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There is no single or universal transfection strategy that is apt for all cell lines and experimental aims. Apart from the experimental budget and the availability of required facilities, the choice for an optimal transfection approach or strategy depends on factors including the type and origin of cells and the form of nucleic acids to be transfected. It is also essential to consider factors that may affect transfection efficiency and cytotoxicity to the host cells and how these parameters may be assessed accurately and conveniently.

Likewise, the inclusion of appropriate controls in a transfection experiment is equally important to allow a fair and unbiased assessment of the experimental outcome. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.

Competing Interests The authors declare that they have no competing interests. Data Availability The following information was supplied regarding data availability:. Published online Apr Author information Article notes Copyright and License information Disclaimer.

Corresponding author. Wan Yong Ho: ym. Received Jul 22; Accepted Mar 5. This is an open access article distributed under the terms of the Creative Commons Attribution License , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. Abstract Transfection is a modern and powerful method used to insert foreign nucleic acids into eukaryotic cells.

Open in a separate window. Figure 1. Transfection approaches Transfection methods can be generally divided into viral, non-viral, or a combination of both hybrid Fig. Figure 2. Different transfection protocols that can be divided into viral-based, non-viral based or combination of both hybrid.

Viral transfection Viral-based transfection, or more specifically known as transduction, involves using a viral vector to carry a specific nucleic acid sequence into a host cell.

Figure 3. Summary of the commonly used chemical transfection reagents. Hybrid of viral and non-viral transfection methods The combination of viral and non-viral transfection method is known as a hybrid approach, and the use of such a combined method was reported to produce higher transfection efficiency compared to other transfection methods such as using polyplexes alone Pinnapireddy et al.

Type of transfected nucleic acids Deoxyribonucleic acids In transfection, DNAs are normally transported into a host cell via a viral or non-viral vector such as plasmid Balak et al.

Table 1 List of commonly used oligonucleotides in the small RNA transient transfection work. Combination of different transfected nucleic acids or co-transfection Co-transfection is a process in which more than one type of nucleic acid is being introduced into the eukaryotic cell Fig. Figure 4. Applications of co-transfection in biotechnology and life sciences research.

Assessing transfection efficiency Assessing the efficiency of transfection is vital, especially in functional studies which require high transfection efficiencies to warrant post-transcriptional regulation of specific downstream targets Weilin et al. Table 2 Comparison of the different methods for the assessment of transfection efficiency.

Different approaches for assessing transfection efficiency. Factors influencing transfection efficiency The efficiency of chemical transfection depends greatly on a few factors such as type of reagents used, the origin and nature of target cells, and an optimum DNA to reagent ratio chosen Table S1 Gharaati-Far et al. Factors influencing the efficiency of viral transfection Viral vectors such as lentiviruses are useful in gene therapy due to their ability to carry large-sized nucleic acid and deliver their targets to both non-dividing and dividing cells Karda et al.

Type of chemical transfection reagents Primary and stem cells Primary mammalian cells are generally less susceptible to transfection than other cell types due to its finite lifespan and limited expansion capacity Oh et al. Human vs animal cells The origin of cell lines, such as human vs. Cell lines derived from the same species The performance of different transfection reagents could also vary in different cell lines derived from the same species.

Adherent vs. The ratio of nucleic acids to transfection reagents The ratio of nucleic acids to transfection reagents also plays a role in influencing transfection efficiency Arnold et al. Other factors Serum-reduced or serum-free media are normally recommended in transfection involving cationic transfection reagents such as Lipofectamine Wallenstein et al. Conclusion There is no single or universal transfection strategy that is apt for all cell lines and experimental aims.

Click here for additional data file. Additional Information and Declarations Competing Interests The authors declare that they have no competing interests. Biophysical Reviews. Nonviral gene delivery: principle, limitations, and recent progress. AAPS Journal. Alabdullah et al. Estimating transfection efficiency in differentiated and undifferentiated neural cells.

BMC Research Notes. Journal of Visualized Experiments. Molecular Therapy—Nucleic Acids. Arnold et al. Fundamental and Clinical Pharmacology. Health and Environment Journal. Balak et al. Highly efficient ex vivo lentiviral transduction of primary human pancreatic exocrine cells.

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Gene Therapy. Buchwalow et al. Non-specific binding of antibodies in immunohistochemistry: fallacies and facts. Canoy et al. Easy and robust electrotransfection protocol for ef fi cient ectopic gene expression and genome editing in human B cells. Epub ahead of print 30 September Cao et al.

