Perkenalkan secara singkat apa itu bubuk nadh | BONTAC

Perkenalkan secara singkat apa itu bubuk nadh | BONTAC

NADH memainkan peran penting dalam menjaga pertumbuhan sel, diferensiasi dan metabolisme energi serta perlindungan sel. NADH diproduksi dalam siklus asam sitrat dalam glikolisis dan respirasi seluler. molekul NADH adalah penanda kontrol dalam rantai produksi energi di mitokondria. Memantau keadaan redoks NADH adalah parameter terbaik untuk mengkarakterisasi fungsi mitokondria secara in vivo. Sinar UV dapat menggairahkan NADH dalam mitokondria untuk menghasilkan fluoresensi dan digunakan untuk memantau fungsi mitokondria.
Dapatkan Sebuah Penawaran

Keuntungan dari NMNH

NMNH: 1. "Bonzyme" Metode seluruh enzimatik, ramah lingkungan, tidak ada bubuk pembuatan residu pelarut berbahaya. 2. Bontac adalah manufaktur pertama di dunia yang memproduksi bubuk NMNH pada tingkat kemurnian tinggi, stabilitas. 3. Teknologi pemurnian tujuh langkah "Bonpure" eksklusif, kemurnian tinggi (hingga 99%) dan stabilitas produksi bubuk NMNH 4. Pabrik milik sendiri dan memperoleh sejumlah sertifikasi internasional untuk memastikan pasokan produk bubuk NMNH yang berkualitas tinggi dan stabil 5. Menyediakan layanan kustomisasi solusi produk satu atap

Keuntungan NADH

NADH: 1. Metode seluruh enzimatik Bonzyme, ramah lingkungan, tidak ada residu pelarut berbahaya 2. Teknologi pemurnian tujuh langkah Bonpure eksklusif, kemurnian lebih tinggi dari 98% 3. Bentuk kristal proses khusus yang dipatenkan, stabilitas yang lebih tinggi 4. Memperoleh sejumlah sertifikasi internasional untuk memastikan kualitas tinggi 5. 8 paten NADH dalam dan luar negeri, memimpin industri 6. Menyediakan layanan kustomisasi solusi produk satu atap

Keuntungan NAD

NAD:  1. Metode seluruh enzimatik "Bonzyme", ramah lingkungan, tidak ada residu pelarut berbahaya 2. Pemasok stabil dari 1000+ perusahaan di seluruh dunia 3. Teknologi pemurnian tujuh langkah "Bonpure" yang unik, konten produk yang lebih tinggi dan tingkat konversi yang lebih tinggi 4. Teknologi pengeringan beku untuk memastikan kualitas produk yang stabil 5. Teknologi kristal yang unik, kelarutan produk yang lebih tinggi 6. Pabrik milik sendiri dan memperoleh sejumlah sertifikasi internasional untuk memastikan pasokan produk berkualitas tinggi dan stabil

Keuntungan MNM

NMN:  1. "Bonzyme" Metode seluruh enzimatik, ramah lingkungan, tidak ada residu pelarut berbahaya 2. Teknologi pemurnian tujuh langkah eksklusif "Bonpure", kemurnian tinggi (hingga 99,9%) dan stabilitas 3. Teknologi terkemuka industri: 15 paten NMN domestik dan internasional 4. Pabrik milik sendiri dan memperoleh sejumlah sertifikasi internasional untuk memastikan pasokan produk berkualitas tinggi dan stabil 5. Beberapa studi in vivo menunjukkan bahwa Bontac NMN aman dan efektif 6. Menyediakan layanan kustomisasi solusi produk satu atap 7. Pemasok bahan baku NMN dari tim David Sinclair terkenal dari Universitas Harvard

about us

Kami Memiliki Solusi Terbaik untuk Bisnis Anda

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 paten penemuan. 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.

Pelajari lebih lanjut

Metode pembuatan bubuk NADH

Metode utama persiapan bubuk NADH meliputi ekstraksi, fermentasi, fortifikasi, biosintesis, dan sintesis bahan organik. Dibandingkan dengan sediaan lain, seluruh enzim menjadi metode utama karena keunggulan bebas polusi, tingkat kemurnian dan stabilitas yang tinggi.

