Biblio

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2023
Kawai S, Sunaga J, Nagata S, Nishio M, Fukuda M, Kamakura T, Sun L, Jin Y, Sakamoto S, Watanabe A, et al. 3D osteogenic differentiation of human iPSCs reveals the role of TGFβ signal in the transition from progenitors to osteoblasts and osteoblasts to osteocytes. Sci Rep. 2023;13(1):1094.
Salehi S, Tavakoli M, Mirhaj M, Varshosaz J, Labbaf S, Karbasi S, Jafarpour F, Kazemi N, Salehi S, Mehrjoo M, et al. A 3D printed polylactic acid-Baghdadite nanocomposite scaffold coated with microporous chitosan-VEGF for bone regeneration applications. Carbohydr Polym. 2023;312:120787.
Lu T-Y, Xiang Y, Tang M, Chen S. 3D Printing Approaches to Engineer Cardiac Tissue. Curr Cardiol Rep. 2023.
Li Q, Yu H, Zhao F, Cao C, Wu T, Fan Y, Ao Y, Hu X. 3D Printing of Microenvironment-Specific Bioinspired and Exosome-Reinforced Hydrogel Scaffolds for Efficient Cartilage and Subchondral Bone Regeneration. Adv Sci (Weinh). 2023:e2303650.
Li R, Yuan X, Zhang L, Jiang X, Li L, Zhang Y, Guo L, Dai X, Cheng H, Jiang X, et al. 3D printing of microneedle arrays for hair regeneration in a controllable region. Mol Biomed. 2023;4(1):1.
Cui H, Yu Z-X, Huang Y, Hann SYun, Esworthy T, Shen Y-L, Zhang LGrace. 3D printing of thick myocardial tissue constructs with anisotropic myofibers and perfusable vascular channels. Biomater Adv. 2023;153:213579.
Bräunig S, Karmhag I, Li H, Enoksson J, Hultquist A, Scheding S. 3D Spatial Mapping of the Human Hematopoietic Microenvironment in Healthy and Diseased Bone Marrow. Cytometry A. 2023.
Ding Z, Li R, Duan Y, Li Z, Fang B, Jing D. A 3-D Visualization Technique for Bone Remodeling in a Suture Expansion Mouse Model. J Vis Exp. 2023;(198).
Wolfe JT, He W, Kim M-S, Liang H-L, Shradhanjali A, Jurkiewicz H, Freudinger BP, Greene AS, LaDisa JF, Tayebi L, et al. 3D-bioprinting of patient-derived cardiac tissue models for studying congenital heart disease. Front Cardiovasc Med. 2023;10:1162731.
Lee SS, Kleger N, Kuhn GA, Greutert H, Du X, Smit T, Studart AR, Ferguson SJ. A 3D-Printed Assemblable Bespoke Scaffold as Versatile Microcryogel Carrier for Site-Specific Regenerative Medicine. Adv Mater. 2023:e2302008.
Ran Z, Wang Y, Li J, Xu W, Tan J, Cao B, Luo D, Ding Y, Wu J, Wang L, et al. 3D-printed biodegradable magnesium alloy scaffolds with zoledronic acid-loaded ceramic composite coating promote osteoporotic bone defect repair. Int J Bioprint. 2023;9(5):769.
Real JPablo, Real DAndrés, Lopez-Vidal L, Barrientos BAndrés, Bolaños K, Tinti MGuillermo, Litterio NJavier, Kogan MJavier, Palma SDaniel. 3D-Printed Gastroretentive Tablets Loaded with Niclosamide Nanocrystals by the Melting Solidification Printing Process (MESO-PP). Pharmaceutics. 2023;15(5).
Gao J, Li M, Cheng J, Liu X, Liu Z, Liu JH, Tang PF. 3D-Printed GelMA/PEGDA/F127DA Scaffolds for Bone Regeneration. J Funct Biomater. 2023;14(2).
Li C, Wang J, Yang W, Yu K, Hong J, Ji X, Yao M, Li S, Lu J, Chen Y, et al. 3D-printed hydrogel particles containing PRP laden with TDSCs promote tendon repair in a rat model of tendinopathy. J Nanobiotechnology. 2023;21(1):177.
Konold PE, You T, Bielecki J, Valerio J, Kloos M, Westphal D, Bellisario A, Yenupuri TVarma, Wollter A, Koliyadu JCP, et al. 3D-printed sheet jet for stable megahertz liquid sample delivery at X-ray free-electron lasers. IUCrJ. 2023.
Meraz IM, Majidi M, Fang B, Meng F, Gao L, Shao RP, Song R, Li F, Lissanu Y, Chen H, et al. 3-Phosphoinositide-dependent kinase 1 drives acquired resistance to osimertinib. Commun Biol. 2023;6(1):509.
Shou J, Li S, Shi W, Zhang S, Zeng Z, Guo Z, Ye Z, Wen Z, Qiu H, Wang J, et al. 3WJ RNA Nanoparticles-Aptamer Functionalized Exosomes From M2 Macrophages Target BMSCs to Promote the Healing of Bone Fractures. Stem Cells Transl Med. 2023.
Liu C, Lou Y, Sun Z, Ma H, Sun M, Li S, You D, Wu J, Ying B, Ding W, et al. 4D Printing of Personalized-Tunable Biomimetic Periosteum with Anisotropic Microstructure for Accelerated Vascularization and Bone Healing. Adv Healthc Mater. 2023:e2202868.
Fukumura M, Nonoguchi N, Kawabata S, Hiramatsu R, Futamura G, Takeuchi K, Kanemitsu T, Takata T, Tanaka H, Suzuki M, et al. 5-Aminolevulinic acid increases boronophenylalanine uptake into glioma stem cells and may sensitize malignant glioma to boron neutron capture therapy. Sci Rep. 2023;13(1):10173.
Ahmadi BMirza, Noori A, Ashtiani MKazemi, Rajabi S, Talkhabi M. 5-Azacytidine incorporated skeletal muscle-derived hydrogel promotes rat skeletal muscle regeneration. Cells Dev. 2023:203826.
Tang D, Hu Y, Gao W. 5-lipoxygenase as a target to sensitize glioblastoma to temozolomide treatment via β-catenin-dependent pathway. Neurol Res. 2023:1-9.
Etikasari R, Andayani TMurti, Endarti D, Taroeno-Hariadi KWidayati. The 5-Year Disease-Free Survival of Third Generation Aromatase Inhibitor for Postmenopausal Women with HR-Positive HER2-Negative Non-Metastatic Breast Cancer. Int J Hematol Oncol Stem Cell Res. 2023;17(1):48-55.
Su Y, Choi HSun, Choi JHyun, Kim H-S, Jang Y-S, Seo J-W. 7,15-Dihydroxy-16,17-epoxy-docosapentaenoic Acid Overcomes Chemoresistance of 5-Fluorouracil by Suppressing the Infiltration of Tumor-Associated Macrophages and Inhibiting the Activation of Cancer Stem Cells in a Colorectal Cancer Xenograft Model. Mar Drugs. 2023;21(2).
Ju WSeok, Seo SYoung, Mun S-E, Kim K, Yu JOk, Ryu J-S, Kim J-S, Choo Y-K. 7,8-Dihydroxyflavone induces mitochondrial apoptosis and down-regulates the expression of ganglioside GD3 in malignant melanoma cells. Discov Oncol. 2023;14(1):36.
Dhakal SHamal, Kavita K, Panchapakesan SSS, Roth A, Breaker RR. 8-oxoguanine riboswitches in bacteria detect and respond to oxidative DNA damage. Proc Natl Acad Sci U S A. 2023;120(40):e2307854120.

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