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G Kaspers

Publications and source records attributed to G Kaspers.

3 recordsLinked to original sources

Gemtuzumab ozogamicin (Mylotarg) in children with refractory or relapsed acute myeloid leukemia.

BACKGROUND: Gemtuzumab ozogamicin (GO) is an immunoconjugate consisting of the CD33 antibody and calicheamicin, a potent cytotoxic agent. Developed for targeted treatment of CD33-positive AML, studies in adults showed its efficacy in relapsed and refractory AML. PATIENTS AND METHOD: We report 12 children with multiple relapsed or refractory AML receiving GO as compassionate use. 11 children had initially been treated according to the AML-BFM 93 or 98 protocol, 1 girl received relapse treatment (liposomal daunorubicin/FLAG) due to secondary AML. After relapse, 10 children received an intensive relapse therapy (AML-BFM 97 or international AML-Relapse Study 2001/01). 2 of them had been transplanted in first or second CR before GO therapy. RESULTS: 5 of 12 children responded to treatment with blast reduction to below 5%, but no child achieved CR after GO. Time until reoccurrence of blasts in almost all children with GO response was 3-8 months. In 5 children stem cell transplantation (SCT) was performed after GO therapy. 4 of them suffered from further progression of AML, 1 boy is in second remission with a follow-up of 8 months. 2 children had severe side effects. An anaphylactic reaction with severe hypotension was managed by catecholamine support and intensive care. In 1 girl, who relapsed after SCT in first remission, a veno-occlusive disease of the liver occurred, but could be treated successfully with defibrotide. CONCLUSION: GO therapy can induce blast reduction in children who have no further conventional treatment options. Frequency and severity of adverse events are limited, and therapy seems to be feasible for children with a sufficient general condition. Controlled studies are necessary to learn more about efficacy and side effects, especially implications for further therapy.

Acute Disease↗

Computer assisted orthopaedic surgery with image based individual templates.

Recent developments in computer assisted surgery offer promising solutions for the translation of the high accuracy of the preoperative imaging and planning into precise intraoperative surgery. Broad clinical application is hindered by high costs, additional time during intervention, problems of intraoperative man and machine interaction, and the spatially constrained arrangement of additional equipment within the operating theater. An alternative technique for computerized tomographic image based preoperative three-dimensional planning and precise surgery on bone structures using individual templates has been developed. For the preoperative customization of these mechanical tool guides, a desktop computer controlled milling device is used as a three-dimensional printer to mold the shape of small reference areas of the bone surface automatically into the body of the template. Thus, the planned position and orientation of the tool guide in spatial relation to bone is stored in a structural way and can be reproduced intraoperatively by adjusting the position of the customized contact faces of the template until the location of exact fit to the bone is found. No additional computerized equipment or time is needed during surgery. The feasibility of this approach has been shown in spine, hip, and knee surgery, and it has been applied clinically for pelvic repositioning osteotomies in acetabular dysplasia therapy.

Acetabulum↗