MarShie: a clearing protocol for 3D analysis of single cells throughout the bone marrow at subcellular resolution.
Till Fabian MertensAlina Tabea LiebheitJohanna EhlRalf KöhlerAsylkhan RakhymzhanAndrew WoehlerLukas KatthänGernot EbelWjatscheslaw LiublinAna KasapiAntigoni TriantafyllopoulouTim Julius SchulzRaluca Aura NiesnerAnja Erika HauserPublished in: Nature communications (2024)
Analyzing immune cell interactions in the bone marrow is vital for understanding hematopoiesis and bone homeostasis. Three-dimensional analysis of the complete, intact bone marrow within the cortex of whole long bones remains a challenge, especially at subcellular resolution. We present a method that stabilizes the marrow and provides subcellular resolution of fluorescent signals throughout the murine femur, enabling identification and spatial characterization of hematopoietic and stromal cell subsets. By combining a pre-processing algorithm for stripe artifact removal with a machine-learning approach, we demonstrate reliable cell segmentation down to the deepest bone marrow regions. This reveals age-related changes in the marrow. It highlights the interaction between CX 3 CR1 + cells and the vascular system in homeostasis, in contrast to other myeloid cell types, and reveals their spatial characteristics after injury. The broad applicability of this method will contribute to a better understanding of bone marrow biology.
Keyphrases
- bone marrow
- mesenchymal stem cells
- machine learning
- induced apoptosis
- single cell
- cell therapy
- deep learning
- cell cycle arrest
- magnetic resonance
- endoplasmic reticulum stress
- signaling pathway
- computed tomography
- quantum dots
- magnetic resonance imaging
- artificial intelligence
- convolutional neural network
- peripheral blood
- acute myeloid leukemia
- soft tissue
- living cells