Webinar on

Nanomedicine

May 27, 2021

Nanomedicine 2021

Theme: Nanomedicine: Shaping the future of next generation medicine

Webinar on Nanomedicine are going to be held on May 27, 2021. The theme of the Webinar is “Nanomedicine: Shaping the future of next generation medicine”. Since the appearance of engineering science, there has been an amazing growth during this field of nano-bio-technology. several merchandise introduced into the market square measure supported nano-bio-technology and square measure helpful to atmosphere watching, fast medicine, diseases watching, diseases management, and customized health care. The final word aim of this approach is to create a far better and healthier tomorrow for everyone. NanoMedicine 2021 can cowl the foremost recent international developments within the field of Nanobiotechnology and Nanomedicine. Participants can get a whole summary on the state of the art in these fields and on the analysis applied and also the latest results. Recent advances, difficulties and breakthroughs still as rising and future trends of the joining fields of engineering science, Biotechnology and medication are going to be mentioned. The event offers to the participants from each science and business the chance to debate new cooperation comes.

Nanomedicine could be a unambiguously addressing the vital challenges and advances in medical nanoscale-structured material and devices, biotechnology devices and molecular machine systems and nanorobotics. NanoMedicine 2021 could be a valuable data supply for all players within the field – tutorial, industrial and clinical researchers, pharmaceutical and biotechnology firms, regulative authorities’ et al. across the scientific community.

 

Get into the depth of why methods for formulating and delivery strategies fail.
Identify how advancements in the pharmaceutical industry influence medical products with large and small molecules.
Think on how to build the best formulation and distribution approach from a deep healthcare, science and business mind set in a rational manner.
Before looking for practical solutions, surmount the challenges.
Explore tried and tested routes for improving bioavailability.
Discover the latest drug delivery systems technologies.

Who you will meet?
Chance to meet Leaders in

  • Drug Delivery
  • Drug Development
  • Process R&D
  • Bio manufacturing
  • CMC
  • Delivery Devices
  • Formulation
  • Analytical Development
  • Bioavailability
  • New Products
  • Pre-Formulation
  • Nanotechnology

 

 

