Research Interest:
Biomedical applications of Nanotechnology, Nano Particulate Drug Delivery
systems, Antibody mediated drug delivery systems, Nano-Nutraceuticals and Nano
dispersed Systems, and educational research
Research Interest: Production of monoclonal and
polyclonal antibodies Microbiology and Immunology Development of biomedical
protein chips Development of mmunochromatographic
strip with nano-gold particle technique Immunosensing analysis technique:
Surface plasmon resonance (Optical sensor) and Quartz crystal microbalance
(Piezoimmunosensor)
Research Interest: Studying the pathogenic process
in betanodavirus and iridovirus infection in grouper GF-1 and larval grouper
fish systems. His laboratory pioneered the use of grouper model to study
betanodavirus in vivo on brain damaged, which as a model.
Research Interest: Food Processing, health food and
cosmetics, Research of Chinese herbal medicine research, Agricultural
biotechnology, Supercritical fluid, and Mycology
Research Interest: Pharmacology/Toxicology Isolation
and Identification of Natural products, Drug Discovery and Development, Cellular
and Molecular Biology of Diseases
Research Interest: Biological activity of blood
platelets; inflammatory properties of platelets; interaction of blood platelets
with the cells of the immune system; autoimmune diseases; activation and
platelet reactivity in neurodegenerative diseases (multiple sclerosis);
proteome, transcriptome and metabolome of platelets; molecular markers of
platelets in the diagnosis of acute coronary syndromes
Research Interest: Silica based hybrids by a sol-gel process, calcium phosphate bioceramics for
bone repairs, biomimetisc crystal growth of calcium phosphate.
Research Interest: pharmacological approaches in human ex vivo /
in vitro models targeted against inflammation&proliferation&migration
in atherosclerosis and restenosis following angioplasty.
Research Interest: A versatile biotechnologist with research experience
ranging from searching for novel microbial enzymes using classical and
metagenomic approaches, genetic engineering to tailor them for specific
applications, fermentation, downstream processing and their biotechnological
application. Biotechnological applications range from developing “Green
Chemistry technologies”/processes, developing antimicrobial systems, and
systems/and or products for preventing, monitoring and therapy of oxidative
stress related human diseases (cancer, cardiovascular, respiratory,
atherosclerosis, diabetes, neurodegenerative diseases).
Research Interest: Phosphate-based glass production and
characterisation including Phosphate glass-fibre (PGF) production. He is also
currently working on resorbable polymer composites, mainly for bone repair
applications. His other interests include, calcium phosphate cements, microsphere
technologies, drug delivery systems, Tissue Engineering and Regenerative
Medicine applications
Research Interest: Polymeric
Biomaterials and Green Materials: -Synthesis and Characterization, Surface
Modification, and Patterning (soft and dip-pen lithography) and Polymers
processing, Synthesis of Polyurethanes/Polyesters and Bio-based resins.
Nanomaterials and Energy Materials: Polymer-HA or Polymer-CNT Nanocomposites,
Synthesis of Nanofibers and Nanoparticles for cancer drug delivery, Chemical
modification of Nanodiamond particles and Metallization of CNTs, Polymeric and
silica Nanorods as reinforcing fillers for dental restoration materials for
flowable composites), Polymer/graphene composite materials and
Polymer/polyoxometalate composites for energy applications. Tissue Engineering/
Drug Delivery: Polymeric 3D-Nanofibrous Scaffolds for Bone, Vascular, Neural
and Dental, Salivary glands and multifunctional nanoparticles for lung cancer
drug and growth factor delivery, Nasal/mucosal delivery of therapeutics),
Electrospining and Force-spinning techniques for polymer and ceramic composite
nanofabrication. Additive bio-manufacturing and We-laid Process for
biomaterials/scaffolds of complex tissues and interfaces. Characterization of
Materials: Microscopic and Spectroscopic characterization (SEM, AFM, FT-IR,
XPS), mechanical properties characterization (Tensile, compression, dynamic
mechanical (DMA) and nanoindentation), thermal properties (TGA, DSC, TMA) and
Rheological characterization of polymeric biomaterials, nanomaterials and
hybrid polymer/inorganic composites and in vitro Cell Studies for
biocompatibility and toxicity. In Vitro Evaluation of nano-structured
materials/ nanodiamond wear-debris from orthopedic joint implants: Nanoscaled
wear-debris isolation from Hip and knee Simulator (AMTI) and its inflammatory
effect evaluation.
