Amino BCAA Powder

아미노 BCAA 분말

시험 방법:적정

외모:백색 가루

잔류농약:(EC) No 396/2005기준을 준수합니다

  • 설명
  • 데이터 시트
  • 인증 서
  • 아미노 BCAA 분말은 무엇입니까?


    BCAAs (branched-chain amino acid, BCAAs)는 3가지 아미노산 (leucine, isoleucine, valine)으로 구성된다.가지사슬 아미노산은 근육의 주요 아미노산으로 전체 근육 아미노산의 14~18%를 차지한다.이들은 단백질 합성을 촉진하고 단백질 분해를 억제하는 등 단백질 대사에 중요한 역할을 한다.이외에도 분지사슬 아미노산은 면역체계를 강화하고 몸의 피로를 예방하며 운동 후 근육통을 완화하는데 도움을 준다.

     

    녹색 스프링테크놀로지는 미세봉지 기술을 이용해 상온 (25℃)에서 온도, 산도, 산소, 빛, 수분의 영향을 피하고 생체이용성이 높은 아미노기 BCAA 파우더를 공급한다.

     

    2000년 설립, 그린 스프링테크놀로지는 중국의 대표적인 생명공학 기업이다.Halal, Kosher, COSMOS, BRC, IFS, FDA, ISO9001, ISO22000 및 기타 많은 인증을 획득했습니다.8개의 인증과 7개의 특허로 친환경 스프링 제품은 62개국 이상에서 판매되어 2,450개 이상의 고객에게 서비스를 제공하고 있으며, 좋은 반응을 얻고 있습니다.


    규격: 

     

    제품 이름

    BCAA

    시험 방법

    적정

    외모

    하얀 가루

    농약 잔류 물을

    (EC) No 396/2005 표준을 준수합니다

      

    규제:


    EU 규정에 부합한다.

    견적을 찾고 계십니까?

    Benefits:



    Promote Muscle Protein Synthesis

    The mTOR signaling pathway is an important eukaryotic signal that regulates cell growth, apoptosis, and autophagy by affecting protein transcription and synthesis. BCAAs, especially leucine, activate the mTOR signaling pathway, which initiates the translation of muscle mRNA proteins, thereby increasing the activity of protein synthesis and translation, and promoting muscle protein synthesis.

     

    Inhibition of Muscle Protein Breakdown

    Under traumatic stress conditions, the body's basal metabolic rate increases, and branched-chain amino acids reduce muscle protein catabolism to a certain extent through oxidative energy supply. In addition, there are many studies on the mechanism of inhibition of proteolysis by branched-chain amino acids, and the ubiquitin-proteasome pathway is one of the most recognized ones. The ubiquitin-proteasome pathway mainly mediates protein degradation in the body. The activation of three ubiquitin-activating enzymes (E1, E2, and E3) is required to initiate the protein degradation process. Studies have shown that leucine inhibits the activity of ubiquitin protease E2, thereby downregulating the ubiquitin-proteasome pathway and inhibiting protein breakdown.

     

    Regulation of Glucose Metabolism

    Branched-chain amino acids such as leucine, valine, and isoleucine improve insulin resistance better than other amino acids. Leucine in particular is considered to be a potent stimulator of insulin secretion. Leucine stimulates the release of intestinal peptides (e.g. GLP-1), which promotes insulin secretion by increasing the enteric proinsulin effect.

     

    Fatigue Relief

    Aromatic amino acids (AAA, e.g. tryptophan) can enter the brain through the blood-brain barrier and produce 5-hydroxytryptophan (5-HT), which is an important mediator of central fatigue, and can stimulate lethargy, loss of appetite, and sleep disorders. BCAA can competitively inhibit AAA from entering the brain, reduce the level of tryptophan in the brain, reduce the production of 5-HT, and alleviate brain fatigue.This effect of BCAA has a very good alleviating effect on postoperative fatigue, which is commonly found in clinics, and it can reduce the sleep disorders of postoperative patients, and promote the recovery of the organism even more.

     

    Promotes Protein Synthesis

    Leucine, one of the branched-chain amino acids, is the substrate for glutamine synthesis, and glutamine synthesized from leucine can promote protein synthesis. Studies have shown that leucine is converted into ketoisocaproic acid in muscle cells when ingested by the body, and leucine and ketoisocaproic acid are considered to be regulatory signals for protein synthesis.

     

    Delaying Fatigue

    Exercise fatigue occurs through a complex peripheral mechanism, in which exercise-induced exertion, metabolite accumulation, and altered structural and functional status of skeletal muscle cells are most closely related to exercise capacity. Branched-chain amino acids are mainly metabolised by skeletal muscle cells, while metabolites enter the tricarboxylic acid cycle. Supplementation of branched-chain amino acids can improve the efficiency of amino acid utilisation during gluconeogenesis and accelerate hepatic energy conversion. The oxidative energy supply of branched-chain amino acids in skeletal muscle can reduce the consumption and utilisation of myoglycogen.

     

    In addition, exercise causes an increase in the level of tumour necrosis factor in the blood. Tumour necrosis factor enhances the speed of amino acid transport and promotes the oxidation of amino acids for energy supply. Supplementation with branched-chain amino acids allows more amino acids to be oxidised for energy supply and reduces the need for glycogen by the antibodies, which in turn prolongs the time of energy supply and delays fatigue.

     

    Applications:


    For Healthcare Products:

    Branched Chain Amino Acids (BCAA), as essential amino acids, are involved in sustained exercise energy supply, reduce muscle glycogen depletion and promote muscle protein synthesis. Amino BCAA Powder has been used in a variety of sports drinks.

     


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