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A RAPID Method for Blood Processing to Increase the Yield of Plasma Peptide Levels in Human Blood
Published on: April 28, 2016
Peptide-based leptin receptor antagonists for cancer treatment and appetite regulation
Laszlo Otvos1, Ilona Kovalszky, Laura Scolaro
1Department of Biology, Temple University, Philadelphia, PA 19122, USA. otvos@temple.edu
Abstract:
Leptin, a multifunctional hormone, controls various processes in both the central nervous system and in peripheral tissues. Because of the presence of multiple leptin/receptor (ObR) interaction sites and diverse leptin activities, the literature lacks truly monofunctional leptin protein derivatives or fragments. To date, selective ObR antagonists have not been reported. We developed short, pharmacologically advantageous peptide analogs of ObR-binding site III of leptin that acted as selective ObR inhibitors without any partial agonistic activity. These reduced leptin-dependent growth and signaling in cancer cell lines at picomolar and low nanomolar concentrations. In immunocompromised mice the peptides suppressed the growth of rapidly proliferating orthotopic human breast cancer xenografts by 50% when administered either intraperitoneally (i.p.) or subcutaneously (s.c.) for 38 days at a 0.1 mg/kg/day dose. The peptides were distributed to the brain, and when added to growing C57BL/6 normal mice i.p., s.c., or orally, the lead antagonist accelerated normal weight increase without producing any toxic effects. Weight gain increases could not be observed after 10-12 days of treatment indicating that the mice became resistant to the central nervous system activity of leptin antagonists. However, in normal growing rats the intranasal administration at 0.1 mg/kg/day for 20 days resulted in a 2% net total body weight gain without signs of resistance induction. In addition to the potential of these peptides in drug development against primary and metastatic tumors and cachexia, our data confirm that resistance to leptin resides at the blood-brain barrier.
Insights
Researchers developed novel leptin peptide analogs that selectively inhibit the leptin receptor (ObR). These peptides show potential in cancer treatment and cachexia management, with resistance observed in the brain.
Area of Science:
- Endocrinology
- Molecular Biology
- Pharmacology
Background:
- Leptin is a key hormone regulating metabolism and various physiological processes.
- Existing leptin research lacks monofunctional derivatives due to multiple interaction sites and activities.
- Selective leptin receptor (ObR) antagonists have not been previously reported.
Purpose of the Study:
- To develop selective ObR inhibitors based on leptin's binding site III.
- To evaluate the efficacy of these peptide analogs in reducing cancer growth and signaling.
- To investigate the in vivo effects of these peptides on cancer xenografts and normal animal weight gain.
Main Methods:
- Design and synthesis of short peptide analogs targeting ObR binding site III.
- In vitro assessment of peptide activity on cancer cell lines (growth and signaling).
- In vivo studies using immunocompromised mice with human breast cancer xenografts and normal mice/rats.
Main Results:
- Peptide analogs acted as selective ObR inhibitors with no partial agonistic activity.
- Significant reduction (50%) in breast cancer xenograft growth in mice with i.p. or s.c. administration.
- Observed acceleration of weight gain in normal mice and rats, with brain resistance noted in mice but not rats.
Conclusions:
- Developed peptide analogs are potent and selective leptin receptor inhibitors.
- These peptides demonstrate therapeutic potential against tumors and cachexia.
- Data suggest leptin resistance mechanisms are linked to the blood-brain barrier.
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