Detergent C – water bath tank
- Known as:
- Detergent C – water bath tank
- Catalog number:
- WA778
- Product Quantity:
- 50ML
- Category:
- -
- Supplier:
- BioBasic
- Gene target:
- Detergent – water bath tank
Ask about this productRelated genes to: Detergent C – water bath tank
- Gene:
- TANK NIH gene
- Name:
- TRAF family member associated NFKB activator
- Previous symbol:
- TRAF2
- Synonyms:
- I-TRAF
- Chromosome:
- 2q24.2
- Locus Type:
- gene with protein product
- Date approved:
- 1997-06-12
- Date modifiied:
- 2015-11-19
Related products to: Detergent C – water bath tank
Related articles to: Detergent C – water bath tank
- Intensive marine shrimp aquaculture discharges substantial nitrogen (N) and phosphorus (P) into coastal environments while generating substantial greenhouse gas emissions. Scalable in-situ nutrient recovery technologies that can be integrated with operational aquaculture production systems remain largely absent. This study developed and validated a floating permeable nutrient uptake system (FPNUS) containing mixotrophic Chaetoceros sp. in pilot-scale marine shrimp cultivation. Membrane screening (0.1, 0.5, and 1.0 µm) identified the 0.1 µm membrane, which sustained ammonium (NH-N) and phosphate (PO-P) transfer rates of 55.19 and 17.79 mg·m·h with > 95% Chaetoceros retention. Over a 56-day cultivation cycle in 400 L shrimp tanks (five treatments, including the control, suspended microalgae, single-unit mixo-FPNUS (1), dual-unit mixo-FPNUS (1 + 1), and microbial-inoculated, with no inferential statistics owing to the absence of tank-level replication), mixo-FPNUS (1 + 1) reduced the average total nitrogen (TN), NH-N, and total phosphorus (TP) by 39.1%, 63.7%, and 40.9%, respectively, relative to the conventional control, outperforming suspended algae, a microbial-inoculated treatment, and the single-unit mixo-FPNUS (1). Recovery efficiency increased with the FPNUS-to-tank volume ratio (TN increased from 24.7% to 39.1%; TP increased from 28.3% to 40.9%). System-level mass balances confirmed cumulative recovery of 4.79 g N and 1.59 g P per tank as harvestable biomass over the 56-day cycle. Carbon-footprint estimation (covering feed production, aeration, water treatment, scenario-based feed replacement, and the FPNUS process) showed a reduction of 26.3% per kilogram of shrimp. These results position FPNUS as an enabling technology for circular, lower-emission marine shrimp production, with particular relevance to the intensifying recirculating aquaculture sector. - Source: PubMed
Publication date: 2026/10/06
Mubashar MuhammadZulekha RabailSultan Muhammad MuzamilZhang ZhenCheng PengFeiZhang Xuezhi - Cell suspension (CS) culture of Bacopa monnieri produces potential anti-Alzheimer's drug bacoside A. Various elicitors at different concentrations (salicylic acid, methyl jasmonate, Yeast extract, copper sulphate and sodium chloride) were added in cell suspension culture of B. monnieri on day 5. Salicylic acid, methyl jasmonate and copper sulphate showed the highest increase in bacoside A content which was 3-5 folds higher than the control. The effect of a combination of these three elicitors was studied on the bacoside yield using Response Surface Methodology. The cultivation of B. monnieri cell suspension culture was carried out using optimized elicitor combination in a stirred tank bioreactor. This led to 2.62-fold improvement in bacoside A yield (123.63 ± 5.14 mg/L) as compared to control batch bioreactor culture (47.25 mg/L) in 10 days of cultivation period. This study not only shows the role of elicitors for enhancement of bacoside A production but also shows the synergistic effect of elicitors on Bacopa monnieri CS culture. - Source: PubMed
Publication date: 2026/10/06