Effect of freezing and thawing rates on denaturation of proteins in aqueous solution. Biotechnology and Bioengineering. MicroRNA is an antiapoptotic factor in human glioblastoma cells. Cancer Resesearch. Chen et al. Nanoparticle delivery of stable miRa-5p agomir improves the osteogenesis of human mesenchymal stem cells via the HIF1a pathway. Cheng et al. Nucleic Acids Research. Cheung et al. Efficient nonviral transfection of human bone marrow mesenchymal stromal cells shown using placental growth factor overexpression.

Stem Cells International. Chopra et al. Investigation of plasmid DNA delivery and cell viability dynamics for optimal cell electrotransfection in vitro. Applied Sciences. Chow et al. Single cell transfection through precise microinjection with quantitatively controlled injection volumes. Colosimo et al. Transfer and expression of foreign genes in mammalian cells.

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Denning et al. Optimization of the transductional efficiency of lentiviral vectors: effect of sera and polycations. Molecular Biotechnology. Deriziotis et al. Investigating protein-protein interactions in live cells using bioluminescence resonance energy transfer. Diener et al. RNA-based, transient modulation of gene expression in human haematopoietic stem and progenitor cells.

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Dendrimers in gene delivery. Advanced Drug Delivery Reviews. Duportet et al. A platform for rapid prototyping of synthetic gene networks in mammalian cells. Therapeutic oligonucleotides: state of the art. Annual Review of Pharmacology and Toxicology. Elgundi et al. Laboratory scale production and purification of a therapeutic antibody. Ervin et al. Targeted gene silencing in human embryonic stem cells using cell-penetrating peptide PepFect.

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Evaluation of the magnetic field requirements for nanomagnetic gene transfection. Nano Reviews. Recent progress in microRNA-based delivery systems for the treatment of human disease. RNA Biology. Gam et al. A poly-transfection method for rapid, one-pot characterization and optimization of genetic systems.

Gharaati-Far et al. Efficiency and cytotoxicity analysis of cationic lipids-mediated gene transfection into AGS gastric cancer cells. Artificial Cells, Nanomedicine, and Biotechnology. The importance of and a method for including transfection efficiency into real-time PCR data analyses. Granieri et al. Evaluation of a multiparametric immunofluorescence assay for standardization of neuromyelitis optica serology. Locked nucleic acid oligonucleotides: the next generation of antisense agents?

Guo et al. Optimizing conditions for calcium phosphate mediated transient transfection. Saudi Journal of Biological Sciences. Nucleic acid delivery to mesenchymal stem cells: a review of nonviral methods and applications. Journal of Biological Engineering. Co-transfection of plasmid DNA. Hardee et al. Advances in non-viral DNA vectors for gene therapy.

Haas et al. Molecular Therapy. Hillebrand et al. International Journal of Molecular Sciences. Retroviral DNA integration. Microbiology and Molecular Biology Reviews. Ho et al. Flow cytometry for assessment of the efficacy of siRNA. Cytometry Part A. Homann et al. A novel rapid and reproducible flow cytometric method for optimization of transfection efficiency in cells.

Horibe et al. Transfection efficiency of normal and cancer cell lines and monitoring of promoter activity by single-cell bioluminescence imaging. Hornstein et al. Hu et al. Hunt et al. Optimizing transfection of primary human umbilical vein endothelial cells using commercially available chemical transfection reagents. Journal of Biomolecular Techniques. Differential cellular responses to exogenous DNA in mammalian cells and its effect on oligonucleotide-directed gene modification.

Ikeda et al. Current Anesthesiology Reports. Jensen Jensen EC. Quantitative analysis of histological staining and fluorescence using ImageJ. Anatomical Record. Comparison of small interfering RNA siRNA delivery into bovine monocyte-derived macrophages by transfection and electroporation.

Veterinary Immunology and Immunopathology. Jin et al. Transfection of microRNA mimics should be used with caution. Frontiers in Genetics. Current progress in gene delivery technology based on chemical methods and nano-carriers. Jiwaji et al. The Renilla luciferase gene as a reference gene for normalization of gene expression in transiently transfected cells. BMC Molecular Biology. Jordan et al. Optimizing electroporation conditions in primary and other difficult-to-transfect cells.

Kamens Kamens J. The addgene repository: an international nonprofit plasmid and data resource. Karda et al. Production of lentiviral vectors using novel, enzymatically produced, linear DNA. Contactless magneto-permeabilization for intracellular plasmid DNA delivery in vivo. Kaufman et al. Homogeneity and persistence of transgene expression by omitting antibiotic selection in cell line isolation. Keller et al. Transfecting macrophages. Methods in Molecular Biology.