Sessions 1: Nanomedicine
Nanomedicine includes the employment of Nano scale materials (biocompatible nanoparticles and Nano robots) in exceedingly living surroundings for the aim of study or incitement. This rising approach has the potential to remodel Medical analysis considerably. The most obstacles for Nano drugs embrace understanding the morbidness and environmental effects of Nano-scale materials, Preparation and implementation of the Nano-prescriptions. Work being dispensed to supply a broad audit of magnetic nanoparticles, silver nanoparticles, and gold nanoparticles with a special stress on the synthesis, functionalization, and therapeutic uses of such particles.
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Sessions 2: Nanomaterials for Drug Delivery
Nanomaterial’s vary radically from varied materials of the two outstanding key influences that surround it, the multiplied area and also the quantum impacts. Such parts, for instance, will boost properties like reactivity, efficiency, electrical properties and in vivo behaviour. Engineering science and Nano science square measure wide seen as having a large potential for providing advantages to varied analysis and applications. As of late, the employment of engineering science within the medical services market has gone underneath wonderful thought. Today, there square measure varied medicines that take an amazing quantity of your time and square measure extraordinarily dearly-won. Mistreatment engineering science, it's attainable to make a lot of more cost effective medicine. The key issues in distributing medicine square measure choosing secure and biocompatible Nano carriers, drug delivery system, and strategies for solubilizing them.
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Sessions 3: Nano Pharmaceutical Industry and Market
Nano pharmaceuticals are a new field that provides the potential to distinguish the health concern at a considerably early stage and may extend its testing uses and nanoparticles and traditional techniques. Nano-empowered medical technologies have had an impact on areas such as cancer, CNS disorders, respiratory diseases and prevention of infections. Although Nano-upgraded drug  devices are now on boom, more sophisticated medical gadgets based on nanotech are still being produced, and some are in the clinical test stage. A substantial proportion of the money spent on the broader area of nanotechnology R&D comes from government and enterprises are set up. In the field of Nano medicine, biomedical and professional companies are at the front line of research concentrating in particular on nanotechnology therapeutic uses.
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Sessions 4: Nanotechnology and Biomedical Applications
The advent of functionalized and modified nanostructures in biomedical applications in recent years has resulted in a growing interest rate for research. Metallic, plastic, ceramic, and polymeric nanomaterials are studied for their biomedical applications in novel tissue engineering, guided drug , and biosensors, etc. In the present case, there is a larger demand To design nanotools to resolve biological issues and to plan more effective approaches. In the fields of tissue and implant engineering, basic properties of nanomaterials in their nanoscale dimensions such as large surface area and fine surface roughness are known to give the osteogenic cells a strong biological response. nanotechnology also finds its application. Through dentistry, bio systems, infectious disorders, cellular nanomedicine etc.
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Sessions 5: Personalized Nanomedicine
Personalized medicine involves individualizing chemotherapeutic intercessions focused on patient- and disease-specific characteristics ex vivo and in vivo results. The root of personalized medicine contributed in the early 2000's to the emergence of numerous fields such as pharmacogenomics, proteomics and metabolomics. This allowed every person to research genetics. This primarily aims at designing patient- care taking into account genotype, physiology, and environmental factors that may affect the therapy's effectiveness and health. That has seen an exponential increase as it has provided an incentive to manage each person or group of individuals that share similar characteristics by taking the particular changes that have arisen at their genomic level. Even if the supply of Nanomedicine products is high, not even one is developed as a personalized medicine due to the reduced number of personalized medicine publications.
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Sessions 6: Design of Nanodrugs
Sensational developments in nanotechnology and Nano science are combined with energizing innovations in Nano-sized product design at de novo. In both diagnostics and therapeutics, nanoparticles with their structural and electrical properties proved to be the prime candidate for high viability Nano medicines. Nano particles are classified as one dimension, two dimensions and three dimensions, and their processing methodology varies according to each. Challenges related to nano-drug architecture include product loading and discharge mechanisms, safety problems and so on.
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Sessions 7: Cancer and Nanotechnology
Nanotechnology possibly can create selectivity, organic methodologies, and concoction capacity to induce the death of diseased cells while minimizing damage to non-malignant cells. Materials on the Nano scale are slowly oriented by active and passive targeting on cells with exceptional sensitivity to malignant. Chemotherapeutics usually cause damage to the immune system and alternate organs because of their non-specific targeting, lack of solvency, and inability to reach the tumor core resulting in reduced dosage and poor survival care. Nanotechnology helps to identify cancer-related targets rapidly and sensitively, helping scientists to track molecular-level changes even though they exist within a small percentage of cells. In addition, nanotechnology also has the ability to develop novel therapeutic agents which are extremely potential.
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Sessions 8:  Nanorobotics
Nanomedicine will be based on the ability to build Nanorobotics. In the future these Nanorobots could actually be programmed to repair specific diseased cells, functioning in a similar way to antibodies in our natural healing processes. The motivation for the new manipulation technology is the desire to enter the micro- and Nanoworld not only by viewing but also acting, altering micro- and Nano sized objects. A new era on medicine are expected to happen in the coming years. Due to the advances in the field of Nanotechnology,Nanodevice manufacturing has been growing gradually. The elimination of bacterial infections in a patient within minutes, instead of using treatment with antibiotics over a period of weeks. 
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Sessions 9: Drug Delivery Research
Drug delivery defines a systematic approach to delivering drugs or multiple xenobiotic to their site of operation within an organism in order to produce a medicinal outcome. The drug delivery inevitably requires changes in pharmacodynamics and pharmacokinetics. Using various  drug delivery delivery systems, specific parameters such as medication ingestion, transport, metabolism, and clearance are contrasted with ancient dosing to show helpful outcomes such as fast, long drug delivery systems biocompatibility as well as the host response. It is of considerable significance to design and build innovative drug delivery mechanisms, with respect to their application to disease disorders, diagnosis and treatment. Biomaterials with growth factors are used in regenerative medicine and tissue engineering for stem-cell differentiation.Nanomedicine webinar | Nanoparticles webinar | Passive targeting |Nanotechnology Webinar | Nanodrugs Webinar | Drug delivery Webinar | Nanoparticles Webinar

