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This is a protocol for the generation of pediatric patient-derived ependymoma and medulloblastoma tumoroids from surgically resected patient tumor tissues or xenografts, including their use in drug screening and in downstream analyses.
This step-by-step protocol describes a versatile approach for assessing genome-wide off-target activity of diverse genome editors by tracking replication protein A—a key protein that binds single-stranded DNA intermediates.
Residue interaction networks (RINs) describe noncovalent molecular interactions within and between proteins. This Protocol uses RING software to generate these networks from protein structures toward understanding protein structure and function.
This Protocol generates mouse mammary organoids with the tree-like architecture and cellular heterogeneity of native tissue, which recapitulate mammary physiology across the estrous cycle, pregnancy, lactation and involution.
Our authors are invited to write blog posts that describe how they conceived and developed their protocols, prior to publication at Nature Protocols. These stories are published on a community website for researchers who are interested in techniques and methods.
Have you seen Nature Masterclasses provide free online training courses? This one, Focus on peer-review, explores the role of a peer reviewer and the foundations of a good peer review.
This is a protocol for the generation of pediatric patient-derived ependymoma and medulloblastoma tumoroids from surgically resected patient tumor tissues or xenografts, including their use in drug screening and in downstream analyses.
Electrocatalytic reactions can be used to upcycle nitrate/nitrite to ammonia, NH2OH, N2H4 and organonitrogen compounds. This protocol describes catalyst screening and reaction optimization via in situ and operando analysis.
This step-by-step protocol describes a versatile approach for assessing genome-wide off-target activity of diverse genome editors by tracking replication protein A—a key protein that binds single-stranded DNA intermediates.
This is a protocol for the preparation and characterization of the activatable BTPE-NO2@F127 nanoprobe and its applications in multispectral optoacoustic and near-infrared region II fluorescence dual-mode imaging of liver injury models in mice.
This protocol provides guidelines for using fluorescent RNAs, entities consisting of an RNA aptamer bound to its cognate fluorogenic dye, for live imaging of the localization and dynamics of different RNA species in bacteria and mammalian cells.
Residue interaction networks (RINs) describe noncovalent molecular interactions within and between proteins. This Protocol uses RING software to generate these networks from protein structures toward understanding protein structure and function.
This Protocol generates mouse mammary organoids with the tree-like architecture and cellular heterogeneity of native tissue, which recapitulate mammary physiology across the estrous cycle, pregnancy, lactation and involution.
This protocol enables users to establish a defined, in vitro consortium composed of seven fully sequenced and anaerobically culturable human gut bacteria and follow the growth of individual members via strain-specific qPCR to evaluate community dynamics in response to interventions.
It is useful to have materials that contain multiple catalytic sites for electrochemical reactions with complex mechanisms. This Protocol describes the incorporation of intermetallic nanoparticles with up to eight metal elements in carbon nanostructures.
The research unit of Sport and Health Sciences, Department of Sports Science and Clinical Biomechanics, invites applications for a part-time position (20%) as associate professor in Sport for Fitness and Health in Children and Youth