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Nanomedicine- Advances and Clinical Challenges
- Nano Medicine 2019

Abour Conference

Nano Medicine 2019 clears a stage to globalize the examination by introducing an exchange amongst ventures and scholarly associations and information exchange from research to industry  Nano Medicine 2019 points in broadcasting information and offer new thoughts among the experts, industrialists, and understudies from territories of Nanomedicine and Nanomaterials to share their exploration encounters and enjoy intuitive talks and exceptional sessions at the occasion.

The delight of going to Nano Medicine 2019 carries with it, change and incremental development in your way to deal with getting things done, in the more extensive way to see things and the magnificence to live universal decent variety.

Come be a Part of it...

Conference Highlights:-


Nanoparticles and Nanomedicine

Nanomedicine and Nanotechnology

Research and Development of  Nanomedicine

The Evolution of Nanomedicine with the Re-Evolution of Nanotechnology

Nanorobots in  Medicine

Nanotechnology in Food Science

Nanotechnology in Healthcare

Nanotechnology and Surgery

Future Concepts in Nanomedicine

Polymer Nanotechnology

Regulatory Aspects of Towards Approval of Nanomedicine

Emerging Nanomedicine

Nanobubble in Nanomedicine

Advanced Nanomaterials

Toxicology of Nanoparticles

Nanometrics for Cell Culture

Material Science and Engineering

Nanomedicine in Cancer Therapeutics

Applications of  Nanobiotechnology to Clinical Science

       Registration Benefits:

Only Registration Includes

01.     Access to all Sessions
02.     Handbook & Conference Kit
03.     Certificate Accreditation by the International Organizing Committee Members (IOCM)
04.     Abstracts will be published in the conference souvenir and respective international journal
05.     Each registrant will get 50% abatement on manuscript publication fees
06.     Ask the Expert Forums (One to One Pre-Scheduled meeting on interest and availability)
07.     10% abatement on the registration fees for the next annual conference
08.     10% abatement on the membership of the International conference
09.      2 Coffee breaks (refreshments and snacks) during the conference
10.     Lunch during the conference
11.     Wi-Fi

Package A: Above 11 features including the following...

 12.    Breakfast during the Conference
 13.    02 Night’s accommodation (i.e. June 18 & 19th) in the deluxe single/double room at the conference venue

Package B: Above 13 features including the following...

14.    1 Night extra accommodation i.e. June 20th (total 3 nights)

Discounts are available on Group Registrations

20% discount available on a group of 10+ members.

Welcome Message

Allied Academies takes the benefit to welcome Speakers, Undergraduate, Agents, and Exhibitors from over the globe to its lead meeting, Annual Congress on Materials Science Conference to be held  June 19-20, 2019 at Dublin, Ireland 

Nano Medicine 2019 is an exceptionally outlined bunch of a program that gives a typical stage where industry meets the scholarly community to examine the current issues and incident. It fills in as a scaffold between specialists from the scholarly world and industry, upgraded by its efficient logical sessions, entire addresses, publication introductions, world-class presentationsVarious Symposiums exceedingly improved workshops and B2B gatherings. 


Track: 1: Nanomedicine

The term Nano medicine encompasses a broad scope of technologies and materials. Kinds of Nanomaterials that have been researched for use as drugs, drug carriers or other Nonmedical agents. There has been steep growth in development of devices that incorporate Nanomaterials or other Nanotechnology. The nanotechnology-based medical devices market is classified into three major segments, namely, therapeutic applications, diagnostics applications, and research applications. Rising occurrence of lifestyle and age-related disorders (for example cardiovascular and hearing disorders) has contributed essentially to the growth of the nanotechnology-based active implantable devices market. Nanotechnology, or systems/device manufacture at the molecular level, is a multidisciplinary scientific field undergoing explosive development. On the surface, miniaturization provides cost effective and more rapidly functioning  biological components. Less obvious though is the fact that Nanometer measured objects also possesses remarkable self-ordering and assembly behaviors under the control of forces quite different from macro objects.

