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In Vitro Selection of Engineered Transcriptional Repressors for Targeted Epigenetic Silencing
Published on: May 5, 2023
Targeted therapy for the post-operative conjunctiva: SPARC silencing reduces collagen deposition
Li Fong Seet1,2,3, Yang Fei Tan4, Li Zhen Toh1
1Ocular Therapeutics and Drug Delivery, Singapore Eye Research Institute, Singapore, Singapore.
Background:
To develop targeted antifibrotic therapy for glaucoma filtration surgery; this study determines the effectiveness of small interfering RNA (siRNA) to reduce in vivo secreted protein acidic and rich in cysteine (SPARC) expression using the mouse model of conjunctival scarring.
Methods:
Experimental surgery was performed as described for the mouse model of conjunctival scarring. Scrambled (siScram) or Sparc (siSparc) siRNAs, loaded on layer-by-layer (LbL) nanoparticles, were injected into the conjunctiva immediately after surgery. Expression of Sparc, Col1a1, Fn1 and Mmp14 was measured by real-time PCR and immunoblotting on days 7 and 14 postsurgery. Live imaging of the operated eyes was performed using slit lamp, anterior segment-optical coherence tomography and confocal microscopy. Tissue pathology was evaluated by histochemical and immunofluorescent analyses of operated conjunctival cryosections. Tissue apoptosis was quantitated by annexin V assay. RESULTS : siSparc, delivered via expanded LbL nanoparticles, significantly inhibited Sparc transcription in both day 7 (2.04-fold) and day 14 (1.39-fold) treated tissues. Sparc suppression on day 7 was associated with a significant reduction of Col1a1 (2.52-fold), Fn1 (2.89-fold) and Mmp14 (2.23-fold) mRNAs. At the protein level, both SPARC and collagen 1A1 (COL1A1) were significantly reduced at both time points with siSparc treatment. Nanoparticles were visualised within cell-like structures by confocal microscopy, while overt tissue response or apoptosis was not observed. CONCLUSIONS : SPARC targeted therapy effectively reduced both SPARC and collagen production in the operated mouse conjunctiva. This proof-of-concept study suggests that targeted treatment of fibrosis in glaucoma surgery is safe and feasible, with the potential to extend to a range of potential genes associated with fibrosis.
Insights
Targeted antifibrotic therapy using small interfering RNA (siRNA) effectively reduced secreted protein acidic and rich in cysteine (SPARC) and collagen in mice. This approach shows promise for preventing scarring after glaucoma surgery.
Area of Science:
- Ophthalmology
- Molecular Biology
- Biotechnology
Background:
- Glaucoma filtration surgery can lead to scarring, hindering its effectiveness.
- Secreted protein acidic and rich in cysteine (SPARC) is implicated in fibrotic scarring.
- Targeted antifibrotic therapies are needed to improve surgical outcomes.
Purpose of the Study:
- To determine the efficacy of small interfering RNA (siRNA) in reducing in vivo SPARC expression.
- To evaluate the antifibrotic potential of SPARC suppression in a mouse model of conjunctival scarring.
- To assess the safety and feasibility of targeted gene therapy for glaucoma surgery.
Main Methods:
- A mouse model of conjunctival scarring was established via experimental surgery.
- Sparc-specific siRNA (siSparc) or scrambled siRNA (siScram), delivered via nanoparticles, were injected post-surgery.
- Gene and protein expression (SPARC, COL1A1, FN1, MMP14) were quantified; tissue pathology and apoptosis were assessed.
Main Results:
- siSparc significantly inhibited SPARC transcription and protein levels in operated conjunctival tissues.
- SPARC suppression led to reduced expression of collagen 1A1, fibronectin 1, and matrix metalloproteinase 14.
- Nanoparticle delivery showed no overt tissue response or apoptosis, indicating safety.
Conclusions:
- Targeted therapy against SPARC effectively reduced fibrosis markers in the conjunctiva.
- This proof-of-concept study demonstrates the safety and feasibility of using siRNA to combat scarring in glaucoma surgery.
- The approach holds potential for targeting other fibrosis-associated genes.
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