Advancing Modern Healthcare With Nanotechnology, Nanobiosensors, and Internet of Nano Things: Taxonomies, Applications, Architecture, and Challenges
暂无分享,去创建一个
Pijush Kanti Dutta Pramanik | Anand Nayyar | Kyung-Sup Kwak | Shaker El-Sappagh | Pijush Kanti Dutta Pramanik | Arun Solanki | Abhinaba Debnath | K. Kwak | Shaker El-Sappagh | A. Nayyar | P. K. Pramanik | A. Solanki | A. Debnath | Abhinaba Debnath
[1] M Uner,et al. Preparation, characterization and physico-chemical properties of solid lipid nanoparticles (SLN) and nanostructured lipid carriers (NLC): their benefits as colloidal drug carrier systems. , 2006, Die Pharmazie.
[2] Elodie Boisselier,et al. Gold nanoparticles in nanomedicine: preparations, imaging, diagnostics, therapies and toxicity. , 2009, Chemical Society reviews.
[3] Navneet Verma,et al. Carbon Nanotubes: An Emerging Drug Carrier for Targeting Cancer Cells , 2014, Journal of drug delivery.
[4] João Paulo Silva Cunha,et al. Wearable Health Devices—Vital Sign Monitoring, Systems and Technologies , 2018, Sensors.
[5] Li Zhang,et al. The Optimized Fabrication of a Novel Nanobubble for Tumor Imaging , 2019, Front. Pharmacol..
[6] Yuexiang Lu,et al. Colorimetric Nanosensor Based on the Aggregation of AuNP Triggered by Carbon Quantum Dots for Detection of Ag+ Ions , 2018 .
[7] J. Viret,et al. Liposomes and virosomes as delivery systems for antigens, nucleic acids and drugs. , 2004, Current opinion in biotechnology.
[8] M. Prato,et al. Cellular uptake of functionalized carbon nanotubes is independent of functional group and cell type. , 2007, Nature nanotechnology.
[9] R. Stafford,et al. Nanoshell-mediated near-infrared thermal therapy of tumors under magnetic resonance guidance , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[10] Ergin Dinc,et al. Theoretical Limits on Multiuser Molecular Communication in Internet of Nano-Bio Things , 2017, IEEE Transactions on NanoBioscience.
[11] Wei Duan,et al. Fucoidan-based nanostructures: a focus on its combination with chitosan and the surface functionalization of metallic nanoparticles for drug delivery. , 2019, International journal of pharmaceutics.
[12] R. Bashir,et al. A microfluidic biochip for complete blood cell counts at the point-of-care. , 2015, Technology.
[13] G. Palleschi,et al. Enzyme inhibition-based biosensors for food safety and environmental monitoring. , 2006, Biosensors & bioelectronics.
[14] Christina D Smolke,et al. Synthetic biology: advancing biological frontiers by building synthetic systems , 2012, Genome Biology.
[15] G. S. Wilson,et al. Biosensors for real-time in vivo measurements. , 2005, Biosensors & bioelectronics.
[16] Feng Yan,et al. Electrochemical sensor for immunoassay of carcinoembryonic antigen based on thionine monolayer modified gold electrode. , 2005, Cancer detection and prevention.
[17] R. Prasad,et al. Nanotechnology in Sustainable Agriculture: Recent Developments, Challenges, and Perspectives , 2017, Front. Microbiol..
[18] Nazim Agoulmine,et al. Enabling communication and cooperation in bio-nanosensor networks: toward innovative healthcare solutions , 2012, IEEE Wireless Communications.
[19] Alan L. Gray,et al. Inductively coupled argon plasma as an ion source for mass spectrometric determination of trace elements , 1980 .
[20] Shalini Prasad,et al. Nanobiosensors: the future for diagnosis of disease? , 2014 .
[21] Marlus Chorilli,et al. New insights towards mesoporous silica nanoparticles as a technological platform for chemotherapeutic drugs delivery. , 2019, International journal of pharmaceutics.
[22] Pijush Kanti Dutta Pramanik,et al. Beyond Automation: The Cognitive IoT. Artificial Intelligence Brings Sense to the Internet of Things , 2018 .