  • Reducing infections through Nanotechnology
  • A Nanotech Detector for Heart Attacks
  • Nano Neurosurgery on a chip 
  • Biodegradable Electrodes for Medical Devices
  • Nanotechnology in the Treatment of Neurodegenerative Disorders
  • Nanotech-Enabled Breathalyzer for Diabetics

Track 2: Nanoparticles and Nanomedicine

Nanomedicine is a part of medicine that applies the information and tools of nanotechnology in the prevention and treatment of diseases. Nanomedicine includes the utilization of nanoscale materials, such as biocompatible nanoparticles and Nano robots, for finding, conveyance, detecting or incitation purposes in a living organism. Nanoparticles with ~100 nanometers have been broadly used to improve the drug accumulation, internalization and therapeutic efficacy. The physicochemical and biological properties of the Nanoparticles can also be finely adjusted by tailoring their chemical properties, sizes, shapes, structures, morphologies, and surface properties. Nanomedicine is the medical application of Nanotechnology. Nanotechnology has given the likelihood of conveying medications to particular cells utilizing nanoparticles. Current issues for nanomedicine include understanding the issues identified with harmfulness and ecological effect of nanoscale materials.

Nanomedicine seeks to deliver a valuable set of research tools and clinically useful devices in the near future.The National Nanotechnology Initiative expects new commercial applications in the pharmaceutical industry that may include advanced drug delivery systems, new therapies, and in vivo imaging.

  • Regenerative Medicine
  • Inorganic Nanoparticles
  • Neurodegenerative Disorders
  • Nanocarriers for CNS Drug Delivery
  • Nanochemistry 

Track: 3: Nanomedicine and Nanotechnology 

Nanomedicine is a branch of medicine that applies the knowledge and tools of nanotechnology in the prevention and treatment of diseases. Nanomedicine involves the use of nanoscale materials, such as biocompatible nanoparticles and Nano robots, for diagnosis, delivery, sensing or actuation purposes in a living organism. Nanoparticles with ~100 nanometers have been widely used to improve the drug accumulation, internalization and therapeutic efficacy. The physicochemical and biological properties of the Nanoparticles can also be finely adjusted by tailoring their chemical properties, sizes, shapes, structures, morphologies, and surface properties. Nanomedicine is the medical application of Nanotechnology. Nanotechnology has provided the possibility of delivering drugs to specific cells using nanoparticles. Current problems for nanomedicine involve understanding the issues related to toxicity and environmental impact of nanoscale materials.

Track 4: Research and Development of  Nanomedicine

Nanomedicine has been developing rapidly in recent years, particularly in the development of novel nano tools for medical diagnosis and treatment. For instance, a new trend is becoming prevalent in developing Nanosystems for simultaneous tumour diagnosis and therapy. A new terminology "theranostics" has been frequently used and applied in pre-clinical research and trials. A Nanosystem can simultaneously achieve both cell targeted in vivoimaging and photothermal treatment of cancer. While achieving concurrent high spatial and temporal resolution of the lesions via cell targeting; special non-evasive treatments are implemented at the same time by various means, such as localized drug release, hyperthermia, and photo-thermal therapy. Inspired by these challenging problems in biomedical fields, the development of the nanotechnologies will be the key in addressing some of the critical issues in medicine, especially in early cancer diagnosis and treatment S

  • Nanotechnology in Nanomedicine
  • Explicit and Revolutionary of Nanomedicine
  • Development and Application of Ever-Improving Nanotools
  • Evolutionary of Nanomedicine

Track 5:The Evolution of Nanomedicine with the Re-Evolution of Nanotechnology

Nanotechnology seems to have gained a widespread interest in the recent years. Nanotechnology has considerably accelerated the growth of regenerative medicine the past few years. Application of Nanotechnology in regenerative medicine has revolutionized the designing of grafts and scaffolds which has resulted in new grafts/scaffold systems having significantly enhanced cellular and tissue regenerative properties. Since the cell–cell and cell-matrix interaction in biological systems takes place at the nanoscale level, the application of nanotechnology gives an edge in modifying the cellular function and/or matrix function in a more desired way to mimic the native tissue/organ. Nanomedicine introduces Nanotechnology concepts into medicine and thus joins two large cross-disciplinary fields with unprecedented societal and economical potential arising from the natural combination of specific achievements in the respective fields

  •        Antibacterial activity
  •        Nanomedicine and COPD
  •         Parkinson Disease
  •         Role in vaccines
  •         Treatment of breast cancer
  •         Autoimmune diseases Atherosclerosis

