1.External Validation of the ELAPSS Score for Prediction of Unruptured Intracranial Aneurysm Growth Risk
Mayte Sánchez VAN KAMMEN ; Jacoba P GREVING ; Satoshi KURODA ; Daina KASHIWAZAKI ; Akio MORITA ; Yoshiaki SHIOKAWA ; Toshikazu KIMURA ; Christophe COGNARD ; Anne C JANUEL ; Antti LINDGREN ; Timo KOIVISTO ; Juha E JÄÄSKELÄINEN ; Antti RONKAINEN ; Liisa PYYSALO ; Juha ÖHMAN ; Melissa RAHI ; Johanna KUHMONEN ; Jaakko RINNE ; Eva L LEEMANS ; Charles B MAJOIE ; W Peter VANDERTOP ; Dagmar VERBAAN ; Yvo B W E M ROOS ; René VAN DEN BERG ; Hieronymus D BOOGAARTS ; Walid MOUDROUS ; Ido R VAN DEN WIJNGAARD ; Laura ten HOVE ; Mario TEO ; Edward J ST GEORGE ; Katharina A M HACKENBERG ; Amr ABDULAZIM ; Nima ETMINAN ; Gabriël J E RINKEL ; Mervyn D I VERGOUWEN
Journal of Stroke 2019;21(3):340-346
BACKGROUND AND PURPOSE: Prediction of intracranial aneurysm growth risk can assist physicians in planning of follow-up imaging of conservatively managed unruptured intracranial aneurysms. We therefore aimed to externally validate the ELAPSS (Earlier subarachnoid hemorrhage, aneurysm Location, Age, Population, aneurysm Size and Shape) score for prediction of the risk of unruptured intracranial aneurysm growth. METHODS: From 11 international cohorts of patients ≥18 years with ≥1 unruptured intracranial aneurysm and ≥6 months of radiological follow-up, we collected data on the predictors of the ELAPSS score, and calculated 3- and 5-year absolute growth risks according to the score. Model performance was assessed in terms of calibration (predicted versus observed risk) and discrimination (c-statistic). RESULTS: We included 1,072 patients with a total of 1,452 aneurysms. During 4,268 aneurysm-years of follow-up, 199 (14%) aneurysms enlarged. Calibration was comparable to that of the development cohort with the overall observed risks within the range of the expected risks. The c-statistic was 0.69 (95% confidence interval [CI], 0.64 to 0.73) at 3 years, compared to 0.72 (95% CI, 0.68 to 0.76) in the development cohort. At 5 years, the c-statistic was 0.68 (95% CI, 0.64 to 0.72), compared to 0.72 (95% CI, 0.68 to 0.75) in the development cohort. CONCLUSIONS: The ELAPSS score showed accurate calibration for 3- and 5-year risks of aneurysm growth and modest discrimination in our external validation cohort. This indicates that the score is externally valid and could assist patients and physicians in predicting growth of unruptured intracranial aneurysms and plan follow-up imaging accordingly.
Aneurysm
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Calibration
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Cohort Studies
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Discrimination (Psychology)
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Follow-Up Studies
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Humans
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Intracranial Aneurysm
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Risk Factors
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Subarachnoid Hemorrhage
2.Expression of adhesion molecules on CD34+ cells from steady-state bone marrow before and after mobilization and their association with the yield of CD34+ cells.
