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Published on: June 18, 2013
Drug delivery approaches for HuR-targeted therapy for lung cancer
Rajeswari Raguraman1, Santny Shanmugarama2, Meghna Mehta3
1Department of Pathology, The University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA; Stephenson Cancer Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.
Abstract:
Lung cancer (LC) is often diagnosed at an advanced stage and conventional treatments for disease management have limitations associated with them. Novel therapeutic targets are thus avidly sought for the effective management of LC. RNA binding proteins (RBPs) have been convincingly established as key players in tumorigenesis, and their dysregulation is linked to multiple cancers, including LC. In this context, we review the role of Human antigen R (HuR), an RBP that is overexpressed in LC, and further associated with various aspects of LC tumor growth and response to therapy. Herein, we describe the role of HuR in LC progression and outline the evidences supporting various pharmacologic and biologic approaches for inhibiting HuR expression and function. These approaches, including use of small molecule inhibitors, siRNAs and shRNAs, have demonstrated favorable results in reducing tumor cell growth, invasion and migration, angiogenesis and metastasis. Hence, HuR has significant potential as a key therapeutic target in LC. Use of siRNA-based approaches, however, have certain limitations that prevent their maximal exploitation as cancer therapies. To address this, in the conclusion of this review, we provide a list of nanomedicine-based HuR targeting approaches currently being employed for siRNA and shRNA delivery, and provide a rationale for the immense potential therapeutic benefits offered by nanocarrier-based HuR targeting and its promise for treating patients with LC.
Insights
Human antigen R (HuR) is a key target in lung cancer (LC) therapy. Targeting HuR with novel nanomedicine approaches shows promise for effective LC treatment and overcoming limitations of current therapies.
Area of Science:
- Oncology
- Molecular Biology
- Nanomedicine
Background:
- Lung cancer (LC) often presents at advanced stages with limited treatment options.
- RNA binding proteins (RBPs) are implicated in tumorigenesis, with Human antigen R (HuR) being overexpressed in LC.
- HuR dysregulation is linked to LC progression, tumor growth, and therapeutic response.
Purpose of the Study:
- To review the role of HuR in lung cancer progression.
- To outline therapeutic strategies targeting HuR expression and function.
- To explore nanomedicine-based approaches for HuR targeting in LC treatment.
Main Methods:
- Review of existing literature on HuR's role in LC.
- Analysis of pharmacologic and biologic approaches to inhibit HuR.
- Examination of nanomedicine-based delivery systems for siRNA and shRNA targeting HuR.
Main Results:
- HuR overexpression is associated with LC tumor growth, invasion, migration, angiogenesis, and metastasis.
- Inhibiting HuR via small molecules, siRNAs, and shRNAs shows potential in reducing tumor progression.
- Nanomedicine offers promising strategies for effective siRNA and shRNA delivery for HuR targeting.
Conclusions:
- HuR is a significant therapeutic target for lung cancer.
- Nanocarrier-based delivery systems hold immense potential for HuR-targeted LC therapy.
- Further development of nanomedicine approaches is crucial for clinical translation in LC treatment.
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