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1.
Nat Commun ; 14(1): 753, 2023 02 10.
Article in English | MEDLINE | ID: mdl-36765065

ABSTRACT

Mesenchymal stromal cells (MSCs) are multipotent progenitor cells that are of considerable clinical potential in transplantation and anti-inflammatory therapies due to their capacity for tissue repair and immunomodulation. However, MSCs rapidly differentiate once in culture, making their large-scale expansion for use in immunomodulatory therapies challenging. Although the differentiation mechanisms of MSCs have been extensively investigated using materials, little is known about how materials can influence paracrine activities of MSCs. Here, we show that nanotopography can control the immunomodulatory capacity of MSCs through decreased intracellular tension and increasing oxidative glycolysis. We use nanotopography to identify bioactive metabolites that modulate intracellular tension, growth and immunomodulatory phenotype of MSCs in standard culture and during larger scale cell manufacture. Our findings demonstrate an effective route to support large-scale expansion of functional MSCs for therapeutic purposes.


Subject(s)
Mesenchymal Stem Cells , Mesenchymal Stem Cells/metabolism , Multipotent Stem Cells/metabolism , Cell Differentiation , Immunomodulation , Phenotype
2.
Sci Adv ; 7(9)2021 02.
Article in English | MEDLINE | ID: mdl-33637520

ABSTRACT

Bioactive metabolites have wide-ranging biological activities and are a potential source of future research and therapeutic tools. Here, we use nanovibrational stimulation to induce osteogenic differentiation of mesenchymal stem cells, in the absence of off-target, nonosteogenic differentiation. We show that this differentiation method, which does not rely on the addition of exogenous growth factors to culture media, provides an artifact-free approach to identifying bioactive metabolites that specifically and potently induce osteogenesis. We first identify a highly specific metabolite, cholesterol sulfate, an endogenous steroid. Next, a screen of other small molecules with a similar steroid scaffold identified fludrocortisone acetate with both specific and highly potent osteogenic-inducing activity. Further, we implicate cytoskeletal contractility as a measure of osteogenic potency and cell stiffness as a measure of specificity. These findings demonstrate that physical principles can be used to identify bioactive metabolites and then enable optimization of metabolite potency can be optimized by examining structure-function relationships.


Subject(s)
Mesenchymal Stem Cells , Osteogenesis , Cell Differentiation , Mesenchymal Stem Cells/metabolism
3.
Methods Mol Biol ; 2206: 47-56, 2021.
Article in English | MEDLINE | ID: mdl-32754810

ABSTRACT

The development and maintenance of a functioning vascular system is a critical function for many aspects of tissue growth and regeneration. Vascular endothelial cell in vitro co-culture spheroids are self-organized cell composites that have the capacity to recapitulate the three-dimensional tissue microenvironment. These spheroid testing platforms aim to better understand the mechanisms of functional tissue and how new therapeutic agents can drive these 3D co-culture processes. Here we describe direct cell-cell 3D endothelial co-culture spheroid methods, to examine the physiological spatial growth and cell-cell interaction of vascular cells and surrounding native tissue cells in the formation of vascular networks within spheroids and the potential to regenerate tissue.


Subject(s)
Coculture Techniques/methods , Human Umbilical Vein Endothelial Cells/cytology , Spheroids, Cellular/cytology , Cell Communication/physiology , Cells, Cultured , Humans , Tissue Engineering/methods
4.
PLoS One ; 10(12): e0145080, 2015.
Article in English | MEDLINE | ID: mdl-26675008

ABSTRACT

The current study has investigated the use of decellularised, demineralised bone extracellular matrix (ECM) hydrogel constructs for in vivo tissue mineralisation and bone formation. Stro-1-enriched human bone marrow stromal cells were incorporated together with select growth factors including VEGF, TGF-ß3, BMP-2, PTHrP and VitD3, to augment bone formation, and mixed with alginate for structural support. Growth factors were delivered through fast (non-osteogenic factors) and slow (osteogenic factors) release PLGA microparticles. Constructs of 5 mm length were implanted in vivo for 28 days within mice. Dense tissue assessed by micro-CT correlated with histologically assessed mineralised bone formation in all constructs. Exogenous growth factor addition did not enhance bone formation further compared to alginate/bone ECM (ALG/ECM) hydrogels alone. UV irradiation reduced bone formation through degradation of intrinsic growth factors within the bone ECM component and possibly also ECM cross-linking. BMP-2 and VitD3 rescued osteogenic induction. ALG/ECM hydrogels appeared highly osteoinductive and delivery of angiogenic or chondrogenic growth factors led to altered bone formation. All constructs demonstrated extensive host tissue invasion and vascularisation aiding integration and implant longevity. The proposed hydrogel system functioned without the need for growth factor incorporation or an exogenous inducible cell source. Optimal growth factor concentrations and spatiotemporal release profiles require further assessment, as the bone ECM component may suffer batch variability between donor materials. In summary, ALG/ECM hydrogels provide a versatile biomaterial scaffold for utilisation within regenerative medicine which may be tailored, ultimately, to form the tissue of choice through incorporation of select growth factors.


Subject(s)
Bone Regeneration , Extracellular Matrix , Hydrogels/chemistry , Intercellular Signaling Peptides and Proteins/pharmacology , Osteoblasts/cytology , Alginates/adverse effects , Alginates/chemistry , Animals , Chondrogenesis , Glucuronic Acid/adverse effects , Glucuronic Acid/chemistry , Hexuronic Acids/adverse effects , Hexuronic Acids/chemistry , Humans , Hydrogels/adverse effects , Lactic Acid/adverse effects , Lactic Acid/chemistry , Mice , Middle Aged , Osteoblasts/drug effects , Osteoblasts/metabolism , Osteoblasts/transplantation , Osteogenesis , Polyglycolic Acid/adverse effects , Polyglycolic Acid/chemistry , Polylactic Acid-Polyglycolic Acid Copolymer , Tissue Scaffolds/adverse effects , Tissue Scaffolds/chemistry
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