[23] Shraddha Rathi,et al. Nanoscale modifications of dental implants: An emerging trend , 2018 .
[24] L. Milani,et al. Pharmacogenomic Biomarkers for Improved Drug Therapy—Recent Progress and Future Developments , 2017, The AAPS Journal.
[25] Raed M. Shubair,et al. Internet of NanoThings: Concepts and Applications , 2018, ArXiv.
[26] H. Schaefer. Nanoscience: The Science of the Small in Physics, Engineering, Chemistry, Biology and Medicine , 2010 .
[27] Frank Ludwig,et al. Protein detection with magnetic nanoparticles in a rotating magnetic field , 2014 .
[28] John M. Walker,et al. Molecular Biology and Biotechnology , 1988 .
[29] Janice Limson,et al. Acoustic biosensors , 2016, Essays in biochemistry.
[30] Marimuthu Palaniswami,et al. Internet of Things (IoT): A vision, architectural elements, and future directions , 2012, Future Gener. Comput. Syst..
[31] Luci Pirmez,et al. Internet of bionano-things: perspective and future directions , 2017 .
[32] Falko Dressler,et al. Connecting in-body nano communication with body area networks: Challenges and opportunities of the Internet of Nano Things , 2015, Nano Commun. Networks.
[33] Tuan Vo-Dinh,et al. SERS chemical sensors and biosensors: new tools for environmental and biological analysis☆ , 1995 .
[34] A. Nayyar,et al. Security and Privacy in Remote Healthcare , 2019, Telemedicine Technologies.
[35] Ki-Bum Lee,et al. Combined magnetic nanoparticle-based microRNA and hyperthermia therapy to enhance apoptosis in brain cancer cells. , 2014, Small.
[36] A. Aljabali,et al. Rapid Magnetic Nanobiosensor for the detection of Serratia marcescen , 2018 .
[37] Ting Song,et al. A review of imaging techniques for systems biology , 2008, BMC Systems Biology.
[38] Tejal A. Desai,et al. Nanoporous biocapsules for the encapsulation of insulinoma cells: biotransport and biocompatibility considerations , 2001, IEEE Transactions on Biomedical Engineering.
[39] Michael Berger,et al. Nano-Society: Pushing the Boundaries of Technology , 2009 .
[40] Preethi Kethineni,et al. Applications of internet of nano things: A survey , 2017, 2017 2nd International Conference for Convergence in Technology (I2CT).
[41] B. Tromberg,et al. Recent Advances in the Development and Analytical Applications of Biosensing Probes , 2017 .
[42] Nongyue He,et al. Recent advances in nano scaffolds for bone repair , 2016, Bone Research.
[43] M. Mohammed. Nanocomposites in total hip joint replacements , 2019, Applications of Nanocomposite Materials in Orthopedics.
[44] Yuan Zhang,et al. Delivery of Telomerase Reverse Transcriptase Small Interfering RNA in Complex with Positively Charged Single-Walled Carbon Nanotubes Suppresses Tumor Growth , 2006, Clinical Cancer Research.
[45] Arash Momeni,et al. Nanotechnology in bone tissue engineering. , 2015, Nanomedicine : nanotechnology, biology, and medicine.
[46] Kateryna Bazaka,et al. Cosmetic reconstruction in breast cancer patients: Opportunities for nanocomposite materials. , 2019, Acta biomaterialia.
[47] Ian F. Akyildiz,et al. Sensor Networks , 2002, Encyclopedia of GIS.
[48] Mirjana Maksimović,et al. The roles of nanotechnology and internet of nano things in healthcare transformation , 2017 .
[49] Ian F. Akyildiz,et al. TeraNets: ultra-broadband communication networks in the terahertz band , 2014, IEEE Wireless Communications.
[50] P. Cullis,et al. Lipid Nanoparticle Systems for Enabling Gene Therapies. , 2017, Molecular therapy : the journal of the American Society of Gene Therapy.
