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<biogps><data><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> Synthetic mRNA has recently come into focus as a potential new drug class to deliver genetic information. Such synthetic mRNA can be engineered to transiently express proteins more rapidly and safety, due to no need of transnuclear localization and lack of integration into host cell genome.</item><item key="tags"><item>mrna</item><item>synthesis</item></item><item key="url">https://www.creative-biogene.com/products/mrna-synthesis.html</item><item key="lastmodified">2023-10-27 08:12:00</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-10-27 08:11:59</item><item key="id">1305</item><item key="shortUrl">www.creative-biogene.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">mRNA Synthesis</item><item key="in">plugin</item><item key="owner"><item key="username">creativebiogene</item><item key="url">/profile/20554/creativebiogene</item><item key="name">Wendy Wilson</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">mRNA Synthesis</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> TRPs mediate a variety of sensations including pain, extreme temperatures, taste and vision and are activated by a broad range of molecules including allicin, capsaicin and menthol. In the body, some TRP channels are thought to behave like microscopic thermometers and used in animals to sense hot or cold.</item><item key="tags"><item>channels</item><item>trp</item></item><item key="url">https://acroscell.creative-bioarray.com/trp-channels.html</item><item key="lastmodified">2023-08-02 09:41:29</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-08-02 09:41:29</item><item key="id">1300</item><item key="shortUrl">acroscell.creative-bioarray.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">TRP Channels</item><item key="in">plugin</item><item key="owner"><item key="username">creativebioarray</item><item key="url">/profile/21217/creativebioarray</item><item key="name">Hannah Cole</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">TRP Channels</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> A Multi-Electrode Array is an array made of microscopic metal electrodes (10-30 &#956;m of diameter) distributed on a small surface area (~0.8-6 mm&#178;). They are either regularly distributed or can be arranged to match closely the spatial organization of the tissue investigated. In neuroscience research, these small electrodes (coated with an inert and biocompatible metal) are used for recording electrical signals related to neuronal activities within the slice. MEA recordings allow mid-throughput testing capabilities for compound screening and profiling. The MEA technology enables parallel and multi-site extra-cellular recordings within a single brain slice and provides an exceptional macroscopic view of neuronal networks.

https://acroscell.creative-bioarray.com/multi-electrode-array-mea.html</item><item key="tags"><item>array</item><item>multi-electrode</item></item><item key="url">Multi-Electrode Array</item><item key="lastmodified">2023-11-28 08:23:24</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-11-28 08:23:24</item><item key="id">1317</item><item key="shortUrl">Multi-Electrode Array</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Multi-Electrode Array</item><item key="in">plugin</item><item key="owner"><item key="username">creativebioarray</item><item key="url">/profile/21217/creativebioarray</item><item key="name">Hannah Cole</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">Multi-Electrode Array</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> Creative Biogene offers state-of-the-art microbial community analysis services. The microbial community analysis offer the opportunity to discover the information on the entire set of microorganisms (bacteria, yeasts, fungi, algae, etc.) present in a given sample. And improve the microbial diversity studies for environmental (e.g. food, water and soil) and other microbial samples (e.g. gut microbiome or skin microbiome).

https://microbiosci.creative-biogene.com/microbial-community-analysis.html</item><item key="tags"><item>analysis</item><item>community</item><item>microbial</item></item><item key="url">Microbial Community Analysis</item><item key="lastmodified">2023-11-28 08:17:28</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-11-28 08:17:28</item><item key="id">1312</item><item key="shortUrl">Microbial Community Analysis</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Microbial Community Analysis</item><item key="in">plugin</item><item key="owner"><item key="username">creativebiogene</item><item key="url">/profile/20554/creativebiogene</item><item key="name">Wendy Wilson</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">Microbial Community Analysis</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> Creative Biogene utilizes homologous recombination, site-specific recombination and CRISPR technology to generate custom genome-editing strains. CRISPR-Cas is a technology that has dramatically changed the way genomes are edited. Alternative strategies for CRISPR-Cas mediated microbial genome editing include Scarless Cas9 assisted recombineering.</item><item key="tags"><item>editing</item><item>genome</item><item>methods</item><item>microbial</item></item><item key="url">https://microbiosci.creative-biogene.com/microbial-genome-editing-methods.html</item><item key="lastmodified">2023-12-28 09:30:28</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-12-28 09:30:27</item><item key="id">1324</item><item key="shortUrl">microbiosci.creative-biogene.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Microbial Genome Editing Methods</item><item key="in">plugin</item><item key="owner"><item key="username">creativebiogene</item><item key="url">/profile/20554/creativebiogene</item><item key="name">Wendy Wilson</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">Microbial Genome Editing Methods</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description"> AAV Antibodies
Three categories of antibodies for the detection of adeno-associated viruses (AAV).

AAV capsid protein antibodies that specifically react with denatured AAV capsid proteins and thereby recognize the linear epitopes of the viral capsids.

AAV particle antibodies that specifically react with intact AAV particles, i.e. empty and full capsids and thereby recognize a conformational epitope of the assembled capsids of certain serotypes.

Anti-AAV Replicase protein antibodies that react with selected Rep (replicase) proteins in human AAV-infected cells.

Amerigo scientific provides high-quality antibodies which are from professional and well-selected antibody manufacturers all over the world.
</item><item key="tags"><item>antibodies</item><item>cdna</item><item>elisa</item><item>vectors</item></item><item key="url">https://www.amerigoscientific.com/antibodies.html</item><item key="lastmodified">2024-01-19 03:14:13</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-01-19 03:14:13</item><item key="id">1329</item><item key="shortUrl">www.amerigoscientific.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">The high specificity and sensitivity of antibodies are unique advantages in biomedical research applications. </item><item key="in">plugin</item><item key="owner"><item key="username">amerigoscientific</item><item key="url">/profile/21343/amerigoscientific</item><item key="name">amerigoscientific</item></item><item key="permission_style">public</item><item key="type">iframe</item><item key="species"><item>human</item><item>mouse</item><item>rat</item><item>fruitfly</item><item>nematode</item><item>zebrafish</item><item>thale-cress</item><item>frog</item><item>pig</item></item><item key="name">AAV Antibodies</item></item><item><item key="rating_data"><item key="avg_stars">0</item><item key="total">0</item><item key="avg">0</item></item><item key="options">None</item><item key="popularity">0</item><item key="description">3D cell culture has been widely applied in differentiation studies, drug discovery, cancer research, gene and protein expression studies, and cellular physiological studies. 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