Metode pembuatan bubuk NADH

Fitur dan keunggulan produk BONTAC NADH

1、“Bonzyme”Whole-enzymatic method, environmental-friendly, no harmful solvent residues manufacturing powder 
2、Exclusive“Bonpure” seven-step purification technology, high purity(up to 99%) and stability of production of NADH powder 
3、Pabrik milik sendiri dan memperoleh sejumlah sertifikasi internasional untuk memastikan pasokan produk bubuk NMN berkualitas tinggi dan stabil  
4、Menyediakan layanan kustomisasi solusi produk satu atap

Fitur dan keunggulan produk BONTAC NADH

Kemanjuran bubuk NADH dalam kesehatan

Peningkatan tingkat energi
NADH tidak hanya bertindak sebagai koenzim penting dalam respirasi aerobik, [H] NADH juga membawa sejumlah besar energi. Penelitian telah menunjukkan bahwa penggunaan NADH ekstraseluler mendorong peningkatan kadar ATP intraseluler, menunjukkan bahwa NADH menembus membran sel dan meningkatkan tingkat energi intraseluler. Pada tingkat makro, suplementasi eksogen NADH membantu memulihkan energi dan meningkatkan nafsu makan. Peningkatan tingkat energi di otak juga membantu meningkatkan kinerja mental dan kualitas tidur. NADH telah digunakan di luar negeri untuk memperbaiki sindrom kelelahan kronis, meningkatkan daya tahan olahraga, jet lag dan area lainnya.
Perlindungan seluler
NADH adalah antioksidan kuat yang secara alami terjadi dalam sel dan bereaksi dengan radikal bebas untuk menghambat peroksidasi lipid, melindungi membran mitokondria dan fungsi mitokondria. Telah ditemukan bahwa NADH dapat mengurangi stres oksidatif pada sel yang disebabkan oleh berbagai faktor seperti radiasi, obat-obatan, zat beracun, olahraga berat dan iskemia, sehingga melindungi sel endotel vaskular, hepatosit, kardiomiosit, fibroblas dan neuron. Oleh karena itu, NADH injeksi atau oral digunakan secara klinis untuk memperbaiki penyakit kardiovaskular dan serebrovaskular, dan sebagai tambahan untuk radioterapi kanker. NADH topikal telah terbukti efektif dalam pengobatan rosacea dan dermatitis kontak.
Promosi produksi neurotransmitter
Penelitian telah menunjukkan bahwa NADH secara signifikan meningkatkan produksi neurotransmitter dopamin, sinyal kimia yang penting untuk memori jangka pendek, gerakan tak sadar, tonus otot, dan respons fisik spontan. Ini juga memediasi pelepasan hormon pertumbuhan dan menentukan gerakan otot. Tanpa dopamin yang cukup, otot menjadi kaku. Penyakit Parkinson, misalnya, sebagian disebabkan oleh gangguan sintesis dopamin dalam sel-sel otak. Data klinis awal menunjukkan bahwa NADH dapat membantu memperbaiki gejala penyakit Parkinson [9]. NADH juga mempromosikan biosintesis norepinefrin dan serotonin, menunjukkan potensi yang baik untuk digunakan dalam meredakan depresi dan penyakit Alzheimer.

Kemanjuran bubuk NADH dalam kesehatan
Ulasan Pengguna

Apa kata pengguna tentang BONTAC

BONTAC adalah mitra terpercaya yang telah bekerja sama dengan kami selama bertahun-tahun. Kemurnian koenzim mereka sangat tinggi. COA mereka dapat mencapai hasil tes yang relatif tinggi.

Depan

I discovered BONTAC in 2014 because David's article in cell about NAD and NMN related showed that he used BONTAC's NMN for his experimental material. Then we found them in China. After so many years of cooperation, I think it is a very good company.

Hanks

I think green, healthy and high purity are the advantages of BONTAC's products compared with others. I still work with them to this day.

Phillip

In 2017, we chose BONTAC's coenzyme, during which our team encountered many technical problems and consulted their technical team, which were able to give us good solutions. Their products are shipped very fast and they work more efficiently.