[51] Amirhossein Sahebkar,et al. Aptamer-functionalized liposomes for targeted cancer therapy. , 2019, Cancer letters.
[52] Yudong Zheng,et al. Silver nanoparticle/bacterial cellulose gel membranes for antibacterial wound dressing: investigation in vitro and in vivo , 2014, Biomedical materials.
[53] Ning Xia,et al. Nanomaterials-Based Colorimetric Immunoassays , 2019, Nanomaterials.
[54] Seok Jae Lee,et al. An Optical Biosensing Strategy Based on Selective Light Absorption and Wavelength Filtering from Chromogenic Reaction , 2018, Materials.
[55] Subhas Chandra. Medical IoT systems: architecture and security , 2017 .
[56] Yin-sheng Ma,et al. Propagation models for nanocommunication networks , 2010, Proceedings of the Fourth European Conference on Antennas and Propagation.
[57] M. Busquets,et al. Nanoparticles in magnetic resonance imaging: from simple to dual contrast agents , 2015, International journal of nanomedicine.
[58] W. Stach,et al. ICP-MS: a powerful technique for quantitative determination of gold nanoparticles without previous dissolving , 2009 .
[59] Suravi Pandit,et al. Nanotechnology based biosensors and its application , 2016 .
[60] Thiago Caon,et al. New trends in the food industry: application of nanosensors in food packaging , 2017 .
[61] Dong Nyoung Heo,et al. Double layers of gold nanoparticles immobilized titanium implants improve the osseointegration in rabbit models. , 2019, Nanomedicine : nanotechnology, biology, and medicine.
[62] Dana Petersen,et al. Current and future applications of nanotechnology in plastic and reconstructive surgery , 2014 .
[63] Nicolette N. Houreld,et al. A review on nanoparticle based treatment for wound healing , 2018 .
[64] G. S. Wilson,et al. Electrochemical Biosensors: Recommended Definitions and Classification , 1999, Biosensors & bioelectronics.
[65] Ming-Zher Poh,et al. Continuous assessment of epileptic seizures with wrist-worn biosensors , 2011 .
[66] Shuvo Roy,et al. Microelectromechanical systems and nephrology: the next frontier in renal replacement technology. , 2013, Advances in chronic kidney disease.
[67] Manoj K. Nayak,et al. Fluorescent Nanobiosensors for the Targeted Detection of Foodborne Bacteria , 2017 .
[68] Soumen Das,et al. Near infra-red polymeric nanoparticle based optical imaging in Cancer diagnosis. , 2019, Journal of photochemistry and photobiology. B, Biology.
[69] Andrei V. Okhokhonin,et al. Enzymeless determination of cholesterol using gold and silver nanoparticles as electrocatalysts , 2017, Journal of Analytical Chemistry.
[70] M. P. Saravanakumar,et al. A review on the classification, characterisation, synthesis of nanoparticles and their application , 2017 .
[71] Pijush Kanti Dutta Pramanik,et al. WBAN: Driving e-healthcare Beyond Telemedicine to Remote Health Monitoring , 2019, Telemedicine Technologies.
[72] Thomas Landrain,et al. Do-it-yourself biology: challenges and promises for an open science and technology movement , 2013, Systems and Synthetic Biology.
[73] Alisa N. Kozitsina,et al. Sensors Based on Bio and Biomimetic Receptors in Medical Diagnostic, Environment, and Food Analysis , 2018, Biosensors.
[74] Yuan Tian,et al. A DNA biosensor based on resonance light scattering using unmodified gold bipyramids , 2012, Microchimica Acta.
[75] Kobra Omidfar,et al. New analytical applications of gold nanoparticles as label in antibody based sensors. , 2013, Biosensors & bioelectronics.
[76] Sacheen Kumar,et al. High melting lipid based approach for drug delivery: solid lipid nanoparticles. , 2013, Materials science & engineering. C, Materials for biological applications.
[77] E. Wang,et al. Nanomaterials with enzyme-like characteristics (nanozymes): next-generation artificial enzymes. , 2013, Chemical Society reviews.
[78] Drew Endy,et al. A survey of enabling technologies in synthetic biology , 2013, Journal of biological engineering.
