NMNH: 1. “Bonzyme” Whole-enzymatic method, environmental-friendly, no harmful solvent residues manufacturing powder. 2. Bontac is a very first manufacture in the world to produce the NMNH powder on the level of high purity, stability. 3. Exclusive “Bonpure” seven-step purification technology, high purity(up to 99%) and stability of production of NMNH powder 4. Self-owned factories and obtained a number of international certifications to ensure high quality and stable supply of products of NMNH powder 5. Provide one-stop product solution customization service
NADH: 1. Bonzyme whole-enzymatic method, environmental-friendly, no harmful solvent residues 2. Exclusive Bonpure seven-step purification technology, purity up higher than 98 % 3. Special patented process crystal form, higher stability 4. Obtained a number of international certifications to ensure high quality 5. 8 domestic and foreign NADH patents, leading the industry 6. Provide one-stop product solution customization service
NAD: 1. “Bonzyme” Whole-enzymatic method, environmental-friendly, no harmful solvent residues 2. Stable supplier of 1000+ enterprises around the world 3. Unique “Bonpure” seven-step purification technology, higher product content and higher conversion rate 4. Freeze drying technology to ensure stable product quality 5. Unique crystal technology, higher product solubility 6. Self-owned factories and obtained a number of international certifications to ensure high quality and stable supply of products
NMN: 1. “Bonzyme”Whole-enzymatic method, environmental-friendly, no harmful solvent residues 2. Exclusive“Bonpure”seven-step purification technology, high purity(up to 99.9%) and stability 3. Industrial leading technology: 15 domestic and international NMN patents 4. Self-owned factories and obtained a number of international certifications to ensure high quality and stable supply of products 5. Multiple in vivo studies show that Bontac NMN is safe and effective 6. Provide one-stop product solution customization service 7. NMN raw material supplier of famous David Sinclair team of Harvard University
Bontac Bio-Engineering (Shenzhen) Co., Ltd. (hereafter referred to as BONTAC) is a high-tech enterprise established in July 2012. BONTAC integrates R&D, production and sales, with enzyme catalysis technology as the core and coenzyme and natural products as main products. There are six major series of products in BONTAC, involving coenzymes, natural products, sugar substitutes, cosmetics, dietary supplements and medical intermediates.
As the leader of the global NMN industry, BONTAC has the first whole-enzyme catalysis technology in China. Our coenzyme products are widely used in health industry, medical & beauty, green agriculture, biomedicine and other fields. BONTAC adheres to independent innovation, with more than 170 invention patents. Different from the traditional chemical synthesis and fermentation industry, BONTAC has advantages of green low-carbon and high-value-added biosynthesis technology. What’s more, BONTAC has established the first coenzyme engineering technology research center at the provincial level in China which also is the sole in Guangdong Province.
In the future, BONTAC will focus on its advantages of green, low-carbon and high-value-added biosynthesis technology, and build ecological relationship with academia as well as upstream/downstream partners, continuously leading the synthetic biological industry and creating a better life for human beings.
1、“Bonzyme” Whole-enzymatic method, environmental-friendly, no harmful solvent residues manufacturing powder.
2、Bontac is a very first manufacture in the world to produce the NMNH powder on the level of high purity, stability.
3、Exclusive “Bonpure” seven-step purification technology, high purity(up to 99%) and stability of production of NMNH powder
4、Self-owned factories and obtained a number of international certifications to ensure high quality and stable supply of products of NMNH powder
5、Provide one-stop product solution customization service
when applied to cultured cells, the NMNH is shown to be more efficient than NMN as it was able to “significantly increase NAD+ at a ten times lower concentration (5 µM) than that needed for NMN”. Moreover, NMNH shows to be more effective, as at 500 µM concentration, it achieved “an almost 10- fold increase in the NAD+ concentration, while NMN was only able to double NAD+ content in these cells, even at 1 mM concentration.”.
