Biblio

2022
Antanaviciute A, Kusumbe A, Simmons A. Lymphatic endothelia stakeout cryptic stem cells. Cell Stem Cell. 2022;29(9):1292-1293.
Sung CJ, Gupta K, Wang J, Wong AK. Lymphatic Tissue Bioengineering for the Treatment of Postsurgical Lymphedema. Bioengineering (Basel). 2022;9(4).
Niec RE, Chu T, Schernthanner M, Gur-Cohen S, Hidalgo L, Pasolli HAmalia, Luckett KA, Wang Z, Bhalla SR, Cambuli F, et al. Lymphatics act as a signaling hub to regulate intestinal stem cell activity. Cell Stem Cell. 2022.
Goto N, Goto S, Imada S, Hosseini S, Deshpande V, Yilmaz ÖH. Lymphatics and fibroblasts support intestinal stem cells in homeostasis and injury. Cell Stem Cell. 2022;29(8):1246-1261.e6.
Shah A, Storek J, Woolson R, Pinckney A, Keyes-Elstein L, Wallace PK, Sempowski GD, McSweeney P, Mayes MD, Crofford L, et al. Lymphocyte subset abnormalities in early severe scleroderma favor a Th2 phenotype and are not altered by prior immunosuppressive therapy. Rheumatology (Oxford). 2022.
Hou C, Ye Z, Yang S, Jiang Z, Wang J, Wang E. Lysine demethylase 1B (Kdm1b) enhances somatic reprogramming through inducing pluripotent gene expression and promoting cell proliferation. Exp Cell Res. 2022:113339.
Wang D, Kuang Y, Zhang G, Xiao K, Liu Y. Lysine-Specific Demethylase 1 in Energy Metabolism: A Novel Target for Obesity. J Nutr. 2022.
Jiang B, Zhao X, Chen W, Diao W, Ding M, Qin H, Li B, Cao W, Chen W, Fu Y, et al. Lysosomal protein transmembrane 5 promotes lung-specific metastasis by regulating BMPR1A lysosomal degradation. Nat Commun. 2022;13(1):4141.
Duan X, Yang L, Wang L, Liu Q, Zhang K, Liu S, Liu C, Gao Q, Li L, Qin G, et al. m6A demethylase FTO promotes tumor progression via regulation of lipid metabolism in esophageal cancer. Cell Biosci. 2022;12(1):60.
Weng H, Huang F, Yu Z, Chen Z, Prince E, Kang Y, Zhou K, Li W, Hu J, Fu C, et al. The mA reader IGF2BP2 regulates glutamine metabolism and represents a therapeutic target in acute myeloid leukemia. Cancer Cell. 2022.
Sommerkamp P, Brown JA, Haltalli MLR, Mercier FE, Vu LP, Kranc KR. mA RNA modifications: key regulators of normal and malignant hematopoiesis. Exp Hematol. 2022.
Shin T-H, Zhou Y, Chen S, Cordes S, Grice MZ, Fan X, Lee B-C, AlJanahi AA, Hong SGun, Vaughan KL, et al. Macaque Clonal Hematopoiesis Model Demonstrates Expansion of TET2-Disrupted Clones and Utility for Testing Interventions. Blood. 2022.
Deng R-X, Zhu X-L, Zhang A-B, He Y, Fu H-X, Wang F-R, Mo X-D, Wang Y, Zhao X-Y, Zhang Y-Y, et al. Machine learning algorithm as a prognostic tool for venous thromboembolism in allogeneic transplant patients. Transplant Cell Ther. 2022.
Ward EN, Hecker L, Christensen CN, Lamb JR, Lu M, Mascheroni L, Chung CWei, Wang A, Rowlands CJ, Schierle GSKaminski, et al. Machine learning assisted interferometric structured illumination microscopy for dynamic biological imaging. Nat Commun. 2022;13(1):7836.
Islam N, Reuben JS, Dale J, Gutman J, McMahon CM, Amaya M, Goodman B, Toninato J, Gasparetto M, Stevens B, et al. Machine Learning-Based Exploratory Clinical Decision Support for Newly Diagnosed Patients With Acute Myeloid Leukemia Treated With 7 + 3 Type Chemotherapy or Venetoclax/Azacitidine. JCO Clin Cancer Inform. 2022;6:e2200030.
Kong J, Zhou X, Lu J, Han Q, Ouyang X, Chen D, Liu A. Maclurin Promotes the Chondrogenic Differentiation of Bone Marrow Mesenchymal Stem Cells by Regulating miR-203a-3p/Smad1. Cell Reprogram. 2022;24(1):9-20.
Murley A, Dillin A. Macroautophagy in quiescent and senescent cells: a pathway to longevity?. Trends Cell Biol. 2022.
Cherico ASamuel, Rizvi A, Jayakrishnan T, Mewawalla P. Macroglossia as the initial presentation of AL amyloidosis: review and updates in treatment. BMJ Case Rep. 2022;15(7).
Sun D, Singh DK, Carcamo S, Filipescu D, Khalil B, Huang X, Miles BA, Westra W, Sproll KChristoph, Hasson D, et al. MacroH2A impedes metastatic growth by enforcing a discrete dormancy program in disseminated cancer cells. Sci Adv. 2022;8(48):eabo0876.
Guan S, Wu S, Li G, Xiao J, Gao B. Macromolecular crowding facilitates rapid fabrication of intact, robust cell sheets. Biotechnol Lett. 2022.
De Pieri A, Korntner SH, Capella-Monsonis H, Tsiapalis D, Kostjuk SV, Churbanov S, Timashev P, Gorelov A, Rochev Y, Zeugolis DI. Macromolecular crowding transforms regenerative medicine by enabling the accelerated development of functional and truly three-dimensional cell assembled micro tissues. Biomaterials. 2022;287:121674.
Kundu P, Shankar BS. Macrophage induced ERK-TGF-β1 signaling in MCF7 breast cancer cells result in reversible cancer stem cell plasticity and epithelial mesenchymal transition. Biochim Biophys Acta Gen Subj. 2022:130215.
Daniel B, Belk JA, Meier SL, Chen AY, Sandor K, Czimmerer Z, Varga Z, Bene K, Buquicchio FA, Qi Y, et al. Macrophage inflammatory and regenerative response periodicity is programmed by cell cycle and chromatin state. Mol Cell. 2022.
Zhu Y, Zhang X, Yang K, Shao Y, Gu R, Liu X, Liu H, Liu Y, Zhou Y. Macrophage-derived apoptotic vesicles regulate fate commitment of mesenchymal stem cells via miR155. Stem Cell Res Ther. 2022;13(1):323.
Zhao Q, Liu X, Yu C, Xiao Y. Macrophages and Bone Marrow-Derived Mesenchymal Stem Cells Work in Concert to Promote Fracture Healing: A Brief Review. DNA Cell Biol. 2022.

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