Engineering a 3D hydrogel system to study optic nerve head astrocyte morphology and behavior in response to glaucomatous insult
Strat, A. N.; Kirschner, A.; Yoo, H.; Singh, A.; Bague, T.; Li, H. N.; Herberg, S.; Ganapathy, P. S.
Show abstract
In glaucoma, astrocytes within the optic nerve head (ONH) rearrange their actin cytoskeleton, while becoming reactive and upregulating intermediate filament glial fibrillary acidic protein (GFAP). Increased transforming growth factor beta 2 (TGF{beta}2) levels have been implicated in glaucomatous ONH dysfunction. A key limitation of using conventional 2D culture to study ONH astrocyte behavior is the inability to faithfully replicate the in vivo ONH microenvironment. Here, we engineer a 3D ONH astrocyte hydrogel to better mimic in vivo mouse ONH astrocyte (MONHA) morphology, and test induction of MONHA reactivity using TGF{beta}2. Primary MONHAs were isolated from C57BL/6J mice and cell purity confirmed. To engineer 3D cell-laden hydrogels, MONHAs were mixed with photoactive extracellular matrix components (collagen type I, hyaluronic acid) and crosslinked for 5 minutes using a photoinitiator (0.025% riboflavin) and UV light (405-500 nm, 10.3 mW/cm2). MONHA-encapsulated hydrogels were cultured for 3 weeks, and then treated with TGF{beta}2 (2.5, 5.0 or 10 ng/ml) for 7 days to assess for reactivity. Following encapsulation, MONHA retained high cell viability in hydrogels and continued to proliferate over 4 weeks as determined by live/dead staining and MTS assays. Sholl analysis demonstrated that MONHAs within hydrogels developed increasing process complexity with longer process length over time. Cell processes connected with neighboring cells, coinciding with Connexin43 expression within astrocytic processes. Treatment with TGF{beta}2 induced reactivity in MONHA-encapsulated hydrogels as determined by altered F-actin cytoskeletal morphology, increased GFAP expression, and elevated fibronectin and collagen IV deposition. Our data sets the stage for future use of this 3D biomimetic ONHA-encapsulated hydrogel to investigate ONHA behavior in response to glaucomatous insult.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Biomimetic hydrogel platform reveals active force transduction from retinal pigment epithelium to photoreceptors 96%
- Three dimensional fibrotic extracellular matrix directs microenvironment fiber remodeling by fibroblasts 95%
- Biomaterial-based 3D human lung models replicate pathological characteristics of early pulmonary fibrosis 94%
Similar papers in this journal
- Mechanosensitive channel inhibition attenuates TGFβ2-induced actin cytoskeletal remodeling and reactivity in mouse optic nerve head astrocytes. 90%
- Extracellular Matrix Dysfunction in Sorsby Patient-Derived Retinal Pigment Epithelium 89%
- Spatiotemporal Determination of Metabolite Activities in Multiple Corneal Epithelium Barriers on a Chip 87%
Similar papers in this journal
- Regulation of extracellular matrix assembly and structure by hybrid M1/M2 macrophages 94%
- A fully defined pluripotent stem cell derived multi-liver-cell model for steatohepatitis and fibrosis 94%
- Macrophage microRNA-146a is a central regulator of the foreign body response to biomaterial implants 94%
Similar papers in this journal
- Granular hydrogels improve myogenic invasion and repair after volumetric muscle loss 95%
- Viscoelastic HyA Hydrogel Promotes Recovery of Muscle Quality and Vascularization in a Murine Model of Delayed Rotator Cuff Repair 94%
- Dopaminergic axon tracts within a hyaluronic acid hydrogel encasement for implantation to restore the nigrostriatal pathway 94%
Similar papers in this journal
- Biofabrication Of An Ovine Intervertebral Disc Model By Combining A Polycaprolactone Frame With A Bioprinted Alginate Hydrogel 94%
- Filamented Light (FLight) Biofabrication of Mini-Tendon Models Show Tunable Matrix Confinement and Nuclear Morphology 94%
- 3D-bioprinted, phototunable hydrogel models for studying adventitial fibroblast activation in pulmonary arterial hypertension 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.