Interestingly, NMNH also appears to act quicker and has a longer-lasting effect compared to NMN. According to the authors, NMNH induces a “significant increase in NAD+ levels within 15 minutes”, and “NAD+ steadily increased for up to 6 hours and remained stable for 24 hours, while NMN reached its plateau after only 1 hour, most likely because the NMN recycling pathways to NAD+ had already become saturated.”.
The main methods of NMNH powder preparation include extraction, fermentation, fortification, biosynthesis and organic matter synthesis. Compared with other preparations, the whole enzyme become the mainstream method owing to the advantages of pollution free, high level of purity and stability.
NMNH also proved more effective than NMN in raising NAD+ levels in a variety of tissues when administered at the same concentration, confirming the results observed in cell lines. The data presented in this study also corroborate the evidence that NAD+ boosters protect against different models of acute kidney injury, and place NMNH as a great alternative intervention to other NAD+ precursors to reduce tubular damage and accelerate recovery.
To overcome the limitations of the current repertoire of NAD+ enhancers, other molecules with a more pronounced effect on the NAD+ intracellular pool are desired. This has stimulated us to investigate the use of the reduced form of nicotinamide mononucleotide (NMNH) as an NAD+ enhancer. There is very scarce information about the role of this molecule in cells. In fact, only one enzymatic activity has been described to produce NMNH. This is the NADH diphosphatase activity of the human peroxisomal Nudix hydrolase hNUDT1232 and the murine mitochondrial Nudt13.33 It has been postulated that, in cells, NMNH would be converted to NADH via nicotinamide mononucleotide adenylyl transferases (NMNATs).34 However, both NMNH production by Nudix diphosphatases and its use by NMNATs for NADH synthesis have only been described in vitro using isolated proteins, and how NMNH participates in cellular NAD+ metabolism remains unknown.
First, inspect the factory. After some screening, NMNH companies that directly face consumers pay more attention to brand building. Therefore, for a good brand, quality is the most important thing, and the first thing to control the quality of raw materials is to inspect the factory. Bontac company actually manufacturing NMNH powder of high quality with the caterias of SGS. Secondly, the purity is tested. Purity is one of the most important parameters of NMN powder. If high purity NMNH cannot be guaranteed, the remaining substances are likely to exceed the relevant standards. As the attached certificates demonstrates that the NMNH powder produced by Bontac reach the purity of 99%. Finally, a professional test spectrum is needed to prove it. Common methods for determining the structure of an organic compound include Nuclear Magnetic Resonance Spectroscopy (NMR) and high-resolution mass spectrometry (HRMS). Usually through the analysis of these two spectra, the structure of the compound can be preliminarily determined.
Introduction Oxidized form of nicotinamide adenine dinucleotide (NAD+) and its precursor nicotinamide mononucleotide (NMN) have been uncovered to restore DNA repair and prevent cancer progression via the deleted in breast cancer 1 (DBC1). This research is committed to deciphering the detailed molecular mechanisms. About DBC1 DBC1 is a nuclear protein initially cloned from a human chromosome 8p21 region, which can modulate diversified targets by protein-protein interaction, contributing to various cellular processes such as apoptosis, DNA repair, senescence, transcription, metabolism, circadian cycle, epigenetic regulation, cell proliferation, and tumorigenesis. The affinity and molecular binding mechanisms between NAD+/NMN and DBC1354–396 Under the help of nuclear magnetic resonance (NMR) and Isothermal titration calorimetry (ITC) experiments, it is verified that both NAD+ and NMN have a binding relationship with the NHD domain of DBC1. Specifically, NAD+ interacts with DBC1354-396 through hydrogen bonds, with a binding affinity (8.99 μM) nearly twice that of NMN (17.0 μM) and the key binding sites are primarily residues E363 and D372. The vital roles of E363 and D372 mutagenesis in ligand-protein interaction The N-terminal loop of DBC1354-396 encloses the small ligand within a local space, anchoring NAD+ and NMN to the protein through key amino acid residues E363 and D372 via hydrogen bonding. Conclusion Both NAD+ and its precursor NMN can bind to DBC1's NHD domain (DBC1354–396) at key sites E363 and D372, providing novel clues for the development of targeted