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Biomedical subjects

C Delloye

Publications and source records attributed to C Delloye.

50 records · Page 3Linked to original sources

Massive bone allografts in large skeletal defects after tumor surgery: a clinical and microradiographic evaluation.

Massive deep-frozen bone allografts were implanted in 13 patients after en bloc tumor resection. Patients were followed up for 14 months to 17 years. Most of the reconstructive procedures included a segmental bone allograft with knee or ankle fusion. Graft infections were the most critical complications in regard to the end results, finally requiring amputation in two cases. There were three stress fractures; two of which were successfully treated without further complication. Graft incorporation was assessed by bone scintimetry in four cases. Isotope uptake by the center of the graft was found to be superior to control bone segments at only 15 years after surgery. Two recovered allograft specimens were available for a microradiographic study. Creeping substitution was a very slow process, initiated at the outer surface of the graft and characterized at 2-3 years after implantation by large, incompletely filled osteons. The present investigation demonstrates that massive bone allografts are very slowly revascularized and are intimately anchored by the host bone. Provided that tumor control is effective and graft infection is avoided, reconstructive surgery with massive bone allografts represents a successful alternative to prosthetic implants in young adult with a long life expectancy.

Adolescent↗

Effect of sterilization on osteoinduction. Comparison of five methods in demineralized rat bone.

The aim of this study was to find a safe, effective sterilization method that does not destroy the bone-inductive capacity of demineralized bone implants. Five sterilizing agents were tested in rats. Implants procured and processed under sterile conditions served as controls. New bone formation was evaluated by determining dry weight, calcium content, and Sr-85 incorporation of the induced ossicles. Glutaraldehyde solution, formaldehyde gas, and ethylene oxide destroyed almost all the bone-inductive capacity. Irradiation by 2.5 Mrads Co-60 resulted in a loss of about half of the inductive capacity. Merthiolate (0.18 per cent) was the only sterilizing agent that did not reduce the bone-inductive capacity of the demineralized implants. Because merthiolate is not sporicidal, gamma irradiation appears to be the most appropriate sterilizing agent for demineralized bone in clinical use.

Animals↗

Bone injury and late giant-cell tumor occurrence: a possible relation. A case report.

A giant-cell tumor of the upper end of the fibula, five years after a documented bone injury at the same site is reported. The histologic diagnosis was corroborated by the patient's age, tumor localization, radiologic and pathologic aspects. The role of a bone injury as a promoting factor in the development of this tumor is discussed. The tumoral occurrence as a reactive process to trauma in this case may not be ruled out.

Bone Neoplasms↗

Canine cortical bone autograft remodeling in two simultaneous skeletal sites.

The morphological and physical aspects of cortical bone autografts implanted in dogs for 1-9 months in two differently located skeletal defects are reported with a twofold aim: to provide a reference system for further comparison with various allografts and to delineate a general pattern of cortical bone graft healing. A 3-cm osteoperiosteal gap was created in the diaphyseal segment of the ulna and fibula of mature dogs. The grafts, freed from periosteum and bone marrow, were then inverted and replaced for the autografts in the left limb bone without internal fixation or external splints. On the right side, different allografts were tested. A group of three animals also had an unfilled segmental resection on the right as control. Dogs were observed for 1, 2, 3, 6, and 9 months and were able to bear weight within 3 days. Twenty-eight ulnae and 27 fibulae were available for this autograft study. Fluorochromes were injected at mid-term and at the end of the observation. All the grafts were assessed morphologically by cross-section microradiographs and ultraviolet light microscopy, and a morphometric analysis for porosity and fluorescence was done. To evaluate the physical aspects of graft healing, the recovered ulnar autografts, when available, were submitted to photon absorptiometry and to torsional loading. Morphologically, resorption was found to invade the cortical bone graft transversely through radial tunnels, and in addition to the host-bone-graft junction, the entire transplant surface provided another way for revascularization. The highest porosity level was achieved 2 months after surgery for both ulna and fibula, while new bone formation, as assessed by fluorochromes, was most important at 3 months. At 9 months, porosity remained above the normal range as determined in a set of five nongrafted dogs. While the lack of correlation for porosity between the two grafts suggests that local factors are more important in graft resorption, the observed correlation for fluorescence indicates that new bone deposition is more dependent upon skeletal metabolic activity. Within each graft, porosity and new bone formation were not well correlated. In the ulna, the bone mineral content (BMC) reflected the graft volumetric variations during the remodeling, with the lowest mean value at 3 months. For each graft, BMC was well correlated with the torsional stiffness. When torsionally loaded, the maximal tangential shear stress at failure of the graft was negatively related to its cortical porosity.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

