate for tendon tissue engineering because they are similar to the tenocytes used for collagen synthesis. In addition, they are easily accessible because autologous dermal fibroblasts can be obtained from individual skin without major skin defects and allogenic dermal fibroblasts (ADFs) have already been commercialized in the field of skin engineering. Purpose: To determine the effects of dermal fibroblasts on tendon-to-bone healing in a rabbit model of a chronic rotator cuff tear. Study Design: Controlled laboratory study. Methods: A total of 33 rabbits were randomly allocated into 3 groups (n = 11 each). Supraspinatus tendons were detached and left for 6 weeks to establish a chronic rotator tear model. Torn tendons were repaired in a transosseous manner with the injection of 5 × 106 ADFs with fibrin in group A, fibrin only in group B, and saline only in group C. At 12 weeks after repair, the mechanical test and histological evaluation were performed. Results: Seven rabbits died before the evaluation (1 in group A, 2 in group B, 4 in group C). In the final evaluation, the mean ± SD load to failure was 48.1 ± 13.3 N/kg for group A, 34.5 ± 8.9 N/kg for group B, and 31.1 ± 8.3 N/kg for group C, and group A showed significantly higher load-to-failure values than the other groups ( P = .011). The midsubstance tear rate, which presented stronger tendon-to-bone healing than insertional tear, was 50.0% in group A, 22.2% in group B, 28.6% in group C, but the differences were not statistically significant ( P = .413). In the histological evaluation, group A showed greater collagen fiber continuity and better orientation than the other groups. Conclusion: This controlled laboratory study verified, on the basis of biomechanics and histology, the potential for the use of ADFs in rotator cuff healing. The current results suggest a new biological supplement to increase the rate of rotator cuff healing. Clinical Relevance: The most important finding of this study was the potential for a new biological supplement to enhance rotator cuff healing—a continuing challenge.


Heliyon ◽  
2020 ◽  
Vol 6 (7) ◽  
pp. e04547
Author(s):  
Amin Bigham-Sadegh ◽  
Haleh Sadat Torkestani ◽  
Siavash Sharifi ◽  
Sadegh Shirian

2014 ◽  
Vol 89 (7) ◽  
pp. 535-543 ◽  
Author(s):  
E Bulut ◽  
B Baş ◽  
BZ Altunkaynak ◽  
B Bekçioğlu ◽  
G Erdem Koç ◽  
...  

1995 ◽  
Vol 83 (1) ◽  
pp. 111-117 ◽  
Author(s):  
R. Loch Macdonald ◽  
M. Christopher Wallace ◽  
Walter J. Montanera ◽  
Jennifer A. Glen

✓ To define the pathological effects of angioplasty on vasospastic arteries, 36 rabbits underwent angiography and induction of vasospasm by placement of blood-filled (vasospasm groups) or empty (control group) silastic sheaths around the cervical carotid arteries. Two (Day 2) or 7 days (Day 7) later, angiography was repeated and one carotid artery in each animal was dilated by balloon angioplasty. The rabbits were sacrificed 1 day, 7 days, or 3 to 4 weeks after angioplasty. Significant vasospasm developed after placement of silastic sheaths with blood (mean reductions in diameter 39% ± 6% at Day 2 and 48% ± 5% at Day 7). Arterial narrowing was less apparent in the control groups at Day 2 (24% ± 7%). Angioplasty performed on Day 2 significantly increased arterial diameters of vasospastic arteries (50% ± 7%; p < 0.05) but not those of control arteries (10% ± 6%, p > 0.05). Angioplasty performed on Day 7 increased the arterial diameters by a similar degree (47% ± 13%, not significant). Arteries remained dilated after angioplasty, although there was significant vasospasm 7 days after angioplasty when angioplasty was performed on Day 2. Blinded, semiquantitative histopathological study of the arteries showed that 3 to 4 weeks after angioplasty, there was significant endothelial proliferation and a trend for thinning of the tunica media. There were no significant changes in control arteries subjected to angioplasty. Angioplasty was not associated with significant arterial fibrosis as measured by hydroxyproline content (analysis of variance). The increase in endothelial proliferation and decrease in the thickness of the tunica media suggest that, in the rabbit model, angioplasty damages endothelial and smooth-muscle cells. This may be the basis for the observation that vasospastic arteries do not reconstrict after angioplasty.


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