Gobbs
Pertanyaan yang Sering Diajukan

Apakah Anda punya pertanyaan?

NADH disintesis oleh tubuh dan dengan demikian bukan nutrisi penting. Ini memang membutuhkan nutrisi penting nikotinamida untuk sintesisnya, dan perannya dalam produksi energi tentu saja sangat penting. Selain perannya dalam rantai transpor elektron mitokondria, NADH diproduksi di sitosol. Membran mitokondria tidak dapat ditembus NADH, dan penghalang permeabilitas ini secara efektif memisahkan sitoplasma dari kumpulan NADH mitokondria. Namun, NADH sitoplasma dapat digunakan untuk produksi energi biologis. Ini terjadi ketika pesawat ulang-alik malat-aspartat memperkenalkan ekuivalen pereduksi dari NADH di sitosol ke rantai transpor elektron mitokondria. Pesawat ulang-alik ini terutama terjadi di hati dan jantung.

Tindakan NADH tambahan tidak jelas. Suplementasi NADH oral telah digunakan untuk memerangi kelelahan sederhana serta gangguan misterius dan menguras energi seperti sindrom kelelahan kronis dan fibromyalgia. Para peneliti juga mempelajari nilai suplemen NADH untuk meningkatkan fungsi mental pada penderita penyakit Alzheimer, dan meminimalkan kecacatan fisik dan meredakan depresi pada penderita penyakit Parkinson. Beberapa orang sehat juga mengonsumsi suplemen NADH secara oral untuk meningkatkan konsentrasi dan kapasitas memori, serta untuk meningkatkan daya tahan atletik. Namun, hingga saat ini belum ada penelitian yang diterbitkan yang menunjukkan bahwa menggunakan NADH dengan cara apa pun efektif atau aman untuk tujuan ini

Pertama, periksa pabrik. Setelah beberapa penyaringan, perusahaan NADH yang langsung berhadapan dengan konsumen lebih memperhatikan pembangunan merek. Oleh karena itu, untuk merek yang bagus, kualitas adalah hal yang paling penting, dan hal pertama untuk mengontrol kualitas bahan baku adalah memeriksa pabrik. Perusahaan Bontac benar-benar memproduksi bubuk NADH berkualitas tinggi dengan caterias SGS. Kedua, kemurnian diuji. Kemurnian adalah salah satu parameter terpenting dari bubuk NMN. Jika NMN dengan kemurnian tinggi tidak dapat dijamin, zat yang tersisa kemungkinan akan melebihi standar yang relevan. Seperti yang ditunjukkan oleh sertifikat terlampir bahwa bubuk NADH yang diproduksi oleh Bontac mencapai kemurnian 99%. Akhirnya, diperlukan spektrum tes profesional untuk membuktikannya. Metode umum untuk menentukan struktur senyawa organik termasuk Spektroskopi Resonansi Magnetik Nuklir (NMR) dan spektrometri massa resolusi tinggi (HRMS). Biasanya melalui analisis kedua spektrum ini, struktur senyawa dapat ditentukan terlebih dahulu.

