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Updated: Oct 8, 2025

Virus Delivery of CRISPR Guides to the Murine Prostate for Gene Alteration
Published on: April 27, 2018
rAAV-delivered PTEN therapeutics for prostate cancer
Jianzhong Ai1,2, Jia Li2, Qin Su2
1Department of Urology, Institute of Urology, West China Hospital, Sichuan University, 88 South Keyuan Road, Chengdu 610041, China.
Abstract:
Effective treatments for prostate cancer (PCa) require further development, and previous studies have reported that PTEN and its downstream target CDKN1B are significantly downregulated in PCa cells compared with normal cells. Therefore, modulation of PTEN and CDKN1B expression might be a promising therapeutic approach for PCa treatment. Expression of PTEN and CDKN1B was verified in specimens from PCa patients and transgenic adenocarcinoma mouse prostate (TRAMP) mice. The effect of PTEN on PCa cell migration, apoptosis, and the cell cycle was analyzed in vitro using a wound-healing assay and flow cytometry. We assessed the ability of intraprostatic and intratumoral injections of recombinant adeno-associated virus (rAAV) 9 expressing Pten or Cdkn1b into TRAMP mice and a subcutaneous tumor xenograft mouse model, respectively, to inhibit PCa progression. PTEN and CDKN1B were significantly downregulated in human and mouse PCa samples, and CDKN1B expression correlated positively with PTEN expression. PTEN overexpression significantly inhibited cell migration and cell-cycle progression and promoted apoptosis in PCa cells by decreasing Ccnd1 expression and increasing that of Cdkn1b. Importantly, treatment with the rAAV9.Pten or rAAV9.Cdkn1b extended the lifespan of TRAMP mice and inhibited the growth rate of tumor xenografts by regulating downstream gene expression. Moreover, neoplasia in treated prostates was significantly diminished compared with that in control prostates, and apoptosis was markedly observed in xenografts treated with Pten or Cdkn1b. These data indicate that rAAV-based PTEN/CDKN1B delivery is promising for the development of novel therapeutics for PCa.
Insights
Restoring PTEN and CDKN1B expression in prostate cancer (PCa) cells shows therapeutic promise. Gene therapy using recombinant adeno-associated virus (rAAV) to deliver PTEN or CDKN1B inhibited PCa progression and extended lifespan in mouse models.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Prostate cancer (PCa) treatments need improvement.
- PTEN and CDKN1B are downregulated in PCa, suggesting their therapeutic potential.
Purpose of the Study:
- To investigate the role of PTEN and CDKN1B in PCa.
- To evaluate the efficacy of rAAV-mediated PTEN and CDKN1B delivery for PCa treatment.
Main Methods:
- Verified PTEN and CDKN1B expression in human and mouse PCa samples.
- Analyzed PTEN's effects on PCa cell migration, apoptosis, and cell cycle in vitro.
- Administered rAAV9 expressing Pten or Cdkn1b to TRAMP mice and xenograft models.
Main Results:
- PTEN and CDKN1B were downregulated in PCa; CDKN1B correlated with PTEN.
- PTEN overexpression inhibited PCa cell migration, promoted apoptosis, and affected cell cycle.
- rAAV9.Pten or rAAV9.Cdkn1b treatment extended lifespan in TRAMP mice and reduced tumor growth.
Conclusions:
- PTEN/CDKN1B delivery via rAAV shows promise for novel PCa therapeutics.
- Modulating PTEN and CDKN1B expression is a viable strategy for PCa treatment.
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