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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Engineering of a trispecific tumor-targeted immunotherapy incorporating 4-1BB co-stimulation and PD-L1 blockade
Stefan Warmuth1, Tea Gunde1, Daniel Snell1
1Numab Therapeutics AG, Waedenswil, Switzerland.
Abstract:
Co-stimulatory 4-1BB receptors on tumor-infiltrating T cells are a compelling target for overcoming resistance to immune checkpoint inhibitors, but initial clinical studies of 4-1BB agonist mAbs were accompanied by liver toxicity. We sought to engineer a tri-specific antibody-based molecule that stimulates intratumoral 4-1BB and blocks PD-L1/PD-1 signaling without systemic toxicity and with clinically favorable pharmacokinetics. Recombinant fusion proteins were constructed using scMATCH3 technology and humanized antibody single-chain variable fragments against PD-L1, 4-1BB, and human serum albumin. Paratope affinities were optimized using single amino acid substitutions, leading to design of the drug candidate NM21-1480. Multiple in vitro experiments evaluated pharmacodynamic properties of NM21-1480, and syngeneic mouse tumor models assessed antitumor efficacy and safety of murine analogues. A GLP multiple-dose toxicology study evaluated its safety in non-human primates. NM21-1480 inhibited PD-L1/PD-1 signaling with a potency similar to avelumab, and it potently stimulated 4-1BB signaling only in the presence of PD-L1, while exhibiting an EC50 that was largely independent of PD-L1 density. NM21-1480 exhibited high efficacy for co-activation of pre-stimulated T cells and dendritic cells. In xenograft models in syngeneic mice, NM21-1480 induced tumor regression and tumor infiltration of T cells without causing systemic T-cell activation. A GLP toxicology study revealed no evidence of liver toxicity at doses up to 140 mg/kg, and pharmacokinetic studies in non-human primates suggested a plasma half-life in humans of up to 2 weeks. NM21-1480 has the potential to overcome checkpoint resistance by co-activating tumor-infiltrating lymphocytes without liver toxicity.
Insights
A novel bispecific antibody NM21-1480 targets PD-L1 and 4-1BB to overcome immune checkpoint inhibitor resistance. This approach stimulates anti-tumor T cells without causing liver toxicity, showing promise for improved cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Co-stimulatory 4-1BB receptors are a target for overcoming resistance to immune checkpoint inhibitors.
- Initial 4-1BB agonist monoclonal antibody (mAb) studies showed liver toxicity.
- A need exists for 4-1BB agonists with improved safety and pharmacokinetics.
Purpose of the Study:
- To engineer a tri-specific antibody-based molecule, NM21-1480, that stimulates intratumoral 4-1BB and blocks PD-L1/PD-1 signaling.
- To achieve this without systemic toxicity and with clinically favorable pharmacokinetics.
- To evaluate the antitumor efficacy and safety of NM21-1480.
Main Methods:
- Recombinant fusion proteins were constructed using scMATCH3 technology and humanized antibody single-chain variable fragments against PD-L1, 4-1BB, and human serum albumin.
- Paratope affinities were optimized via single amino acid substitutions.
- In vitro experiments, syngeneic mouse tumor models, and GLP toxicology studies in non-human primates were used.
Main Results:
- NM21-1480 inhibited PD-L1/PD-1 signaling potently and stimulated 4-1BB signaling in the presence of PD-L1.
- NM21-1480 demonstrated high efficacy for co-activation of T cells and dendritic cells.
- NM21-1480 induced tumor regression and T cell infiltration in mice without systemic T-cell activation, and showed no liver toxicity in non-human primates.
Conclusions:
- NM21-1480 potently co-activates tumor-infiltrating lymphocytes by targeting PD-L1 and 4-1BB.
- This molecule overcomes resistance to immune checkpoint inhibitors.
- NM21-1480 shows potential for improved cancer immunotherapy due to its efficacy and safety profile, including lack of liver toxicity.
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