World's Best Scientists 2026 revealed!

D-Index & Metrics

Immunology

D-Index
65
Citations
12765
World Ranking
2873
National Ranking
259

Andrew J. T. George publication distribution in Immunology in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Immunology in 2026. The highlighted bar marks where Andrew J. T. George sits on this spectrum.

62–71 publications: 9 scientists 72–81 publications: 23 scientists 82–91 publications: 40 scientists 92–101 publications: 72 scientists 102–111 publications: 86 scientists 112–121 publications: 108 scientists 122–131 publications: 150 scientists 132–141 publications: 160 scientists 142–151 publications: 159 scientists 152–161 publications: 189 scientists 162–171 publications: 166 scientists 172–181 publications: 181 scientists 182–191 publications: 188 scientists 192–201 publications: 187 scientists 202–211 publications: 178 scientists 212–221 publications: 158 scientists 222–231 publications: 168 scientists 232–241 publications: 159 scientists 242–251 publications: 160 scientists 252–261 publications: 148 scientists 262–271 publications: 116 scientists 272–281 publications: 125 scientists 282–291 publications: 115 scientists 292–301 publications: 111 scientists 302–311 publications: 95 scientists 312–321 publications: 97 scientists 322–331 publications: 97 scientists 332–341 publications: 99 scientists 342–351 publications: 96 scientists 352–361 publications: 68 scientists 362–371 publications: 76 scientists 372–381 publications: 71 scientists 382–391 publications: 71 scientists 392–401 publications: 62 scientists 402–411 publications: 54 scientists 412–421 publications: 41 scientists 422–431 publications: 63 scientists 432–441 publications: 53 scientists 442–451 publications: 31 scientists 452–461 publications: 42 scientists 462–471 publications: 40 scientists 472–481 publications: 29 scientists 482–491 publications: 34 scientists 492–501 publications: 30 scientists 502–511 publications: 23 scientists 512–521 publications: 41 scientists 522–531 publications: 29 scientists 532–541 publications: 28 scientists 542–551 publications: 16 scientists 552–561 publications: 18 scientists 562–571 publications: 18 scientists 572–581 publications: 17 scientists 582–591 publications: 17 scientists 592–601 publications: 17 scientists 602–611 publications: 19 scientists 612–621 publications: 13 scientists 622–631 publications: 12 scientists 632–641 publications: 11 scientists 642–651 publications: 16 scientists 652–661 publications: 9 scientists 662–671 publications: 5 scientists 672–681 publications: 13 scientists 682–691 publications: 12 scientists 692–701 publications: 6 scientists 702–711 publications: 6 scientists 712–721 publications: 9 scientists 722–731 publications: 9 scientists 732–741 publications: 6 scientists 742–751 publications: 11 scientists 752–761 publications: 10 scientists 762–771 publications: 7 scientists 772–781 publications: 12 scientists 782–791 publications: 7 scientists 792–801 publications: 5 scientists 802–806 publications: 1 scientists 807+ publications: 100 scientists
62 publications 807+

This scientist: 201 publications — 35th percentile

35% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 807 publications or more.

Andrew J. T. George D-index placement in Immunology in 2026

The chart shows the D-index (discipline H-index) distribution of Immunology scientists ranked by Research.com in 2026. The highlighted bar marks where Andrew J. T. George sits on this spectrum.