Pembaruan dan posting blog kami

Bontac terus berinovasi dan telah memenangkan paten penemuan asing

Recently, a piece of good news came from the Japan Patent Office (one of the largest patent offices in the world) across the ocean to Shenzhen. The patent for "A STABLE NICOTINAMIDE RIBOSE COMPOSITION AND ITS PREPARATION METHOD" applied by Bontac  was approved and issued a certificate. This invention patent is of great significance to the stability of Bontac coenzyme series products. This is another new recently patent obtained by Bontac after accumulating more than 150 patent applications. Such impressive achievements in scientific research are undoubtedly the best commendation for the innovative spirit of Bontac Biotech. Invention Title: A STABLE NICOTINAMIDE RIBOSE COMPOSITION AND ITS PREPARATION METHOD Technical advantages: Industrial artificial preparation of nicotinamide ribosehave made considerable progress to prepare relatively pure nicotinamide ribose at a lower cost. However, the monomer will become a viscous solid within a few seconds or minutes under ambient temperature and humidity as nicotinamide ribose is very easy to absorb moisture, and will disintegrate into oil within a few hours. In order to keep nicotinamide ribose as a dry solid, it needs to be stored in an absolutely dry environment, or frozen stored at about -20°C, which severely restricts the commercial application and promotion of nicotinamide ribose. Therefore, the development of stable nicotinamide ribose products has become a major problem that needs to be solved urgently. The purpose of the present invention is to solve the technical problem that the nicotinamide ribose monomer mentioned in the above background art is difficult to preserve and cannot be promoted and applied because it is very easy to absorb moisture and decompose. The invention provides a nicotinamide ribose composition with stable properties, easy storage, transportation and use. Only by continuously innovating technology can we adapt to the new opportunities in the new era, "respond to all changes" before new challenges, and produce a qualitative leap based on quantity. In the current favorable situation, Bontac Biotech's innovation plan is still non-stop, focusing on the overall market direction, paying attention to every link, solving every subtle problem, and writing Bontac's legend with active innovation. At this stage, Bontac Bio will continue to build a better R&D team, increase investment in scientific research, create better products for our customers, and empower greater value.

Penelitian terbaru membuktikan: Koenzim NAD+ dapat meningkatkan kekebalan tumor! Komentar Ahli dari Akademi Ilmu Pengetahuan Tiongkok