[79] Pierfrancesco Morganti,et al. Use and potential of nanotechnology in cosmetic dermatology , 2010 .
[80] Olivier Lazcka,et al. Pathogen detection: a perspective of traditional methods and biosensors. , 2007, Biosensors & bioelectronics.
[81] S. Belkin. Microbial whole-cell sensing systems of environmental pollutants. , 2003, Current opinion in microbiology.
[82] Kakarla Raghava Reddy,et al. Recent developments in functionalized polymer nanoparticles for efficient drug delivery system , 2019, Nano-Structures & Nano-Objects.
[83] Edith,et al. Application of nanotechnologies in the energy sector: A brief and short review , 2013 .
[84] B. Eggins. Chemical Sensors and Biosensors , 2002 .
[85] H. Fenniri,et al. Nanotechnology-based drug delivery systems , 2007, Journal of occupational medicine and toxicology.
[86] Bansi D. Malhotra,et al. Plasmonic Nanostructures: Fiber-Optic Biosensors , 2018 .
[87] Matthew T. Luebbers,et al. Breast implants: the good, the bad and the ugly. Can nanotechnology improve implants? , 2012, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[88] Shen Bin,et al. Research on data mining models for the internet of things , 2010, 2010 International Conference on Image Analysis and Signal Processing.
[89] Juan Pellico,et al. Nanoparticle-Based Paramagnetic Contrast Agents for Magnetic Resonance Imaging , 2019, Contrast media & molecular imaging.
[90] Gang Liu,et al. High-sensitivity nanosensors for biomarker detection. , 2012, Chemical Society reviews.
[91] Bhairab Mondal,et al. Highly Sensitive Colorimetric Biosensor for Staphylococcal Enterotoxin B by a Label-Free Aptamer and Gold Nanoparticles , 2018, Front. Microbiol..
[92] N H Lovell,et al. Unintended Consequences of Wearable Sensor Use in Healthcare , 2016, Yearbook of Medical Informatics.
[93] Ahmed A. Al-Ghamdi,et al. Magnetic Drug Delivery: Where the Field Is Going , 2018, Front. Chem..
[94] Divya Duggal,et al. Role Of Nanotechnology In New Drug Delivery Systems , 2011 .
[95] Ian F. Akyildiz,et al. Electromagnetic wireless nanosensor networks , 2010, Nano Commun. Networks.
[96] Benjamin C. Tang,et al. Glucose-responsive microgels integrated with enzyme nanocapsules for closed-loop insulin delivery. , 2013, ACS nano.
[97] M. Prato,et al. Functionalized carbon nanotubes in drug design and discovery. , 2008, Accounts of chemical research.
[98] Cristina Casadidio,et al. Nanocrystals of poorly soluble drugs : 2 drug bioavailability and physicochemical stability 3 , 2018 .
[99] Jie Zhou,et al. Applications of Nanotechnology in Plant Growth and Crop Protection: A Review , 2019, Molecules.
[100] Y. Koucheryavy,et al. The internet of Bio-Nano things , 2015, IEEE Communications Magazine.
[101] Jarno Salonen,et al. Intracellular responsive dual delivery by endosomolytic polyplexes carrying DNA anchored porous silicon nanoparticles , 2017, Journal of controlled release : official journal of the Controlled Release Society.
[102] Audrey Sassolas,et al. Immobilization strategies to develop enzymatic biosensors. , 2012, Biotechnology advances.
[103] Hariprasad Gali,et al. Fullerenes as Photosensitizers in Photodynamic Therapy , 2008 .
[104] Özgür B. Akan,et al. Body area nanonetworks with molecular communications in nanomedicine , 2012, IEEE Communications Magazine.
[105] Bui Trung Thanh,et al. Immobilization of Protein A on Monodisperse Magnetic Nanoparticles for Biomedical Applications , 2019, Journal of Nanomaterials.
[106] Chris Toumey,et al. Reading Feynman Into Nanotechnology: A Text for a New Science , 2008 .
