Scientists from the University of Cambridge have created a living bioelement capable of producing electrical energy by utilizing photosynthetic cyanobacteria, also known as blue-green algae.
Scientists from the University of Cambridge have created a living bioelement capable of producing electrical energy by utilizing photosynthetic cyanobacteria, also known as blue-green algae.
Unlike standard batteries, which store a limited amount of energy, this system continuously generates a small electric current. This is achieved by harnessing the natural flow of electrons that occurs during photosynthesis during the day and respiration at night. As long as the organisms remain alive, the device continues to generate energy.
Although this technology is not intended to replace powerful lithium-ion batteries, it could serve as an eco-friendly alternative for millions of low-power devices. The bioelements are made from inexpensive and largely recyclable materials, which could potentially reduce battery waste and extend the lifespan of connected devices.
An interdisciplinary team at the university, including biochemists, engineers, and bio-designer Lucia Giron, worked together on creating practical prototypes. These prototypes demonstrate the potential for integrating living energy systems into daily life. The goal of the University of Cambridge's living bioelement is to offer a renewable, low-maintenance alternative to traditional batteries, made from accessible and recyclable materials.
Researchers from Austria, Canada, and Switzerland reported a clinical case where a man needing a kidney transplant successfully underwent the procedure despite having antibodies against all available donors. This operation was made possible by pretreatment with bispecific monoclonal antibodies, which are used for multiple myeloma therapy. The details of this case were published in The New England Journal of Medicine.
Sensitization to human leukocyte antigens (HLA), the major histocompatibility complex, is the process of forming and circulating antibodies against any tissue from another person. This condition can arise after pregnancy, blood transfusion, or organ transplantation itself and creates a serious, sometimes insurmountable obstacle to transplanting any solid organ, even when using desensitization methods and careful donor matching. Existing treatment methods do not always yield stable and effective results.
The drug Tecilizumab belongs to the class of bispecific monoclonal antibodies. It functions by recruiting T-lymphocytes. These antibodies are capable of simultaneously binding to the CD3 T-cell receptor and the B-cell maturation antigen (BCMA), thereby prompting T-cells to attack mature B-cells and plasma cells responsible for antibody production.
Martina Schatzl from the University of Vienna and her colleagues presented the story of a 37-year-old man who suffered from end-stage renal failure and was on hemodialysis. He had already undergone two unsuccessful kidney transplant attempts and suffered from HLA sensitization, awaiting the next transplant for 12.5 years. His panel reactive antibody (PRA) level reached 100 percent, and the proportion of donors compatible with the AB0 system was zero percent, making finding a suitable donor theoretically impossible. The researchers decided to use Tecilizumab to prepare the patient for the third operation.
The patient received Tecilizumab for 31 weeks. The treatment led to a significant reduction in HLA antibodies and rapid depletion of naive and transitional B-cells, as well as memory B-cells, plasmablasts, and plasma cells in both blood and bone marrow. This depletion process was accompanied by hypogammaglobulinemia, which was compensated for by intravenous immunoglobulin administration. A decrease in AB0 reactivity and a reduction in xenoreactive antibodies to galactose-α-1,3-galactose (alpha-gal) were noted. As a result, the frequency of compatible donors increased to 1.35 percent. Soon a donor kidney was found for the man, but the surgery was postponed for technical reasons. A month later, the patient was involved in an accident on an electric scooter, which required stopping the Tecilizumab course.
Four months after the accident, another suitable organ was found and successfully transplanted. Vascular inflammation developed in the new organ, but it was not accompanied by donor-specific antibodies or complement activation product C4d. The inflammation was related to molecular markers and a slightly increased amount of non-cellular donor DNA (66 copies per milliliter of blood), and it was managed with daratumumab therapy targeting anti-CD38. Tecilizumab treatment caused a mild cytokine release syndrome, transient cytomegalovirus and BK virus viremia, mild urinary tract infections, and an increase in torque tenovirus (TTV) levels, indicating weakened overall immunity.
The presented case demonstrates the high efficacy of BCMA-targeted HLA desensitization for organ transplantation preparation. However, sustained destruction of B-lymphocytes and plasma cells can lead to decreased immunity, prolonged dependence on intravenous immunoglobulin, and slowed immune system recovery. These issues may be exacerbated when combining this therapy with desensitization targeting the D-cell antigen CD20. Further research is needed to determine maximum benefit, as well as to clarify optimal dosages and monitoring methods for safety.
Previously, German scientists published information on the successful experimental application of Tecilizumab for two patients with severe chronic autoimmune polyneuropathy. These patients showed disappearance of autoantibodies, reduced nerve tissue damage, and significant improvement in motor function.