therapies and drug research on DBC1-associated disease including tumors. Reference Ou L, Zhao X, Wu IJ, et al. Molecular mechanism of NAD+ and NMN binding to the Nudix homology domains of DBC1. Int J Biol Macromol. Published online February 12, 2024. doi:10.1016/j.ijbiomac.2024.130131 BONTAC NAD BONTAC has been dedicated to the R&D, manufacture and sale of raw materials for coenzyme and natural products since 2012, with self-owned factories, over 170 global patents as well as strong R&D team consisting of Doctors and Masters. BONTAC has rich R&D experience and advanced technology in the biosynthesis of NAD and its precursors (eg. NMN), with various forms to be selected (eg. endoxin-free IVD-grade NAD, Na-free or Na-containing NAD; NR-CL or NR-Malate). High quality and stable supply of products can be better ensured here with the exclusive Bonpure seven-step purification technology and Bonzyme Whole-enzymatic method. Disclaimer This article is based on the reference in the academic journal. The relevant information is provided for sharing and learning purposes only, and does not represent any medical advice purposes. If there is any infringement, please contact the author for deletion. The views expressed in this article do not represent the position of BONTAC. Under no circumstances will BONTAC be held responsible or liable in any way for any claims, damages, losses, expenses, costs or liabilities whatsoever (including, without limitation, any direct or indirect damages for loss of profits, business interruption or loss of information) resulting or arising directly or indirectly from your reliance on the information and material on this website.
Introduction Triocresyl phosphate (TOCP) is widely used in the realm of industry and agriculture in the last century. However, it is subsequently banned due to the increasing understanding of its toxicity. In the 21st century, TOCP comes back into the limelight as the aviation industry springs up. This research uncovers the adverse effects of TOCP on the reproductive system. Notably, nicotinamide mononucleotide (NMN), a crucial intermediate in the generation of NAD+, may serve as a therapeutic intervention to attenuate the oocyte damage caused by TOCP. About TOCP TOCP, a classic aromatic organophosphate ester, generally functions as flame retardant, plasticizer, lubricant, and jet fuel additive due to its chemical and thermal stability. At room temperature, TOCP is an odorless, yellowish transparent liquid. It is insoluble in water, but soluble in organic solvents such as alcohol, ether and benzene. In addition to its use in aviation industry, TOCP is currently applied in the manufacturing of construction materials such as plastics, furniture, textiles, printed circuit boards, and insulation. The negative roles of TOCP in oocytes Through the analyses of germinal vesicle breakdown (GVBD) and polar body extrusion (PBE), it is discovered that TOCP impedes the maturation process of oocyte meiotic division, suppressing the reinitiation of oocytes and the final extrusion of the first polar body. Remarkably, maturation of oocytes is deemed as a critical prerequisite for successful fertilization and subsequent embryonic development. Besides, it triggers disturbances in the cytoskeleton of oocytes and affects the distribution and functionality of mitochondria. Furthermore, exposure to TOCP alters the genes related to histone modification in oocytes, as manifested by the elevated levels of histone methylation at H3K9me3 and H3K27me3. The reversing effects of NMN on TOCP in oocytes Replenishing NMN partially restores the spindle/chromosome structure as well as the attachment of microtubules to centromeres, and stabilizes the distribution of actin filaments, thereby maintaining chromosomal integrity and supporting the nuclear maturation process of oocytes. Meanwhile, NMN is also effective in rescuing mitochondrial dysfunction induced by TOCP, which restores membrane potential and ATP levels, reduces excessive ROS production, prevents DNA damage, and hinders cell apoptosis as well as epigenetic alterations. Conclusion Nicotinamide mononucleotide maintains cytoskeletal stability and fortifies mitochondrial function to mitigate oocyte damage induced by TOCP, signifying its potential application value in refining reproductive therapeutic strategies. Reference Meng F, Zhang Y, Du J, et al. Nicotinamide mononucleotide maintains cytoskeletal stability and fortifies mitochondrial function to mitigate oocyte damage induced by Triocresyl phosphate. Ecotoxicol Environ Saf. 2024;275:116264. doi:10.1016/j.ecoenv.2024.116264 BONTAC NMN BONTAC is the pioneer of NMN industry and the first manufacturer