On August 10, 2021, researchers from Shanghai University of Science and Technology published an article titled NAD+ supplement potentiates tumor killing function by rescuing defective TUBBY-mediated NAMPT transcription in tumor infiltrated T cells in Cell Reports, revealing that NAD+ in supplemented during CAR-T therapy and immune checkpoint inhibitor therapy, it can improve the anti-tumor activity of T. At present, the supplementary precursor of NAD+, as a nutritional product,has been verified for human consumption safety.This achievement provides a simply and feasible new method for improving the anti-tumor activity of T cells. Cancer immunotherapies including the adoptive transfer of naturally occurring tumor-infiltrating lymphocytes (TILs) and genetically engineered T cells, as well as the use of immune checkpoint blockade (ICB) to boost the function of T cells, have emerged as promising approaches to achieve durable clinical responses of otherwise treatment-refractory cancers (Lee et al., 2015; Rosenberg and Restifo, 2015; Sharma and Allison, 2015). Although immunotherapies have been successfully used in the clinic, the number of patients benefiting from them is still limited (Fradet et al., 2019; Newick et al., 2017). Tumor microenvironment (TME)-related immunosuppression has emerged as the major reason for low and/or no response to both immunotherapies (Ninomiya et al., 2015; Schoenfeld and Hellmann, 2020). Therefore, efforts to investigate and overcome TME-related limitations in immune therapies are of great urgency. The fact that immune cells and cancer cells share many fundamental metabolic pathways implies an irreconcilable competition for nutrients in TME (Andrejeva and Rathmell, 2017; Chang et al., 2015). During uncontrolled proliferation, cancer cells hijack alternative pathways for more rapid metabolite generation (Vander Heiden et al., 2009). As a consequence, nutrient depletion, hypoxia, acidity, and generation of metabolites that can be toxic in the TME may hinder successful immunotherapy (Weinberg et al., 2010). Indeed, TILs often experience mitochondrial stress within growing tumors and become exhausted (Scharping et al., 2016). Interestingly, multiple studies also indicate that metabolic changes in TME could re-shape T cell differentiation and functional activity (Bailis et al., 2019; Chang et al., 2013; Peng et al., 2016). All these evidences inspired us to hypothesize that metabolic reprogramming in T cells might rescue them from a stressed metabolic environment, thereby reinvigorating their anti-tumor activity (Buck et al., 2016; Zhang et al., 2017). In this current study, by integrating both genetic and chemical screens, we identified that NAMPT, a key gene involved in NAD+ biosynthesis, was essential for T cell activation. NAMPT inhibition led to robust NAD+ decline in T cells, thereby disrupting glycolysis regulation and mitochondrial function, blocking ATP synthesis, and dampening the T cell receptor (TCR) downstream signaling cascade. Building on the observation that TILs have relatively lower NAD+ and NAMPT expression levels than T cells from peripheral blood mononuclear cells (PBMCs) in ovarian cancer patients, we performed genetic screening in T cells and identified that Tubby (TUB) is a transcription factor for NAMPT. Finally, we applied this basic knowledge in the (pre) clinic and showed very strong evidence that supplementation with NAD+ dramatically improves the anti-tumor killing activity both in adoptively transferred CAR-T cells therapy and immune check point blockade therapy, indicating their promising potential for targeting NAD+ metabolism to better treat cancers. 1.NAD+ regulates the activation of T cells by affecting energy metabolism After antigen stimulation, T cells undergo metabolic reprogramming, from mitochondrial oxidation to glycolysis as the main source of ATP. While maintaining sufficient mitochondrial functions to support cell proliferation and effector functions.Given that NAD+ is the main coenzyme for redox, the researchers verified the effect of NAD+ on the level of metabolism in T cells through experiments such as metabolic mass spectrometry and isotope labeling. The results of in vitro experiments show that NAD+ deficiency will significantly reduce the level of glycolysis, TCA cycle and electron transport chain metabolism in T cells. Through the experiment of replenishing ATP, the researchers found that the lack of NAD+ mainly inhibits the production of ATP in T cells, thereby reducing the level of T cell activation. 2.The NAD+ salvage synthesis pathway regulated by NAMPT is essential for T cell activation The metabolic reprogramming process regulates the activation and differentiation of immune cells. Targeting T cell metabolism provides an opportunity to modulate the immune response in a cellular way. Immune cells in the tumor microenvironment, their own metabolic level will also be correspondingly affected. The researchers in this article have discovered the important role of NAMPT in the activation of T cells through genome-wide sgRNA screening and metabolism-related small molecule inhibitor screening experiments. Nicotinamide adenine dinucleotide (NAD+) is a coenzyme for redox reactions and can be synthesized through the salvage pathway, de novo synthesis pathway, and Preiss-Handler pathway. The NAMPT metabolic enzyme is mainly involved in the NAD+ salvage synthesis pathway. Analysis of clinical tumor samples found that in tumor-infiltrating T cells, their NAD+ levels and NAMPT levels were lower than other T cells. Researchers speculate that NAD+ levels may be one of the factors that affect the anti-tumor activity of tumor-infiltrating T cells. 3.Supplement NAD+ to enhance the anti-tumor activity of T cells Immunotherapy has been exploratory research in cancer treatment, but the main problem is the best treatment strategy and the effectiveness of immunotherapy in the overall population. Researchers want to study whether enhancing the activation ability of T cells by supplementing NAD+ levels can enhance the effect of T cell-based immunotherapy. At the same time, in the anti-CD19 CAR-T therapy model and anti-PD-1 immune checkpoint inhibitor therapy model, it was verified that supplementation of NAD+ significantly enhanced the tumor-killing effect of T cells. The researchers found that in the anti-CD19 CAR-T treatment model, almost all mice in the CAR-T treatment group supplemented with NAD+ achieved tumor clearance, while the CAR-T treatment group without NAD+ supplemented only about 20 % Of mice achieved tumor clearance. Consistent with this, in the anti-PD-1 immune checkpoint inhibitor treatment model, B16F10 tumors are relatively tolerant to anti-PD-1 treatment, and the inhibitory effect is not significant. However, the growth of B16F10 tumors in the anti-PD-1 and NAD+ treatment group could be significantly inhibited. Based on this, NAD+ supplementation can enhance the anti-tumor effect of T cell-based immunotherapy. 4.How to supplement NAD+ The NAD+ molecule is large and cannot be directly absorbed and utilized by the human body. The NAD+ directly ingested orally is mainly hydrolyzed by brush border cells in the small intestine. In terms of thinking, there is indeed another way to supplement NAD+, which is to find a way to supplement a certain substance so that it can synthesize NAD+ autonomously in the human body. There are three ways to synthesize NAD+ in the human body: Preiss-Handler pathway, de novo synthesis pathway and salvage synthesis pathway. Although the three ways can synthesize NAD+, there is also a primary and secondary distinction. Among them, the NAD+ produced by the first two synthetic pathways only accounts for about 15% of the total human NAD+, and the remaining 85% is achieved through the way of remedial synthesis. In other words, the salvage synthesis pathway is the key to the human body to supplement NAD+. Among the precursors of NAD+, nicotinamide (NAM), NMN and nicotinamide ribose (NR) all synthesize NAD+ through a salvage synthesis pathway, so these three substances have become the body's choice for supplementing NAD+. Although NR itself has no side effects, in the process of NAD+ synthesis, most of it is not directly converted into NMN, but needs to be digested into NAM first, and then participate in the synthesis of NMN, which still cannot escape the limitation of rate-limiting enzymes. Therefore, the ability to supplement NAD+ through oral administration of NR is also limited . As a precursor for supplementing NAD+, NMN not only bypasses the restriction of rate-limiting enzymes, but is also absorbed very quickly in the body and can be directly converted into NAD+. Therefore, it can be used as a direct, rapid and effective method to supplement NAD+. Expert Reviews: Xu Chenqi (Excellence and Innovation Center of Molecular Cell Science, Chinese Academy of Sciences, Immunology Research Expert) Cancer treatment is a problem in the world. The development of immunotherapy has made up for the limitations of traditional cancer treatment and expanded the treatment methods of doctors. Cancer immunotherapy can be divided into immune checkpoint blocking therapy, engineered T cell therapy, tumor vaccine, etc. These treatment methods have played a certain role in the clinical treatment of cancer. At the same time, this also makes the current focus of immunotherapy research on how to further enhance the effect of immunotherapy and expand the beneficiaries of immunotherapy.

