Cornell University
Library
Cornell UniversityLibrary

eCommons

Help
Log In(current)
  1. Home
  2. Weill Cornell Medicine
  3. Medical College Research and Papers
  4. Department of Pathology and Laboratory Medicine
  5. Spatial remodeling of bone marrow architecture defines tissue-state signatures of disease activity and therapeutic response in myelodysplastic neoplasms

Spatial remodeling of bone marrow architecture defines tissue-state signatures of disease activity and therapeutic response in myelodysplastic neoplasms

Access Restricted

Access to this document is restricted. Some items have been embargoed at the request of the author, but will be made publicly available after the "No Access Until" date.

During the embargo period, you may request access to the item by clicking the link to the restricted file(s) and completing the request form. If we have contact information for a Cornell author, we will contact the author and request permission to provide access. If we do not have contact information for a Cornell author, or the author denies or does not respond to our inquiry, we will not be able to provide access. For more information, review our policies for restricted content.

File(s)
42380663.pdf (49.45 MB)
No Access Until
2026-12-30
Permanent Link(s)
https://hdl.handle.net/1813/126893
Collections
Department of Pathology and Laboratory Medicine
Author
Nachman, Ryan
Kopacz, Aleksandra
Unkenholz, Caitlin
Chai, Jian
Ruiz, Arvin
Valencia, Itzel
Jiang, Jeanne
Socciarelli, Fabio
Park, Jiwoon
Mason, Christopher E.
Zhang, Ling
Sallman, David
Roboz, Gail J.
Desai, Pinkal
Kaner, Justin
Fein, Joshua
Guzman, Monica
Lindeman, Neal
Chadburn, Amy
Ouseph, Madhu
Simonson, Paul
Geyer, Julia
Inghirami, Giorgio
Rafii, Shahin
Redmond, David
Patel, Sanjay S.
Abstract

Myelodysplastic neoplasms (MDS) disrupt bone marrow hematopoiesis, yet clinical assessment relies largely on blast enumeration and qualitative morphology, which incompletely capture marrow architecture and disease state. We applied whole-slide multiplex immunofluorescence imaging with single-cell phenotyping to map bone marrow microarchitecture in MDS. Diagnostic biopsies (n = 36), longitudinal treatment samples (n = 29), precursor states (n = 13), and normal controls (n = 21) were analyzed, comprising >5 million spatially resolved cells. MDS marrow exhibited coordinated, genotype-imprinted architectural remodeling, including altered progenitor composition and spatial patterning, disrupted erythroid island organization, and displacement of hematopoietic stem and progenitor cells from perivascular niches. Interrogation of 82 cellular and spatial features yielded a composite Microarchitectural Perturbation Score (MDS-MAPS), derived from diagnostic samples and fixed prior to longitudinal analyses. In leave-one-patient-out cross-validation, MDS-MAPS discriminated remission from active disease more accurately than blast percentage (AUC 0.883 vs 0.660) and distinguished low-blast MDS from clonal cytopenia of undetermined significance (CCUS) (AUC 0.815). Mixed-effects modeling showed MAPS decreased in remission statistically independent of blast burden, with architectural normalization during remission and re-emergence at relapse. These findings define quantitative bone marrow architecture as a dynamic tissue-state biomarker that complements molecular and blast-based assessment in MDS.

Journal / Series
Leukemia
Volume & Issue
40(8)
Date Issued
2026-06-30
Publisher
Springer
Keywords
WCM Library Coordinated Deposit
•
Humans
•
Myelodysplastic Syndromes/pathology/therapy
•
Bone Marrow/pathology
•
Female
•
Male
•
Aged
•
Prognosis
•
Middle Aged
•
Aged, 80 and over
•
Cytopenia
•
Hematopoietic Stem Cells/pathology
Related DOI
https://doi.org/10.1038/s41375-026-03029-7
Previously Published as
Nachman R, Kopacz A, Unkenholz C, Chai J, Ruiz A, Valencia I, Jiang J, Socciarelli F, Park J, Mason CE, Zhang L, Sallman D, Roboz GJ, Desai P, Kaner J, Fein J, Guzman M, Lindeman N, Chadburn A, Ouseph M, Simonson P, Geyer J, Inghirami G, Rafii S, Redmond D, Patel SS. Spatial remodeling of bone marrow architecture defines tissue-state signatures of disease activity and therapeutic response in myelodysplastic neoplasms. Leukemia. 2026;40(8):1748-1762. doi: 10.1038/s41375-026-03029-7. PMID: 42380663.
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International
Rights URI
https://creativecommons.org/licenses/by-nc-nd/4.0/
Type
article

Site Statistics | Help

About eCommons | Policies | Terms of use | Contact Us

copyright © 2002-2026 Cornell University Library | Privacy | Web Accessibility Assistance