Targeted therapies and immunotherapies have largely improved cancer treatment in the last years. One of the most promising approaches is the induction of tumor apoptosis by TRAIL through its binding to apoptosis-inducing receptors DR4 and DR5 on the plasma membrane of target cells. However, some constraints (e.g., the short in vivo half-life and the poor activity on DR5 receptors) hinder the use of naked, soluble forms of TRAIL. Previous studies have shown that fusing TRAIL sequences with antibody-based moieties may represent a novel and efficacious strategy to overcome such hindrances. On these bases, novel TRAIL-related anticancer therapeutic strategies are being developed. In the present article, we describe a novel antibody represented by a single-chain diabody directed against a cancer-specific target, i.e., the hERG1/β1 integrin complex—scDbhERG1-β1—fused with three TRAIL sequences. The scDbhERG1-β1-TRAIL antibody combines the specific targeting and downregulation of cancer-specific signaling pathways by scDbhERG1-β1 with the proapoptotic activity triggered by TRAIL. We provide substantial evidence of the efficacy of the scDb-hERG1-β1-TRAIL antibody to decrease tumor growth triggering apoptotic cell death in vitro in breast cancer cells as well as in vivo in a mouse model of triple-negative breast cancer. Being characterized by a favorable pharmacokinetic and toxicity profile, the scDb-hERG1-β1-TRAIL antibody can be proposed for the treatment of difficult-to-treat cancers, such as triple-negative breast cancer, which express the hERG1/β1 complex and TRAIL receptors.

Antineoplastic Activity of a Novel Trispecific Single-Chain Antibody Targeting the hERG1/β1 Integrin Complex and TRAIL Receptors / Duranti, Claudia; Iorio, Jessica; Capitani, Chiara; Lottini, Tiziano; Martinelli, Michele; Roosz, Julia; Anderle, Nicole; Maulana, Tengku Ibrahim; Loskill, Peter M.; Colasurdo, Rossella; Sala, Cesare; Magni, Lara; Arcangeli, Annarosa. - In: MOLECULAR CANCER THERAPEUTICS. - ISSN 1535-7163. - ELETTRONICO. - 24:(2025), pp. 1584-1599. [10.1158/1535-7163.mct-24-0646]

Antineoplastic Activity of a Novel Trispecific Single-Chain Antibody Targeting the hERG1/β1 Integrin Complex and TRAIL Receptors

Duranti, Claudia;Iorio, Jessica;Capitani, Chiara;Lottini, Tiziano;Martinelli, Michele;Colasurdo, Rossella;Sala, Cesare;Magni, Lara;Arcangeli, Annarosa
2025

Abstract

Targeted therapies and immunotherapies have largely improved cancer treatment in the last years. One of the most promising approaches is the induction of tumor apoptosis by TRAIL through its binding to apoptosis-inducing receptors DR4 and DR5 on the plasma membrane of target cells. However, some constraints (e.g., the short in vivo half-life and the poor activity on DR5 receptors) hinder the use of naked, soluble forms of TRAIL. Previous studies have shown that fusing TRAIL sequences with antibody-based moieties may represent a novel and efficacious strategy to overcome such hindrances. On these bases, novel TRAIL-related anticancer therapeutic strategies are being developed. In the present article, we describe a novel antibody represented by a single-chain diabody directed against a cancer-specific target, i.e., the hERG1/β1 integrin complex—scDbhERG1-β1—fused with three TRAIL sequences. The scDbhERG1-β1-TRAIL antibody combines the specific targeting and downregulation of cancer-specific signaling pathways by scDbhERG1-β1 with the proapoptotic activity triggered by TRAIL. We provide substantial evidence of the efficacy of the scDb-hERG1-β1-TRAIL antibody to decrease tumor growth triggering apoptotic cell death in vitro in breast cancer cells as well as in vivo in a mouse model of triple-negative breast cancer. Being characterized by a favorable pharmacokinetic and toxicity profile, the scDb-hERG1-β1-TRAIL antibody can be proposed for the treatment of difficult-to-treat cancers, such as triple-negative breast cancer, which express the hERG1/β1 complex and TRAIL receptors.
2025
24
1584
1599
Goal 3: Good health and well-being
Duranti, Claudia; Iorio, Jessica; Capitani, Chiara; Lottini, Tiziano; Martinelli, Michele; Roosz, Julia; Anderle, Nicole; Maulana, Tengku Ibrahim; Los...espandi
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1471115
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