Targeting activity of a TCR/IL-2 fusion protein against established tumors
Jinghai Wen1, Xiaoyun Zhu, Bai Liu
1Altor Bioscience Corporation, 2810 N Commerce Parkway, Miramar, FL, 33025, USA.
Abstract:
We have previously reported that a single-chain T cell receptor/IL-2 fusion protein (scTCR-IL2) exhibits potent targeted antitumor activity in nude mice bearing human tumor xenografts that display cognate peptide/HLA complexes. In this study, we further explore the mechanism of action of this molecule. We compared the biological activities of c264scTCR-IL2, a scTCR-IL2 protein recognizing the aa264-272 peptide of human p53, with that of MART-1scTCR-IL2, which recognizes the MART-1 melanoma antigen (aa27-35). In vitro studies showed that c264scTCR-IL2 and MART-1scTCR-IL2 were equivalent in their ability to bind cell-surface IL-2 receptors and stimulate NK cell responses. In mice, MART-1scTCR-IL2 was found to have a twofold longer serum half-life than c264scTCR-IL2. However, despite its shorter serum half-life, c264scTCR-IL2 showed significantly better antitumor activity than MART-1scTCR-IL2 against p53(+)/HLA-A2(+) tumor xenografts. The more potent antitumor activity of c264scTCR-IL2 correlated with an enhanced capacity to promote NK cell infiltration into tumors. Similar differences in antigen-dependent tumor infiltration were observed with activated splenocytes pre-treated in vitro with c264scTCR-IL2 or MART-1scTCR-IL2 and then transferred into p53(+)/HLA-A2(+) tumor bearing recipients. The data support a model where c264scTCR-IL2 activates immune cells to express IL-2 receptors. Following stable interactions with cell-surface IL-2 receptors, c264scTCR-IL2 fusion molecule enhances the trafficking of immune cells to tumors displaying target peptide/HLA complexes where the immune cells mediate antitumor effects. Thus, this type of fusion molecule could be used directly as a targeted immunotherapeutic or in adoptive cell transfer approaches to activate and improve the anti-cancer activities of immune cells by providing them with pre-selected antigen recognition capability.
Insights
A novel single-chain T cell receptor/IL-2 fusion protein (scTCR-IL2) demonstrates potent antitumor activity by enhancing immune cell infiltration into tumors. This targeted immunotherapy shows promise for cancer treatment, activating immune cells for improved anti-cancer effects.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Single-chain T cell receptor/IL-2 fusion proteins (scTCR-IL2) have shown targeted antitumor activity.
- Understanding the mechanism of action of these fusion proteins is crucial for optimizing their therapeutic potential.
Purpose of the Study:
- To compare the biological activities and antitumor efficacy of two distinct scTCR-IL2 variants: c264scTCR-IL2 and MART-1scTCR-IL2.
- To elucidate the mechanism by which scTCR-IL2 mediates antitumor effects, focusing on immune cell trafficking and activation.
Main Methods:
- In vitro assessment of IL-2 receptor binding and NK cell stimulation by c264scTCR-IL2 and MART-1scTCR-IL2.
- In vivo comparison of serum half-life and antitumor activity of the two scTCR-IL2 variants in tumor xenograft models.
- Analysis of NK cell infiltration into tumors following treatment with scTCR-IL2 fusion proteins.
- Evaluation of antigen-dependent tumor infiltration using adoptively transferred splenocytes.
Main Results:
- Both c264scTCR-IL2 and MART-1scTCR-IL2 demonstrated equivalent in vitro binding to IL-2 receptors and stimulation of NK cell responses.
- MART-1scTCR-IL2 exhibited a twofold longer serum half-life compared to c264scTCR-IL2.
- Despite its shorter half-life, c264scTCR-IL2 showed significantly superior antitumor activity against p53(+)/HLA-A2(+) xenografts.
- Enhanced antitumor activity of c264scTCR-IL2 correlated with increased NK cell infiltration into tumors.
Conclusions:
- c264scTCR-IL2 activates immune cells, enhancing their IL-2 receptor expression and promoting trafficking to tumors expressing cognate peptide/HLA complexes.
- This scTCR-IL2 fusion molecule effectively enhances immune cell infiltration and mediates antitumor effects, supporting its use as a targeted immunotherapeutic.
- scTCR-IL2 fusion proteins offer a promising strategy for adoptive cell transfer approaches to enhance anti-cancer immunity.
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