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Neuro-ophthalmic side effects of molecularly targeted cancer drugs
M T Bhatti1,2,3, A K S Salama4
1Department of Ophthalmology, Duke Eye Center, Durham, NC, USA.
Abstract:
The past two decades has been an amazing time in the advancement of cancer treatment. Molecularly targeted therapy is a concept in which specific cellular molecules (overexpressed, mutationally activated, or selectively expressed proteins) are manipulated in an advantageous manner to decrease the transformation, proliferation, and/or survival of cancer cells. In addition, increased knowledge of the role of the immune system in carcinogenesis has led to the development of immune checkpoint inhibitors to restore and enhance cellular-mediated antitumor immunity. The United States Food and Drug Administration approval of the chimeric monoclonal antibody (mAb) rituximab in 1997 for the treatment of B cell non-Hodgkin lymphoma ushered in a new era of targeted therapy for cancer. A year later, trastuzumab, a humanized mAb, was approved for patients with breast cancer. In 2001, imatinib was the first small-molecule kinase inhibitor approved. The approval of ipilimumab-the first in class immune checkpoint inhibitor-in 2011 serves as a landmark period of time in the resurgence of immunotherapy for cancer. Despite the notion that increased tumor specificity results in decreased complications, toxicity remains a major hurdle in the development and implementation of many of the targeted anticancer drugs. This article will provide an overview of the current cellular and immunological understanding of cancer pathogenesis-the foundation upon which molecularly targeted therapies were developed-and a description of the ocular and neuro-ophthalmic toxicity profile of mAbs, immune checkpoint inhibitors, and small-molecule kinase inhibitors.
Insights
Recent advances in cancer treatment include molecularly targeted therapies and immunotherapies. This review details their development and associated ocular and neuro-ophthalmic toxicities.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Cancer treatment has significantly advanced over the past two decades.
- Molecularly targeted therapy and cancer immunotherapy have emerged as key treatment modalities.
- Understanding cancer pathogenesis at cellular and immunological levels is foundational.
Purpose of the Study:
- To provide an overview of molecularly targeted therapies and immunotherapies in cancer treatment.
- To describe the ocular and neuro-ophthalmic toxicity profiles of these novel therapeutic agents.
Main Methods:
- Review of scientific literature on cancer pathogenesis, molecularly targeted therapy, and immunotherapy.
- Analysis of FDA-approved targeted drugs, including monoclonal antibodies (mAbs) and small-molecule kinase inhibitors.
- Examination of immune checkpoint inhibitors and their impact on anti-tumor immunity.
Main Results:
- Key approvals include rituximab (mAb), trastuzumab (mAb), imatinib (small-molecule kinase inhibitor), and ipilimumab (immune checkpoint inhibitor).
- These therapies target specific molecules or enhance immune responses against cancer cells.
- Despite increased tumor specificity, toxicity remains a significant challenge.
Conclusions:
- Molecularly targeted therapies and immunotherapies represent significant progress in cancer treatment.
- Understanding the underlying mechanisms of cancer pathogenesis is crucial for developing these therapies.
- Ocular and neuro-ophthalmic toxicities associated with these treatments require careful monitoring and management.
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