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Human Dupuytren's Ex Vivo Culture for the Study of Myofibroblasts and Extracellular Matrix Interactions
Published on: April 18, 2015
Antibody-Conjugated, DNA-Based Nanocarriers Intercalated with Doxorubicin Eliminate Myofibroblasts in Explants of
Jacquelyn Gerhart1, Marvin Greenbaum2, Lou Casta2
1Genisphere, LLC, Hatfield, Pennsylvania (J.G., L.C., A.C., R.G.); Lankenau Medical Center, Wynnewood, Pennsylvania (M.G., K.M.); Cooper Medical School of Rowan University, Camden, New Jersey (M.G.-W.) jacquelynge@pcom.edu.
Abstract:
Posterior capsule opacification (PCO) occurs in some adults and most children following cataract surgery. The fibrotic form of PCO arises, in part, from migratory, contractile myofibroblasts that deform the lens capsule and impair vision. In short-term cultures of human anterior lens tissue, myofibroblasts emerge from Myo/Nog cells that are identified with the G8 monoclonal antibody and by their expression of the MyoD transcription factor and bone morphogenetic protein inhibitor noggin. In this study, we tested the hypothesis that targeted depletion of Myo/Nog cells with the G8 monoclonal antibody (mAb) conjugated to three-dimensional DNA nanocarriers intercalated with doxorubicin (G8:3DNA:Dox) would prevent the accumulation of myofibroblasts in long-term, serum- and growth factor-free cultures of human lens tissue obtained by capsulorhexis. The mAb:nanocarrier complex was internalized into acidic compartments of the cell. G8:3DNA:Dox killed nearly all Myo/Nog cells without affecting the lens epithelial cells. In 30-day cultures, all G8-positive cells expressed noggin, and subpopulations had synthesized MyoD, sarcomeric myosin, and alpha smooth muscle actin (α-SMA). Myo/Nog cells responded to scratching of the lens epithelium by accumulating around the edges of the wound. Treatment with two doses of G8:3DNA:Dox completely eliminated G8+/α-SMA+ cells throughout the explant. These experiments demonstrate that Myo/Nog cells are the source of myofibroblasts in long-term cultures of anterior human lens tissue and mAb:3DNA nanocarriers specifically and effectively deliver cytotoxic cargo to a subpopulation of cells without off-target effects. G8:3DNA:Dox has the potential to reduce PCO following cataract surgery.
Insights
Targeted depletion of Myo/Nog cells using G8:3DNA:Dox nanocarriers effectively eliminated myofibroblasts. This approach shows potential for reducing posterior capsule opacification (PCO) after cataract surgery.
Area of Science:
- Ophthalmology
- Cell Biology
- Nanomedicine
Background:
- Posterior capsule opacification (PCO) is a common complication after cataract surgery, leading to vision impairment.
- Fibrotic PCO results from myofibroblast accumulation, originating from specific Myo/Nog cells in the lens.
- Current treatments for PCO lack targeted approaches to prevent myofibroblast formation.
Purpose of the Study:
- To test the hypothesis that targeted depletion of Myo/Nog cells can prevent myofibroblast accumulation.
- To evaluate the efficacy of G8 monoclonal antibody (mAb) conjugated to DNA nanocarriers with doxorubicin (G8:3DNA:Dox) in eliminating Myo/Nog cells.
- To assess the potential of this nanocarrier system for reducing PCO.
Main Methods:
- Utilized long-term, serum- and growth factor-free cultures of human anterior lens tissue.
- Developed a G8 mAb conjugated to 3D DNA nanocarriers loaded with doxorubicin (G8:3DNA:Dox).
- Administered G8:3DNA:Dox treatment to cultures and assessed Myo/Nog cell depletion and myofibroblast markers (e.g., α-SMA).
Main Results:
- G8:3DNA:Dox was internalized into acidic cellular compartments and effectively killed nearly all Myo/Nog cells without harming lens epithelial cells.
- Myo/Nog cells were identified as the source of myofibroblasts, migrating to wound edges in cultured lens tissue.
- Two doses of G8:3DNA:Dox completely eliminated G8-positive myofibroblasts (G8+/α-SMA+) in the explants.
Conclusions:
- Myo/Nog cells are the primary source of myofibroblasts contributing to PCO.
- mAb:3DNA nanocarriers provide specific and effective targeted delivery of cytotoxic cargo.
- G8:3DNA:Dox nanocarriers demonstrate significant potential for preventing PCO post-cataract surgery.
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