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Cellular Reprogramming
H-index 6

Cellular Reprogramming

2152-4971

Published by: Mary Ann Liebert, Inc. Publishers

https://home.liebertpub.com/publications/cellular-reprogramming/9/overview

Ranking & Metrics

Discipline name Position Best Scientists Publications D-Index
Biology and Biochemistry 768 16 19 5

Additional Metrics

Number of Best Scientists*: 26
Documents by Best Scientists*: 27
Top 100 Ranked Scientists*: 0
SCIMAGO H-index: 66
SCIMAGO SJR: 0.45
Impact Factor: 1.7

Overview

Top Research Topics at Cellular Reprogramming?

Cellular Reprogramming is mainly concerned with subjects like Cell biology, Molecular biology, Embryonic stem cell, Reprogramming and Induced pluripotent stem cell. The Cell biology works featured in the journal incorporate elements from SOX2, Cellular differentiation and Somatic cell. The work on Molecular biology tackled in Cellular Reprogramming brings together disciplines like Gene expression, Gene, DNA methylation, Somatic cell nuclear transfer and Embryo.

Cellular Reprogramming holds forums on Somatic cell nuclear transfer that merges themes from other disciplines such as Oocyte, Histone and Histone deacetylase inhibitor. It explores topics in Embryo which can be helpful for research in disciplines like Cloning, In vitro and In vivo. The study on Embryonic stem cell presented is investigated in conjunction with research in Cell culture.

While work presented in it provided substantial information on Reprogramming, it also covered topics in Transcription factor and Epigenetics. Induced pluripotent stem cell research presented in it encompasses a variety of subjects, including Cell and Regenerative medicine. Topics in Stem cell explored in Cellular Reprogramming were investigated in conjunction with research in Cancer research, Immunology and Amniotic epithelial cells, Adult stem cell.

  • Cell biology (47.67%)
  • Molecular biology (37.13%)
  • Embryonic stem cell (29.71%)

What are the most cited papers published in the journal?

  • Histone deacetylase inhibitors improve in vitro and in vivo developmental competence of somatic cell nuclear transfer porcine embryos. (117 citations)
  • mTOR-Mediated Activation of p70 S6K Induces Differentiation of Pluripotent Human Embryonic Stem Cells (87 citations)
  • Improvement of Cloned Embryos Development by Co-Culturing with Parthenotes: A Possible Role of Exosomes/Microvesicles for Embryos Paracrine Communication (81 citations)

Research areas of the most cited articles at Cellular Reprogramming:

Molecular biology, Cell biology, Embryonic stem cell, Somatic cell nuclear transfer and Stem cell are the main subjects of interest in the most cited articles. The published articles address concerns in Molecular biology which are intertwined with other disciplines, such as Reprogramming, Blastocyst, Histone deacetylase inhibitor, Trichostatin A and Histone. The most cited papers explore topics in Embryonic stem cell which can be helpful for research in disciplines like Cell culture, Cell type and Cellular differentiation.

What topics the last edition of the journal is best known for?

  • Gene
  • DNA
  • Enzyme

The previous edition focused in particular on these issues:

Cell biology, Reprogramming, Induced pluripotent stem cell, Embryo and Mesenchymal stem cell are the subjects of interest in Cellular Reprogramming. While Cell biology is the focus of Cellular Reprogramming, it also provided insights into the studies of Embryonic stem cell, Bubalus, In vitro and Cell culture. Issues in Embryonic stem cell were discussed, taking into consideration concepts from other disciplines like Retinoic acid and Keratinocyte.

Some problems in Reprogramming that were presented in the journal overlapped with concepts under Cell cycle, Epigenetics, Computational biology and Somatic cell. The journal explores issues in Induced pluripotent stem cell which can be linked to other research areas like Cell and Stem cell. Somatic cell nuclear transfer research are fields of study within Embryo but they also intertwine with concepts in Transcription activator-like effector nuclease.

The most cited articles from the last journal are:

  • Targeting Adenosine Receptors in Neurological Diseases. (4 citations)
  • Investigating Markers of Reprogramming Potential in Somatic Cell Lines Derived from Matched Donors. (1 citations)
  • Wnt Signaling Regulates the Lymphatic Endothelial Transdifferentiation of Adipose-Derived Stromal Cells In Vitro (1 citations)

Papers citation over time

A key indicator for each journal is its effectiveness in reaching other researchers with the papers published at that venue.

The chart below presents the interquartile range (first quartile 25%, median 50% and third quartile 75%) of the number of citations of articles over time.

The top authors publishing in Cellular Reprogramming (based on the number of publications) are:

  • Manmohan Singh Chauhan (23 papers) published 3 papers at the last edition,
  • Suresh Kumar Singla (21 papers) published 2 papers at the last edition,
  • Prabhat Palta (19 papers) published 3 papers at the last edition,
  • Yong Zhang (13 papers) published 1 paper at the last edition,
  • Randall S. Prather (12 papers) absent at the last edition.

The overall trend for top authors publishing in this journal is outlined below. The chart shows the number of publications at each edition of the journal for top authors.

Only papers with recognized affiliations are considered

The top affiliations publishing in Cellular Reprogramming (based on the number of publications) are:

  • National Dairy Research Institute (26 papers) published 3 papers at the last edition,
  • Northwest A&F University (17 papers) published 1 paper at the last edition,
  • University of Edinburgh (14 papers) published 1 paper at the last edition,
  • University of Connecticut (12 papers) published 1 paper at the last edition,
  • University of Missouri (11 papers) absent at the last edition.

The overall trend for top affiliations publishing in this journal is outlined below. The chart shows the number of publications at each edition of the journal for top affiliations.

Publication chance based on affiliation

The publication chance index shows the ratio of articles published by the best research institutions in the journal edition to all articles published within that journal. The best research institutions were selected based on the largest number of articles published during all editions of the journal.

