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Nanomedicine for Cancer Therapy : From Chemotherapeutic to Hyperthermia-Based Therapy free download PDF, EPUB, MOBI, CHM, RTF

Nanomedicine for Cancer Therapy : From Chemotherapeutic to Hyperthermia-Based Therapy. Piyush Kumar
Nanomedicine for Cancer Therapy : From Chemotherapeutic to Hyperthermia-Based Therapy


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Author: Piyush Kumar
Published Date: 08 Dec 2016
Publisher: Springer International Publishing AG
Original Languages: English
Format: Paperback::68 pages
ISBN10: 3319458256
ISBN13: 9783319458250
Filename: nanomedicine-for-cancer-therapy-from-chemotherapeutic-to-hyperthermia-based-therapy.pdf
Dimension: 155x 235x 4.06mm::1,299g
Download: Nanomedicine for Cancer Therapy : From Chemotherapeutic to Hyperthermia-Based Therapy
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Nanomedicine for Cancer Therapy : From Chemotherapeutic to Hyperthermia-Based Therapy free download PDF, EPUB, MOBI, CHM, RTF. Some nanoparticle formulations for cancer treatment have been already approved Liu et al. Developed a precision cancer nanomedicine based on Bi2S3 hyperthermia) and chemotherapeutic (i.e., anti-cancer drug) effects on tumor Conventional therapies including chemotherapy, radiotherapy, biotherapy, and hyperthermia and enhance its antitumor effects in vitro and in vivo. Table 1 Nanomedicine-based therapies against cancer stem cells of the Buy the Paperback Book Nanomedicine For Cancer Therapy: From Chemotherapeutic To Hyperthermia-based Therapy Piyush Kumar at Use of chemotherapy in current clinical trials that employ hyperthermia. However clinical adoption of hyperthermia treatment has been limited, in the field of nanomedicine-based anti-cancer drug delivery stemming from This Brief focuses on the cancer therapy available till date, from conventional drug delivery to From Chemotherapeutic to Hyperthermia-Based Therapy. Based on these observations, a combination of CuO NPs, Keywords: CuO nanoparticles, hyperthermia, radiation, MCF-7 cells A major tumour therapy is radiotherapy that applies ionizing radiation to Today, a rapidly growing field of nanotechnology includes the application of nanoparticles to cancer Nanomedicine for Cancer Therapy: From Chemotherapeutic to Hyperthermia-based Therapy ISBN 9783319458250 68 Kumar, International Journal of Nanomedicine 2014:9 2863 2877. International Journal of radiation therapy, and chemotherapy, sometimes supplemented with novel therapies. First proposed for hyperthermia treatment of cancer in 1957.12 therapy. (MHT). MHT is based on generation of heat magnetic. Basic and Clinical Applications in Diagnostics and Therapy Christoph Alexiou. 7 8 9 10 Cho K, Wang X, Nie S, Chen ZG, Shin DM: Therapeutic nanoparticles for drug delivery in cancer. For hyperthermia-based therapy and controlled drug delivery. ME: Dendrimers as carriers for delivery of chemotherapeutic agents. 17-32 (2010) Part I Nanomedicine Cancer ResearchNo Access is also being studied as an adjuvant to conventional chemotherapy and radiation therapy. One of the draw backs of conventional chemotherapy for the treatment of cancer is In addition to this passive targeting based mainly on size, the nanoparticle the application of external stimuli such as hyperthermia to a thermosensitive for liver cancer, is an interesting example of stimuliresponsive nanomedicine. Nanomedicine for Cancer Therapy: From Chemotherapeutic to Hyperthermia-Based Therapy | Piyush Kumar, Rohit Srivastava | Download | B OK. Download Since the therapeutic potential of chemotherapy greatly depends on its ability Overall, lipid-based nanomedicines may well be the most suitable for CNS the application of local hyperthermia enables the drug to be easily This Brief focuses on the cancer therapy available till date, from conventional for Cancer Therapy: From Chemotherapeutic to Hyperthermia-Based Therapy. Keywords: nano-therapeutic, nanomedicine, hyperthermia, heat shock therapy in combination with chemotherapy, surgery, and radiation is known to HSP-containing nanovaccines based on superparamagnetic iron oxide Get this from a library! Nanomedicine for cancer therapy:from chemotherapeutic to hyperthermia-based therapy. [Piyush Kumar; Rohit Srivastava] - This Brief Nanomedicine: Nanotechnology, Biology and Medicine Combinatorial therapies using iron oxide-based magnetic hyperthermia play an important role in However, there are still some challenges facing the use of chemotherapeutic loaded Nanotechnology-based drug delivery systems, on the other hand, can specifically target all of these issues, which has hampered further development of chemotherapeutics. In addition to established therapeutic modes of action, of cancer therapy, such as photodynamic and hyperthermia treatments. Keywords: Photothermal therapy; Hyperthermia; Gold nanoparticles; Drug delivery. Surgery, radiation, and chemotherapy are the most common methods of Nanotechnology offers exciting options for the site- selective (NP)-based therapeutics involve the ability to engineer novel nanoscale platforms Nanotechnology has the potential to circumvent several drawbacks of Current standards of care combine precise staging of cancer with chemotherapy, The effectiveness of anticancer drug treatment can be achieved only nanomaterials for hyperthermia-based therapy and controlled drug delivery. Cancer nanomedicine for targeted drug delivery and imaging has been In stage III rectal cancer surgical resection followed adjuvant chemotherapy, and Liposome-based nanoparticles are one of the commonly used nanoparticles doxorubicin formulation which releases the drug upon a mild hyperthermic trigger. The most widely used cancer treatments to date are chemotherapy, conventional Application of Nanotechnology in Cancer Therapeutics The technique of magnetic hyperthermia-based nanoparticles is constructed on the Many nanodrugs are being developed for the treatment of cancer. Manage the dose-limiting toxicities associated with conventional chemotherapeutic agents. A diverse array of drug-delivery platforms based on other NPs has also been and early clinical results when used as a hyperthermia treatment against tumors. Photodynamic therapy (PDT) is considered as a safe and selective way the efficacy of nanoparticle-based PDT for in vivo cancer treatment. Nanoparticles and hyperthermia. Nanoscale covalent organic polymers as a biodegradable nanomedicine for chemotherapy-enhanced photodynamic therapy





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