Improving Functional Muscle Regeneration in Volumetric Muscle Loss Injuries by Shifting the Balance of Inflammatory and Pro-Resolving Lipid Mediators
Turner, T. C.; Pittman, F. S.; Zhang, H.; Hymel, L. A.; Zheng, T.; Behara, M.; Anderson, S. E.; Andraca Harrer, J.; Link, K. A.; Ahammed, M. A.; Maner-Smith, K.; Liu, X.; Yin, X.; Lim, H. S.; Spite, M.; Qiu, P.; Garcia, A. J.; Mortensen, L. J.; Jang, Y. C.; Willett, N. J.; Botchwey, E. A.
Show abstract
Severe tissue loss resulting from extremity trauma, such as volumetric muscle loss (VML), poses significant clinical challenges for both general and military populations. VML disrupts the endogenous tissue repair mechanisms, resulting in acute and unresolved chronic inflammation and immune cell presence, impaired muscle healing, scar tissue formation, persistent pain, and permanent functional deficits. The aberrant healing response is preceded by acute inflammation and immune cell infiltration which does not resolve. We analyzed the biosynthesis of inflammatory and specialized pro-resolving lipid mediators (SPMs) after VML injury in two different models; muscle with critical-sized defects had a decreased capacity to biosynthesize SPMs, leading to dysregulated and persistent inflammation. We developed a modular poly(ethylene glycol)-maleimide hydrogel platform to locally release a stable isomer of Resolvin D1 (AT-RvD1) and promote endogenous pathways of inflammation resolution in the two muscle models. The local delivery of AT-RvD1 enhanced muscle regeneration, improved muscle function, and reduced pain sensitivity after VML by promoting molecular and cellular resolution of inflammation. These findings provide new insights into the pathogenesis of VML and establish a pro-resolving hydrogel therapeutic as a promising strategy for promoting functional muscle regeneration after traumatic injury.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Polylactide Degradation Activates Immune Cells by Metabolic Reprogramming 96%
- NaBC1 boron transporter enables myoblast response to substrate rigidity via fibronectin-binding integrins 94%
- Mechanical environment afforded by engineered polymer hydrogel critically regulates survival of neural stem cells transplanted in the injured spinal cord via Piezo1-mediated mechanotransduction 94%
Similar papers in this journal
- Effects of injury size on local and systemic immune cell dynamics in volumetric muscle loss 95%
- An immunologically active, adipose-derived extracellular matrix biomaterial for soft tissue reconstruction: concept to clinical trial 95%
- Immunomodulatory Contribution of Mast Cells to the Regenerative Biomaterial Microenvironment 94%
Similar papers in this journal
- Determining sex differences in drug combinations targeting aortic valve myofibroblast activation using an artificial intelligence derived platform 95%
- Microengineered 3D pulmonary interstitial mimetics highlight a critical role for matrix degradation in idiopathic pulmonary fibrosis 95%
- A unique Thy-1-negative immuno-fibroblast population emerges as a key determinant of fibrotic outcomes to biomaterials 94%
Similar papers in this journal
- Foreign body responses in central nervous system mimic natural wound responses and alter biomaterial functions 95%
- 3D bioprinting of high cell-density heterogeneous tissue models through spheroid fusion within self-healing hydrogels 95%
- Transmembrane Stem Cell Factor Protein Therapeutics EnhanceRevascularization in Ischemia without Mast Cell Activation 94%
"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.