Acetazolamide (BioDeep_00000001880)

 

Secondary id: BioDeep_00000412944

human metabolite blood metabolite


代谢物信息卡片


N-[5-(Aminosulphonyl)-1,3,5-thiadiazol-2-yl]acetamide

化学式: C4H6N4O3S2 (221.9881)
中文名称: 乙酰唑胺
谱图信息: 最多检出来源 Homo sapiens(blood) 66.55%

分子结构信息

SMILES: CC(=O)NC1=NN=C(S1)S(=O)(=O)N
InChI: InChI=1S/C4H6N4O3S2/c1-2(9)6-3-7-8-4(12-3)13(5,10)11/h1H3,(H2,5,10,11)(H,6,7,9)

描述信息

One of the carbonic anhydrase inhibitors that is sometimes effective against absence seizures. It is sometimes useful also as an adjunct in the treatment of tonic-clonic, myoclonic, and atonic seizures, particularly in women whose seizures occur or are exacerbated at specific times in the menstrual cycle. However, its usefulness is transient often because of rapid development of tolerance. Its antiepileptic effect may be due to its inhibitory effect on brain carbonic anhydrase, which leads to an increased transneuronal chloride gradient, increased chloride current, and increased inhibition. (From Smith and Reynard, Textbook of Pharmacology, 1991, p337)
S - Sensory organs > S01 - Ophthalmologicals > S01E - Antiglaucoma preparations and miotics > S01EC - Carbonic anhydrase inhibitors
D004791 - Enzyme Inhibitors > D002257 - Carbonic Anhydrase Inhibitors
D002491 - Central Nervous System Agents > D000927 - Anticonvulsants
C471 - Enzyme Inhibitor > C29577 - Carbonic Anhydrase Inhibitor
D002317 - Cardiovascular Agents > D045283 - Natriuretic Agents
C78275 - Agent Affecting Blood or Body Fluid > C448 - Diuretic
D045283 - Natriuretic Agents > D004232 - Diuretics
CONFIDENCE standard compound; EAWAG_UCHEM_ID 3011

同义名列表

74 个代谢物同义名

N-[5-(Aminosulphonyl)-1,3,5-thiadiazol-2-yl]acetamide; N-[5-(Aminosulphonyl)-1,3,4-thiadiazol-2-yl]acetamide; N-[5-(Aminosulfonyl)-1,3,5-thiadiazol-2-yl]acetamide; N-[5-(Aminosulfonyl)-1,3,4-thiadiazol-2-yl]acetamide; 5-Acetylamino-1,3,4-thiadiazole-2-sulphonamide; N-(5-sulfamoyl-1,3,4-thiadiazol-2-yl)acetamide; 2-Acetylamino-1,3,4-thiadiazole-5-sulphonamide; 2-Acetylamino-1,3,4-thiadiazole-5-sulfonamide; 5-Acetylamino-1,3,4-thiadiazole-2-sulfonamide; 5-ACETAMIDO-1,3,4-thiadiazole-2-sulphonamide; Théraplix brand OF acetazolamide preparation; Whelehan brand OF acetazolamide preparation; 5-ACETAMIDO-1,3,4-thiadiazole-2-sulfonamide; Cyanamid brand OF acetazolamide preparation; Lederle brand OF acetazolamide preparation; Storz brand OF acetazolamide preparation; Wyeth brand OF acetazolamide preparation; Ciba vision brand OF acetazolamide; Carbonic anhydrase inhibitor 6063; Wassermann brand OF acetazolamide; Novopharm brand OF acetazolamide; Acetazolamide sodium, (sterile); Acetamidothiadiazolesulfonamide; Medphano brand OF acetazolamide; Dioptic brand OF acetazolamide; Acetazolamide, monosodium salt; Llorens brand OF acetazolamide; Acetazolamide wassermann brand; Acetazolamide novopharm brand; Apotex brand OF acetazolamide; Chiesi brand OF acetazolamide; Monosodium salt acetazolamide; Acetazolamide medphano brand; Jumer brand OF acetazolamide; Orion brand OF acetazolamide; Grin brand OF acetazolamide; Acetazolamide llorens brand; Acetazolamide dioptic brand; Acetazolamide apotex brand; ICN brand OF acetazolamide; Acetazolamide chiesi brand; Acetazolamide orion brand; Acetazolamide jumer brand; Acetazolamide grin brand; Acetazolamide icn brand; Apo-acetazolamide; Apo acetazolamide; ApoAcetazolamide; Acetazolamidum; Acetazoleamide; Huma-zolamide; Acetozalamide; Huma zolamide; Acetazolamine; Acetazolamida; acetazolamide; HumaZolamide; Acetazolamid; Acetadiazol; Acetazolam; Glauconox; Défiltran; Defiltran; Diuramide; Glaupax; Diacarb; Diluran; Edemox; Ak zol; Diamox; Ak-zol; AkZol; Acetazolamide; Acetazolamide