Molecular Pharmaceutics. Khamlichi et al. Bioluminescence resonance energy transfer as a method to study protein-protein Interactions: application to G protein coupled receptor biology. Kiefer et al. Transfection efficiency and cytotoxicity of nonviral gene transfer reagents in human smooth muscle and endothelial cells.

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Biochemical and Biophysical Research Communications. Kretzmann et al. Non-viral methodology for efficient co-transfection. Lam et al. Lee et al. Identification of piRNAs in the central nervous system. Adenovirus-mediated gene delivery: potential applications for gene and cell-based therapies in the new era of personalized medicine.

Li et al. Construction of a bicistronic vector for the co-expression of two genes in Caenorhabditis elegans using a newly identified IRES. Biochimica et Biophysica Acta. Western blot evaluation of siRNA delivery by pH responsive peptides. Liew et al. Robust, efficient, and practical electrogene transfer method for human mesenchymal stem cells using square electric pulses.

Human Gene Therapy Methods. Lin et al. A secondary antibody-detecting molecular weight marker with mouse and rabbit IgG Fc linear epitopes for Western Blot analysis. Advances in high-capacity extrachromosomal vector technology: episomal maintenance, vector delivery, and transgene expression. Maginnis Maginnis MS. Virus—receptor interactions: the key to cellular invasion.

Journal of Molecular Biology. Mali Mali S. Delivery systems for gene therapy. Indian Journal of Human Genetics. Comparison of flow cytometry, fluorescence microscopy and spectrofluorometry for analysis of gene electrotransfer efficiency.

Journal of Membrane Biology. Mastropietro et al. HT and Caco-2 reporter cell lines for functional studies of nuclear factor kappa B activation. Mediators of Inflammation. Maurisse et al.

Comparative transfection of DNA into primary and transformed mammalian cells from different lineages. BMC Biotechnology. Mcintyre et al. The effects of stem length and core placement on shRNA activity. A simplified direct lipid mixing lipoplex preparation: comparison and ethanol-based methods. Physical non-viral gene delivery methods for tissue engineering. Annals of Biomedical Engineering.

Meng et al. Sonoporation of cells by a parallel stable cavitation microbubble array. Advanced Science. MicroRNA-based therapy in animal models of selected gastrointestinal cancers. Frontiers in Pharmacology. Production of lentiviral vectors.

Misra et al. Gene transfection in high serum levels: Case studies with new cholesterol based cationic gemini lipids. Mitchenall et al. Expert Review of Vaccines. Moher et al. PLOS Medicine. Molnar et al. Factors influencing the efficacy, longevity, and safety of electroporation-assisted plasmid-based gene transfer into mouse muscles. Mori et al. Development of an experimental method of systematically estimating protein expression limits in HEK cells. Mykhaylyk et al. Generation of magnetic nonviral gene transfer agents and magnetofection in vitro.

Nature Protocols. A dual-light reporter system to determine the efficiency of protein-protein interactions in mammalian cells.

Viral and nonviral delivery systems for gene delivery. Advanced Biomedical Research. Nejepinska et al. Deep sequencing reveals complex spurious transcription from transiently transfected plasmids. Immunofluorescence analysis of endogenous and exogenous centromere-kinetochore proteins.

Nikol et al. Needle injection catheter delivery of the gene for an antibacterial agent inhibits neointimal formation. Nora et al. The art of vector engineering: towards the construction of next-generation genetic tools. Microbial Biotechnology. Nowakowski et al. Translation, but not transfection limits clinically relevant, exogenous mRNA based induction of alpha-4 integrin expression on human mesenchymal stem cells.

Optimized ultrasound-mediated gene transfection in cancer cells. Cancer Science. Oh et al. Characteristics of primary and immortalized fibroblast cells derived from the miniature and domestic pigs. BMC Cell Biology. Design, assembly, production, and transfection of synthetic modified mRNA. Ooi et al. A guide to transient expression of membrane proteins in HEK cells for functional characterization.

Frontiers in Physiology. Frontiers in Molecular Neuroscience. Pang et al. Knockdown of cell division cycle-associated protein 4 expression inhibits proliferation of triple negative breast cancer MDA-MB cells in vitro and in vivo.

Oncology Letters. Peng et al. A simple, rapid method for evaluation of transfection efficiency based on fluorescent dye. Peralta-Zaragoza et al. BMC Cancer. Gene therapy: promises and problems. Annual Review of Genomics and Human Genetics. Piao et al. Pinnapireddy et al. Glycosylated artificial virus-like hybrid vectors for advanced gene delivery.

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Twin 1312 prinzip download - Associated Data

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