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.

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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