40–41 D-Index: 28 scientists 42–43 D-Index: 91 scientists 44–45 D-Index: 157 scientists 46–47 D-Index: 192 scientists 48–49 D-Index: 175 scientists 50–51 D-Index: 188 scientists 52–53 D-Index: 177 scientists 54–55 D-Index: 155 scientists 56–57 D-Index: 194 scientists 58–59 D-Index: 201 scientists 60–61 D-Index: 197 scientists 62–63 D-Index: 201 scientists 64–65 D-Index: 173 scientists 66–67 D-Index: 167 scientists 68–69 D-Index: 172 scientists 70–71 D-Index: 199 scientists 72–73 D-Index: 184 scientists 74–75 D-Index: 133 scientists 76–77 D-Index: 162 scientists 78–79 D-Index: 127 scientists 80–81 D-Index: 121 scientists 82–83 D-Index: 125 scientists 84–85 D-Index: 121 scientists 86–87 D-Index: 102 scientists 88–89 D-Index: 96 scientists 90–91 D-Index: 75 scientists 92–93 D-Index: 72 scientists 94–95 D-Index: 74 scientists 96–97 D-Index: 66 scientists 98–99 D-Index: 68 scientists 100–101 D-Index: 49 scientists 102–103 D-Index: 60 scientists 104–105 D-Index: 54 scientists 106–107 D-Index: 36 scientists 108–109 D-Index: 23 scientists 110–111 D-Index: 52 scientists 112–113 D-Index: 41 scientists 114–115 D-Index: 34 scientists 116–117 D-Index: 25 scientists 118–119 D-Index: 28 scientists 120–121 D-Index: 11 scientists 122–123 D-Index: 20 scientists 124–125 D-Index: 27 scientists 126–127 D-Index: 19 scientists 128–129 D-Index: 20 scientists 130–131 D-Index: 16 scientists 132–133 D-Index: 17 scientists 134–135 D-Index: 14 scientists 136–137 D-Index: 15 scientists 138–139 D-Index: 9 scientists 140–141 D-Index: 11 scientists 142–143 D-Index: 9 scientists 144–145 D-Index: 9 scientists 146–147 D-Index: 7 scientists 148–149 D-Index: 7 scientists 150–151 D-Index: 7 scientists 152–153 D-Index: 5 scientists 154–155 D-Index: 8 scientists 156 D-Index: 6 scientists 157+ D-Index: 96 scientists
40 D-Index 157+

This scientist: 65 D-Index — 43rd percentile

43% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 157 D-Index or more.

Overview

Andrew J. T. George is affiliated with Imperial College London in the United Kingdom. Their research is primarily situated within the field of Medicine, with a focus on multiple subfields including General Health Professions, Surgery, Immunology, Philosophy, and Public Health, Environmental and Occupational Health.

Their work covers a broad range of topics, highlighted by contributions to Hermeneutics and Narrative Identity, Aging, Elder Care, and Social Issues, as well as Health, Medicine and Society. Other significant topics include Immune Cell Function and Interaction, Microplastics and Plastic Pollution, Nanoparticles: synthesis and applications, and Organ Transplantation Techniques and Outcomes.

Andrew J. T. George has co-authored publications with several frequent collaborators, including Patrick C. McCulloch, Uday Kishore, Bradley S. Lambert, Maria Susan Mathew, and Ji Liang.

Their recent papers include:

  • "Unraveling the threat: Microplastics and nano-plastics' impact on reproductive viability across ecosystems" (2023) published in The Science of The Total Environment
  • "A virtuous framework for professional reflection" (2023) published in Future Healthcare Journal
  • "Nano-plastics and gastric health: Decoding the cytotoxic mechanisms of polystyrene nano-plastics size" (2023) published in Environment International
  • "Enhancing SIRT1 Gene Expression Using Small Activating RNAs: A Novel Approach for Reversing Metabolic Syndrome" (2022) published in Nucleic Acid Therapeutics
  • "Post-operative protein supplementation following orthopaedic surgery: A systematic review" (2023) published in Sports Medicine and Health Science

Andrew J. T. George's works have appeared frequently in venues such as Zenodo (CERN European Organization for Nuclear Research), Advances in Experimental Medicine and Biology, Cureus, The Science of The Total Environment, and Future Healthcare Journal.

Best Publications

  • The safety and side effects of monoclonal antibodies

    Trevor T. Hansel;Harald Kropshofer;Thomas Singer;Jane A. Mitchell

  • Antibody engineering: comparison of bacterial, yeast, insect and mammalian expression systems

    R Verma;E Boleti;A.J.T George

  • Thymic involution with ageing: obsolescence or good housekeeping?

    Andrew J.T. George;Mary A. Ritter

  • Inhibition of NF-kappa B and oxidative pathways in human dendritic cells by antioxidative vitamins generates regulatory T cells.

    Peng H Tan;Pervinder Sagoo;Cliburn Chan;John B Yates

  • Lipid-mediated enhancement of transfection by a nonviral integrin-targeting vector.

    S. L. Hart;C. V. Arancibia-Carcamo;M. A. Wolfert;C. Mailhos

  • Cytokines, Chaos, and Complexity

    Robin Callard;Andrew J.T. George;Jaroslav Stark

  • Function of indoleamine 2,3-dioxygenase in corneal allograft rejection and prolongation of allograft survival by over-expression

    Sven C. Beutelspacher;Radhakrishna Pillai;Martin P. Watson;Peng H. Tan

  • Activated polyamidoamine dendrimers, a non-viral vector for gene transfer to the corneal endothelium.

