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1

&NA;. "Pheniramine." Reactions Weekly &NA;, no. 760 (1999): 10. http://dx.doi.org/10.2165/00128415-199907600-00029.

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2

&NA;. "Pheniramine overdose." Reactions Weekly &NA;, no. 490 (1994): 9. http://dx.doi.org/10.2165/00128415-199404900-00047.

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&NA;. "Pheniramine overdose." Reactions Weekly &NA;, no. 1304 (2010): 30. http://dx.doi.org/10.2165/00128415-201013040-00100.

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4

Priyambada, Supriya, Lakshmi Deepika P., and Singamma M. "The study of skeletal muscle relaxant property of pheniramine maleate in acetylcholine induced contractions on isolated frog rectus muscle." International Journal of Basic & Clinical Pharmacology 7, no. 3 (2018): 396. http://dx.doi.org/10.18203/2319-2003.ijbcp20180648.

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Background: A muscle relaxant is a drug which affects skeletal muscle function and decreases the muscle tone. It may be used to alleviate symptoms such as muscle spasm, pain and hyperreflexia. Skeletal muscle relaxants are heterogeneous group of medications that refer to 2 major therapeutic groups: neuromuscular blockers and spasmolytics. This study is carried out to evaluate the skeletal muscle property of Pheniramine maleate in Acetylcholine Induced Contractions on Isolated Frog Rectus Muscle.Methods: There are various screening techniques available to assess the muscle relaxant property of
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5

&NA;. "Paracetamol/pheniramine/ascorbic acid." Reactions Weekly &NA;, no. 1272 (2009): 25. http://dx.doi.org/10.2165/00128415-200912720-00086.

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6

Parvez, M., and M. Rusiewicz. "DL-Pheniramine Hydrogen Maleate." Acta Crystallographica Section C Crystal Structure Communications 52, no. 1 (1996): 83–85. http://dx.doi.org/10.1107/s010827019501047x.

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7

&NA;. "Loratadine/paracetamol/ascorbic acid/pheniramine." Reactions Weekly &NA;, no. 1340 (2011): 28–29. http://dx.doi.org/10.2165/00128415-201113400-00097.

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8

Buckley, Nicholas A., Ian M. Whyte, Andrew H. Dawson, and Duncan A. Cruickshank. "Pheniramine — a much abused drug." Medical Journal of Australia 160, no. 4 (1994): 188–92. http://dx.doi.org/10.5694/j.1326-5377.1994.tb126600.x.

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9

Saatcioglu, Omer, and Cuneyt Evren. "A Case of Pheniramine Dependence." Substance Abuse 26, no. 1 (2006): 45–47. http://dx.doi.org/10.1300/j465v26n01_06.

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10

Kelani, Khadiga M., Maha A. Hegazy, Amal M. Hassan, and Mahmoud A. Tantawy. "Determination of naphazoline HCl, pheniramine maleate and their official impurities in eye drops and biological fluid rabbit aqueous humor by a validated LC-DAD method." RSC Advances 11, no. 12 (2021): 7051–58. http://dx.doi.org/10.1039/d0ra10598h.

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11

Eltsova, N. O., and E. V. Budko. "Methods of the matrix analysis and graphic ranking of the array of the experimental IR spectroscopy data in studying the inter-component processes in the mixture of pheniramine maleate and naproxen." Industrial laboratory. Diagnostics of materials 85, no. 9 (2019): 22–28. http://dx.doi.org/10.26896/1028-6861-2019-85-9-22-28.

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A widespread use of complex pharmacotherapy entails the necessity of studying the processes occurred in pharmaceutical mixtures. IR spectroscopy is one of the methods used to assess the stability of substances. To increase the efficiency of interpretation of the IR spectra of mixtures, a method combining matrix methods and graphic ranking of the array of experimental data has been developed. This approach has been tested for the analysis of model mixtures of pharmaceutical substances naproxen and pheniramine maleate. Absorption spectra were obtained on an Avatar 360 FT-IR ESP Fourier transform
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12

Parente, Gianluca, Massimilano Pazzaglia, Colombina Vincenzi, and Antonella Tosti. "Contact dermatitis from pheniramine maleate in eyedrops." Contact Dermatitis 40, no. 6 (1999): 338. http://dx.doi.org/10.1111/j.1600-0536.1999.tb06097.x.

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13

Hung, Ching-Hsia, Chin-Chen Chu, Yu-Chung Chen, Yu-Wen Chen, Zong-Ying Li, and Jhi-Joung Wang. "Spinal anesthesia with diphenhydramine and pheniramine in rats." European Journal of Pharmacology 673, no. 1-3 (2011): 20–24. http://dx.doi.org/10.1016/j.ejphar.2011.10.019.

