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Intra-iliac Artery Injection for Efficient and Selective Modeling of Microscopic Bone Metastasis
Published on: September 26, 2016
Potential of targeted drug delivery system for the treatment of bone metastasis
1a Department of Pharmaceutics , Al-Ameen College of Pharmacy , Bangalore , Karnataka , India.
Abstract:
Bone metastasis is a devastating complication of cancer that requires an immediate attention. Although our understanding of the metastatic process has improved over the years, yet a number of questions still remain unanswered, and more research is required for complete understanding of the skeletal consequences of metastasis. Furthermore, as no effective treatments are available for some of the most common skeleton disorders such as arthritis, osteoarthritis, osteosarcoma and metastatic bone cancer, there is an urgent need to develop new drugs and drug delivery systems for safe and efficient clinical treatments. Hence this article describes the potential of targeted delivery platforms aimed specifically at bone metastasized tumors. The review gives a brief understanding of the proposed mechanisms of metastasis and focuses primarily on the targeting moieties such as bisphosphonates, which represent the current gold standard in bone metastasis therapies. Special focus has been given to the targeted nanoparticulate systems for treating bone metastasis and its future. Also highlighted are some of the therapeutic targets that can be exploited for designing therapies for bone metastasis. Some of the patented molecules for bone metastasis prevention and treatment have also been discussed. Recently proposed HIFU-CHEM, which utilizes High Intensity Focused ultrasound (HIFU) guided by MRI in combination with temperature-sensitive nanomedicines has also been briefed. The study has been concluded with a focus on the innovations requiring an immediate attention that could improve the treatment modality of bone metastasis.
Insights
Targeted delivery platforms offer new hope for treating bone metastasis, a serious cancer complication. Research focuses on bisphosphonates and nanoparticulate systems to improve drug delivery and patient outcomes.
Area of Science:
- Oncology
- Nanomedicine
- Drug Delivery
Background:
- Bone metastasis is a severe cancer complication with limited treatment options.
- Existing therapies for bone disorders like arthritis and osteosarcoma are insufficient.
- Understanding metastatic mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To review targeted delivery platforms for bone metastasized tumors.
- To explore bisphosphonates and nanoparticulate systems in bone metastasis therapy.
- To identify therapeutic targets and innovations for improved bone metastasis treatment.
Main Methods:
- Literature review of bone metastasis mechanisms and targeting moieties.
- Focus on bisphosphonates as a gold standard in bone metastasis therapy.
- Analysis of targeted nanoparticulate systems and novel therapeutic strategies.
Main Results:
- Bisphosphonates are key targeting moieties for bone metastasis.
- Nanoparticulate systems show significant potential for targeted drug delivery.
- Novel approaches like HIFU-CHEM offer promising therapeutic avenues.
Conclusions:
- Targeted delivery platforms, particularly nanoparticulate systems, are vital for advancing bone metastasis treatment.
- Further research into therapeutic targets and innovative drug delivery is essential.
- Developing new drugs and delivery systems is critical for clinical application.
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