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Published on: December 1, 2020
Development of albumin-binding camptothecin prodrugs using a Peptide positional scanning library
Björn Schmid1, André Warnecke, Iduna Fichtner
1Tumor Biology Center, Breisacher Strasse 117, 79106, Freiburg, Germany.
Abstract:
Designing truly tumor-specific prodrugs remains a challenge in the field of cancer chemotherapy. As a new strategy, we incubated homogenates of a spectrum of human colon tumor xenografts with a fluorogenic positional scanning tetrapeptide library in order to identify peptide sequences that are preferentially cleaved by colon tumors. Our screening experiments at pH 7.4 revealed that Met, Leu, and Lys were preferred amino acids in the position P(1) and Tyr, Phe, and Met in P(2), whereas in P(3) and P(4), the cleavage profiles were less characteristic. However, similar results were obtained when testing breast tumor material and homogenates from healthy murine organs. On the basis of these results, we developed albumin-binding camptothecin (CPT) prodrugs of the general formula EMC-Arg-P(4)-P(3)-P(2)-P(1)-Ala-CPT (EMC = 6-maleimidocaproic acid) that incorporated two peptide linkers: H-Arg-Ala-Phe-Met-OH and H-Arg-Phe-Tyr-Met-OH (P(4)-P(3)-P(2)-P(1)). The incorporation of two arginine residues rendered the prodrugs water-soluble (>7 mg/mL), while the use of alanine as an amino acid spacer proved to be beneficial for the release of the active agent. Incubation studies with homogenates of HT-29 colon tumor tissue and murine spleen, liver, and kidneys demonstrated cleavage of the peptide linker with CPT-peptide derivatives and CPT being the major cleavage products. Although the peptide sequence is not selectively cleaved in colon tumors, an in vivo study in a HT-29 xenograft model showed that the prodrug EMC-Arg-Arg-Ala-Phe-Met-Ala-CPT demonstrated enhanced antitumor efficacy when compared to CPT [( T/ C max: 17% for the prodrug (2 x 12.5 mg/kg CPT equivalents) and 40% for CPT (3 x 12.5 mg/kg)].
Insights
Researchers developed novel albumin-binding camptothecin (CPT) prodrugs. These prodrugs showed enhanced antitumor efficacy in a colon tumor model, despite the peptide linker not being tumor-specific.
Area of Science:
- Biochemistry
- Oncology
- Medicinal Chemistry
Background:
- Designing tumor-specific prodrugs for cancer chemotherapy is challenging.
- Current strategies often lack the required specificity for targeted drug delivery.
- Identifying tumor-specific cleavage sites is crucial for effective prodrug activation.
Purpose of the Study:
- To identify peptide sequences preferentially cleaved by colon tumors.
- To develop novel albumin-binding camptothecin (CPT) prodrugs utilizing identified peptide sequences.
- To evaluate the in vivo antitumor efficacy and prodrug activation of the developed CPT derivatives.
Main Methods:
- Incubation of human colon tumor xenograft homogenates with fluorogenic tetrapeptide libraries.
- Synthesis of albumin-binding CPT prodrugs with specific peptide linkers (EMC-Arg-P(4)-P(3)-P(2)-P(1)-Ala-CPT).
- In vitro cleavage studies with tumor and organ homogenates and in vivo efficacy studies in a HT-29 colon xenograft model.
Main Results:
- Peptide cleavage profiles showed preferred amino acids Met, Leu, Lys in P(1) and Tyr, Phe, Met in P(2), but lacked tumor specificity.
- Developed prodrugs were water-soluble and demonstrated cleavage of the peptide linker, releasing CPT.
- The prodrug EMC-Arg-Arg-Ala-Phe-Met-Ala-CPT showed enhanced antitumor efficacy compared to CPT in a HT-29 xenograft model.
Conclusions:
- While the designed peptide sequences were not tumor-specific, the albumin-binding CPT prodrugs demonstrated improved antitumor activity.
- The prodrug strategy offers a potential approach for enhancing the efficacy of existing chemotherapeutic agents.
- Further research may focus on optimizing peptide sequences or delivery mechanisms for greater tumor specificity.
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