Nanda JayashreeSahu Binod BSingh V RPatra Nivedita - Despite significant advancements in hydrogen storage technology, a challenge remains to provide affordable hydrogen refueling infrastructure for road vehicles. This article suggests a swappable hydrogen tank method for distributing and dispensing fuel. Swappable refueling may reduce the upfront cost of hydrogen refueling stations, reduce the energy consumed to dispense high-pressure hydrogen and increase the efficiency of distribution over standard tube trailers. In the analysis, current systems for transporting and dispensing gaseous hydrogen fuel account for a significant amount of energy consumed calculated at 23.8 MJ kg. In contrast, the swappable delivery system consumes only 9.7 MJ kg; because hydrogen is compressed at the point of production, transport is 5x more efficient and removes the need for gas handling equipment at every station. This 60% energy saving and the anticipated equipment reductions present a case for an alternative refueling method to address the issues facing hydrogen vehicles. - Source: PubMed
Publication date: 2026/09/26
Forshaw WilliamMays TimothyHill AlfredFletcher Tom - Loss-of-function mutations in TANK-binding kinase 1 (TBK1) cause amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD), characterized by cytoplasmic aggregation of TAR DNA-binding protein 43 (TDP-43), known as TDP-43 pathology, but the mechanisms beyond impaired autophagy remain undefined. Here, we identify a TBK1-IFNβ-immunoproteasome axis as a novel autophagy-independent proteostatic pathway regulating TDP-43 clearance. TBK1 is activated by aggregation-prone monomeric TDP-43 via physical association, and this activation alleviates TDP-43 pathology in neuronal cells. TBK1 subsequently induces IFNβ expression, which upregulates the immunoproteasome to promote degradation of monomeric TDP-43 in neurons, including human iPSC-derived lower motor neurons. Importantly, IFNβ receptor expression is downregulated in spinal motor neurons from ALS patients with TDP-43 pathology. Furthermore, heterozygous Tbk1 deletion in SOD1 mice impairs immunoproteasome induction and increases polyubiquitinated protein accumulation in spinal cords, supporting the in vivo relevance of this pathway. Collectively, our findings reveal that impairment of the TBK1-IFNβ-immunoproteasome axis represents an autophagy-independent mechanism contributing to the development of TDP-43 pathology in ALS and FTD. - Source: PubMed
Publication date: 2026/10/05
Sakai ShoheiOiwa KotaroIguchi YoheiAkcay Izzet MehmetWatanabe SeijiKomine OkiruNagata NorikoHoriuchi MaiSreedharan JemeenKatsuno MasahisaYamanaka Koji - Ocean alkalinity enhancement (OAE) is an emerging negative emission technology that increases seawater carbon sequestration capacity while potentially mitigating ocean acidification. However, environmental impacts of OAE on marine invertebrates remain poorly understood, hindering the environmental risk assessment needed ahead of large-scale implementation. This study provides a chronic evaluation of two different OAE approaches on the cellular/tissue level of juvenile Ostrea edulis, a key species for marine ecosystem restoration. Oysters were exposed for 63 days in an indoor tank system to dissolved alkalinity enhancement (NaOH and CaCl · 2 HO, representing alkalinity addition without feedstock-derived metals) versus olivine-based coastal enhanced silicate weathering (CESW), both targeting total alkalinity (TA) levels of +250 and + 500 μmol kg. Trace metal accumulation was assessed via ICP-OES, and untargeted metabolomic profiling of 27 polar metabolites was performed in gill and mantle tissues using H-NMR spectroscopy. Nickel accumulated dose-dependently across all tissues in oysters exposed to olivine treatments (3-10 μg g dry weight), while cobalt and chromium showed no treatment-related accumulation. Metabolite responses were small and largely treatment-specific. Dissolved alkalinity was associated with an increased energy demand for acid-base homeostasis, with decreased valine concentrations and elevated N-acetylcysteine at high ΔTA. Olivine treatments showed elevated succinate and glutamate at high ΔTA, possibly indicating a metal-related onset of mitochondrial disturbance and oxidative stress. As alkalinity treatments were represented by single tanks, these findings identify a potential environmental risk of olivine-based CESW which should be quantified in replicated experiments and could be extended to other marine species. - Source: PubMed
Publication date: 2026/10/01
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