数据库引用编号

32 个数据库交叉引用编号

分类词条

相关代谢途径

Reactome(0)

BioCyc(0)

PlantCyc(0)

代谢反应

0 个相关的代谢反应过程信息。

Reactome(0)

BioCyc(0)

WikiPathways(0)

Plant Reactome(0)

INOH(0)

PlantCyc(0)

COVID-19 Disease Map(0)

PathBank(0)

PharmGKB(0)

1 个相关的物种来源信息

在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:

  • PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
  • NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
  • Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
  • Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。

点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。

亚细胞结构定位 关联基因列表
Cytoplasm 13 ALB, AQP1, AQP4, AXIN2, BCL2, CA2, CACNA1A, CASP3, CENPJ, CHM, FGF23, HIF1A, VEGFA
Endosome membrane 1 AQP4
Endoplasmic reticulum membrane 1 BCL2
Nucleus 10 ALB, AQP1, AXIN2, BCL2, CA9, CACNA1A, CASP3, CHM, HIF1A, VEGFA
cytosol 8 ALB, AXIN2, BCL2, CA2, CASP3, CENPJ, CHM, HIF1A
nuclear body 1 HIF1A
centrosome 3 ALB, AXIN2, CENPJ
nucleoplasm 4 ATP2B1, CASP3, HIF1A, SCNN1G
RNA polymerase II transcription regulator complex 1 HIF1A
Cell membrane 6 AQP1, AQP4, ATP2B1, CA2, CA9, CACNA1A
Multi-pass membrane protein 6 AQP1, AQP4, ATP2B1, CACNA1A, CACNA1I, SCNN1G
Synapse 3 ATP2B1, CACNA1A, PCLO
cell surface 1 VEGFA
glutamatergic synapse 3 ATP2B1, CASP3, PCLO
Golgi apparatus 2 ALB, VEGFA
Golgi membrane 1 INS
neuronal cell body 2 CACNA1A, CASP3
presynaptic membrane 1 ATP2B1
sarcolemma 2 AQP1, AQP4
Cytoplasm, cytosol 1 CHM
plasma membrane 9 AQP1, AQP4, ATP2B1, AXIN2, CA2, CA9, CACNA1A, CACNA1I, SCNN1G
presynaptic active zone 1 PCLO
synaptic vesicle membrane 1 ATP2B1
Membrane 9 AQP1, AQP4, ATP2B1, BCL2, CA9, CACNA1A, CACNA1I, PCLO, VEGFA
apical plasma membrane 2 AQP1, SCNN1G
axon 2 AQP1, PCLO
basolateral plasma membrane 4 AQP1, AQP4, ATP2B1, CA9
brush border 1 AQP1
caveola 1 AQP1
extracellular exosome 6 ALB, AQP1, ATP2B1, CA2, PCLO, SCNN1G
endoplasmic reticulum 3 ALB, BCL2, VEGFA
extracellular space 5 ALB, FGF23, INS, PTH, VEGFA
adherens junction 1 VEGFA
mitochondrion 1 BCL2
protein-containing complex 3 ALB, BCL2, HIF1A
intracellular membrane-bounded organelle 1 ATP2B1
postsynaptic density 2 CASP3, PCLO
Single-pass type I membrane protein 1 CA9
Secreted 4 ALB, FGF23, INS, VEGFA
extracellular region 6 ALB, AQP4, FGF23, INS, PTH, VEGFA
Mitochondrion outer membrane 1 BCL2
Single-pass membrane protein 1 BCL2