to launch NMN mass production, with the first whole-enzyme catalysis technology around the world. At present, BONTAC has become the leading enterprise in niche areas of coenzyme products. Notably, BONTAC is the NMN raw material supplier of famous David Sinclair team at the Harvard University, who uses the raw materials of BONTAC in a paper titled “Impairment of an Endothelial NAD+-H2S Signaling Network Is a Reversible Cause of Vascular Aging”. Our services and products have been highly recognized by global partners. Furthermore, BONTAC has the first national and the only provincial independent coenzyme engineering technology research center in Guangdong, China. The coenzyme products of BOMNTAC are widely used in fields such as nutritional health, biomedicine, medical beauty, daily chemicals and green agriculture. Disclaimer This article is based on the reference in the academic journal. The relevant information is provided for sharing and learning purposes only, and does not represent any medical advice purposes. If there is any infringement, please contact the author for deletion. The views expressed in this article do not represent the position of BONTAC. Under no circumstances will BONTAC be held responsible or liable in any way for any claims, damages, losses, expenses, costs or liabilities whatsoever (including, without limitation, any direct or indirect damages for loss of profits, business interruption or loss of information) resulting or arising directly or indirectly from your reliance on the information and material on this website.
Pioneering Discoveries: BONTAC's Innovations in Biotechnical Research In the dynamic realm of biotechnical research, BONTAC stands at the forefront of innovation, dedicated to driving progress and breakthroughs in the field. Our commitment to excellence is demonstrated through our pioneering research initiatives, cutting-edge products, and unwavering focus on technical innovation. At BONTAC, we continuously strive to push the boundaries of biotechnical research to revolutionize industries and improve life. Advancing Biotechnical Research at BONTAC Within BONTAC's research laboratories, a culture of exploration and discovery fuels our quest for innovative solutions in biotechnical research. Our team of experts combines scientific expertise with creative insights to tackle complex challenges and uncover new opportunities. BONTAC's investment in state-of-the-art technology and research facilities underscores our dedication to advancing biotechnical research for the betterment of society. Impactful Applications of Biotechnical Research The fruits of BONTAC's biotechnical research are evident in our array of products that harness the power of scientific insights and technological advancements. These products are the result of meticulous research and development processes aimed at enhancing various sectors such as healthcare, agriculture, and environmental sustainability. From novel treatment options to sustainable agricultural solutions, BONTAC's biotechnical innovations are reshaping industries and driving positive change. At BONTAC, we understand that cellular rejuvenation is not a one-size-fits-all approach. Every individual possesses unique cellular characteristics and experiences distinct environmental factors that influence their overall well-being. That is why we take a personalized approach to cellular rejuvenation, tailoring our solutions to meet the specific needs of each individual. By recognizing the diversity of our customers and their unique cellular profiles, we aim to provide targeted interventions that optimize cellular health and unlock the potential for enhanced vitality. Collaboration and Partnerships in Biotechnical Research Collaboration lies at the heart of BONTAC's approach to biotechnical research, as we recognize the value of partnering with industry leaders and experts to accelerate innovation. By fostering strategic alliances and engaging with key stakeholders, BONTAC creates a network of excellence that fosters collaboration, knowledge exchange, and collective progress in biotechnical research. Altogether, we aim to shape the future of biotechnical innovation and deliver impactful solutions to global challenges. Conclusion In conclusion, BONTAC's dedication to pioneering discoveries in biotechnical research sets us apart as a leader in the field. Our focus on excellent products, robust technical support, and a commitment to technical innovation propels us toward groundbreaking advances that benefit society as a whole. Join us on this exciting journey as we continue to explore new frontiers in biotechnical research, where innovation meets excellence.