5-アミノ-4-オキソペンタン酸

5-アミノ-4-オキソペンタン酸 化学構造式
106-60-5
CAS番号.
106-60-5
化学名:
5-アミノ-4-オキソペンタン酸
别名:
5-アミノ-4-オキソ吉草酸;4-カルボキシ-2-オキソブチルアミン;δ-アミノレブリン酸;4-オキソ-5-アミノペンタン酸;5-アミノ-4-オキソペンタン酸;5-アミノレブリン酸;アミノレブリン酸
英語名:
5-Aminolevulinic acid
英語别名:
5-AMINOLEVULINATE;5-AMINOLAEVULINIC ACID;5-amino-4-oxovaleric acid;5-AMinelevulic acid (5-ALA);4-Oxo-5-aminopentanoic acid;Kerastick;Aminolevulinate;aminolevulinicacid;5-aminolevulinicaci;5-Aminobutyric acid
CBNumber:
CB5265495
化学式:
C5H9NO3
分子量:
131.13
MOL File:
106-60-5.mol

5-アミノ-4-オキソペンタン酸 物理性質

融点 :
118-119 °C
沸点 :
242.42°C (rough estimate)
比重(密度) :
1.3121 (rough estimate)
屈折率 :
1.4300 (estimate)
貯蔵温度 :
2-8°C(protect from light)
溶解性:
Soluble in DMSO
酸解離定数(Pka):
4.05(at 25℃)
InChI:
InChI=1S/C5H9NO3/c6-3-4(7)1-2-5(8)9/h1-3,6H2,(H,8,9)
InChIKey:
ZGXJTSGNIOSYLO-UHFFFAOYSA-N
SMILES:
C(O)(=O)CCC(=O)CN
CAS データベース:
106-60-5(CAS DataBase Reference)
EPAの化学物質情報:
Pentanoic acid, 5-amino-4-oxo- (106-60-5)
安全性情報
  • リスクと安全性に関する声明
  • 危険有害性情報のコード(GHS)
TSCA  TSCA listed
HSコード  29225090
絵表示(GHS) Exclamation Mark (GHS07)
注意喚起語 警告
危険有害性情報
コード 危険有害性情報 危険有害性クラス 区分 注意喚起語 シンボル P コード
H302 飲み込むと有害 急性毒性、経口 4 警告 P264, P270, P301+P312, P330, P501
注意書き
P261 粉じん/煙/ガス/ミスト/蒸気/スプレーの吸入を避ける こと。
P280 保護手袋/保護衣/保護眼鏡/保護面を着用するこ と。
P304+P340 吸入した場合:空気の新鮮な場所に移し、呼吸しやすい 姿勢で休息させること。
P305+P351+P338 眼に入った場合:水で数分間注意深く洗うこと。次にコ ンタクトレンズを着用していて容易に外せる場合は外す こと。その後も洗浄を続けること。

5-アミノ-4-オキソペンタン酸 価格 もっと(6)

メーカー 製品番号 製品説明 CAS番号 包装 価格 更新時間 購入
富士フイルム和光純薬株式会社(wako) W01FLC228025 5-アミノレブリン酸
5-Aminolevulinic acid
106-60-5 1g ¥16700 2020-09-21 購入
富士フイルム和光純薬株式会社(wako) W01FLC228025 5-アミノレブリン酸
5-Aminolevulinic acid
106-60-5 5g ¥44400 2020-09-21 購入
富士フイルム和光純薬株式会社(wako) W01MAS089758
3,4-Bis(benzyloxy)benzaldehyde
106-60-5 1g ¥17500 2024-03-01 購入
富士フイルム和光純薬株式会社(wako) W01MAS089758
3,4-Bis(benzyloxy)benzaldehyde
106-60-5 5g ¥46500 2024-03-01 購入
富士フイルム和光純薬株式会社(wako) W01MAS089758
3,4-Bis(benzyloxy)benzaldehyde
106-60-5 10g ¥69500 2024-03-01 購入