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14

Gocmen, Julide Sedef, Unase Buyukkocak, and Osman Caglayan. "In vitro antibacterial activity of some systemic and topical antihistaminic preparations." Clinical & Investigative Medicine 32, no. 6 (2009): 232. http://dx.doi.org/10.25011/cim.v32i6.10657.

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Purpose: In vitro antibacterial activity of topical and systemic antihistaminic preparations containing different active substrates against the standard strains of two bacteria was evaluated. Methods: Four topical and 3 systemic preparations containing pheniramine maleate, chlorophenoxamine hydrochloride, and diphenhydramine hydrochloride were studied. The antibacterial activities of these preparations against strains of S. aureus (American Type Culture Collection, ATCC 29213) and S. epidermidis (ATCC 25212) were tested using the disc diffusion method. In addition, the Minimal Innhibitory Conc
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15

KIM, H. J., Y. CHO, S. LEE, et al. "Mycobacterium massiliense outbreak after intramuscular injection, South Korea." Epidemiology and Infection 140, no. 10 (2012): 1880–87. http://dx.doi.org/10.1017/s0950268811002809.

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SUMMARYWe conducted an epidemic investigation to discover the route of transmission and the host factors of an outbreak of post-injection abscesses. Of the 2984 patients who visited a single clinic, 77 cases were identified and 208 age- and sex-matched controls were selected for analysis. Injected medications per se were not found to be responsible, and a deviation from safe injection practice suggested the likelihood of diluent contamination. Therefore the injected medications were classified according to whether there was a need for a diluent, and two medications showed a statistically signi
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16

O. Rifai, Ahmad, Abeer M. Abd El-Aziz, and Hany I. Kenawy. "Possible antivirulent activity of some agents against clinical isolates of Pseudomonas aeruginosa." EJMM-Volume 30-Issue 2 30, no. 2 (2021): 1–8. http://dx.doi.org/10.51429/ejmm30201.

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Background: Pseudomonas aeruginosa has developed different mechanisms of resistance against antibiotics and became one of the most life-threatening pathogens. Fighting against its virulence Factors are an alternative therapeutic target. Objective: This study was directed towards the investigation of anti-quorum sensing activity and inhibitory action on virulence factors of different agents including antibacterial agents to which Pseudomonas aeruginosa isolates are resistant and non-antibacterial agents. Methodology: Anti-quorum sensing activity of ceftriaxone, ceftazidime (CAZ), cefepime (FEP)
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17

Pal, Hemraj, Rajesh Kumar, Shashi Bhushan, and Neeraj Berry. "Psychiatric co-morbidity associated with pheniramine abuse and dependence." Indian Journal of Psychiatry 47, no. 1 (2005): 60. http://dx.doi.org/10.4103/0019-5545.46079.

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18

Prakash, Sathya. "A case of hypochondriasis with dexamethasone and pheniramine dependence." Journal of Substance Use 20, no. 1 (2013): 73–75. http://dx.doi.org/10.3109/14659891.2013.866180.

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19

Venugopal, K., MMallikarjun Reddy, MY Bharathraj, Kadappa Jaligidad, and DP Kushal. "Pheniramine maleate-induced rhabdomyolysis and aki: Is it fatal?" Toxicology International 21, no. 3 (2014): 319. http://dx.doi.org/10.4103/0971-6580.155384.

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20

Bingol Kiziltunc, Pinar, Huban Atilla, and F. Nilufer Yalcindag. "Accommodation Paralysis after Pheniramine Maleate Injection: A Case Report." Neuro-Ophthalmology 37, no. 6 (2013): 257–59. http://dx.doi.org/10.3109/01658107.2013.830227.

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21

Yürekli, Ismail, Orhan Gökalp, Müge Kiray, et al. "Effect of pheniramine maleate on reperfusion injury in brain tissue." Medical Science Monitor Basic Research 19 (2013): 285–90. http://dx.doi.org/10.12659/msmbr.889570.

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22

Merter, Mustafa, Erden Atilla, Ugur Sahin, et al. "Comparison of Two Different Doses of Corticosteroid Premedication for Antithymocyte Globulin in Allogeneic Hematopoietic Stem Cell Transplantation." Blood 126, no. 23 (2015): 5456. http://dx.doi.org/10.1182/blood.v126.23.5456.5456.

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Abstract Introduction Antithymocyte globulin (ATG) is commonly used for graft-versus-host disease prophylaxis in allogeneic hematopoietic stem cell transplantation. However side effects of ATG is frequent and is caused by the cross reaction with lymphocytes and macrophages. Despite premedication with corticosteroids, acetaminophen and antihistamine drugs; complications like fever, chills, skin rashes, anaphylactic shock, nephritis and serum sickness occur frequently during or after ATG infusion. Hence, we have recently decided to use higher doses of methylprednisolone as premedication, with th
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23

Kamlekar, Sandeep Kumar, and Sangita Gupta. "Effect of methonolic extract of Vitex negundo on haloperidol induced catalepsy in albino mice." International Journal of Basic & Clinical Pharmacology 9, no. 4 (2020): 621. http://dx.doi.org/10.18203/2319-2003.ijbcp20201188.