Research Interest: Aspect of biochemistry,
molecular biology, endocrinology, metabolism, nutrition, pharmacology, and
toxicology. Dr. Yamaguchi has an interesting for cell signaling mechanism, bone
biology, nutritional factor and osteoporosis prevention, diabetes and diabetic
osteoporosis, cancer biology, and cancer bone metastasis. Dr. Yamaguchi
discovered two novel proteins and genes; cell signaling suppressor protein
(named regucalcin; 1978) and transcriptional factor RGPR-p117 (regucalcin gene
promoter region-related protein; 2001) in mammalian cells. Dr. Yamaguchi
generated regucalcin transgenic rats, which were registered as international
patents (USA, EU, Japan, and Korea), and this animal was found to induce
osteoporosis and hyperlipidemia. Moreover, Dr. Yamaguchi proposed the potential
role of regucalcin as a key suppressor protein in carcinogenesis. Currently, the research of regucalcin is
focused as a scientific topic
Research Interest: Neurogenesis. Screening the leading chemical
to stimulate the neurogenesis after CNS, diseases, including: Stroke, Multiple
sclerosis, Alzheimers disease et al. Brain tumor. To study the oncogenesis
mechanisms of mellablastoma and glioblastoma.At the same time, to screen the
inhibitor of Sonic hedgehog pathway to treat the brain tumor.
Research Interest: To explore the molecular biology
and their use in genetic toxicology. currently held to identify the genetic
research hazard of chemicals, physical and biological
Research Interest: Wheat genetic engineering for resistance to
Fusarium pathogens and tolerance to abiotic stresses, Molecular interaction
between wheat and Fusarium pathogens Recombinant antibodies and bio-agents
against Fusarium pathogens and mycotoxins
Prof Ahmed Idris Hassen is an Applied Microbiologist (PhD) currently based in South Africa. He received his BSc degree in Biology and MSc degree in Food Microbiology in Ethiopia, and his PhD degree in Applied Microbiology from the University of Pretoria, South Africa. He has several years of teaching and lecturing experience in the fields of Biology and General Microbiology in Ethiopia. Currently he works as a research scientist and conducts research at the Agricultural Research Council, Plant Health and Protection in South Africa with a major research focus on Applied Microbiology for use in sustainable and climate smart agriculture. Priority research areas include plant-microbe interactions of the legume-rhizobium symbiosis, plant growth promoting rhizobacterial interactions in the rhizosphere of economically important crops, as well as biological control of soilborne diseases and development of insecticidal Bacillus thuringiensis (Bt) against common insect pests of crops. In addition, he conducts guest lecturing and supervision/co-supervision of postgraduate students in collaboration with higher education institutions as well as research and development collaboration with overseas scientists.
Research Interest(s): Plant Microbiology, Rhizobium-legume symbiotic interaction, molecular microbiology, microbial ecology, biocontrol of pests/pathogens using beneficial microbes, genomics
URL of your official website: https://www.arc.agric.za
Research Interest: Designing and preparing new nanobiomaterials, Characterizing physical and chemical
properties, biocompatibility and bioactivity of the nanobiomaterials
Research Interest: With a combination of molecular
biology, biochemistry, cell biology, nutrition metabolism,transgenic/knockout
mice model, I aim to uncover the complex molecular programs that regulates
physiological or pathological biological pathways, such as cell commitment,
cell metabolism, embryonic development, brain development, nutrition
regulation, and the pathological mechanisms of human metabolic diseases, such
as obesity, diabetes and neurological disease..
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