5-アミノ-4-オキソペンタン酸 化学特性,用途語,生産方法

解説

δ-アミノレブリン酸,デルタアミノレブリンさん,ポルフィリンなどの生合成の中間体。幼若赤血球のミトコンドリアにある δ -アミノレブリン酸合成酵素によって,グリシンとサクシニル補酵素Aから生成される。ある種の肝性ポルフィリン症では,肝臓内にこの ALAが大量に蓄積する。

効能

抗悪性腫瘍薬, 光増感剤

説明

5-aminolevulinic acid is the simplest delta-amino acid in which the hydrogens at the gamma position are replaced by an oxo group. It is metabolised to protoporphyrin IX, a photoactive compound which accumulates in the skin. Used (in the form of the hydrochloride salt)in combination with blue light illumination for the treatment of minimally to moderately thick actinic keratosis of the face or scalp. It has a role as a photosensitizing agent, an antineoplastic agent, a dermatologic drug, a prodrug, a plant metabolite, a human metabolite, a Saccharomyces cerevisiae metabolite, an Escherichia coli metabolite and a mouse metabolite. It is a delta-amino acid and a 4-oxo monocarboxylic acid. It derives from a 4-oxopentanoic acid. It is a conjugate base of a 5-ammoniolevulinic acid. It is a conjugate acid of a 5-aminolevulinate. It is a tautomer of a 5-ammoniolevulinate.

使用

5-Aminolevulinic acid (ALA), a nonprotein amino acid involved in tetrapyrrole synthesis, has been widely applied in agriculture, medicine, and food production.
5-Aminolevulinic acid (5-ALA) is an intermediate in heme biosynthesis and is useful in cancer treatment. It is a non-protein amino acid. 5-ALA also has applications in the field of agriculture. It is being studied as an inducing reagent for protoporphyrin IX (PPIX) dependent fluorescence diagnosis of metastatic lymph nodes. 5-ALA is used for photodynamic therapy of diseases, such as Paget′s disease and HPV infection-associated cervical condylomata acuminata.
Intermediate in heme biosynthesis.

適応症

Aminolevulinic acid (ALA HCl, Levulan Kerastick) is indicated for the treatment of nonhyperkeratotic actinic keratosis of the face and scalp. It has two components, an alcohol solution vehicle and ALA HCl as a dry solid. The two are mixed prior to application to the skin. When applied to human skin, ALA is metabolized to protoporphyrin, which accumulates and on exposure to visible light produces a photodynamic reaction that generates reactive oxygen species (ROS).The ROS produce cytotoxic effects that may explain therapeutic efficacy. Local burning and stinging of treated areas of skin due to photosensitization can occur.

生合成

5-ALA was confirmed as the common precursor of tetrapyrrole compounds and was found in many organisms. Two natural 5-ALA biosynthesis pathways are known to date. One is the C4 pathway (Shemin pathway), which Shemin and Russell first reported. It exists in animals, yeast, some protozoa, and purple non-sulfur photosynthetic bacteria. In this pathway, glycine and succinyl-CoA are condensed to 5-ALA under the catalysis of 5-aminolevulinic acid synthase (ALAS), with pyridoxal 5′-phosphate (PLP) as the cofactor. Succinyl-CoA is synthesized by methylmalonyl-CoA mutase, which utilizes vitamin B12 as an essential cofactor (38). The other is the C5 pathway (Beale pathway), which starts from the discovery of 5-ALA in Chlorella vulgaris by Beale. Glutamate produced via the TCA cycle acts as the substrate of the C5 pathway. The C5 pathway is mainly present in higher plants, algae, and many bacteria. The pathway starts with ligating tRNA and glutamate to generate L-glutamyl–tRNA, catalyzed by glutamyl–tRNA synthetase (GluTS). The NADPH-dependent glutamyl-tRNA reductase (GluTR) reduces the carboxyl group of Glu–tRNA to a formyl group, which enables the conversion of L-Glu–tRNA into L-glutamic acid 1-semialdehyde (GSA). In the last step, 5-ALA is created through transamination by glutamate-1-semialdehyde aminotransferase (GSA-AM). The enzymes involved in this pathway, GluTS, GluTR, and GSA-AM, are encoded by gltX, hemA (homonymic with the ALAS gene of the C4 pathway), and hemL, respectively. However, a few microorganisms have C4 and C5 pathways, Euglena gracilis being a well-known example[1].