A 45-year-old man was admitted to the hospital with complaints of progressive pain and swelling in his right shoulder, which had persisted for two months. The man, who worked on a construction site, had experienced intermittent pain in his right shoulder joint for a long time. Examination revealed swelling of the right shoulder and restricted mobility in that joint. Radiological examination showed complete destruction of the head and an unattached diaphysis of the right humerus. MRI revealed destructive arthropathy of the shoulder joint with the presence of voluminous effusion and freely floating calcified fragments, as well as tendon ruptures throughout the thickness of the supraspinatus, subscapularis, and infraspinatus tendons. John Waller from the Johns Hopkins School of Medicine and Ayşe Yülger from Hacettepe University in Ankara shared this information in The New England Journal of Medicine.
Google has introduced Gemini Spark to the Brazilian market, a personal artificial intelligence agent that operates continuously, allowing for background activities such as data organization, email management, and research.
Gemini Spark is capable of performing various functions, such as entering detailed flight ticket and hotel reservation information into spreadsheets, analyzing credit card bills, and drafting responses to customer inquiries.
The official launch announcement occurred this Friday, July 31st. The service functions as a '24-hour personal AI agent,' integrated with Gmail, Docs, and Sheets, discreetly executing tasks requested by the user without requiring the application to remain open or the user to track the process.
Although Spark was previously presented in May during Google I/O 2026, its availability to Brazilian users is only happening now. Initially, it will be offered to subscribers of the AI Ultra package (with a monthly cost of R$ 779.90) and AI Pro (with a monthly cost of R$ 96.99). Implementation will be gradual, and there may be a waiting period for access, even for those who already have one of these plans.
According to the material released on the Google blog, Gemini Spark transforms AI from a mere assistant that responds to questions into a proactive collaborator that performs tasks even while the user is sleeping.
Despite operating autonomously, the user maintains control over which Google services are connected to the assistant. Additionally, the company guarantees that the assistant will request confirmation before proceeding with significant actions, such as sending emails or making expenditures.
In the launch announcement, Google exemplifies several tasks that can be delegated to Spark. For example, when receiving travel-related emails, the assistant can automatically add flight and hotel reservation details to a spreadsheet.
Another functionality is the periodic search for events of interest, which can be performed every Friday and inserted into a specific document.
In terms of financial management, Spark assists in reviewing monthly credit card bills found in Gmail, alerting the user to possible subscription increases.
In a professional context, the assistant can generate draft responses to customer queries, suggesting the most appropriate services, in addition to creating a style guide based on exchanged messages, to be used when the user requests an email draft.
It is important to note that, in most of these situations, the execution is automated. Tasks can be repeated at defined intervals (weekly, daily, or monthly, among others) or triggered by a specific event, such as the arrival of a new email.
Japanese and Chinese researchers have created a copper-cobalt catalyst capable of autonomously changing its structure during the electrochemical reduction of nitrates. This reconstruction ability was a decisive factor in achieving high efficiency in ammonia production from nitrates, with a Faraday efficiency of 95.4 percent. The results of this work were published in the journal Advanced Science.
The team of Japanese and Chinese chemists, led by Takeshi Fujita from Kochi University of Technology, managed to solve these problems. They modified copper oxide by adding between 10 and 50 mol% cobalt oxide, resulting in a series of CuO/CoOX type catalysts. It was hypothesized that the cobalt component would promote the formation of active hydrogen species, while the copper component would ensure the binding and sequential reduction of nitrogen-containing compounds.
The catalysts were tested in an electrochemical cell for nitrate reduction, followed by a comparison of their performance against catalysts containing only copper or only cobalt. Structural changes during the reaction were monitored using in situ Raman, infrared, and electron paramagnetic spectroscopy. Before and after the reaction, the catalysts were examined using an electron microscope, and quantum chemical calculations were also performed.
The best performance was demonstrated by the catalyst with 10 mol% cobalt content (Co:Cu ratio = 1:9). Further increasing the proportion of cobalt led to an increase in the competing reaction of molecular hydrogen evolution, which slowed down ammonia formation.
It was found that the initial catalyst Co1Cu9OX transforms over time, forming a new functional structure. This structure includes metallic copper Cu(0), cobalt oxide, as well as oxidized copper compounds Cu(I) and Cu(II) saturated with hydroxyl groups on the surface. This rearrangement promoted faster nitrate binding on the copper and stabilized intermediate products. Moreover, the proximity of copper allowed the generated hydrogen particles to immediately interact with nitrogen for its reduction. Thanks to this reconstruction, the ammonia yield reached 54.68 milligrams per hour per milligram of catalyst, significantly higher than the figure for the copper catalyst, which yielded about 35 milligrams per hour per milligram under the same conditions.
Thus, Fujita and his team proved that the catalyst's efficiency depends not only on its initial composition but also on the ability of its surface to spontaneously rearrange during the reaction. The authors presented the concept of a proto-catalyst—a material that forms the most active configuration during operation. This approach may serve as a basis for developing heterostructured catalysts for various electrochemical processes.