    T Hudde;S A Rayner;R M Comer;M Weber

  • Anti-idiotypic mechanisms involved in suppression of a mouse B cell lymphoma, BCL1.

    A. J. T. George;A. L. Tutt;F. K. Stevenson

  • Goodpasture's disease in the absence of circulating anti-glomerular basement membrane antibodies as detected by standard techniques

    Alan D. Salama;Tammy Dougan;Jeremy B. Levy;H.Terry Cook

  • Modulation of human dendritic-cell function following transduction with viral vectors: implications for gene therapy.

    Peng H. Tan;Sven C. Beutelspacher;Shao-An Xue;Yao-He Wang

  • Ovarian cancer immunotherapy using PD-L1 siRNA targeted delivery from folic acid-functionalized polyethylenimine: strategies to enhance T cell killing.

    Pei Yun Teo;Chuan Yang;Lynsey M. Whilding;Lynsey M. Whilding;Ana C. Parente-Pereira

  • Corneal transplantation: the forgotten graft.

    A. J. T. George;D. F. P. Larkin;D. F. P. Larkin

  • Inflammatory cytokines induce apoptosis of corneal endothelium through nitric oxide.

    Pervinder Sagoo;Giulia Chan;Daniel F P Larkin;Daniel F P Larkin;Andrew J T George

  • Adenovirus-mediated gene delivery to the corneal endothelium.

    D. F. Larkin;H. B. Oral;Christopher J. Ring;N. R. Lemoine

  • Programmed death ligand-1 over-expression correlates with malignancy and contributes to immune regulation in ovarian cancer

    Christian J. Maine;Nor Haslinda Abdul Aziz;Jayanta Chatterjee;Claudia Hayford

  • Role of Toll-like receptor-4 in renal graft ischemia-reperfusion injury

    Hailin Zhao;Jessica Santiváñez Perez;Kaizhi Lu;Andrew J. T. George

  • Idiotypic vaccination as a treatment for a B cell lymphoma.

    A. J. T. George;S. G. Folkard;T. J. Hamblin;F. K. Stevenson

  • Antibody targeted gene transfer to endothelium

    Peng Hong Tan;Maria Manunta;N Ardjomand;N Ardjomand;S A Xue

  • Hydrophobic modification of low molecular weight polyethylenimine for improved gene transfection

    Pei Yun Teo;Chuan Yang;James L. Hedrick;Amanda C. Engler

  • Importance of the linker in expression of single-chain Fv antibody fragments: optimisation of peptide sequence using phage display technology

    Damian J. Turner;Mary A. Ritter;Andrew J.T. George

Frequent Co-Authors

Robert I. Lechler
Robert I. Lechler King's College London
Dorian O. Haskard
Dorian O. Haskard Imperial College London
Freda K. Stevenson
Freda K. Stevenson University of Southampton
Giovanna Lombardi
Giovanna Lombardi King's College London
David M. Segal
David M. Segal University of California, Davis
Daqing Ma
Daqing Ma Imperial College London
Martin J. Glennie
Martin J. Glennie University of Southampton
Costantino Pitzalis
Costantino Pitzalis Queen Mary University of London
Yi Yan Yang
Yi Yan Yang Agency for Science, Technology and Research
Charles D. Pusey
Charles D. Pusey Imperial College London

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Related Online Degrees & Career Pathways

For those studying Immunology in the USA, exploring related healthcare degrees can open diverse career avenues. Many students consider advancing into nursing specialties, which often complement immunological expertise. Programs like online accelerated nursing programs for non nurses offer a fast track for individuals without a prior nursing background to enter the field, providing foundational skills needed for clinical practice.

Once in nursing, pursuing an advanced role such as a Family Nurse Practitioner (FNP) is common. There are numerous accelerated FNP programs available online that cater to students looking to expedite their education while balancing other commitments. This pathway enhances clinical knowledge, especially relevant for patients with immune-related conditions.

For those aiming to specialize further, acquiring an acute care NP certification is a strategic step. It prepares nurses to manage complex, severe illnesses, often linked to immune system dysfunctions, reflecting a natural progression for immunology graduates seeking acute care roles.

It’s important to consider salary outcomes in choosing a specialty. Resources detailing the highest paid DNP specialties can guide students and professionals in making informed decisions about their educational investments and career focus.

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