mitochondrial outer membrane 1 BCL2
astrocyte end-foot 1 AQP4
anchoring junction 1 ALB
motile cilium 1 HIF1A
Cytoplasm, cytoskeleton, microtubule organizing center, centrosome 1 CENPJ
Cytoplasmic vesicle, secretory vesicle, synaptic vesicle membrane 1 ATP2B1
Nucleus membrane 1 BCL2
Bcl-2 family protein complex 1 BCL2
nuclear membrane 2 AQP1, BCL2
external side of plasma membrane 2 AQP4, SCNN1G
Secreted, extracellular space, extracellular matrix 1 VEGFA
beta-catenin destruction complex 1 AXIN2
nucleolus 1 CA9
axon cytoplasm 1 HIF1A
apical part of cell 2 AQP1, CA2
Apical cell membrane 1 SCNN1G
Cell membrane, sarcolemma 1 AQP4
pore complex 1 BCL2
microtubule 1 CENPJ
GABA-ergic synapse 1 PCLO
extracellular matrix 1 VEGFA
secretory granule 1 VEGFA
lateral plasma membrane 1 ATP2B1
nuclear speck 1 HIF1A
ciliary basal body 2 ALB, CENPJ
chromatin 1 HIF1A
cell projection 3 AQP4, ATP2B1, CACNA1A
cytoskeleton 1 PCLO
Cytoplasm, cytoskeleton, microtubule organizing center, centrosome, centriole 1 CENPJ
centriole 2 ALB, CENPJ
brush border membrane 1 AQP1
Nucleus, nucleolus 1 CA9
spindle pole 1 ALB
blood microparticle 1 ALB
Basolateral cell membrane 2 AQP4, ATP2B1
Cell projection, microvillus membrane 1 CA9
microvillus membrane 1 CA9
endosome lumen 1 INS
monoatomic ion channel complex 1 CACNA1A
sodium channel complex 1 SCNN1G
Nucleus speckle 1 HIF1A
euchromatin 1 HIF1A
Presynaptic cell membrane 1 ATP2B1
myelin sheath 2 BCL2, CA2
basal plasma membrane 1 AQP1
secretory granule lumen 1 INS
Golgi lumen 2 FGF23, INS
endoplasmic reticulum lumen 3 ALB, FGF23, INS
platelet alpha granule lumen 2 ALB, VEGFA
voltage-gated calcium channel complex 2 CACNA1A, CACNA1I
procentriole replication complex 1 CENPJ
transport vesicle 1 INS
Endoplasmic reticulum-Golgi intermediate compartment membrane 1 INS
immunological synapse 1 ATP2B1
cytoskeleton of presynaptic active zone 1 PCLO
death-inducing signaling complex 1 CASP3
ankyrin-1 complex 1 AQP1
BAD-BCL-2 complex 1 BCL2
photoreceptor ribbon synapse 1 ATP2B1
[N-VEGF]: Cytoplasm 1 VEGFA
[VEGFA]: Secreted 1 VEGFA
[Isoform L-VEGF189]: Endoplasmic reticulum 1 VEGFA
[Isoform VEGF121]: Secreted 1 VEGFA
[Isoform VEGF165]: Secreted 1 VEGFA
VEGF-A complex 1 VEGFA
Rab-protein geranylgeranyltransferase complex 1 CHM
ciliary transition fiber 1 ALB
gamma-tubulin small complex 1 CENPJ


