Articles published in Gene Technology have been cited by esteemed scholars and scientists all around the world. Gene Technology has got h-index 6, which means every article in Gene Technology has got 6 average citations.

Following are the list of articles that have cited the articles published in Gene Technology.

  2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012

Total published articles

40 57 30 27 33 3 2 3 9 31 7 7 5

Research, Review articles and Editorials

1 1 1 4 10 3 2 3 4 18 3 3 1

Research communications, Review communications, Editorial communications, Case reports and Commentary

20 56 29 23 23 0 0 0 5 13 4 4 4

Conference proceedings

0 0 0 0 0 0 0 0 0 0 0 0 0

Citations received as per Google Scholar, other indexing platforms and portals

26 30 33 13 19 15 19 17 17 5 2 4 0
Journal total citations count 197
Journal impact factor 0.84
Journal 5 years impact factor 1.04
Journal cite score 1.03
Journal h-index 6
Important citations

Manokaran RB. RB Narayanan,“Recombinant Wolbachia surface protein (WSP)-induced T cell responses in Wuchereria bancrofti infections”, Parasitology Research,[Epub ahead of print],(2011). Parasitology. 2010;125:114-23.

Nayak S, Ramaiah N, Meena RM, Sreepada RA. Full‐length cloning and phylogenetic analyses of translationally controlled tumour protein and ferritin genes from the Indian white prawn, F enneropenaeus indicus (H. M ilne E dwards). Journal of fish diseases. 2014 Feb;37(2):77-87.

Jia Z, Wang M, Yue F, Wang X, Wang L, Song L. The immunomodulation of a maternal translationally controlled tumor protein (TCTP) in Zhikong scallop Chlamys farreri. Fish & shellfish immunology. 2017 Jan 31;60:141-9.

Rajesh S, Kamalakannan V, Narayanan RB. Immune modulations and protection by translationally controlled tumor protein (TCTP) in Fenneropenaeus indicus harboring white spot syndrome virus infection. Journal of invertebrate pathology. 2014 Jul 1;120:33-9.

Ren C, Chen T, Jiang X, Wang Y, Hu C. The first characterization of gene structure and biological function for echinoderm translationally controlled tumor protein (TCTP). Fish & shellfish immunology. 2014 Dec 1;41(2):137-46.

Wei J, Guo M, Ji H, Yan Y, Ouyang Z, Huang X, Hang Y, Qin Q. Grouper translationally controlled tumor protein prevents cell death and inhibits the replication of Singapore grouper iridovirus (SGIV). Fish & shellfish immunology. 2012 Oct 1;33(4):916-25.

Li C, Qiu L, Ning X, Chen A, Qin S, Wu H, Zhao J. The first molluscan TCTP in Venerupis philippinarum: molecular cloning and expression analysis. Fish & shellfish immunology. 2010 Sep 1;29(3):530-3.

Livraghi L, Martin A, Gibbs M, Braak N, Arif S, Breuker CJ. CRISPR/Cas9 as the key to unlocking the secrets of butterfly wing pattern development and its evolution. InAdvances in Insect Physiology 2018 Jan 1 (Vol. 54, pp. 85-115). Academic Press.

Park J, Yoo KJ, Lee M, Park J, Park E, Tark JY, Lee S, Shin C. Research & Reviews: Journal of Medical and Health Sciences.

Is it time to study leukodystrophies?

Chaperones as potential therapeutics for Krabbe disease

Kauffman KJ, Oberli MA, Dorkin JR, Hurtado JE, Kaczmarek JC, Bhadani S, Wyckoff J, Langer R, Jaklenec A, Anderson DG. Rapid, Single-Cell Analysis and Discovery of Vectored mRNA Transfection In Vivo with a loxP-Flanked tdTomato Reporter Mouse. Molecular Therapy-Nucleic Acids. 2018 Mar 2;10:55-63.

Transgenic DNA modules with pre-programmed self-destruction: universal molecular devices to escape 'genetic litter'in gene and cell therapy

Multigene delivery in mammalian cells: Recent advances and applications

Tolmachov OE, Tolmachova T. Methods of Transfection with Messenger RNA Gene Vectors. InGene Therapy-Principles and Challenges 2015. InTech.

Histone lysine methylation and congenital heart disease: from bench to bedside

GENAVOS: A New Tool for Modelling and Analyzing Cancer Gene Regulatory Networks Using Delayed Nonlinear Variable Order Fractional System

Non-clear cell renal cell carcinoma, part 2: therapy

Tosolini M, Algans C, Pont F, Ycart B, Fournié JJ. Large-scale microarray profiling reveals four stages of immune escape in non-Hodgkin lymphomas. Oncoimmunology. 2016 Jul 2;5(7):e1188246.

Laurent C, Charmpi K, Gravelle P, Tosolini M, Franchet C, Ysebaert L, Brousset P, Bidaut A, Ycart B, Fournié JJ. Several immune escape patterns in non-Hodgkin's lymphomas. Oncoimmunology. 2015 Aug 3;4(8):e1026530.