[107] Abhishek Bhardwaj,et al. Nanotechnology in dentistry: Present and future. , 2014, Journal of international oral health : JIOH.
[108] Valtencir Zucolotto,et al. A peroxidase biomimetic system based on Fe3O4 nanoparticles in non-enzymatic sensors. , 2015, Talanta.
[109] R. M. Lec,et al. Acoustic wave biosensors , 1998, Proceedings of the 20th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. Vol.20 Biomedical Engineering Towards the Year 2000 and Beyond (Cat. No.98CH36286).
[110] M Laird Forrest,et al. Lymphatic drug delivery using engineered liposomes and solid lipid nanoparticles. , 2011, Advanced drug delivery reviews.
[111] James F Rusling,et al. Magnetic particles in ultrasensitive biomarker protein measurements for cancer detection and monitoring. , 2011, Expert opinion on medical diagnostics.
[112] Roberta Cavalli,et al. Nanobubbles: a promising efficient tool for therapeutic delivery. , 2016, Therapeutic delivery.
[113] Pijush Kanti Dutta Pramanik,et al. Healthcare Big Data: A Comprehensive Overview , 2019 .
[114] Ashutosh Tiwari,et al. Polymeric Micellar Structures for Biosensor Technology , 2016 .
[115] S. Venkata Mohan,et al. Biosensing Applications of Microbial Fuel Cell , 2019, Microbial Electrochemical Technology.
[116] Jianping Qi,et al. Adapting liposomes for oral drug delivery , 2018, Acta pharmaceutica Sinica. B.
[117] Khalid M El-Say,et al. Polymeric nanoparticles: Promising platform for drug delivery. , 2017, International journal of pharmaceutics.
[118] D. Scheinberg,et al. Tumor Targeting with Antibody-Functionalized, Radiolabeled Carbon Nanotubes , 2007, Journal of Nuclear Medicine.
[119] Manas Kumar Das,et al. DENDRIMERS IN DRUG DELIVERY, DIAGNOSIS AND THERAPY: BASICS AND POTENTIAL APPLICATIONS , 2016 .
[120] R. Sibbald,et al. Screening evaluation of an ionized nanocrystalline silver dressing in chronic wound care. , 2001, Ostomy/wound management.
[121] Rajeet Chandan,et al. Pro-apoptotic liposomes-nanobubble conjugate synergistic with paclitaxel: a platform for ultrasound responsive image-guided drug delivery , 2018, Scientific Reports.
[122] Leon Hirsch,et al. Nanoshell-Enabled Photonics-Based Imaging and Therapy of Cancer , 2004, Technology in cancer research & treatment.
[123] Omid C Farokhzad,et al. Nanotechnology for protein delivery: Overview and perspectives. , 2016, Journal of controlled release : official journal of the Controlled Release Society.
[124] Amay J Bandodkar,et al. Non-invasive wearable electrochemical sensors: a review. , 2014, Trends in biotechnology.
[125] Robert B. Sim,et al. Carbon nanotubes for biomedical applications , 2005, IEEE Transactions on NanoBioscience.
[126] Jean-Philippe Pignol,et al. PD-0434: Design of gold nanoparticle brachytherapy seeds for permanent breast seed implantation , 2015 .
[127] Goldie Oza,et al. SUPER-PARAMAGNETIC IRON OXIDE NANOPARTICLES (SPIONS) AS NANO-FLOTILLAS FOR HYPERTHERMIA: A PARADIGM FOR CANCER THERANOSTICS , 2014 .
[128] C. Alving,et al. Liposomes as carriers of antigens and adjuvants. , 1991, Journal of immunological methods.
[129] Jianghong Rao,et al. Recent progress on semiconducting polymer nanoparticles for molecular imaging and cancer phototherapy. , 2018, Biomaterials.
[130] Ian F. Akyildiz,et al. The Internet of nano-things , 2010, IEEE Wireless Communications.
[131] Pratik Banerjee,et al. Mammalian cell-based biosensors for pathogens and toxins. , 2009, Trends in biotechnology.
