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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"> Creative Bioarray can provide ready-to-use 3D cell cultures generated from various cell types. We have extensive experience in developing highly functional 3D cell culture models. Our scientific team can work with you to establish and optimize protocols, as well as design custom 3D cell culture models according to your specific requirements.

https://cell.creative-bioarray.com/3d-cell-culture-services.html</item><item key="tags"><item>3d</item><item>cell</item><item>culture</item></item><item key="url">3D Cell Culture</item><item key="lastmodified">2023-11-28 08:22:44</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-11-28 08:22:43</item><item key="id">1316</item><item key="shortUrl">3D Cell Culture</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">3D Cell Culture</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">3D Cell Culture</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"> Yeast is a popular system for genome editing due to its efficient homology-directed repair mechanism, which allows precise integration of heterologous genes into its genome. Engineering yeasts into cost-efficient cell factories is greatly facilitated by the availability of genome editing tools.

https://microbiosci.creative-biogene.com/yeast-genome-editing-service.html</item><item key="tags"><item>editing</item><item>genome</item><item>yeast</item></item><item key="url">Yeast Genome Editing</item><item key="lastmodified">2023-11-28 08:09:30</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-11-28 08:09:30</item><item key="id">1309</item><item key="shortUrl">Yeast Genome Editing</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Yeast Genome Editing</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">Yeast Genome Editing</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"> With talented staffs, advanced technologies and state-of-the-art facilities, Creative Biogene provides microbial genome editing service, including traditional recombineering system, CRISPR/Cas 9 system and site-specific recombination system.</item><item key="tags"><item>editing</item><item>genome</item><item>microbial</item></item><item key="url">https://microbiosci.creative-biogene.com/microbial-genome-editing-service.html</item><item key="lastmodified">2023-12-28 09:29:39</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2023-12-28 09:29:39</item><item key="id">1323</item><item key="shortUrl">microbiosci.creative-biogene.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Microbial Genome Editing</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</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"> Immortalized Human Skeletal Muscle Myoblasts</item><item key="tags"><item>human</item><item>immortalized</item><item>muscle</item><item>myoblasts</item><item>skeletal</item></item><item key="url">https://www.creative-bioarray.com/filter/myoblasts-101.html</item><item key="lastmodified">2024-02-28 09:23:14</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-02-28 09:23:14</item><item key="id">1342</item><item key="shortUrl">www.creative-bioarray.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Immortalized Human Skeletal Muscle Myoblasts</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">Immortalized Human Skeletal Muscle Myoblasts</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">The wheat germ system provides the highest translation efficiency among the eukaryotic systems and has a very high success rate for the expression of high-quality soluble proteins. As an in vitro protein expression method, the wheat germ system is a preferable choice for many applications in protein research including options for protein labeling and the expression of difficult-to-express proteins such as membrane proteins and multiple protein complexes.</item><item key="tags"><item>protein</item></item><item key="url">https://www.amerigoscientific.com/wheat-germ-cell-free-protein-expression.html</item><item key="lastmodified">2024-01-19 03:19:13</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-01-19 03:19:13</item><item key="id">1330</item><item key="shortUrl">www.amerigoscientific.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">The wheat grain consists of the bran, endosperm, and germ.</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">Wheat Germ Cell-free Protein Expression</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"> random mutagenesis</item><item key="tags"><item>mutagenesis</item><item>random</item></item><item key="url">https://www.creative-biogene.com/services/random-mutagenesis-library-construction-service.html</item><item key="lastmodified">2024-02-28 09:25:59</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-02-28 09:25:59</item><item key="id">1347</item><item key="shortUrl">www.creative-biogene.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">random mutagenesis</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">random mutagenesis</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"> Fluorescence in situ hybridization (FISH), developed in the 1980s, is a cytogenetic technique using fluorescent probes to bind the chromosome with a high degree of complementarity. It is a powerful and easy method to detect RNA or DNA sequences in cells, tissues, and tumors. This technique is useful for identifying chromosomal abnormalities, gene mapping, characterizing somatic cell hybrids, checking amplified genes and studying the mechanism of rearrangements. RNA FISH is used to measure and localize mRNAs and other transcripts within tissue sections or whole mounts.</item><item key="tags"><item>fluorescent</item><item>hybridization</item><item>in</item><item>situ</item></item><item key="url">https://www.creative-bioarray.com/services/Fluorescent-In-Situ-hybridization-FISH.htm</item><item key="lastmodified">2024-03-28 09:15:51</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-03-28 09:15:51</item><item key="id">1354</item><item key="shortUrl">www.creative-bioarray.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Fluorescent In Situ Hybridization</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">Fluorescent In Situ Hybridization</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 a diverse array of lysates derived from various cell lines, including HEK293, HEK293T, HeLa, insect cells, and more. These lysates are generated by introducing exogenous protein-encoding sequences into the cells through transfection or transduction, followed by homogenization using RIPA Lysis Buffer. Our collection of cell lysates serves as effective positive controls for validating newly generated antibodies targeting antigens from human cells, viruses, and other sources.</item><item key="tags"><item>cell</item><item>lysate</item><item>over-expression</item></item><item key="url">https://www.creative-biogene.com/products/over-expression-cell-lysate.html</item><item key="lastmodified">2024-03-28 09:19:16</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-03-28 09:19:16</item><item key="id">1359</item><item key="shortUrl">www.creative-biogene.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Over-expression Cell Lysate</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">Over-expression Cell Lysate</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 diverse dsRNA controls as reliable positive controls for precise dsRNA assays. 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Performing in vitro cytotoxicity assays prior to animal testing may be a cheaper alternative for initial drug screens.

</item><item key="tags"><item>assay</item><item>toxicology</item></item><item key="url">https://www.creative-bioarray.com/Services/Toxicology-Assay.htm</item><item key="lastmodified">2024-04-29 08:14:34</item><item key="usage_data"><item key="layouts">0</item><item key="users">0</item></item><item key="created">2024-04-29 08:14:34</item><item key="id">1366</item><item key="shortUrl">www.creative-bioarray.com</item><item key="role_permission"><item>biogpsusers</item></item><item key="short_description">Toxicology Assay</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">Toxicology Assay</item></item></data></biogps>
