Are you looking for fully funded scholarship opportunities for higher education (MS/Direct PhD/Integrated PhD/PhD/Post Doc) in field of pharmacology in top global universities in USA/Australia/Europe/Germany/Scandinavian nations etc then you must be aware about the latest research areas in field of Pharma and the universities and Professors where this work is going on.
Opportunities for Pharmacology students abroad after MS/ Direct PhD/PhD/ Postdoc
Pharmacology students with MS or PhD degrees have a wide range of exciting career opportunities available to them abroad. Here are some of the most common and promising paths:
1. Pharmaceutical Industry:
• Research and Development: This is a major area for pharmacologists, involving the discovery, development, and testing of new drugs. Roles include:
• Drug Discovery Scientist: Identifying and characterizing new drug targets.
• Medicinal Chemist: Designing and synthesizing new drug molecules.
• Pharmacologist: Studying the effects of drugs on the body.
• Toxicologist: Assessing the safety of new drugs.
• Clinical Research: Conducting clinical trials to evaluate the safety and efficacy of new drugs.
• Regulatory Affairs: Ensuring that drugs meet regulatory standards and can be safely marketed.
2. Academia:
• University Professor: Teaching and conducting research at universities and research institutions.
• Research Scientist: Working in academic laboratories on basic and applied research in pharmacology.
3. Biotechnology Companies:
• Research and Development: Developing new therapies and technologies, such as gene therapy and immunotherapy.
• Bioinformatics: Analyzing large datasets to identify new drug targets and understand disease mechanisms.
4. Government Agencies:
• Regulatory Agencies: Working for agencies like the FDA to ensure the safety and efficacy of drugs.
• Public Health Organizations: Conducting research and developing public health policies related to drug use and abuse.
5. Other Opportunities:
• Medical Writing: Communicating scientific information to a variety of audiences.
• Scientific Consulting: Providing expert advice to pharmaceutical companies, biotech firms, and other organizations.
• Intellectual Property Law: Protecting the intellectual property of pharmaceutical companies.
Factors to Consider:
• Research Interests: Your specific research interests will influence the types of jobs you pursue.
• Career Goals: Determine whether you prefer a career in industry, academia, or another sector.
• Skills and Experience: Develop strong research, analytical, and communication skills.
• Networking: Build a strong network of contacts in your field.
Latest Research Areas in Pharma in foreign research groups
Following are the latest research areas in the field of pharmacology for those students aspiring to pursue MS/Direct PhD/Integrated PhD/PhD/Post Doc in top global universities:
• Drug Delivery Vaccines Host-Directed Therapies Autoimmune Therapies
• mRNA Medicine Nucleic Acid Therapeutics RNA Lipid Nanoparticles Drug Formulations Synthetic Chem
• stem cells drug delivery cancer therapy molecular imaging
• Drug delivery nano medicine polymers biomaterials bioengineering
• Pharmacokinetics & pharmacodynamics; psychoactive substances; development of analytical methods to detect psychoactive substances in various biological matrices. (CHS) (Drug Action) (Drug Delivery)
• Gene therapy Non coding RNAs Genetics
• gene therapy adenovirus virotherapy
• gene therapy stem cells regenerative medicine
• cystic fibrosis host-pathogen interactions innate immunity gene therapy
• Application of mass spectrometry-based biophysical approaches, with a particular focus on Hydrogen-Deuterium exchange, integrated with computational approaches for the structural and biophysical characterization of proteins within the context of protein structure and dynamics, protein/macromolecules interaction and protein/ligands interactions (Lab Website)
• Rational design of drugs towards new treatments for cancer and inflammation, discovery of traditional small-molecules, harnessing covalent chemistries to accomplish sustained inhibitions of target proteins, as well as leveraging proteolysis-targeting chimera and molecular glue technologies to achieve the targeted degradation of disease-causing proteins
• research in the pharmaceutical sciences and drug delivery design
• the areas of cancer immunotherapy and chemotherapy, using dogs with cancer as models of human treatment, Alzheimer’s drug development, targeted drug delivery and pharmacokinetics. drug formulations and consideration of the drug/biological interface are commons themes.
• Physical Pharmacy and Drug Delivery (P2D2)
• design and develop advanced systems and materials that enhance protein delivery to a range of anatomic sites for gene therapy, metabolic disease and cancer treatment, and biosensing applications.
• the molecular basis of Alzheimer’s and related disorders and identifying effective approaches for pharmacological intervention.
• the effects of glycosylation on protein therapeutics and site-selective modification of proteins. Our interest in these topics stem from the fact that post-translational modifications of proteins can alter protein biological activity and stability and can also be used to produce protein drug conjugates.