Bontac makes it to KPMG's China Biotech Innovation Enterprises Top 50

On April 7th, 2023, KPMG China hosted the second Biotech Innovation 50 Enterprises award ceremony online, with CITIC Securities as a co-organizer. Bontac impressed the panel with its strong R&D capabilities and excellent performance in the synthetic biology sector, earning a spot on the "KPMG China 2023 Biotech Innovation Enterprises Top 50" list.  The experts panel spent six months selecting the winners based on five core criteria: technology and product leadership, product pipeline richness and original research ratio, core management and R&D team background, capital market activity, and financial health. Bontac shines with its solid strength The "KPMG China 2023 Biotech Innovation Enterprises Top 50" award evaluated the enterprises from various aspects such as products, technology, team, finance, and funding. The selected enterprises are all high-quality enterprises with outstanding abilities in the biotech field, and being on the list is a great recognition. Bontac Deputy (fourth from the left) Bontac, as a leader in the synthetic biology industry, has always been at the forefront of R&D and production of coenzymes such as NMN, NADH and natural products such as ginsenoside Rh2, stevioside RD, etc. It has a strong comprehensive strength and a promising development potential that won the unanimous approval of the experts panel. From a scientific and technological point of view, Bontac has overcome several technical challenges, obtained more than 160 international patents and over 10 honorary qualifications, and owns more than 600 proprietary enzyme libraries. From the perspective of business scale, Bontac has three production bases that can achieve industrial production of hundreds of tons annually. Bontac also serves customers in more than 20 provinces in China and more than 60 countries. With the accordance of team configuration , Bontac has assembled representatives from four sides: scientists, engineers, entrepreneurs, and investors, empowering the enterprise from multiple dimensions. With the continuous upgrade of health consumption, the gradual release of new policy benefits related to medical regulation, and the rapid development of biopharmaceutical technology industry from a high-tech industry with great potential to a high-tech pillar industry. Biotech enterprises with potential represented by Bontac will leverage policy advantages and ride on market opportunities to integrate diverse resources in the ecosystem, support the development of China's biotech innovation enterprises, and enable win-win cooperation for the entire ecosystem. KPMG Biotech Innovation Enterprises Top 50 KPMG Awarding Ceremony  KPMG China launched its first "Biotech Innovation Enterprises Top 50" award in 2021 and received widespread attention and support from the industry. KPMG invited distinguished representatives from research, industry, investment, and enterprise fields to share their insights on the hot topics and trends in biotech and explore the best practices for biotech innovation enterprises. The award also created a resource-matching platform for the selected biotech enterprises with potential, helping them seize the policy direction and capital market opportunities, increase their market visibility, and achieve organic growth from within and outside.

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