Related Experiment Video
Updated: Jun 19, 2026

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Seladin-1 and testicular germ cell tumours: new insights into cisplatin responsiveness
Francesca Nuti1, Paola Luciani, Eliana Marinari
1Andrology Unit, University of Florence, 50139 Florence, Italy.
Abstract:
The molecular basis for the exquisite sensitivity of testicular germ cell tumours of adolescents and adults (TGCTs), ie seminomas and non-seminomatous germ cell tumours, to chemo/radiotherapy has not been fully clarified so far. It has been suggested that it may be dependent on factors involved in the regulation of apoptosis. Seladin-1 is a multi-functional protein involved in various biological processes, including apoptosis. The aim of our study was to assess the expression of seladin-1 in different histological types of TGCTs, known to have varying treatment sensitivity, in order to establish whether this protein may influence cisplatin responsiveness in vitro. Seladin-1 expression levels, both at the mRNA and at the protein level, were higher in the adjacent normal parenchyma than in the pathological counterparts. In tumoural tissues, the level of expression differed among TGCT histological types. The highest tumour-expression level was found in teratoma, whereas the lowest was detected in seminoma, corresponding to the different chemo/and radiosensitivities of these tumour types. In common with other cancers, in TGCT-derived cell lines seladin-1 showed anti-apoptotic properties through inhibition of caspase-3 activation. We confirmed our results using a non-seminomatous cell line model (NT2) before and after differentiation with retinoic acid. Significantly higher seladin-1 expression was observed in the differentiated derivatives (teratoma) and an inverse relationship was found between seladin-1 expression and the amount of cleaved caspase-3. Seladin-1 silencing or overexpression in this cell line supports involvement of seladin-1 in cisplatin responsiveness. Seladin-1 silencing was associated with greater cisplatin responsiveness demonstrated by decreased cell viability and increased expression of apoptotic markers. In contrast, overexpression of seladin-1 was associated with a higher survival rate and a clear anti-apoptotic effect. In conclusion, we have demonstrated for the first time an important role for seladin-1 in the biology of TGCTs and provided new insights into cisplatin responsiveness of these tumours.
Insights
Seladin-1 protein levels vary in testicular germ cell tumours (TGCTs), influencing chemotherapy response. Lower seladin-1 expression correlates with increased cisplatin sensitivity in TGCTs, offering new therapeutic insights.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The molecular mechanisms underlying the sensitivity of testicular germ cell tumours (TGCTs) to chemotherapy and radiotherapy remain incompletely understood.
- Apoptosis regulation is a proposed factor in TGCT treatment response.
- Seladin-1 is a protein implicated in apoptosis and other cellular processes.
Purpose of the Study:
- To investigate seladin-1 expression in different TGCT histological types.
- To determine if seladin-1 influences cisplatin responsiveness in vitro.
- To explore the role of seladin-1 in TGCT cell apoptosis.
Main Methods:
- Assessed seladin-1 mRNA and protein expression in TGCT tissues and cell lines.
- Utilized a differentiated non-seminomatous cell line model (NT2).
- Performed seladin-1 gene silencing and overexpression experiments.
Main Results:
- Seladin-1 expression was higher in normal testicular parenchyma than in TGCTs.
- Tumoral seladin-1 expression varied by histological type, lowest in seminoma and highest in teratoma.
- Seladin-1 exhibited anti-apoptotic properties by inhibiting caspase-3 activation in TGCT cells.
- Silencing seladin-1 increased cisplatin sensitivity and apoptosis, while overexpression decreased it.
Conclusions:
- Seladin-1 plays a significant role in TGCT biology.
- Seladin-1 expression levels correlate with TGCT histological type and chemo/radiosensitivity.
- Seladin-1 influences cisplatin responsiveness in TGCTs, offering potential therapeutic targets.
