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  2. Matching Content Categories
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  4. Monthly Traffic Estimate
  5. How Does Link.springer.com Make Money
  6. Keywords
  7. Topics
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We are analyzing https://link.springer.com/article/10.1007/s13238-022-00913-7.

Title:
Connecting past and present: single-cell lineage tracing | Protein & Cell
Description:
Central to the core principle of cell theory, depicting cellsโ€™ history, state and fate is a fundamental goal in modern biology. By leveraging clonal analysis and single-cell RNA-seq technologies, single-cell lineage tracing provides new opportunities to interrogate both cell states and lineage histories. During the past few years, many strategies to achieve lineage tracing at single-cell resolution have been developed, and three of them (integration barcodes, polylox barcodes, and CRISPR barcodes) are noteworthy as they are amenable in experimentally tractable systems. Although the above strategies have been demonstrated in animal development and stem cell research, much care and effort are still required to implement these methods. Here we review the development of single-cell lineage tracing, major characteristics of the cell barcoding strategies, applications, as well as technical considerations and limitations, providing a guide to choose or improve the single-cell barcoding lineage tracing.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {๐Ÿ“š}

  • Science
  • Education
  • Telecommunications

Content Management System {๐Ÿ“}

What CMS is link.springer.com built with?

Custom-built

No common CMS systems were detected on Link.springer.com, and no known web development framework was identified.

Traffic Estimate {๐Ÿ“ˆ}

What is the average monthly size of link.springer.com audience?

๐ŸŒ  Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 5,000,019 visitors per month in the current month.
However, some sources were not loaded, we suggest to reload the page to get complete results.

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How Does Link.springer.com Make Money? {๐Ÿ’ธ}

We find it hard to spot revenue streams.

Not all websites are made for profit; some exist to inform or educate users. Or any other reason why people make websites. And this might be the case. Link.springer.com might be making money, but it's not detectable how they're doing it.

Keywords {๐Ÿ”}

cell, lineage, barcodes, pubmed, article, cas, google, scholar, cells, tracing, singlecell, barcoding, central, integration, development, clonal, crispr, stem, analysis, barcode, nat, information, multiple, types, polylox, sequencing, dna, molecular, fig, fate, methods, tree, sites, human, developmental, single, sclt, klein, targets, random, nature, current, gene, progenitors, genetic, mutations, editing, insertion, mouse, trees,

Topics {โœ’๏ธ}

single-cell temporal-omics approaches hepato-pancreato-biliary progenitor niche single-cell rna-seq technologies single-cell rna-seq survey article download pdf parallel single-cell rna-seq machine-learning-based approaches leverage human stem-cell-derived organoids crispr-cas9-induced genetic scars crispr/cas9-mediated gene editing maximum-parsimony-based methods search single-cell time-resolved model cell-type-based lineage trees combines single-cell omics cre-recombinase-driven polylox barcoding reach single-cell resolution dna double-strand breaks single-cell rna sequencing single-cell rna-seq machine-learning-based amberland fluorescence-activated cell sorting single-cell sequencing data single-cell transcriptional landscape single-cell lineage tracing surrounding transcription-repressive elements single-cell transcriptomes connected single-cell transcriptomic analysis commercial scrna-seq platforms cas9-expressing mouse lines single-cell transcriptome exploration expensive long-read sequencing single-cell molecular map high-throughput dense reconstruction scrna-seq data continue scaling single-cell genomics systematic single-cell evaluation gene expression profiles activation-induced cytidine deaminase high-throughput sequencing methods distance-based methods aim crispr-based genome editing post-mitotic editing events simultaneous single-cell profiling base-editing barcodes comprised cas key laboratory endogenous crispr/cas9 arrays ground-truth cellular history maximum-parsimony-based cassiopeia maximum-likelihood-based methods single-cell mapping

Questions {โ“}

  • Egli D, Zuccaro MV, Kosicki M, Church GM, Bradley A, Jasin M (2018) Inter-homologue repair in fertilized human eggs?
  • Salvador-Martinez I, Grillo M, Averof M, Telford MJ (2019) Is it possible to reconstruct an accurate cell lineage using CRISPR recorders?