The osteoinductive capacity of differently HCl-decalcified bone alloimplants.

Three procedures to obtain bone inductive implants were tested heterotopically in 3-month-old allogeneic rats: 1) antigen-extracted HCl-decalcified at 4 degrees C, autolysed implant (AAA bone); 2) HCl-decalcified implant at 4 degrees C; 3) HCl-decalcified implant at room temperature. Each type of implant was either deep-frozen at -35 degrees C for at least 2 months or immediately freeze-dried. The bone inductive capacity of the differently HCl-decalcified cortical bone implant was evaluated at 2 months by isotopic strontium incorporation and by ash-weight measurements. Bone HCl-decalcification alone, either at 4 degrees C or at room temperature, gave a higher new bone yield than the freeze-dried AAA bone. The type or short-term preservation technique had no effect on the osteoinductive capacity of either of the differently treated implants, AAA bone expected.

Animals↗

[Microradiographic aspects of massive bone allografts in man].

Two stored frozen massive bone allografts were implanted after resection of femoral and tibial tumours in two patients. Eighteen and thirty months later the authors had the opportunity to make a microscopic examination of the grafts. The cortical bone grafts were incorporated by the classic "creeping substitution." The repair of the cortical transplant was very incomplete and showed large resorption cavities. The newly-formed living bone was not fully mineralized. These phenomena related only to the outer area of the cortical bone, the dead intra-cortical area being left unaffected by the process. Cancellous bone graft repair was faster and more efficient.

Adolescent↗

[The induction of chondrogenesis after fracture repair].

Various experimental models have been used in young rabbits to determine the conditions necessary to induce chondrogenesis in the inner layer of periosteum after injury. Chondrogenesis will always occur in the presence of a haematoma, torn periosteum and bone, but if one of these factors in missing such a response may not necessarily occur.

Age Factors↗

How to improve the incorporation of massive allografts?

The incorporation of a bone graft is the result of creeping and substitutional activities that remove the original grafted bone and replace it by newly formed bone from the host cells. However, this intricate process is very limited in time and space. A bone allograft is poorly remodeled and is almost non viable even after several years of implantation. This lack of vitality accounts for the high rate of complications such as non union and fracture. One way to minimize the allograft complications is to improve its incorporation. The process of incorporation in animals and human beings is reviewed as well as the various avenues for a biologic improvement either through modulation on the host: the immune response, the inhibition of bone resorption, the use of bone morphogenetic proteins, the autogenous cell augmentation or through processing the bone allograft: bisphosphonate adsorption or bone perforations. In 2002, biologic enhancement of the incorporation is still in its infancy but will be in a near future a reality through influence on both the host and the allograft.

Animals↗

The effect of phenylbutazone on acute hemorrhagic pancreatitis in the rat.

The effect of phenylbutazone on acute experimental pancreatitis was investigated in the rat. Severe necrotico-hemorrhagic pancreatitis was produced by intraductal injection of trypsin. Pretreatment by phenylbutazone did not alter the mortality rate but reduced the severity of pancreatitis as was demonstrated by histological quantification (total score 13.35 +/- 0.80 in treated rats versus 17.67 +/- 0.69 in the control group; P less than 0.01). The protective effect of phenylbutazone seems to be related to the specific anti-inflammatory properties of the drug and not to inhibition of prostaglandin synthesis.

Acute Disease↗