4 research outputs found
The effect of cartilage and bone density of mushroom-shaped, photooxidized, osteochondral transplants: an experimental study on graft performance in sheep using transplants originating from different species
BACKGROUND: Differences in overall performance of osteochondral photooxidized grafts were studied in accordance of their species origin and a new, more rigorous cleansing procedure using alcohol during preparation. METHODS: Photooxidized mushroom-shaped grafts of bovine, ovine, human and equine origin were implanted in the femoral condyles of 32 sheep (condyles: n = 64). No viable chondrocytes were present at the time of implantation. Grafts were evaluated at 6 months using plastic embedded sections of non-decalcified bone and cartilage specimens. Graft incorporation, the formation of cyst-like lesions at the base of the cartilage junction as well as cartilage morphology was studied qualitatively, semi-quantitatively using a score system and quantitatively by performing histomorphometrical measurements of percentage of bone and fibrous tissue of the original defects. For statistical analysis a factorial analysis of variance (ANOVA- test) was applied. RESULTS: Differences of graft performance were found according to species origin and cleansing process during graft preparation. According to the score system cartilage surface integrity was best for equine grafts, as well as dislocation or mechanical stability. The equine grafts showed the highest percentage for bone and lowest for fibrous tissue, resp. cystic lesions. The new, more rigorous cleansing process decreased cartilage persistence and overall graft performance. CONCLUSION: Performance of grafts from equine origin was better compared to bovine, ovine and human grafts. The exact reason for this difference was not proven in the current study, but could be related to differences in density of cartilage and subchondral bone between species
Local and systemic effect of transfection-reagent formulated DNA vectors on equine melanoma
Background Equine melanoma has a high incidence in grey horses. Xenogenic DNA
vaccination may represent a promising therapeutic approach against equine
melanoma as it successfully induced an immunological response in other species
suffering from melanoma and in healthy horses. In a clinical study, twenty-
seven, grey, melanoma-bearing, horses were assigned to three groups (n = 9)
and vaccinated on days 1, 22, and 78 with DNA vectors encoding for equine (eq)
IL-12 and IL-18 alone or in combination with either human glycoprotein (hgp)
100 or human tyrosinase (htyr). Horses were vaccinated intramuscularly, and
one selected melanoma was locally treated by intradermal peritumoral
injection. Prior to each injection and on day 120, the sizes of up to nine
melanoma lesions per horse were measured by caliper and ultrasound. Specific
serum antibodies against hgp100 and htyr were measured using cell based flow-
cytometric assays. An Analysis of Variance (ANOVA) for repeated measurements
was performed to identify statistically significant influences on the relative
tumor volume. For post-hoc testing a Tukey-Kramer Multiple-Comparison Test was
performed to compare the relative volumes on the different examination days.
An ANOVA for repeated measurements was performed to analyse changes in body
temperature over time. A one-way ANOVA was used to evaluate differences in
body temperature between the groups. A p–value < 0.05 was considered
significant for all statistical tests applied. Results In all groups, the
relative tumor volume decreased significantly to 79.1 ± 26.91% by day 120 (p <
0.0001, Tukey-Kramer Multiple-Comparison Test). Affiliation to treatment
group, local treatment and examination modality had no significant influence
on the results (ANOVA for repeated measurements). Neither a cellular nor a
humoral immune response directed against htyr or hgp100 was detected. Horses
had an increased body temperature on the day after vaccination. Conclusions
This is the first clinical report on a systemic effect against equine melanoma
following treatment with DNA vectors encoding eqIL12 and eqIL18 and formulated
with a transfection reagent. Addition of DNA vectors encoding hgp100
respectively htyr did not potentiate this effect