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Nanotechnology improves disease resistance in plants for food security: Applications and challenges (2023)
Journal Article
Munir, N., Gulzar, W., Abideen, Z., Hancock, J. T., El-Keblawy, A., & Radicetti, E. (2023). Nanotechnology improves disease resistance in plants for food security: Applications and challenges. Biocatalysis and Agricultural Biotechnology, 51, Article 102781

Green synthesis of nano-fertilizers is emerging as a potential strategy and could play a crucial role in disease mitigation, diagnosis, or suppression. Different nanoscale devices (nanoparticles, NPs), biosensors, nano-diagnostic kits, nanofabricatio... Read More about Nanotechnology improves disease resistance in plants for food security: Applications and challenges.

Are protein cavities and pockets commonly used by redox active signalling molecules? (2023)
Journal Article
Hancock, J. T. (2023). Are protein cavities and pockets commonly used by redox active signalling molecules?. Plants, 12(14), 2594. https://doi.org/10.3390/plants12142594

It has been well known for a long time that inert gases, such as xenon (Xe), have significant biological effects. As these atoms are extremely unlikely to partake in direct chemical reactions with biomolecules such as proteins, lipids, and nucleic ac... Read More about Are protein cavities and pockets commonly used by redox active signalling molecules?.

The on/off history of hydrogen in medicine: Will the interest persist this time around? (2023)
Journal Article
LeBaron, T. W., Ohno, K., & Hancock, J. T. (2023). The on/off history of hydrogen in medicine: Will the interest persist this time around?. Oxygen, 3(1), 143-162. https://doi.org/10.3390/oxygen3010011

Over 2000 publications including more than 100 human studies seem to indicate that humans have only recently benefited from or known about the medical effects of H2 within the past 15 years. However, we have unknowingly benefited from H2 since the da... Read More about The on/off history of hydrogen in medicine: Will the interest persist this time around?.

The role of Salicylic acid signal in plant growth, development and abiotic stress (2022)
Journal Article
Hu, Y., Zhi, L., Li, P., T. Hancock, J. T., & Hu, X. (2022). The role of Salicylic acid signal in plant growth, development and abiotic stress. Phyton-International Journal of Experimental Botany, 91(12), 2591-2605. https://doi.org/10.32604/PHYTON.2022.023733

In nature, plants are constantly affected by adverse conditions. Unlike animals, plants can resist these adverse stresses only by insisting on their original positions. Stress can be divided into biological stress and abiotic stress, abiotic stress d... Read More about The role of Salicylic acid signal in plant growth, development and abiotic stress.

Research progress and application of plant branching (2022)
Journal Article
Yang, Y., Hu, Y., Li, P., T. Hancock, J., & Hu, X. (2022). Research progress and application of plant branching. Phyton-International Journal of Experimental Botany, 92(3), 679-689. https://doi.org/10.32604/phyton.2023.024904

Plant branching development plays an important role in plant morphogenesis (aboveground plant type), the number and angle of branches are important agronomic characters that determine crop plant type. Effective branches determine the number of panicl... Read More about Research progress and application of plant branching.

Molecular Hydrogen: The postharvest use in fruits, vegetables and the floriculture industry (2022)
Journal Article
Hancock, J. T., Russell, G., & Stratakos, A. (2022). Molecular Hydrogen: The postharvest use in fruits, vegetables and the floriculture industry. Applied Sciences, 12(20), Article 10448. https://doi.org/10.3390/app122010448

Featured Application: It is proposed here that the use of molecular hydrogen should be considered more widely for the treatment of post-harvest fruits, vegetables and flowers. This can be applied as a gas, or in solution, and costs associated with it... Read More about Molecular Hydrogen: The postharvest use in fruits, vegetables and the floriculture industry.