• the utilization and modulation of cell adhesion molecules on the cell surface for targeted drug delivery to a specific cell type and for enhancing drug permeation through the intestinal mucosa and blood-brain barrier (BBB).
• “applying computational methods such as machine learning, molecular dynamics simulation, and multiscale modeling to accelerate drug formulation design (mainly focused on subcutaneous and oral formulations) and provide insights into drug fate within in-vitro and in-vivo systems.
• Other research interests include the development of in-vitro systems to emulate in-vivo environments with the aid of additive manufacturing and in-vitro in-vivo correlation (IVIVC) models.”
• “Drug delivery Pharmacokinetics Prodrugs Intracellular”
• Drug delivery Immunotherapy Nano medicine Pharmaceutics
• Targeted therapy, Immunobiology
• Cellular biology, understanding mechanisms of CAR T cells for cancer molecule
• Development of novel cancer targetting antibodies and study of their mechanisms of action in vitro and in mouse models
• Studies novel metrics to serve dual purpose as biomarkers for prognosis and response to radiation therapy
• radio-genomic and deep learning approaches in cancer biology and personalized radiation therapy (RT)
• Targeted drug delivery
• Drug delivery, cancer therapy
• long-term drug delivery by designing innovative systems such as nanocarriers, micelles, and hydrogels using biomaterials
• development of radiopharmaceuticals, small animal imaging and use of radiological imaging techniques to answer physiological questions.
• the development of probes labeled with radiometals for PET imaging and therapy of solid tumors.
• gene expression, micro-RNA expression and genomic analyses.
• recombinant proteins, mRNA, viral vectors, live and inactivated viruses
• Micelle and Nanoparticulate Drug Delivery, Oligonucleotides, siRNA, miRNA and Gene Delivery Synthesis of Novel Polymers, Lipopeptides, Lipopolymers and Cationic Lipids, Construction of Gene and shRNA Expression Systems, and Design and synthesis new compounds to overcome chemoresistance and inhibit hedgehog signaling pathway.
• Pharmacology and Experimental Neuroscience
• Tablet Press Instrumentation, Formulation of Nutritional Supplements and Botanical Products
• Biologics Drug delivery Nanomedicine Pharmaceutics
• Drug delivery Cell therapy Immunotherapy Biomaterials Nanomedicine
• drug delivery nanotechnology cancer AIDS polymers
• Understanding the transcriptional networks that control keratinocyte proliferation/differentiation and epidermal barrier functions during development and under pathological conditions. Developing novel therapeutic strategies for the treatment of inflammatory skin diseases and skin cancer.
• Molecular basis of prostate development; prostate cancer progression; benign prostatic hyperplasia; roles of cell-cell signaling pathways and the use of mouse genetics to discover novel pathways that underlie prostatic diseases.
• Use of inductively heated, antibody-targeted, core-shell nanoparticles for selective removal of targeted cells in vitro and in vivo. Development of high resolution nanoparticle labeling systems for correlative microscopy.
• Molecular basis of prostate and urinary tract development, physiology, and toxicology.
• Understanding the molecular mechanisms involved with hormone therapy in the prevention and treatment of urologic cancers and benign diseases. Focus areas include translational research, steroids and small molecules, stromal-epithelial interactions, endocrine disrupting chemicals, and mouse models of disease progression.
• cell signalling G proteins GPCRs cancer precision immunotherapy
• Medicinal chemistry drug design and discovery cancer
• Drug Discovery NMR fragment-based methods cancer infectious diseases cell signalling cancer
• Nanotechnology Nanoparticles Supramolecular Chemistry Nano medicine
• Genomics and Systems Biology, Medicinal Chemistry and Chemical Biology, Molecular and Cellular Pharmacology
• Biochemistry biophysics lipids viruses
• Pharmacology Drug Discovery
• RNA Structure and Function Ribozymes Origin of Life
• Microfluidics, cell culture, stem cell, organ models, Nano sensors
• Epithelial cell carcinogenesis, Cell culture, Human papillomavirus and oral cancer, Chemical carcinogenesis
• Cell Biology, Alternative Methods, Toxicology 3Rs, Cell culture
• ophthalmology, cell culture, in vitro toxicology, tissue engineering, refractive surgery
• Biotechnology, Cell Culture, Microbiology, Genetics, Cancer Research
• Exercise Physiology, Biology, Cell culture
• Internal medicine, gastroenterology, mechanisms of disease, cell culture
• GPCRs, Structural biology, Biochemistry, Arrestins, Drug discovery
• GPCR Signaling, Psychiatric Disorders, Addiction Drug Discovery
• Drug discovery, molecular docking, protein structure-function, systems pharmacology
• molecular microbiology, antimicrobial drug tolerance, drug discovery, persister cells
