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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Targeting cancer metastasis with antibody therapeutics
Huilin Yang1, Yun-Huai Kuo1, Zion I Smith1
1Department of Chemical & Biomolecular Engineering, Johns Hopkins University, Baltimore, Maryland, USA.
Abstract:
Cancer metastasis, the spread of disease from a primary to a distal site through the circulatory or lymphatic systems, accounts for over 90% of all cancer related deaths. Despite significant progress in the field of cancer therapy in recent years, mortality rates remain dramatically higher for patients with metastatic disease versus those with local or regional disease. Although there is clearly an urgent need to develop drugs that inhibit cancer spread, the overwhelming majority of anticancer therapies that have been developed to date are designed to inhibit tumor growth but fail to address the key stages of the metastatic process: invasion, intravasation, circulation, extravasation, and colonization. There is growing interest in engineering targeted therapeutics, such as antibody drugs, that inhibit various steps in the metastatic cascade. We present an overview of antibody therapeutic approaches, both in the pipeline and in the clinic, that disrupt the essential mechanisms that underlie cancer metastasis. These therapies include classes of antibodies that indirectly target metastasis, including anti-integrin, anticadherin, and immune checkpoint blocking antibodies, as well as monoclonal and bispecific antibodies that are specifically designed to interrupt disease dissemination. Although few antimetastatic antibodies have achieved clinical success to date, there are many promising candidates in various stages of development, and novel targets and approaches are constantly emerging. Collectively, these efforts will enrich our understanding of the molecular drivers of metastasis, and the new strategies that arise promise to have a profound impact on the future of cancer therapeutic development. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease.
Insights
Antibody therapeutics offer new hope for inhibiting cancer metastasis, the primary cause of cancer deaths. These targeted drugs disrupt key steps in cancer spread, improving patient outcomes.
Area of Science:
- Oncologic Disease
- Therapeutic Approaches
- Drug Discovery
Background:
- Cancer metastasis accounts for over 90% of cancer-related deaths.
- Current therapies primarily target tumor growth, not the metastatic process.
- There is an urgent need for drugs that inhibit cancer spread.
Purpose of the Study:
- To provide an overview of antibody therapeutic approaches targeting cancer metastasis.
- To discuss both pipeline and clinical-stage antibody therapies.
- To highlight novel targets and strategies in antimetastatic drug development.
Main Methods:
- Review of antibody-based therapeutics in cancer metastasis.
- Categorization of antibodies by their mechanism of action (indirect vs. direct).
- Analysis of clinical and preclinical antimetastatic antibody candidates.
Main Results:
- Antibody therapies include anti-integrin, anti-cadherin, and immune checkpoint inhibitors.
- Monoclonal and bispecific antibodies are designed to interrupt disease dissemination.
- Few antimetastatic antibodies have succeeded clinically, but many promising candidates are in development.
Conclusions:
- Antibody-based approaches hold significant promise for inhibiting cancer metastasis.
- Ongoing research is expanding the understanding of metastasis drivers and therapeutic targets.
- These novel strategies are expected to significantly impact future cancer therapeutic development.
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