The influence of molecular Hydrogen therapies in managing the symptoms of acute and chronic COVID-19 (2022)
Journal Article
Russell, G., Thomas, A., Nenov, A., & Hancock, J. (2022). The influence of molecular Hydrogen therapies in managing the symptoms of acute and chronic COVID-19. Medical Research Archives, 10(9), https://doi.org/10.18103/mra.v10i9.3036

Coronavirus Infectious Disease 2019 (COVID-19) is caused by the Severe Acute Respiratory Syndrome Coronavirus-2 (SARS CoV-2) that emerged as a novel pathogen of global concern in the latter stages of 2019. COVID-19 is a highly contagio... Read More about The influence of molecular Hydrogen therapies in managing the symptoms of acute and chronic COVID-19.

Chemical priming enhances plant tolerance to salt stress (2022)
Journal Article
Zulfiqar, F., Nafees, M., Chen, J., Darras, A., Ferrante, A., Hancock, J. T., …Siddique, K. H. (2022). Chemical priming enhances plant tolerance to salt stress. Frontiers in Plant Science, 13, 946922. https://doi.org/10.3389/fpls.2022.946922

Salt stress severely limits the productivity of crop plants worldwide and its detrimental effects are aggravated by climate change. Due to a significant world population growth, agriculture has expanded to marginal and salinized regions, which usuall... Read More about Chemical priming enhances plant tolerance to salt stress.

Do SNPs in glutathione S-transferase-omega allow predictions of the susceptibility of vertebrates to SARS-CoV-2? (2022)
Journal Article
Hancock, J. T., Veal, D., Craig, T. J., & Rouse, R. C. (2022). Do SNPs in glutathione S-transferase-omega allow predictions of the susceptibility of vertebrates to SARS-CoV-2?. Reactive Oxygen Species, 12, c14–c29. https://doi.org/10.20455/ros.2022.c805

Infection with the SARS-Cov-2 virus causes COVID-19 in humans, and is the cause of the pandemic around the world in 2020 and on. However, some animals have been found to be susceptible to the virus too. This has included the non-human primates, dogs,... Read More about Do SNPs in glutathione S-transferase-omega allow predictions of the susceptibility of vertebrates to SARS-CoV-2?.

Nitric oxide-releasing nanomaterials: From basic research to potential biotechnological applications in agriculture (2022)
Journal Article
Seabra, A. B., Silveira, N. M., Ribeiro, R. V., Pieretti, J. C., Barroso, J. B., Corpas, F. J., …Oliveira, H. C. (2022). Nitric oxide-releasing nanomaterials: From basic research to potential biotechnological applications in agriculture. New Phytologist, 234(4), 1119-1125. https://doi.org/10.1111/nph.18073

Nitric oxide (NO) is a multifunctional gaseous signal that modulates the growth, development and stress tolerance of higher plants. NO donors have been used to boost plant endogenous NO levels and to activate NO-related responses, but this strategy i... Read More about Nitric oxide-releasing nanomaterials: From basic research to potential biotechnological applications in agriculture.

Molecular hydrogen as medicine: An assessment of administration methods (2021)
Journal Article
Russell, G., Nenov, A., Kisher, H., & Hancock, J. T. (2021). Molecular hydrogen as medicine: An assessment of administration methods. Hydrogen, 2(4), 444-460. https://doi.org/10.3390/hydrogen2040025

Since the late 18th century, molecular hydrogen (H2) has been shown to be well tolerated, firstly in animals, and then in humans. However, although research into the beneficial effects of molecular hydrogen in both plant and mammalian physiology is g... Read More about Molecular hydrogen as medicine: An assessment of administration methods.

Molecular hydrogen: Is this a viable new treatment for plants in the UK? (2021)
Journal Article
Hancock, J. T., LeBaron, T. W., May, J., Thomas, A., & Russell, G. (2021). Molecular hydrogen: Is this a viable new treatment for plants in the UK?. Plants, 10(11), Article 2270

Despite being trialed in other regions of the world, the use of molecular hydrogen (H2) for enhanced plant growth and postharvest storage of crops has yet to be widely accepted in the UK. The evidence continues to grow that treatment of plants and pl... Read More about Molecular hydrogen: Is this a viable new treatment for plants in the UK?.