生物活性

5-Aminolevulinic acid (5-ALA) is a precursor in the biosynthesis of porphyrins, including heme. The conversion of 5-ALA to protoporphyrins within tissues produces a photosensitive target that produces reactive oxygen species upon exposure to light.1 In this way, it is used in photodynamic therapy for a range of dermatological conditions, cancers, and other diseases. Also, oral administration of 5-ALA leads to the preferential accumulation of the fluorescent molecule protoporphyrin IX within certain types of cancer cells. This allows fluorescence-based identification of tumor tissue for accurate resection of diseased tissue.

酵素阻害剤

This key metabolic precursor (FW = 131.13 g/mol; CAS 106-60-5; pKa values = 4.05 and 8.90 at 25°C; Symbol: ALA), also known as daminolevulinic acid, is essential for the biosynthesis of metal ion-binding tetrapyrrole ring systems (porphyrins, chlorophylls, and cobalamins). In non-photosynthetic eukaryotes (animals, insects, fungi, protozoa, and alphaproteobacteria), d-aminolevulinic acid is produced by the enzyme ALA synthase, using glycine and succinyl CoA as substrates. In plants, algae, bacteria, and archaea, it is produced from glutamyl-tRNA and glutamate-1-semialdehyde. 5-Aminolevulinic acid inhibits (R)-3-amino-2- methylpropionate:pyruvate aminotransferase. ALA Phototherapy: Protoporphyrin IX, the immediate heme precursor is a highly effective tissue photosensitizer that is synthesized in four steps from 5- aminolevulinic acid. ALA synthesis is regulated via a feedback inhibition and gene repression mechanism linked to the concentration of free heme. In certain cell and tissue types, addition of exogenous ALA bypasses these regulation mechanisms, inducing uptake and synthesis of photosensitizing concentrations of Protoporphyrin IX, or PpIX. Topical application of ALA to certain malignant and non-malignant skin lesions, for example, can induce a clinically useful degree of lesion-specific photosensitization (e.g., superficial basal cell carcinomas show high response rate (~79%) after a single phototherapy treatment). ALA also induces localized tissue-specific photosensitization, when injected intradermally. In this sense, ALA and its methyl ester (methyl aminolevulinate, or MAL; trade name: Metvix) are prodrugs that increase the amounts of the active drug (PpIX).

5-アミノ-4-オキソペンタン酸 上流と下流の製品情報

原材料

準備製品


5-アミノ-4-オキソペンタン酸 生産企業

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106-60-5(5-アミノ-4-オキソペンタン酸)キーワード:


  • 106-60-5
  • 4-Carboxy-2-oxobutylamine
  • 5-amino-4-keto-valeric acid
  • 5-azanyl-4-oxo-pentanoic acid
  • 5-amino-4-oxo-pentanoicaci
  • Kerastick
  • 5-AMinelevulic acid (5-ALA)
  • 5-Aminolevulinic acid price
  • aminolevulinicacid
  • AMINOLEVULINIC ACID, 5-
  • 5-AMINOLEVULINIC ACID
  • 5-AMINOLAEVULINIC ACID
  • DELTA-AMINOLAEVULINICACID
  • 5-AMINOLAEVULINICACIDMETHYLESTER
  • Pentanoic acid, 5-amino-4-oxo-
  • AMINOLEVULINIC ACID, 5-(RG)
  • 5-amino-4-oxovaleric acid
  • 5-Aminolevulinic acid//5-ALA
  • 5-aminolevulinicaci
  • 5-Amino-4-oxovaleriansure
  • 5-Aminolevulinic acid (ALA
  • 5-Aminobutyric acid
  • Aminolevulinate
  • 4-Oxo-5-aminopentanoic acid
  • 5-AMINOLEVULINATE
  • 5-アミノ-4-オキソ吉草酸
  • 4-カルボキシ-2-オキソブチルアミン
  • δ-アミノレブリン酸
  • 4-オキソ-5-アミノペンタン酸
  • 5-アミノ-4-オキソペンタン酸
  • 5-アミノレブリン酸
  • アミノレブリン酸
  • 代謝産物
  • 植物成長阻害剤
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