[132] Palashpriya Das,et al. New avenues of controlling microbial infections through anti-microbial and anti-biofilm potentials of green mono-and multi-metallic nanoparticles: A review. , 2019, Journal of microbiological methods.
[133] Abdollah Esmaeili,et al. Applications of Nanotechnology in Oil and Gas Industry , 2011 .
[134] Peter T Kissinger,et al. Biosensors-a perspective. , 2005, Biosensors & bioelectronics.
[135] I. Tothill. Biosensors for cancer markers diagnosis. , 2009, Seminars in cell & developmental biology.
[136] Naresh Kumar,et al. Nanotechnology: The new perspective in precision agriculture , 2017, Biotechnology reports.
[137] Norman S. Allen,et al. Radical scavenging efficiency of different fullerenes C60–C70 and fullerene soot , 2009 .
[138] J L West,et al. Applications of nanotechnology to biotechnology commentary. , 2000, Current opinion in biotechnology.
[139] Laurent Vial,et al. Artificial enzyme-based biosensors , 2009 .
[140] Barbara Ruozi,et al. Polymeric nanoparticles for the drug delivery to the central nervous system , 2008, Expert opinion on drug delivery.
[141] Li Bai,et al. A data processing framework for IoT based online monitoring system , 2013, Proceedings of the 2013 IEEE 17th International Conference on Computer Supported Cooperative Work in Design (CSCWD).
[142] Raunak Jahan,et al. Nanopharmaceuticals: A New Perspective of Drug Delivery System , 2012 .
[143] Scott D. Solomon,et al. Essential Echocardiography: A Companion to Braunwald’s Heart Disease , 2018 .
[144] Pijush Kanti Dutta Pramanik,et al. Internet of things, smart sensors, and pervasive systems: Enabling connected and pervasive healthcare , 2019, Healthcare Data Analytics and Management.
[145] Jonathan R. Lindner,et al. Principles of Contrast Echocardiography , 2019, Essential Echocardiography.
[146] Yi Lv,et al. DNA-templated copper nanoparticles: Versatile platform for label-free bioassays , 2018, TrAC Trends in Analytical Chemistry.
[147] Shaojun Dong,et al. Nanozyme: An emerging alternative to natural enzyme for biosensing and immunoassay , 2018 .
[148] J. Marty,et al. Biomolecule immobilization in biosensor development: tailored strategies based on affinity interactions. , 2008, Protein and peptide letters.
[149] Evan C. Unger. Nanobubble‐Enhanced Sonothrombolysis: From Benchtop to Bedside , 2006 .
[150] James W. Arbogast,et al. Electron transfer to triplet fullerene C60 , 1992 .
[151] Gourinath Banda,et al. One IoT: an IoT protocol and framework for OEMs to make IoT-enabled devices forward compatible , 2016, Journal of Reliable Intelligent Environments.
[152] Yu Wang,et al. Biosynthetic nanobubbles for targeted gene delivery by focused ultrasound. , 2019, Nanoscale.
[153] Longyi Chen,et al. Fluorescent Nanobiosensors for Sensing Glucose , 2018, Sensors.
[154] Walter Kolch,et al. Big signals from small particles: regulation of cell signaling pathways by nanoparticles. , 2013, Chemical reviews.
[155] Anand Nayyar,et al. Internet of Nano Things (IoNT): Next Evolutionary Step in Nanotechnology , 2017 .
[156] Pranveer Singh,et al. Surface Plasmon Resonance: A Boon for Viral Diagnostics , 2017, Reference Module in Life Sciences.
[157] Ramachandran Srinivasan,et al. Nanomaterials: Classification, Biological Synthesis and Characterization , 2016 .
[158] John T McDevitt,et al. Programmable bio-nanochip technology for the diagnosis of cardiovascular disease at the point-of-care. , 2012, Methodist DeBakey cardiovascular journal.
[159] Anand Nayyar,et al. BioSenHealth 1.0: A Novel Internet of Medical Things (IoMT)-Based Patient Health Monitoring System , 2018, International Conference on Innovative Computing and Communications.
[160] S. Nie,et al. In vivo cancer targeting and imaging with semiconductor quantum dots , 2004, Nature Biotechnology.
