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Updated: Jul 31, 2025

High Throughput Characterization of Adult Stem Cells Engineered for Delivery of Therapeutic Factors for Neuroprotective Strategies
Published on: January 4, 2015
Cellular therapeutic potential of genetically engineered stem cells in cancer treatment
Emina Karahmet Sher1, Azra Kalić2, Amina Džidić-Krivić3,4
1Department of Biosciences, School of Science and Technology, Nottingham Trent University, Nottingham, UK.
Abstract:
Traditional therapeutic approaches in the treatment of cancer have many side effects and are often ineffective and non-specific, leading to the development of therapy-resistant tumour cells. Recently, numerous discoveries about stem cells have given a new outlook on their application in oncology. Stem cells are unique because of their biological attributes, including self-renewal, differentiation in different types of specialized cells and synthesis of molecules that interplay with tumour niche. They are already used as an effective therapeutic option for haematological malignancies, such as multiple myeloma and leukaemia. The main goal of this study is to investigate the possible applications of different types of stem cells in cancer treatment and to summarize novel advances, as well as the limitations of their application in cancer treatment. Research and clinical trials that are underway revealed and confirmed the enormous potential of regenerative medicine in the treatment of cancer, especially when combined with different nanomaterials. Nanoengineering of stem cells has been the focus of novel studies in the area of regenerative medicine, such as the production of nanoshells and nanocarriers that enhance the transport and uptake of stem cells in their targeted tumour niche and enable the effective monitoring of stem cell effects on tumour cells. Although nanotechnology has a lot of limitations, it provides new opportunities for the development of effective and innovative stem cell therapies.
Insights
Stem cells offer a promising new approach to cancer treatment, enhancing targeted therapy and overcoming resistance. Combining stem cell therapy with nanotechnology shows significant potential for innovative oncology solutions.
Area of Science:
- Oncology
- Regenerative Medicine
- Nanotechnology
Background:
- Traditional cancer therapies often cause side effects and lead to resistant tumor cells.
- Stem cells possess unique properties like self-renewal and differentiation, making them valuable in oncology.
- Stem cell therapy is already effective for hematological malignancies.
Purpose of the Study:
- To explore diverse stem cell applications in cancer treatment.
- To summarize recent advancements and challenges in stem cell therapy for cancer.
- To investigate the synergistic potential of stem cells and nanomaterials in cancer therapy.
Main Methods:
- Review of current research and clinical trials on stem cell applications in oncology.
- Analysis of stem cell properties relevant to tumor niche interaction.
- Exploration of nanoengineering strategies for stem cell-based cancer treatment.
Main Results:
- Stem cells demonstrate significant potential in regenerative medicine for cancer treatment.
- Combining stem cells with nanomaterials enhances targeted delivery and monitoring.
- Nanoengineered stem cells offer improved transport and uptake in tumor niches.
Conclusions:
- Stem cell-based regenerative medicine presents a novel frontier in cancer therapy.
- Nanoengineering of stem cells provides innovative opportunities for effective cancer treatment.
- Further research is needed to overcome limitations and optimize nanotechnology-based stem cell therapies.
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