文献列表

  • Dimitrios Tsikas. Acetazolamide and human carbonic anhydrases: retrospect, review and discussion of an intimate relationship. Journal of enzyme inhibition and medicinal chemistry. 2024 Dec; 39(1):2291336. doi: 10.1080/14756366.2023.2291336. [PMID: 38078375]
  • Andrew Burgess, Gareth Andrews, Katie M E Colby, Samuel J E Lucas, Kate Sprecher, Joseph Donnelly, Philip N Ainslie, Aparna S Basnet, Keith R Burgess. Loop gain response to increased cerebral blood flow at high altitude. Sleep & breathing = Schlaf & Atmung. 2023 Dec; ?(?):. doi: 10.1007/s11325-023-02956-4. [PMID: 38085496]
  • Li Li, Lin Lin, Bo Wen, Peng-Cheng Zhao, Da-Sheng Liu, Guo-Ming Pang, Zi-Rong Wang, Yong Tan, Cheng Lu. Promising Natural Medicines for the Treatment of High-Altitude Illness. High altitude medicine & biology. 2023 09; 24(3):175-185. doi: 10.1089/ham.2022.0139. [PMID: 37504973]
  • Xiaojing Qian, Huifang Chen, Jiaying Chen. Preventing heme-induced nephropathy in children with glucose 6 phosphate dehydrogenase deficiency: is there a role for acetazolamide?. Pediatric nephrology (Berlin, Germany). 2022 12; 37(12):3249. doi: 10.1007/s00467-022-05642-x. [PMID: 35678880]
  • Maria A Caravedo, Karen Mozo, Maria L Morales, Hunter Smiley, Jared Stuart, Drake H Tilley, Miguel M Cabada. Risk factors for acute mountain sickness in travellers to Cusco, Peru: coca leaves, obesity and sex. Journal of travel medicine. 2022 08; 29(5):. doi: 10.1093/jtm/taab102. [PMID: 34230961]
  • Francesco P Busardò, Alfredo F Lo Faro, Ascanio Sirignano, Raffaele Giorgetti, Jeremy Carlier. In silico, in vitro, and in vivo human metabolism of acetazolamide, a carbonic anhydrase inhibitor and common 'diuretic and masking agent' in doping. Archives of toxicology. 2022 07; 96(7):1989-2001. doi: 10.1007/s00204-022-03289-z. [PMID: 35410394]
  • Tomohiko Inoue, Mikako Hisamichi, Daisuke Ichikawa, Yugo Shibagaki, Masahiko Yazawa. The Effect of Add-on Acetazolamide to Conventional Diuretics for Diuretic-resistant Edema Complicated with Hypercapnia: A Report of Two Cases. Internal medicine (Tokyo, Japan). 2022 Feb; 61(3):373-378. doi: 10.2169/internalmedicine.7896-21. [PMID: 34373379]
  • Ali Bahadur, Shahid Iqbal, Saiqa Muneer, Hashem O Alsaab, Nasser S Awwad, Hala A Ibrahium. Synthesis, carbonic anhydrase enzyme inhibition evaluations, and anticancer studies of sulfonamide based thiadiazole derivatives. Bioorganic & medicinal chemistry letters. 2022 02; 57(?):128520. doi: 10.1016/j.bmcl.2021.128520. [PMID: 34965467]
  • David Daniel, João C Campos, Paulo C Costa, Bruno Nunes. Toxicity of two drugs towards the marine filter feeder Mytilus spp, using biochemical and shell integrity parameters. Environmental pollution (Barking, Essex : 1987). 2022 Jan; 293(?):118562. doi: 10.1016/j.envpol.2021.118562. [PMID: 34813888]
  • Brianna N Brun, Shawn C Aylward. Pediatric Intracranial Hypertension: A Spotlight on Imaging, the Idiopathic Intracranial Hypertension Treatment Trial, and COVID-19 Associated Cases. Seminars in pediatric neurology. 2021 12; 40(?):100922. doi: 10.1016/j.spen.2021.100922. [PMID: 34749916]