[161] James R Heath,et al. Starched carbon nanotubes. , 2002, Angewandte Chemie.
[162] V. Mody,et al. Magnetic nanoparticle drug delivery systems for targeting tumor , 2014, Applied Nanoscience.
[163] Li Shi,et al. Designer nanoparticles: incorporating size, shape and triggered release into nanoscale drug carriers , 2010, Expert opinion on drug delivery.
[164] Jianghong Rao,et al. Recent advances of semiconducting polymer nanoparticles in in vivo molecular imaging. , 2016, Journal of controlled release : official journal of the Controlled Release Society.
[165] Li Zhang,et al. The Optimized Fabrication of Nanobubbles as Ultrasound Contrast Agents for Tumor Imaging , 2015, Scientific Reports.
[166] Rajasekhar Chokkareddy,et al. Green Synthesis of Metal Nanoparticles and its Reaction Mechanisms , 2018, Green Metal Nanoparticles.
[167] Michael R Hamblin,et al. Functionalized fullerenes mediate photodynamic killing of cancer cells: Type I versus Type II photochemical mechanism. , 2007, Free radical biology & medicine.
[168] L. Wackett. Biosensors , 2008, Microbial biotechnology.
[169] Yun Hang Hu,et al. Nanotechnology for sustainable energy , 2013 .
[170] Gabriel A Silva,et al. Introduction to nanotechnology and its applications to medicine. , 2004, Surgical neurology.
[171] Rajkumar Buyya,et al. Article in Press Future Generation Computer Systems ( ) – Future Generation Computer Systems Cloud Computing and Emerging It Platforms: Vision, Hype, and Reality for Delivering Computing as the 5th Utility , 2022 .
[172] Raoul Kopelman,et al. Room-temperature preparation and characterization of poly (ethylene glycol)-coated silica nanoparticles for biomedical applications. , 2003, Journal of biomedical materials research. Part A.
[173] Ali Khademhosseini,et al. Emerging Trends in Micro- and Nanoscale Technologies in Medicine: From Basic Discoveries to Translation. , 2017, ACS nano.
[174] Hadi Heidari,et al. Magnetic biosensors: Modelling and simulation. , 2018, Biosensors & bioelectronics.
[175] Ronit Satchi-Fainaro,et al. Nano-sized polymers and liposomes designed to deliver combination therapy for cancer. , 2013, Current opinion in biotechnology.
[176] Roberta Cavalli,et al. Micro- and nanobubbles: a versatile non-viral platform for gene delivery. , 2013, International journal of pharmaceutics.
[177] Amina Antonacci,et al. Synthetic biology and biomimetic chemistry as converging technologies fostering a new generation of smart biosensors. , 2015, Biosensors & bioelectronics.
[178] Erez Lieberman Aiden,et al. The expanding scope of DNA sequencing , 2012, Nature Biotechnology.
[179] Evan C. Unger. Treatment of ischemic stroke with nanobubbles and ultrasound , 2006 .
[180] Laura Galluccio,et al. Ultrasonic networking for E-health applications , 2013, IEEE Wireless Communications.
[181] R. Young,et al. Mechanical properties of graphene and graphene-based nanocomposites , 2017 .
[182] Ian F. Akyildiz,et al. Nanonetworks: A new communication paradigm , 2008, Comput. Networks.
[183] Vojtech Adam,et al. Magnetic Nanoparticles: From Design and Synthesis to Real World Applications , 2017, Nanomaterials.
[184] Hui Li,et al. Silver nanoparticles as labels for applications in bioassays , 2014 .
[185] Nosratollah Zarghami,et al. An update on application of nanotechnology and stem cells in spinal cord injury regeneration. , 2017, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[186] Ian F. Akyildiz,et al. Distributed Timely Throughput Optimal Scheduling for the Internet of Nano-Things , 2016, IEEE Internet of Things Journal.
[187] S. N. Sawant,et al. Development of Biosensors From Biopolymer Composites , 2017 .