Schema {๐Ÿ—บ๏ธ}

WebPage:
      mainEntity:
         headline:Connecting past and present: single-cell lineage tracing
         description:Central to the core principle of cell theory, depicting cellsโ€™ history, state and fate is a fundamental goal in modern biology. By leveraging clonal analysis and single-cell RNA-seq technologies, single-cell lineage tracing provides new opportunities to interrogate both cell states and lineage histories. During the past few years, many strategies to achieve lineage tracing at single-cell resolution have been developed, and three of them (integration barcodes, polylox barcodes, and CRISPR barcodes) are noteworthy as they are amenable in experimentally tractable systems. Although the above strategies have been demonstrated in animal development and stem cell research, much care and effort are still required to implement these methods. Here we review the development of single-cell lineage tracing, major characteristics of the cell barcoding strategies, applications, as well as technical considerations and limitations, providing a guide to choose or improve the single-cell barcoding lineage tracing.
         datePublished:2022-04-19T00:00:00Z
         dateModified:2022-04-19T00:00:00Z
         pageStart:790
         pageEnd:807
         license:http://creativecommons.org/licenses/by/4.0/
         sameAs:https://doi.org/10.1007/s13238-022-00913-7
         keywords:
            single-cell lineage tracing
            integration barcodes
            polylox barcodes
            CRISPR barcodes
            Biochemistry
            general
            Protein Science
            Cell Biology
            Stem Cells
            Human Genetics
            Developmental Biology
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                     address:
                        name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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                        name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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                        name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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ScholarlyArticle:
      headline:Connecting past and present: single-cell lineage tracing
      description:Central to the core principle of cell theory, depicting cellsโ€™ history, state and fate is a fundamental goal in modern biology. By leveraging clonal analysis and single-cell RNA-seq technologies, single-cell lineage tracing provides new opportunities to interrogate both cell states and lineage histories. During the past few years, many strategies to achieve lineage tracing at single-cell resolution have been developed, and three of them (integration barcodes, polylox barcodes, and CRISPR barcodes) are noteworthy as they are amenable in experimentally tractable systems. Although the above strategies have been demonstrated in animal development and stem cell research, much care and effort are still required to implement these methods. Here we review the development of single-cell lineage tracing, major characteristics of the cell barcoding strategies, applications, as well as technical considerations and limitations, providing a guide to choose or improve the single-cell barcoding lineage tracing.
      datePublished:2022-04-19T00:00:00Z
      dateModified:2022-04-19T00:00:00Z
      pageStart:790
      pageEnd:807
      license:http://creativecommons.org/licenses/by/4.0/
      sameAs:https://doi.org/10.1007/s13238-022-00913-7
      keywords:
         single-cell lineage tracing
         integration barcodes
         polylox barcodes
         CRISPR barcodes
         Biochemistry
         general
         Protein Science
         Cell Biology
         Stem Cells
         Human Genetics
         Developmental Biology
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         https://media.springernature.com/lw1200/springer-static/image/art%3A10.1007%2Fs13238-022-00913-7/MediaObjects/13238_2022_913_Fig4_HTML.png
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                     name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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                     name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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                     name:University of Chinese Academy of Sciences, Beijing, China
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                     name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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      affiliation:
            name:Chinese Academy of Sciences
            address:
               name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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               name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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            type:Organization
      name:Guangdun Peng
      url:https://orcid.org/0000-0002-8586-0637
      affiliation:
            name:Chinese Academy of Sciences
            address:
               name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
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               type:PostalAddress
            type:Organization
            name:Chinese Academy of Sciences
            address:
               name:Institute for Stem Cell and Regeneration, Chinese Academy of Sciences, Beijing, China
               type:PostalAddress
            type:Organization
      email:[email protected]
PostalAddress:
      name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
      name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
      name:University of Chinese Academy of Sciences, Beijing, China
      name:Center for Cell Lineage and Development, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-HKU Guangdong-Hong Kong Stem Cell and Regenerative Medicine Research Centre, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China
      name:Center for Cell Lineage and Atlas, Bioland Laboratory (Guangzhou Regenerative Medicine and Health Guangdong Laboratory), Guangzhou, China
      name:Institute for Stem Cell and Regeneration, Chinese Academy of Sciences, Beijing, China

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