  • Secil Deniz, Tugba Kevser Uysal, Clemente Capasso, Claudiu T Supuran, Ozen Ozensoy Guler. Is carbonic anhydrase inhibition useful as a complementary therapy of Covid-19 infection?. Journal of enzyme inhibition and medicinal chemistry. 2021 Dec; 36(1):1230-1235. doi: 10.1080/14756366.2021.1924165. [PMID: 34074197]
  • Siao-Syun Guan, Cheng-Tien Wu, Tse-Zung Liao, Kun-Liang Lin, Cheng-Liang Peng, Ying-Hsia Shih, Mao-Feng Weng, Chun-Tang Chen, Chung-Hsin Yeh, Ying-Chieh Wang, Shing-Hwa Liu. A novel 111indium-labeled dual carbonic anhydrase 9-targeted probe as a potential SPECT imaging radiotracer for detection of hypoxic colorectal cancer cells. European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V. 2021 Nov; 168(?):38-52. doi: 10.1016/j.ejpb.2021.08.004. [PMID: 34450241]
  • Katsuhiro Matsuura, Tomohiko Yoshida, Takuya Uehara, Shusaku Yamada, Hideki Yotsuida, Mizuki Hasegawa, Sakie Katayose, Kurumi Yamada, Youta Yaginuma. Metabolic alkalosis following mitral valvuloplasty in a dog with preoperative acute kidney injury. Journal of the American Veterinary Medical Association. 2021 11; 259(11):1332-1336. doi: 10.2460/javma.20.09.0519. [PMID: 34727063]
  • Christopher N Schmickl, Shane Landry, Jeremy E Orr, Brandon Nokes, Bradley A Edwards, Atul Malhotra, Robert L Owens. Effects of acetazolamide on control of breathing in sleep apnea patients: Mechanistic insights using meta-analyses and physiological model simulations. Physiological reports. 2021 10; 9(20):e15071. doi: 10.14814/phy2.15071. [PMID: 34699135]
  • Alexey S Pospelov, Tommi Ala-Kurikka, Samu Kurki, Juha Voipio, Kai Kaila. Carbonic anhydrase inhibitors suppress seizures in a rat model of birth asphyxia. Epilepsia. 2021 08; 62(8):1971-1984. doi: 10.1111/epi.16963. [PMID: 34180051]
  • A M Beal. The effect of acetazolamide, amiloride, bumetanide and SITS on secretion of fluid and electrolytes by the parotid gland of common wombats, Vombatus ursinus. Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology. 2021 07; 191(4):777-791. doi: 10.1007/s00360-021-01367-9. [PMID: 33877412]
  • Yoshinori Tsuji, George Kusi-Appiah, Noriko Kozai, Yuri Fukuda, Takashi Yamano, Hideya Fukuzawa. Characterization of a CO2-Concentrating Mechanism with Low Sodium Dependency in the Centric Diatom Chaetoceros gracilis. Marine biotechnology (New York, N.Y.). 2021 Jun; 23(3):456-462. doi: 10.1007/s10126-021-10037-4. [PMID: 34109463]
  • Jean-Paul Richalet, Fabien Pillard, David LE Moal, Daniel Rivière, Philippe Oriol, Mathias Poussel, Bruno Chenuel, Stéphane Doutreleau, Samuel Vergès, Sophie Demanez, Michel Vergnion, Jean-Michel Boulet, Hervé Douard, Maryse Dupré, Olivier Mesland, Romain Remetter, Evelyne Lonsdorfer-Wolf, Alain Frey, Louis Vilcoq, Anne Nedelec Jaffuel, David Debeaumont, Guy Duperrex, François Lecoq, Christophe Hédon, Maurice Hayot, Guido Giardini, François J Lhuissier. Validation of a Score for the Detection of Subjects with High Risk for Severe High-Altitude Illness. Medicine and science in sports and exercise. 2021 06; 53(6):1294-1302. doi: 10.1249/mss.0000000000002586. [PMID: 33433150]
  • Kanako Nagaoka, Hiroshi Kuji, Gen Yamagiwa, Takafumi Akanuma, Takahiro Inoue, Junko Fukuda, Mamiko Ohara, Tomo Suzuki. Successful Treatment of Fluid Overload and Metabolic Alkalosis with Acetazolamide for Peritoneal Dialysis. Saudi journal of kidney diseases and transplantation : an official publication of the Saudi Center for Organ Transplantation, Saudi Arabia. 2021 May; 32(3):890-891. doi: 10.4103/1319-2442.336792. [PMID: 35102939]