Karin Zattar CECYN ; Eliza Y S KIMURA ; Dulce Marta S M LIMA ; Miyoko YAMAMOTO ; José Orlando BORDIN ; José Salvador R DE OLIVEIRA
Blood Research 2018;53(1):61-70
BACKGROUND: Cell adhesion molecules (CAMs) expressed on hematopoietic progenitor cells (HPCs), endothelial cells, and stromal cells play a pivotal role in the mobilization of CD34+ cells. Herein, we conducted a non-randomized peripheral blood stem cell (PBSC) mobilization study aimed to compare the potential differences in the expressions of several CAMs and chemokines on CD34+ cells obtained from bone marrow aspirate before and after HPC mobilization from patients with hematologic malignancies and healthy donors. METHODS: Three-color cytofluorometric analysis was used to compare the expressions of CAMs and chemokines in the bone marrow before and after mobilization. RESULTS: For all studied groups, CAM expression among those with good and poor yields of CD34+ cells was significantly correlated with VCAM-1 (P=0.007), CD44 (P=0.027), and VLA-4 (P=0.014) expressions. VCAM-1 (P=0.001), FLT-3 (P=0.001), CD44 (P=0.011), VLA-4 (P=0.001), and LFA-1 (P=0.001) expressions were higher before HPC mobilization than after HPC mobilization. By contrast, the expression of CXCR4 significantly varied before and after mobilization only among those with successful PBSC mobilization (P=0.002). CONCLUSION: We attempted to identify particular aspects of CAMs involved in CD34+ cell mobilization, which is a highly complex mechanism that involves adhesion molecules and matrix metalloproteases. The mechanism by which CD34+ cell mobilization is activated through proteolytic enzymes is not fully understood. We believe that CXCR4, VLA-4, CD44, and VCAM-1 are the most important molecules implicated in HPC mobilization, particularly because they show a correlation with the yield of CD34+ cells collected via large volume leukapheresis.
Bone Marrow*
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Cell Adhesion Molecules
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Chemokines
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Endothelial Cells
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Hematologic Neoplasms
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Hematopoietic Stem Cells
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Humans
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Integrin alpha4beta1
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Leukapheresis
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Lymphocyte Function-Associated Antigen-1
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Lymphoma, Non-Hodgkin
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Metalloproteases
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Multiple Myeloma
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Peptide Hydrolases
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Stem Cells
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Stromal Cells
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Tissue Donors
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Vascular Cell Adhesion Molecule-1
3.Glycosylation engineering of therapeutic IgG antibodies: challenges for the safety, functionality and efficacy.
Yusuke MIMURA ; Toshihiko KATOH ; Radka SALDOVA ; Roisin O'FLAHERTY ; Tomonori IZUMI ; Yuka MIMURA-KIMURA ; Toshiaki UTSUNOMIYA ; Yoichi MIZUKAMI ; Kenji YAMAMOTO ; Tsuneo MATSUMOTO ; Pauline M RUDD
Protein & Cell 2018;9(1):47-62
Glycosylation of the Fc region of IgG has a profound impact on the safety and clinical efficacy of therapeutic antibodies. While the biantennary complex-type oligosaccharide attached to Asn297 of the Fc is essential for antibody effector functions, fucose and outer-arm sugars attached to the core heptasaccharide that generate structural heterogeneity (glycoforms) exhibit unique biological activities. Hence, efficient and quantitative glycan analysis techniques have been increasingly important for the development and quality control of therapeutic antibodies, and glycan profiles of the Fc are recognized as critical quality attributes. In the past decade our understanding of the influence of glycosylation on the structure/function of IgG-Fc has grown rapidly through X-ray crystallographic and nuclear magnetic resonance studies, which provides possibilities for the design of novel antibody therapeutics. Furthermore, the chemoenzymatic glycoengineering approach using endoglycosidase-based glycosynthases may facilitate the development of homogeneous IgG glycoforms with desirable functionality as next-generation therapeutic antibodies. Thus, the Fc glycans are fertile ground for the improvement of the safety, functionality, and efficacy of therapeutic IgG antibodies in the era of precision medicine.
Animals
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Antibodies, Monoclonal
;
adverse effects
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pharmacokinetics
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therapeutic use
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Glycosylation
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Humans
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Immunoglobulin G
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chemistry
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metabolism
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Protein Engineering
;
methods
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Receptors, Fc
;
chemistry
;
metabolism
;
Treatment Outcome


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