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  4. Assessing Osteolytic Lesion Size on Sequential CT Scans Is a Reliable Study Endpoint for Bone Remineralization in Newly Diagnosed Multiple Myeloma
 
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2023
Journal Article
Title

Assessing Osteolytic Lesion Size on Sequential CT Scans Is a Reliable Study Endpoint for Bone Remineralization in Newly Diagnosed Multiple Myeloma

Abstract
Multiple myeloma (MM) frequently induces persisting osteolytic manifestations despite hematologic treatment response. This study aimed to establish a biometrically valid study endpoint for bone remineralization through quantitative and qualitative analyses in sequential CT scans. Twenty patients (seven women, 58 ± 8 years) with newly diagnosed MM received standardized induction therapy comprising the anti-SLAMF7 antibody elotuzumab, carfilzomib, lenalidomide, and dexamethasone (E-KRd). All patients underwent whole-body low-dose CT scans before and after six cycles of E-KRd. Two radiologists independently recorded osteolytic lesion sizes, as well as the presence of cortical destruction, pathologic fractures, rim and trabecular sclerosis. Bland–Altman analyses and Krippendorff’s α were employed to assess inter-reader reliability, which was high for lesion size measurement (standard error 1.2 mm) and all qualitative criteria assessed (α ≥ 0.74). After six cycles of E-KRd induction, osteolytic lesion size decreased by 22% (p < 0.001). While lesion size response did not correlate with the initial lesion size at baseline imaging (Pearson’s r = 0.144), logistic regression analysis revealed that the majority of responding osteolyses exhibited trabecular sclerosis (p < 0.001). The sum of osteolytic lesion sizes on sequential CT scans defines a reliable study endpoint to characterize bone remineralization. Patient level response is strongly associated with the presence of trabecular sclerosis.
Author(s)
Grunz, Jan Peter
Universitätsklinikum Würzburg
Kunz, Andreas Steven
Universitätsklinikum Würzburg
Baumann, Freerk Theeagnus
Uniklinik Köln
Hasenclever, Dirk
Universität Leipzig
Sieren, Malte Maria
Universitätsklinikum Schleswig-Holstein Campus Lübeck
Heldmann, Stefan
Fraunhofer-Institut für Digitale Medizin MEVIS  
Bley, Thorsten Alexander
Universitätsklinikum Würzburg
Einsele, Hermann
Universitätsklinikum Würzburg
Knop, Stefan
Universitätsklinikum Würzburg
Jundt, Franziska
Universitätsklinikum Würzburg
Journal
Cancers
Funder
Deutsche Forschungsgemeinschaft  
Open Access
DOI
10.3390/cancers15154008
Additional link
Full text
Language
English
Fraunhofer-Institut für Digitale Medizin MEVIS  
Keyword(s)
  • bone remineralization

  • computed tomography

  • multiple myeloma

  • whole-body imaging

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