Isolation and characterization of castration-resistant prostate cancer LNCaP95 clones
Jacky K Leung1, Teresa Tam1, Jun Wang1
1Genome Sciences Centre, BC Cancer, 675 West 10th Avenue, Vancouver, BC, V5Z 1L3, Canada.
Abstract:
The androgen receptor (AR) is a validated therapeutic target for prostate cancer and has been a focus for drug development for more than six decades. Currently approved therapies that inhibit AR signaling, such as enzalutamide, rely solely on targeting the AR ligand-binding domain and, therefore, have limited efficacy on prostate cancer cells that express truncated, constitutively active AR splice variants (AR-Vs). The LNCaP95 cell line is a human prostate cancer cell line that expresses both functional full-length AR and AR-V7. LNCaP95 is a heterogeneous cell population that is resistant to enzalutamide, with its proliferation dependent on transcriptionally active AR-V7. The purpose of this study was to identify a LNCaP95 clone that would be useful for evaluating therapies for their effectiveness against enzalutamide-resistant prostate cancer cells. Seven clones from the LNCaP95 cell line were isolated and characterized using morphology, in vitro growth rate, and response to ralaniten (AR N-terminal domain inhibitor) and enzalutamide (antiandrogen). In vivo growth of the clones as subcutaneous xenografts was evaluated in castrated immunodeficient mice. All of the clones maintained the expression of full-length AR and AR-V7. Cell proliferation of the clones was insensitive to androgen and enzalutamide but importantly was inhibited by ralaniten, which is consistent with AR-Vs driving the proliferation of parental LNCaP95 cells. In castrated immunodeficient animals, the growth of subcutaneous xenografts of the D3 clone was the most reproducible compared to the parental cell line and other clones. These data support that the enzalutamide-resistant LNCaP95-D3 subline may be suitable as a xenograft tumor model for preclinical drug development with improved reproducibility.
Insights
Researchers developed a new prostate cancer cell model, LNCaP95-D3, to study enzalutamide-resistant cancer. This model, expressing androgen receptor splice variants, shows reproducible tumor growth for preclinical drug development.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- The androgen receptor (AR) is a key target in prostate cancer therapy.
- Approved drugs like enzalutamide target the AR ligand-binding domain.
- These therapies are less effective against prostate cancer cells with AR splice variants (AR-Vs).
Purpose of the Study:
- To isolate and characterize a LNCaP95 cell line clone for evaluating therapies against enzalutamide-resistant prostate cancer.
- To establish a reproducible preclinical model for drug development.
Main Methods:
- Seven clones were isolated from the LNCaP95 cell line.
- Characterization included morphology, in vitro growth, and response to ralaniten and enzalutamide.
- In vivo growth was assessed using subcutaneous xenografts in immunodeficient mice.
Main Results:
- All clones expressed full-length AR and AR-V7.
- Clones were resistant to enzalutamide but sensitive to ralaniten, indicating AR-V7 drives proliferation.
- The LNCaP95-D3 clone demonstrated the most reproducible xenograft tumor growth in vivo.
Conclusions:
- The LNCaP95-D3 subline is a promising enzalutamide-resistant prostate cancer model.
- This model offers improved reproducibility for preclinical drug development and evaluation of AR-V targeted therapies.