Track 6: Nanorobots in  Medicine

Advances in technology have increased our ability to manipulate the world around us . Nanotechnology is rapidly emerging within the realm of medicine. Nanomedicine is the process of diagnosing, treating, and preventing disease and traumatic injury, of relieving pain, and of preserving and improving human health, using molecular tools and molecular knowledge of the human body. An exciting and promising area of Nanotechnological development is the building of Nanorobots. Highly precise positioning techniques are required in   Miniaturing in chip technology, optics, micro mechanic, medicine, gene, and biotechnology. Nanorobots plays a critical role for many applications in the human body, such as targeting tumoral lesions for therapeutic purposes, miniaturization of the power source with an effect on board controllable propulsion and steering system have prevented the implementation of such mobile robots.

  • Cell repair Nanorobots
  • Detection and Treatment of Cancer
  • Medical Nanorobots for Diabetes Control
  • Positional Nanoassembly
  • Nanorobots in Gene Therapy

 Track: 7: Nanotechnology in Food Science 

 Nanoscience and nanotechnology are new frontiers of this century and food nanotechnology is an emerging technology. Food technology is regarded as one of the industry sectors where nanotechnology will play an important role in the future. The development of new products and applications involving nanotechnologies holds great promise in different industrial sectors, Nanotechnology stronger age and Nanoencapsulation of bioactive food compounds are few examples of emerging applications of nanotechnology for the food industry

  •          Antimicrobial activity of NPs
  •         Eco-toxicity of NPs

Track 8: Nanotechnology in Healthcare

Nano medicine affects almost all the aspects of healthcare. Nanomedicine helps to engineer novel and advanced tools for the treatment of various diseases and the improvement of human biosystems using molecular Nanotechnology. Cardiovascular diseases, Neurodegenerative disorders, Cancer, Diabetes, Infectious diseases, HIV/AIDS are the main diseases whose treatment can be benefitted by using Nano medicine.

  •          Carbon Nanotubes
  •          Nanobiomechanics and Nanomedicine
  •          Bio-inspired materials and drug delivery
  •          Biosensors and Nanobioelectronics
  •         Drug targeting
  •         Image-guided drug delivery
  •  Imaging

Track 9: Nanotechnology and Surgery

There are various applications and methods where nanotechnology helps or enhances implants and surgical instrument design. Nanotechnology offers a dream for a 'shrewd' medication way to deal with battling tumors: the capacity of nanoparticles to find growth cells and obliterate them with single-cell accuracy. A standout amongst the most critical applications for such nanoparticulate sedate conveyance could be the conveyance of the medication payload into the cerebrum and reconstructive surgery. In any case, crossing the blood-cerebrum obstruction – the brain defensive shield – is an impressive test. With the assistance of extraordinary nanoparticles, this ends up plainly conceivable.

  • Reconstructive Surgery
  •  Implant and Surgical Instrument Design
  • Minimizing Surgical Damage
  • Post-surgical and Other Wound Healing
  • Intracellular Nanosurgery

Track 10: Future Concepts in Nanomedicine

Nanomedicine is promising remarkable things, including great advancements in the treatment of cancer. Imagine a world where there is no donor organ shortage. Where victims of spinal cord injuries can walk, where weakened hearts are replaced. This is the long-term promise of regenerative medicine, a rapidly developing field with the potential to transform the treatment of human disease through the development of innovative new therapies that offer a faster, more complete recovery with significantly fewer side effects or risk of complications.

· Nanorobotics and Nanomedicine

·  Personalized Nanomedicine

·   Nanonephrology

·   Nanoneural Interfaces

·   Optical Imaging at the Nanoscale

Track 11:  Polymer Nanotechnology

Polymer nanotechnology plays an essential role in synthesizing nanoscale structures and devices. The most important advance in polymer science may be polymers that are doped with nanometre-sized particles to achieve properties superior to conventional polymers. Nanotechnology, polymer matrix based nanocomposites have become a prominent area of current research and development. Research of polymers and nanotechnology primarily focuses on efforts to design materials at a molecular level to achieve desirable properties and applications at a macroscopic level such as polymer-based biomaterials, drug carrier system, nanomedicine, nanoemulsion particles, fuel cell electrode polymer bound catalysts, layer-by-layer self-assembled polymer films, smart polymer, electrospun nanofabrication, imprint lithography, polymer blends, and variety of polymer nanocomposites.

