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Oxime-Linked Peptide-Daunomycin Conjugates as Good Tools for Selection of Suitable Homing Devices in Targeted Tumor
Gábor Mező1,2, Jacopo Gomena1,2, Ivan Ranđelović3
1HUN-REN-ELTE Research Group of Peptide Chemistry, 1117 Budapest, Hungary.
Abstract:
Chemotherapy is still one of the main therapeutic approaches in cancer therapy. Nevertheless, its poor selectivity causes severe toxic side effects that, together with the development of drug resistance in tumor cells, results in a limitation for its application. Tumor-targeted drug delivery is a possible choice to overcome these drawbacks. As well as monoclonal antibodies, peptides are promising targeting moieties for drug delivery. However, the development of peptide-drug conjugates (PDCs) is still a big challenge. The main reason is that the conjugates have to be stable in circulation, but the drug or its active metabolite should be released efficiently in the tumor cells. For this purpose, suitable linker systems are needed that connect the drug molecule with the homing peptide. The applied linker systems are commonly categorized as cleavable and non-cleavable linkers. Both the groups possess advantages and disadvantages that are summarized briefly in this manuscript. Moreover, in this review paper, we highlight the benefit of oxime-linked anthracycline-peptide conjugates in the development of PDCs. For instance, straightforward synthesis as well as a conjugation reaction proceed in excellent yields, and the autofluorescence of anthracyclines provides a good tool to select the appropriate homing peptides. Furthermore, we demonstrate that these conjugates can be used properly in in vivo studies. The results indicate that the oxime-linked PDCs are potential candidates for targeted tumor therapy.
Insights
Oxime-linked peptide-drug conjugates (PDCs) offer a promising strategy to improve cancer chemotherapy by enhancing tumor targeting and reducing side effects. These conjugates demonstrate stability in circulation and efficient drug release at the tumor site.
Area of Science:
- Oncology
- Pharmaceutical Chemistry
- Drug Delivery Systems
Background:
- Chemotherapy faces limitations due to poor selectivity, leading to severe toxic side effects and drug resistance.
- Tumor-targeted drug delivery using moieties like peptides presents a strategy to overcome these challenges.
- Developing effective peptide-drug conjugates (PDCs) is complex, requiring stable circulation and efficient tumor cell drug release.
Purpose of the Study:
- To review the challenges and advantages of linker systems in peptide-drug conjugate development.
- To highlight the benefits of oxime-linked anthracycline-peptide conjugates for targeted cancer therapy.
- To evaluate the potential of these PDCs in preclinical studies.
Main Methods:
- Review of existing literature on linker systems for PDCs.
- Focus on oxime-based linkers for conjugating anthracyclines to homing peptides.
- Evaluation of synthesis, conjugation yields, and in vivo study data.
Main Results:
- Oxime-linked anthracycline-peptide conjugates offer straightforward synthesis with excellent yields.
- The autofluorescence of anthracyclines aids in selecting suitable homing peptides.
- In vivo studies confirm the effective application and potential of these PDCs.
Conclusions:
- Oxime-linked anthracycline-peptide conjugates represent a viable approach for targeted tumor therapy.
- These PDCs show promise in overcoming chemotherapy's limitations by improving drug delivery and efficacy.
- Further development of oxime-linked PDCs could lead to more effective cancer treatments.
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