  • Tien-En Chen, Shao-Ying Liu. Severe Metabolic Acidosis and Hyperammonemia Induced by the Concomitant Use of Acetazolamide and Aspirin in a Patient With Impaired Renal Function. The Journal of emergency medicine. 2021 May; 60(5):e115-e117. doi: 10.1016/j.jemermed.2020.11.022. [PMID: 33608163]
  • Mark J Henderson, Kathleen A Trychta, Shyh-Ming Yang, Susanne Bäck, Adam Yasgar, Emily S Wires, Carina Danchik, Xiaokang Yan, Hideaki Yano, Lei Shi, Kuo-Jen Wu, Amy Q Wang, Dingyin Tao, Gergely Zahoránszky-Kőhalmi, Xin Hu, Xin Xu, David Maloney, Alexey V Zakharov, Ganesha Rai, Fumihiko Urano, Mikko Airavaara, Oksana Gavrilova, Ajit Jadhav, Yun Wang, Anton Simeonov, Brandon K Harvey. A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome. Cell reports. 2021 04; 35(4):109040. doi: 10.1016/j.celrep.2021.109040. [PMID: 33910017]
  • Rana M Abou-Mrad, Mazin Ibrahim, Nuha Osman, Raman Suresh Babu. Anuric Acute Kidney Injury Requiring Dialysis Following Acetazolamide Use for Cataract Surgery. The American journal of case reports. 2021 Apr; 22(?):e931319. doi: 10.12659/ajcr.931319. [PMID: 33888675]
  • Eugenia Awuah Boadi, Samuel Shin, Samuel Yeroushalmi, Bok-Eum Choi, Peijun Li, Bidhan C Bandyopadhyay. Modulation of Tubular pH by Acetazolamide in a Ca2+ Transport Deficient Mice Facilitates Calcium Nephrolithiasis. International journal of molecular sciences. 2021 Mar; 22(6):. doi: 10.3390/ijms22063050. [PMID: 33802660]
  • Amber B Clemmons, Aaron Chase, Phung Duong, Jennifer L Waller, Katherine Saunders, Locke Bryan. Assessing the impact of adding acetazolamide to oral or intravenous sodium bicarbonate as compared with intravenous bicarbonate monotherapy as urinary alkalinization in adults receiving high-dose methotrexate. Supportive care in cancer : official journal of the Multinational Association of Supportive Care in Cancer. 2021 Mar; 29(3):1527-1534. doi: 10.1007/s00520-020-05646-z. [PMID: 32725375]
  • Shimpei Iikuni, Yuya Okada, Yoichi Shimizu, Hiroyuki Watanabe, Masahiro Ono. Modulation of the Pharmacokinetics of a Radioligand Targeting Carbonic Anhydrase-IX with Albumin-Binding Moieties. Molecular pharmaceutics. 2021 03; 18(3):966-975. doi: 10.1021/acs.molpharmaceut.0c00953. [PMID: 33472371]
  • Wai Lun Will Pak, Ka Lok Chan, Zi Chan, Wai Ping Law, Yick Hei Wong, Chi Kwan Lam, Sze Ho Sunny Wong. Acetazolamide toxicity and dosing in dialysis patients. Nephrology (Carlton, Vic.). 2021 Jan; 26(1):88. doi: 10.1111/nep.13654. [PMID: 31478276]
  • Yu-Rong Mu, Li Cai, Meng-Yuan Zhou, Ming-Ming Liu, Zeng Li, Rong Li. Acetazolamide ameliorates the severity of collagen-induced arthritis in rats: Involvement of inducing synovial apoptosis and inhibiting Wnt/β-catenin pathway. International immunopharmacology. 2021 Jan; 90(?):107214. doi: 10.1016/j.intimp.2020.107214. [PMID: 33278748]
  • Parham Habibzadeh, Mohammad Mofatteh, Saeid Ghavami, Jamshid Roozbeh. The potential effectiveness of acetazolamide in the prevention of acute kidney injury in COVID-19: A hypothesis. European journal of pharmacology. 2020 Dec; 888(?):173487. doi: 10.1016/j.ejphar.2020.173487. [PMID: 32805256]
