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Published on: June 30, 2023
Recombinant human endostatin as a potential anti-angiogenic agent: therapeutic perspective and current status
J Anakha1, Prakashkumar Dobariya1, Shyam Sunder Sharma2
1Department of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar, Mohali, Punjab, 160062, India.
Abstract:
Angiogenesis is the physiological process that results in the formation of new blood vessels develop from pre-existing vasculature and plays a significant role in several physiological and pathological processes. Inhibiting angiogenesis, a crucial mechanism in the growth and metastasis of cancer, has been proposed as a potential anticancer therapy. Different studies showed the beneficial effects of angiogenesis inhibitors either in patients suffering from different cancers, alone or in combination with conventional therapies. Even though there are currently a number of efficient anti-angiogenic drugs, including monoclonal antibodies and kinase inhibitors, the associated toxicity profile and their affordability constraints are prompting researchers to search for a safe and affordable angiostatic agent for cancer treatment. Endostatin is one of the endogenous anti-angiogenic candidates that have been extensively pursued for the treatment of cancer, but even over three decades after its discovery, we have not made much advancement in employing it as an anticancer therapeutic despite of its remarkable anti-angiogenic effect with low toxicity profile. A recombinant human endostatin (rh-Es) variant for non-small cell lung cancer was approved by China in 2006 and has since been used effectively. Several other successful clinical trials related to endostatin for various malignancies are either ongoing or have already been completed with promising results. Thus, in this review, we have provided an overview of existing anti-angiogenic drugs developed for cancer therapy, with a summary of tumour angiogenesis in the context of Endostatin, and clinical status of rh-Es in cancer treatment. Furthermore, we briefly discuss the various strategies to improve endostatin features (poor pharmacokinetic properties) for developing rh-Es as a safe and effective agent for cancer treatment.
Insights
Angiogenesis inhibitors offer cancer treatment potential, but toxicity and cost drive research for safer alternatives like endostatin. Recombinant human endostatin (rh-Es) shows promise in clinical trials for various cancers.
Area of Science:
- Oncology
- Vascular Biology
- Pharmacology
Background:
- Angiogenesis, the formation of new blood vessels, is vital in physiological processes and cancer growth.
- Inhibiting angiogenesis is a key strategy in cancer therapy, with existing drugs facing toxicity and cost challenges.
- Endostatin, an endogenous anti-angiogenic factor, has shown potential but requires further development.
Purpose of the Study:
- To review current anti-angiogenic drugs for cancer therapy.
- To summarize tumor angiogenesis in the context of endostatin.
- To discuss the clinical status and improvement strategies for recombinant human endostatin (rh-Es).
Main Methods:
- Literature review of anti-angiogenic therapies.
- Analysis of tumor angiogenesis mechanisms.
- Evaluation of clinical trial data for endostatin and rh-Es.
Main Results:
- Existing anti-angiogenic drugs have limitations regarding toxicity and affordability.
- Recombinant human endostatin (rh-Es) has shown efficacy in non-small cell lung cancer and other malignancies.
- Ongoing trials and completed studies indicate promising results for endostatin-based therapies.
Conclusions:
- Despite limitations, endostatin remains a promising anti-angiogenic agent.
- Strategies to improve rh-Es pharmacokinetic properties are crucial for its broader application.
- rh-Es holds potential as a safe and effective cancer treatment option.
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