  • Polymeric Nanoparticles
  • Liposomes
  • Drug Carrier System
  • Polymer Nanocomposites
  • Variety of Polymer Nanocomposites
  • Smart Polymer

Track 12: Regulatory Aspects of Towards Approval of Nanomedicine

Nanomedicines are an emerging product class in the health sector, hence, they have to comply with the high standards of the medicinal product regulation or other related legislative frameworks such as the medical devices regulation. The application of nanotechnology in health care is widely accepted as a potential driver of biomedical innovation. Nevertheless, the opportunities of nanotechnologies in the health sector are accompanied by challenges in the regulation of these products. Sufficient knowledge on their quality, safety, and efficacy must be gained and standardized methods must be made available to support the regulatory decision making and allow a smooth translation towards clinical applications Current, Future Applications and Regulatory challenges

  •          Regulatory Policies
  •          Nanomedicine: Prospects, Risks, and Regulatory Issues

Track 13: Emerging Nanomedicine

Currently, the treatment of HIV requires the regular oral dosage of HIV drugs, and chronic oral dosing has significant complications that arise from the high pill burden experienced by many patients across populations with varying conditions leading to non-adherence to therapies. The recent evaluation of HIV patient groups has shown a willingness to switch to nanomedicine alternatives if benefits can be shown. Research efforts by the Liverpool team have focused on the development of new oral therapies, using Solid Drug Nanoparticle (SDN) technology which can improve drug absorption into the body, reducing both the dose and the cost per dose and enabling existing healthcare budgets to treat more patients.

  •  Graphene Medicine
  •    Image-guided drug delivery
  •      Nanomedicine for Diabetes
  •       Autoimmune diseases
  •       Parkinson Disease

Track 14: Nanobubble in Nanomedicine

In recent years, microbubble and Nano bubble technologies have drawn great attention due to their wide applications in many fields of science and technology, such as water treatment, biomedical engineering, and nanomaterials. Nanobubbles exhibit unique characteristics; due to their minute size and high internal pressure, they can remain stable in water for prolonged periods of time.

  • Waste Water treatment
  • Mechanism of Nanobubble
  • Nanobubbles in cancer therapy
  • Stability of Interfacial Nanobubbles
  • Nucleation process in Nanobubbles

Track 15: Advanced Nanomaterials

Nanomedicine seeks to deliver a valuable set of research tools and clinically useful devices. The pharmaceutical industry is developing new commercial applications that may include synthesis and self-assembly of nanomaterials, advanced drug delivery systems, new therapies, and nanomaterials for Imaging and Drug Delivery. Another active and very much related area of research is the investigation of toxicity and environmental impact of nanoscale materials since nanomedicine must be biocompatible for clinical application.

  • Synthesis and Self-Assembly of Nanomaterials
  • Nanoscale Characterisation
  • Nanobiotechnology
  • Nanocomposites and Nanomagnetism
  • Molecular Nanotechnology
  • Commercialization of Nanotechnology

Track 16:  Toxicology of Nanoparticles

Nanotechnology is a rapidly growing field having potential applications in many areas. Nanoparticles have been studied for cell toxicity, immunotoxicity, and genotoxicity. Tetrazolium-based assays such as MTT, MTS, and WST-1 are used to determine cell viability. Different types of cell cultures, including cancer cell lines, have been employed as in vitro toxicity models. Considering the potential applications of NPs in many fields and the growing apprehensions of FDA about the toxic potential of Nano products, it is the need of the hour to look for new internationally agreed, free of bias toxicological models by focusing more on in vivo studies. The system was developed for Nanotoxicity assessment at single and multiple cell levels which can measure and compare the microscopic and macroscopic effects of nanoparticles interact with cells, without interference from neighboring cells' cues and also overall integrative effects produced by nanoparticles and cell-cell communication.

  •          Neonatal toxicity
  •          Mitochondrial injuries
  •          Cytotoxicity
  •          Toxicity to human lymphocytes
  •          Oral toxicity
  •          Toxicity due to inhalation of nanoparticles

Track 17: Nanometrics for Cell Culture

3D cell culture, recapitulating the length scale of naturally occurring nanotopographic structures, are now being used to elucidate how physical cues can direct cell behavior and orchestrate complex cellular processes such as stem cell differentiation and tissue organization. Advances in nanotechnology have unlocked our ability to create stimuli-responsive interfaces for spatially and temporally controlling extracellular physical and biochemical cues. Synthetic, natural and cellularized nanofiber scaffolds are used for intracellular sensing and delivery at the sub-cellular level. The field of nanoengineered cell– the material interface is rapidly evolving, carrying with it the potential for major breakthroughs in fundamental cellular studies and regenerative medicine.