  • Cheng Peng, Duopeng An, Wen-Xin Ding, Yuan-Xing Zhu, Li Ye, Jiyang Li. Fungichromin production by Streptomyces sp. WP-1, an endophyte from Pinus dabeshanensis, and its antifungal activity against Fusarium oxysporum. Applied microbiology and biotechnology. 2020 Dec; 104(24):10437-10449. doi: 10.1007/s00253-020-10996-z. [PMID: 33170328]
  • Aidan J Hampson, Jennifer R Schroeder, Kayla N Ellefsen, Luba Yammine, David H Epstein, Kenzie L Preston, Marilyn A Huestis, Christopher D Verrico. Subtherapeutic Acetazolamide Doses as a Noninvasive Method for Assessing Medication Adherence. Clinical pharmacology and therapeutics. 2020 12; 108(6):1203-1212. doi: 10.1002/cpt.1929. [PMID: 32496573]
  • Joseph D Tobias. Metabolic Alkalosis in the Pediatric Patient: Treatment Options in the Pediatric ICU or Pediatric Cardiothoracic ICU Setting. World journal for pediatric & congenital heart surgery. 2020 Nov; 11(6):776-782. doi: 10.1177/2150135120942488. [PMID: 33164684]
  • R Latorre, F Purroy. [Hypokalemic periodic paralysis: a systematic review of published case reports]. Revista de neurologia. 2020 Nov; 71(9):317-325. doi: 10.33588/rn.7109.2020377. [PMID: 33085076]
  • Richard I Horowitz, Phyllis R Freeman. Three novel prevention, diagnostic, and treatment options for COVID-19 urgently necessitating controlled randomized trials. Medical hypotheses. 2020 Oct; 143(?):109851. doi: 10.1016/j.mehy.2020.109851. [PMID: 32534175]
  • Perwez Alam, Sihame Amlal, Charuhas V Thakar, Hassane Amlal. Acetazolamide causes renal [Formula: see text] wasting but inhibits ammoniagenesis and prevents the correction of metabolic acidosis by the kidney. American journal of physiology. Renal physiology. 2020 09; 319(3):F366-F379. doi: 10.1152/ajprenal.00501.2019. [PMID: 32657159]
  • Y Uwai, R Kondo, T Suzuki, T Kawasaki, T Nabekura. Potent Inhibition of Biphasic Tubular Reabsorption of Lithium by Acetazolamide and Foscarnet in Rats. Physiological research. 2020 08; 69(4):645-651. doi: 10.33549/physiolres.934285. [PMID: 32584131]
  • Andrew M Luks, Erik R Swenson. COVID-19 Lung Injury and High-Altitude Pulmonary Edema. A False Equation with Dangerous Implications. Annals of the American Thoracic Society. 2020 08; 17(8):918-921. doi: 10.1513/annalsats.202004-327cme. [PMID: 32735170]
  • Mark R Geier, David A Geier. Respiratory conditions in coronavirus disease 2019 (COVID-19): Important considerations regarding novel treatment strategies to reduce mortality. Medical hypotheses. 2020 Jul; 140(?):109760. doi: 10.1016/j.mehy.2020.109760. [PMID: 32344310]
  • John Ketz, Vijay Saxena, Samuel Arregui, Ashley Jackson, George J Schwartz, Takafumi Yagisawa, Robert L Fairchild, David S Hains, Andrew L Schwaderer. Developmental loss, but not pharmacological suppression, of renal carbonic anhydrase 2 results in pyelonephritis susceptibility. American journal of physiology. Renal physiology. 2020 06; 318(6):F1441-F1453. doi: 10.1152/ajprenal.00583.2019. [PMID: 32390512]
  • Hui Lu, Huaqun Zhang, Yuanying Jiang. Methazolamide in high-altitude illnesses. European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences. 2020 May; 148(?):105326. doi: 10.1016/j.ejps.2020.105326. [PMID: 32251722]
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