• Chemoinformatics, Cheminformatics, Medicinal Chemistry, Drug Discovery
• drug discovery, malaria, genomics, infectious diseases, global health
• Cheminformatics, chemoinformatics, computational toxicology, drug discovery, materials informatics
• Drug Discovery, Biotechnology, Secondary DNA structures
• drug discovery, proteins, membranes, magnetic resonance
• Malaria, drug resistance, drug discovery, pathogenesis, molecular genetics
• Immunology, inflammation, innate immunity, drug discovery
• medicinal chemistry, drug discovery, computational chemistry, drugs of abuse
• Evolution, Medicinal plants, pharmacology, ornithology
• Cell Signaling, Biochemistry, Pharmacology, Physiology
• Allergy, Immunology, asthma, sinus disease, Pharmacology
• cell death, cancer biology, pharmacology
• Medicine, Genomics, Pharmacology
• biochemistry, pharmacology, chemistry, mass spectrometry, toxicology
• Pharmacogenomics, Pharmacology
• Pharmacology, Biochemistry, Endocrinology
• Pharmacology, Toxicology, marine toxins, drugs from marine sources, Food Security
• Biochemistry, Pharmacology
• RESEARCH INTERESTS – Physiological Mechanisms Associated with P450 Cytochromes. Our research addresses signaling mechanisms involving P450 cytochromes. These regulate activity at nuclear receptors regulated by three types of activators. – Cholesterol/steroid hormones – Fatty acids and metabolites – Ah PCBs and polycyclic aromatic hydrocarbons
• cell signaling cancer
• Nanomedicine Nanotechnology Drug Delivery Nucleic Acid Therapeutics Biomimicry
• “Microbiology & Immunology, Infectious & Vector-Borne Diseases
• “Pharmacology Ion Channels
• Adult neurogenesis function and regulation
• Pharmacology
• Molecular & Cellular Pharmacology
• the functional integration of the smooth muscle, enteric nervous system, and extrinsic sensory neurons in gastrointestinal function in health and disease.
• Translational Bioinformatics Cheminformatics Drug Repositioning Drug Discovery
• Pulmonary Nanoparticle Delivery and Immuno Engineering
• nanoparticle, biomolecular interactions, multivalent therapeutic and diagnostic molecules
• Drug delivery and pharmaceutics; Nanomedicine, medical devices, biomaterials; 3D Printing, hot-melt injection molding; HIV/AIDS, cancer, chronic wound healing
Universities offering Fully Funded Scholarships in Pharma
Following is the list of universities in different parts of the world from where students have recently got good opportunities and positive response from the professors related to Pharma domain.
• University of North Carolina at Chapel Hill
• University of Wisconsin–Madison
• Stanford University
• Washington University School of Medicine
• Oregon Health & Science University
• University of Iowa
• University of Maryland School of Pharmacy
• Temple University
• University of Kansas
• Washington University School of Medicine
• University of Oklahoma Health Sciences
• Washington University School of Medicine
• university of Nebraska medical center
• University of Maryland
• University of Wisconsin
• UW-Madison
• Rutgers University
• University of Wisconsin-Madison
• UCSD
• Penn State College of Medicine
• Vanderbilt School of Medicine
• Thomas Jefferson University
• University of Massachusetts (Amherst)
• Purdue university
• University of Notre Dame
• Technical University of Denmark
• University of Washington
• Universidad Autónoma de Madrid
• Tampere University
• Northeastern University
• Texas Woman’s University
• NC State University
• Duke University
• Neurobiology Duke University
• University of California
• Northeastern University
• University of Bonn
• University of California San Diego
• UNC-Chapel Hill
• University of Arizona
• University of Illinois
• Columbia University
• Keck School of Medicine of USC
• University of Minnesota
• Heidelberg University
• Northwestern University
• University of Colorado School of Medicine
• Charite University Medicine Berlin
• University of Pennsylvania
• UCSF
• University of Southern California
• University of Santiago de Compostela
• Duke University
• Thomas Jefferson University
• University of Delaware
• University of Notre Dame
• University of California
• UNC-Chapel Hill
• University of Miami
• Virginia commonwealth university
• Michigan State University
• University of Delaware
• University of Notre Dame
• University of British Columbia
• University of Waterloo
• Dalhousie University
• The University of Manitoba
• University of British Columbia
• Dalhousie University
• School of Pharmacy, University of Waterloo
• Dalhousie University
• University of Alberta
• University of Manitoba
• University of British Columbia
• University of Alberta
• University of Saskatchewan
• University of Calgary
• University of British Columbia
• Université Ottawa
• Université de Montréal
• McGill university
• University of Toronto
• University of Toronto
• University of Saskatchewan
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