  • 3D Cell Culture and the Issues of Scale and Purity
  • Synthetic Nanofiber Scaffold
  • Natural Nanofiber Scaffold
  • Cellularized Nanofiber Scaffold
  • Other Nanotechnology-based Cell Culture System
  • Stem Cell Application

Track 18:  Material Science and Engineering

Materials science is vital to nanotechnology since the properties of electronic-photonic and magnetic materials can change significantly when things are made to a great degree little. This perception isn't just that we have to quantify such properties or grow new preparing apparatuses to create nanodevices, nanosensors, and nanosystems. Or maybe, our vision is that the wide (and at times sudden) assortment of wonders related with nanostructured materials enables us to imagine drastically new gadgets and applications that must be made with biocompatible materials. 

  • Basic Principle and Applications
  • Electronic, Photonic and Magnetic materials
  • Energy Materials
  • Nanosensors and Nanosystems
  •  Biocompatible Materials

Track 19: Nanomedicine in Cancer Therapeutics

Nanomedicine science opens a new pool of opportunities for emerging new technologies in order to diagnose and treat fatal diseases, one of them being nanotechnology in cancer treatment. New nanotechnology enhanced tools are created at much smaller sizes than one of a human cell. With the help of these tools researchers and clinicians may detect the brutal disease of cancer in an earlier stage and move on with its treatment with fewer side effects; potentially cure it before it causes irreversible damage.

  • Non-specific, Localized Use of Nanoparticles for Tumor Ablation
  • Targeted Nanoparticle to Specific Sites for Tumor Ablation
  • Invivo Anticancer Platform Delivery

Track 20: Applications of  Nanobiotechnology to Clinical Science

Nanobiotechnology is the application of nanotechnology in biological fields. Nanobiotechnology has the huge number of possibilities for propelling restorative science in this manner enhancing human services hones the world over. Numerous novel nanoparticles and nanodevices are relied upon to be utilized, with a gigantic positive effect on human well-being. While genuine clinical uses of nanotechnology are still for all intents and purposes inexistent, a noteworthy number of promising therapeutic undertakings are in a progressed trial organize. Usage of nanotechnology in solution and physiology implies that instruments and gadgets are so actually composed that they can communicate

  •          Advantages of Nanobiotechnology
  •          Nanotechnology as a Tool in Imaging
  •          Biomolecular Engineering
  •          Biopharmaceuticals
  •          Nanotechnology in Cardiac Therapy
  •         Nanotechnology in Dental Care
  •          Nanotechnology in Orthopedic Applications

  •     Challenges of Nanobiotechnology

Market Analysis

  Nanomedicine is the medicinal use of nanotechnology. Nanomedicine ranges from the restorative utilizations of nanomaterials and biological devices to nanoelectronic biosensors, and even conceivable future uses of atomic nanotechnology, for example, biological machines.

According to the WHO factsheet, the disease is observed to be one of the real reasons for mortality and dreariness around the world, with roughly 14 million new cases in 2012 and 8.2 million growth related passings. Hence, interest for nanomedicine with a specific end goal to control such a high occurrence rate is relied upon to support showcase advance amid the estimated time frame.

The potential pipeline of items in light of the nanomolecules and related advancements are foreseen to drive the market with potential roads of development. Presence of around 40% of items in stage II of clinical advancement, is foreseen to result in various key commercialization over the coming decade affecting income age over the conjecture time frame. The modified treatment choices accessible for the destruction of hereditary variations from the norm additionally makes this technology a substantial option for precision medicine.

The key players for Nanomedicine Market 


Abraxis Bioscience 




Arrowhead Research 

GE Healthcare 




Epeius Biotechnologies 

Cytimmune Sciences 

Nanospectra Biosciences

Market segment by Type, the product can be split into 

Quantum dots 






VenueDublin, Ireland

Registration Benefits:

Only Registration Includes:

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