Molecular hydrogen in agriculture (2021)
Journal Article
Zulfiqar, F., Russell, G., & Hancock, J. T. (2021). Molecular hydrogen in agriculture. Planta, 254(3), Article 56. https://doi.org/10.1007/s00425-021-03706-0

Main conclusion: H2 gas, usually in the form of H2-saturated water, could play a useful role in improving many aspects of plant growth and productivity, including resistance to stress tolerance and improved post-harvest durability. Therefore, molecul... Read More about Molecular hydrogen in agriculture.

Oxygen is instrumental for biological signalling: An overview (2021)
Journal Article
Hancock, J. (2021). Oxygen is instrumental for biological signalling: An overview. Oxygen, 1(1), 3-15. https://doi.org/10.3390/oxygen1010002

Control of cellular function is extremely complex, being reliant on a wide range of components. Several of these are small oxygen-based molecules. Although reactive compounds containing oxygen are usually harmful to cells when accumulated to relative... Read More about Oxygen is instrumental for biological signalling: An overview.

Oxy-hydrogen gas: The rationale behind its use as a novel and sustainable treatment for COVID-19 and other respiratory diseases (2021)
Journal Article
Russell, G., Nenov, A., & Hancock, J. (2021). Oxy-hydrogen gas: The rationale behind its use as a novel and sustainable treatment for COVID-19 and other respiratory diseases. European Medical Journal, May 2021, https://doi.org/10.33590/emj/21-00027

Oxy-hydrogen gas (HHO) is a gaseous mixture of molecular hydrogen (H2) and molecular oxygen (O2) that is generated by the electrolysis of water and delivered in a 2:1 ratio (66% and 33%, respectively) through the use of non-invasive inhalation device... Read More about Oxy-hydrogen gas: The rationale behind its use as a novel and sustainable treatment for COVID-19 and other respiratory diseases.

Molecular hydrogen: Redox reactions and possible biological interactions (2021)
Journal Article
Hancock, J. T., LeBaron, T. W., & Russell, G. (2021). Molecular hydrogen: Redox reactions and possible biological interactions. Reactive Oxygen Species, 11, m17–m25. https://doi.org/10.20455/ros.2021.m.803

Molecular hydrogen (H2), either as a gas or as hydrogen-rich water (HRW), is suggested to be a useful treatment for a range of human diseases and also to improve agricultural output. It is often posited that H2 accomplishes its biological action, in... Read More about Molecular hydrogen: Redox reactions and possible biological interactions.

Interacting proteins, polymorphisms and the susceptibility of animals to SARS-CoV-2 (2021)
Journal Article
Hancock, J., Rouse, R., Stone, E., & Greenhough, A. (2021). Interacting proteins, polymorphisms and the susceptibility of animals to SARS-CoV-2. Animals, 11(3), Article 797. https://doi.org/10.3390/ani11030797

Abstract: COVID-19, caused by SARS-CoV-2, is a world-wide problem for the human population. It is known that some animal species, such as mink, can become infected and transmit the virus. However, the susceptibility of most animals is not known. Here... Read More about Interacting proteins, polymorphisms and the susceptibility of animals to SARS-CoV-2.

Downstream signalling from molecular hydrogen (2021)
Journal Article
Hancock, J., & Russell, G. (2021). Downstream signalling from molecular hydrogen. Plants, 10(2), Article 367. https://doi.org/10.3390/plants10020367

Molecular hydrogen (H2) is now considered to be a part of the suite of small molecules which can control cellular activity. As such it has been suggested to be used in the therapy of diseases in humans but also to be used in plant science, to enhance... Read More about Downstream signalling from molecular hydrogen.

Nitric oxide, other reactive signalling compounds, redox, and reductive stress (2020)
Journal Article
Hancock, J., & Veal, D. (2021). Nitric oxide, other reactive signalling compounds, redox, and reductive stress. Journal of Experimental Botany, 72(3), 819-829. https://doi.org/10.1093/jxb/eraa331

Nitric oxide (NO) and other reactive nitrogen species (RNS) are key signalling molecules in plants, but they do not work in isolation. NO is produced in cells, often increased in response to stress conditions, but many other reactive compounds used i... Read More about Nitric oxide, other reactive signalling compounds, redox, and reductive stress.