[188] Jussi Kangasharju,et al. Realizing the Internet of Nano Things: Challenges, Solutions, and Applications , 2013, Computer.
[189] Pijush Kanti Dutta Pramanik,et al. Power Consumption Analysis, Measurement, Management, and Issues: A State-of-the-Art Review of Smartphone Battery and Energy Usage , 2019, IEEE Access.
[190] Anjali Anand,et al. Nanozymes and aptamer-based biosensing , 2020 .
[191] Junzo Sunamoto,et al. Targeting chemotherapy of brain tumor using liposome-encapsulated cisplatin. Part 2. Pullulancoated liposomes to target brain tumor. , 1990 .
[192] F. Masood,et al. Polymeric nanoparticles for targeted drug delivery system for cancer therapy. , 2016, Materials science & engineering. C, Materials for biological applications.
[193] P. Jain,et al. Gold nanoparticles: interesting optical properties and recent applications in cancer diagnostics and therapy. , 2007, Nanomedicine.
[194] Yiliang Jin,et al. Nanozyme-based catalytic theranostics , 2019, RSC advances.
[195] Vladimir Vujovic,et al. The Future of Healthcare: Nanomedicine and Internet of Nano Things , 2015 .
[196] I. Zuhorn,et al. Solid lipid nanoparticles as nucleic acid delivery system: properties and molecular mechanisms. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[197] Zhuang Liu,et al. Drug delivery with carbon nanotubes for in vivo cancer treatment. , 2008, Cancer research.
[198] Sanjay Garg,et al. Advanced drug-delivery systems , 2011 .
[199] L. Audah,et al. Sensor node data validation techniques for realtime IoT/WSN application , 2017, 2017 14th International Multi-Conference on Systems, Signals & Devices (SSD).
[200] Harsh Panwar,et al. Nanotechnology: An Untapped Resource for Food Packaging , 2017, Front. Microbiol..
[201] Parth Malik,et al. Nanobiosensors: Concepts and Variations , 2013 .
[202] Prasenjit Choudhury,et al. Processing IoT Data: From Cloud to Fog. It’s Time to be Down-to-Earth , 2018 .
[203] Maxim P. Nikitin,et al. Nano-biosensors based on dynamic light scattering , 2019, Optical Metrology.
[204] Tuan Vo-Dinh,et al. Plasmonics-based SERS nanobiosensor for homogeneous nucleic acid detection. , 2015, Nanomedicine : nanotechnology, biology, and medicine.
[205] J. Vörös,et al. Electrochemical Biosensors - Sensor Principles and Architectures , 2008, Sensors.
[206] Mark E. Meyerhoff,et al. Recent advances in the development and analytical applications of biosensing probes , 1988 .
[207] Paolo Pinton,et al. Nanoscale particle therapies for wounds and ulcers. , 2010, Nanomedicine.
[208] Maciej Cieplak,et al. Artificial Biosensors: How Can Molecular Imprinting Mimic Biorecognition? , 2016, Trends in biotechnology.
[209] Jiangjiexing Wu,et al. Nanomaterials with enzyme-like characteristics (nanozymes): next-generation artificial enzymes (II). , 2019, Chemical Society reviews.
[210] R. Hickel,et al. Nanoparticles in dentistry. , 2017, Dental materials : official publication of the Academy of Dental Materials.
[211] Najah Abu Ali,et al. Internet of Nano-Things network models and medical applications , 2016, 2016 International Wireless Communications and Mobile Computing Conference (IWCMC).
[212] Khalid Saeed,et al. Nanoparticles: Properties, applications and toxicities , 2017, Arabian Journal of Chemistry.
[213] Khalil Arshak,et al. An overview of foodborne pathogen detection: in the perspective of biosensors. , 2010, Biotechnology advances.
[214] Jonghoon Choi,et al. Oxygen-Carrying Micro/Nanobubbles: Composition, Synthesis Techniques and Potential Prospects in Photo-Triggered Theranostics , 2018, Molecules.
[215] Hiroyuki Honda,et al. Medical application of functionalized magnetic nanoparticles. , 2005, Journal of bioscience and bioengineering.