Sessions 10:  Computational Studies in Nanoparticles
The computational studies in nanoparticles have demonstrated that there has been considerable progress in Nano and biotechnology in the last several years. However, several key challenges have also become apparent, including the need for a better understanding of nanoparticle behaviour in vivo and the development of more effective nanoparticle therapeutics. Computational efforts are becoming an important tool in addressing both of these challenges, as well as in generally facilitating and accelerating nanotechnology-based translational research. The Nanoinformatics has come out as a new research area that covers raw data management, analysis of the data derived from biomedical applications and simulation of nanoparticle interactions with biological systems depicting the integration of biology, nanotechnology and informatics to form the basis for computational Nanomedicine.
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Sessions 11:  Nanomedicine research
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 vivo imaging 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.
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Sessions 12: Precise Drug Delivery System
With the remarkable development of Nanotechnology in recent years, new drug delivery approaches based on the state-of-the-art nanotechnology have been receiving significant attention. Nanoparticles, an evolvement of nanotechnology, are increasingly considered as a potential candidate to carry therapeutic agents safely into a targeted compartment in an organ, particular tissue or cell. These particles are colloidal structures with a diameter less than 1,000 nm, and therefore can penetrate through diminutive capillaries into the cell’s internal machinery. This innovative delivery technique might be a promising technology to meet the current challenges in drug delivery. The different types of nanoparticles drug delivery systems under investigation and their prospective therapeutic applications, and also present a closer look at the advances, current challenges, and future direction of nanoparticles drug delivery systems.
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Sessions 13: Nano Drug SysteCharacterization 
Recent years have witnessed the rapid development of inorganic nanomaterials for medical applications. At present, nanomedicines-nanoparticles (NPs) destined for therapy or diagnosis purposes-can be found in a number of medical applications, including therapeutics  and diagnosis agents .Pushing the limits of nanotechnology towards enhanced Nanomedicines will surely help to reduce side effects of traditional treatments and to achieve earlier diagnosis. The interplay between engineered nanomaterials and biological components is influenced by complex interactions which make predicting their biological fate and performance a nontrivial issue. We hope that both early-stage and experienced researchers will find it valuable for designing nanoparticles for enhanced bio-performance. Nanoemulsions have attracted great attention in research, dosage form design and pharmacotherapy. This is as a result of a number of attributes peculiar to nanoemulsions.
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Sessions 14: Emerging Nanomedicine
Currently, the treatment of HIV requires 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. Recent evaluation of HIV patient groups have 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 Nanoparticles (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.
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Nanomedicine is a new nanotechnology that has a huge impact on the human lives. With many studies and researchers, the human has used to the nanomedicine to operate many various medical functions such as drug delivery, cancer therapeutics, tissue engineering, etc. Nanomedicine has brought many benefits for human, especially assist the physicians in order to promote the healthcare, treatments, and patient’s health. However, like other technology, it opposes many legal and ethical issues and the security aspects that people question. There are risks and unpredicted consequences that the scientists have not been observed, therefore, it irritates other people. According to the researchers, the nanomedicine generates more benefits than harm for the human. Unlike the robotic surgery, the nanomedicine is more commonly used due to its convenience in size to perform many difficult tasks that human cannot operate. Nanomedicine is a new improvement in technology and it can create unknown risks and problems, however, no one has opposed to its application on the human yet. Researchers have been conducted to continually discover the nanomedicine, so it can be improved and performs its function better to help the physicians in the healthcare.

 

  • Nanomedicine
  • Nanomaterials for Drug Delivery
  • Nano Pharmaceutical industry and Market
  • Nanotechnology and Biomedical Applications
  • Personalized Nanomedicine
  • Design of Nanodrugs
  • Cancer and Nanotechnology
  • Nanorobotics
  • Drug Delivery Research
  • Computational Studies in Nanoparticles
  • Nanomedicine Research
  • Precise Drug Delivery System
  • Nanodrug System Characterization
  • Emerging Nanomedicine