2016
DOI: 10.17265/2161-6213/2016.5-6.005
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Nanorobotics in Drug Delivery Systems for Treatment of Cancer: A Review

Abstract: This review aims at giving an overview of the present status of nanorobotics in cancer therapy. With the aid of biotechnology, molecular biology (as engineered organism) and molecular medicine can develop fully self-sufficient nanorobots/nanobots. The nanorobotics considered, as a wonderful vision of medicine in the future are an advanced submicron device generally made of bio-nanocomponents. It has an eminence future in the drug delivery technology target in cancer, the disease that leading cause of death amo… Show more

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Cited by 20 publications
(10 citation statements)
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“…Chromallocyte: The Chromallocyte would replace entire chromosomes in individual cells thus reversing the effects of genetic disease and other accumulated damage to our genes, preventing aging. Inside a cell, repair machine will first size up the situation by examining the cell's contents and activity, and then take action by working along molecule-by-molecule and structure-by structure; repair machines will be able to repair the whole cell [3]. The major requirement for the nanorobot is, of course, power.…”
Section: Types Of Nanorobotsmentioning
confidence: 99%
See 1 more Smart Citation
“…Chromallocyte: The Chromallocyte would replace entire chromosomes in individual cells thus reversing the effects of genetic disease and other accumulated damage to our genes, preventing aging. Inside a cell, repair machine will first size up the situation by examining the cell's contents and activity, and then take action by working along molecule-by-molecule and structure-by structure; repair machines will be able to repair the whole cell [3]. The major requirement for the nanorobot is, of course, power.…”
Section: Types Of Nanorobotsmentioning
confidence: 99%
“…Most of the anti-cancer drugs like Doxorubicin are used in several types of cancer, such as HD (Hodgkin's disease), in which treatment is administered in combination with other antineoplastic agents in order to reduce their toxicity. Considering the properties of nanorobots to navigate as blood borne devices, they can help on such extremely important aspects of cancer therapy [8]. Nanorobots with embedded chemical biosensors can be used to perform detection of tumour cells in early stages of development inside the patient's body.…”
Section: Application Of Nano Robots In Cancer Treatmentmentioning
confidence: 99%
“…It is made out of a tank with a shutter covering it, from which dye molecules can escape when the lid is evenly opened. This device, which is natural and made of beta-cyclodextrins, organometallic compounds, and silica (SiO2), will be employed for therapeutic applications [16].…”
Section: Nanorobots and Their Typesmentioning
confidence: 99%
“…As drug carriers for prompt dosage regimens, nanorobots enable the maintenance, as required, of chemicals into the bloodstream for a longer period of time. Therefore, they provide the expected pharmacokinetic parameters for anticancer chemotherapy [13,15,85,86]. For molecular detection, diagnosis, and destruction in the initial phases of cancer progress of metastatic or malignant tumor cells, nanorobots often need a biosensing component.…”
Section: Ai-based Nanorobots For Drug Deliverymentioning
confidence: 99%