The chart below presents the percentage ratio of articles from top institutions (based on their ranking of total papers).Top affiliations were grouped by their rank into the following tiers: top 1-10, top 11-20, top 21-50, and top 51+. Only articles with a recognized affiliation are considered.

During the most recent 2021 edition, 6.06% of publications had an unrecognized affiliation. Out of the publications with recognized affiliations, 29.03% were posted by at least one author from the top 10 institutions publishing in the journal. Another 6.45% included authors affiliated with research institutions from the top 11-20 affiliations. Institutions from the 21-50 range included 32.26% of all publications and 32.26% were from other institutions.

Returning Authors Index

A very common phenomenon observed among researchers publishing scientific articles is the intentional selection of journals they have already attended in the past. In particular, it is worth analyzing the case when the authors participate in the same journal from year to year.

The Returning Authors Index presented below illustrates the ratio of authors who participated in both a given as well as the previous edition of the journal in relation to all participants in a given year.

Returning Institution Index

The graph below shows the Returning Institution Index, illustrating the ratio of institutions that participated in both a given and the previous edition of the conference in relation to all affiliations present in a given year.

The experience to innovation index

Our experience to innovation index was created to show a cross-section of the experience level of authors publishing in a journal. The index includes the authors publishing at the last edition of a journal, grouped by total number of publications throughout their academic career (P) and the total number of citations of these publications ever received (C).

The group intervals were selected empirically to best show the diversity of the authors' experiences, their labels were selected as a convenience, not as judgment. The authors were divided into the following groups:

  • Novice - P < 5 or C < 25 (the number of publications less than 5 or the number of citations less than 25),
  • Competent - P < 10 or C < 100 (the number of publications less than 10 or the number of citations less than 100),
  • Experienced - P < 25 or C < 625 (the number of publications less than 25 or the number of citations less than 625),
  • Master - P < 50 or C < 2500 (the number of publications less than 50 or the number of citations less than 2500),
  • Star - P ≥ 50 and C ≥ 2500 (both the number of publications greater than 50 and the number of citations greater than 2500).

The chart below illustrates experience levels of first authors in cases of publications with multiple authors.

Career Paths in Cellular Reprogramming

In light of the research opportunities and advancements highlighted above, many may wonder about the available career paths in cellular reprogramming and related fields. Notably, one pathway where both the medical and research aspect merge is medical billing and coding. In fact, medical billers and coders play a critical role, providing a crucial connection between healthcare providers, patients, and insurance companies. They are responsible for translating healthcare services into medical claims, dealing with complex coding systems to ensure the accurate representation of these services. Nebraska, in particular, offers promising opportunities for individuals interested in this field. If you're fascinated by the above research in cellular reprogramming and are considering a healthcare-related career, it might be especially advantageous to learn **how to be a medical coder in Nebraska**. By leveraging your knowledge of current research trends, such as cellular reprogramming, and applying it to a practical career, your employment opportunities could substantially increase. Moreover, the intersection of healthcare, research, and coding could lead to further possibilities beyond conventional medical billing and coding roles. With the advancement of bioinformatics and computational biology, individuals skilled in medical coding could potentially transition into roles within research institutions, contributing to this exciting field of cellular reprogramming and beyond.

Top Publications

  • Sustained Vision Recovery by OSK Gene Therapy in a Mouse Model of Glaucoma

    (2023)
    11 Citations
  • Aberrant Epigenetic Reprogramming in the First Cell Cycle of Bovine Somatic Cell Nuclear Transfer Embryos.

    LiJun Wang;LiXiu Liu;YongSheng Wang;Nan Li

    (2021)
    8 Citations
  • Generation of Urine-Derived Induced Pluripotent Stem Cell Line from Patients with Acute Kidney Injury

    Yong Jin;Manling Zhang;Meishuang Li;Hao Zhang

    (2021)
    7 Citations
  • In Vitro and In Vivo Interspecies Chimera Assay Using Early Pig Embryos.

    Monika Nowak-Imialek;Monika Nowak-Imialek;Stephanie Wunderlich;Doris Herrmann;Svenja Breitschuh-Leibling

    (2020)
    6 Citations
  • An Alternative Way to Improve Mammalian Embryo Development In Vitro: Culture of Zona Pellucida-Free Embryos.

    (2022)
    6 Citations
  • Going Back and Forth: Episomal Vector Reprogramming of Peripheral Blood Mononuclear Cells to Induced Pluripotent Stem Cells and Subsequent Differentiation into Cardiomyocytes and Neuron-Astrocyte Co-cultures.

    Victoria C de Leeuw;Victoria C de Leeuw;Conny T M van Oostrom;Sandra Imholz;Aldert H Piersma;Aldert H Piersma

    (2020)
    5 Citations
  • Generation of Induced Pluripotent Stem Cells from a Female Patient with a Xq27.3-q28 Deletion to Establish Disease Models and Identify Therapies.

    Noriko Watanabe;Kohei Kitada;Katherine E. Santostefano;Airi Yokoyama

    (2020)
    4 Citations
  • Reprogramming Cell Identity: Past Lessons, Challenges, and Future Directions

    (2023)
    2 Citations
  • Reprogramming of Pluripotency-Specific microRNA Signatures Is Not Essential to Generate Inducible Pluripotent Stem Cells

    Maria Skamagki;Cheng Zhang;Zhong Liu;Hu Li

    (2020)
    1 Citations
  • A Simple and Efficient Solution to Eliminate Evaporation in Mammalian Embryo Cultures

    Wen Bin Chen;Zoltan Machaty;Anabella Marconetto;Lodovico Parmegiani

    (2021)
    1 Citations

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Best Scientists Contributing to This Journal