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Background: Plants are being used in traditional medicine since history of mankind. The knowledge of these medicinal plants has accrued in the course of many centuries leading to medicinal systems in India such as Ayurveda, Unani and Siddha. Objective: In the present study, we evaluated the anticataleptic efficacy of Vitex negundo, a polyherbal formulation in haloperidol induced catalepsy in mice.Methods: Five groups (n=6) of male albino mice were used in the study. Catalepsy was induced by i.p. administration of haloperidol (1 mg/kg). The degree of catalepsy (cataleptic score) was measured as
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24

Tsvetkov, V. V. "Combined drugs in the treatment of acute respiratory viral infections: a review of research results." Meditsinskiy sovet = Medical Council, no. 4 (April 20, 2021): 205–11. http://dx.doi.org/10.21518/2079-701x-2021-4-205-211.

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Acute respiratory infections are of the greatest economic significance among all infectious diseases in the Russian Federation. There are no drugs with a direct antiviral effect for most acute respiratory viral infections, which efficacy would have been proven in the numerous clinical trials and confirmed by the results of meta-analyses today. The use of various combinations of antipyretic, anti-inflammatory and antioxidant drugs is the most common method of symptomatic and pathogenetic therapy of acute respiratory viral infections (ARVI). The purpose of this review is to analyse and systemati
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25

Balhara, Yatan Pal Singh, Raka Jain, Anju Dhawan, and Manju Mehta. "Assessment of abuse liability of pheniramine among opioid-dependent human subjects." Journal of Substance Use 16, no. 6 (2010): 484–95. http://dx.doi.org/10.3109/14659891.2010.513753.

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26

Mikuš, Peter, Iva Valášková, and Emil Havránek. "Enantioselective determination of pheniramine in pharmaceuticals by capillary electrophoresis with charged cyclodextrin." Journal of Pharmaceutical and Biomedical Analysis 38, no. 3 (2005): 442–48. http://dx.doi.org/10.1016/j.jpba.2005.01.020.

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27

Swamy, PV, SP Divate, SB Shirsand, and P. Rajendra. "Preparation and evaluation of orodispersible tablets of pheniramine maleate by effervescent method." Indian Journal of Pharmaceutical Sciences 71, no. 2 (2009): 151. http://dx.doi.org/10.4103/0250-474x.54284.

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28

Fattah, S. Abdel, K. O. Kelany, B. A. El-zeany, and M. F. El-tarras. "Analysis of Pheniramine Naleate and Cblorpheniramine Maleate Via Their Fe (III) Cohplexes." Analytical Letters 20, no. 10 (1987): 1667–78. http://dx.doi.org/10.1080/00032718708078033.

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29

Jagirani, Muhammad Saqaf, Sarfaraz Ahmed Mahesar, Sirajuddin, et al. "Electrochemical Oxidation of Methotrexate Using Pheniramine Maleate Functionalized Gold Nanoparticles Modified Electrode." Sensor Letters 16, no. 1 (2018): 8–12. http://dx.doi.org/10.1166/sl.2018.3914.

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30

Wu, H. L., C. H. Huang, S. H. Chen, and S. M. Wu. "Chiral Quantitation of Pheniramine, Chlorpheniramine, and Brompheniramine Maleates by Capillary Zone Electrophoresis." Journal of Chromatographic Science 37, no. 1 (1999): 24–30. http://dx.doi.org/10.1093/chromsci/37.1.24.

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31

Paul, Gunchan, P. Sood, B. S. Paul, and S. Puri. "Acute renal failure caused by pheniramine maleate induced rhabdomyolysis: An unusual case." Indian Journal of Critical Care Medicine 13, no. 4 (2009): 221–23. http://dx.doi.org/10.4103/0972-5229.60176.

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32

Subramaniyan, Seppakkam P., and Saroj K. Das. "Rapid Identification and Quantification of Chlorpheniramine Maleate or Pheniramine Maleate in Pharmaceutical Preparations by Thin-Layer Chromatography-Densitometry." Journal of AOAC INTERNATIONAL 87, no. 6 (2004): 1319–22. http://dx.doi.org/10.1093/jaoac/87.6.1319.

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Abstract Thin-layer chromatography (TLC)-densitometry was used to separate, identify, and quantitate chlorpheniramine maleate (CPM) and pheniramine maleate (PM) when present in combination with other drugs in pharmaceutical preparations of tablets, syrups, eye and ear drops, etc. CPM or PM was extracted (tablets, capsules, etc.) or diluted (liquid preparations, if needed) with 80% ethanol and isolated from other ingredients by TLC on silica gel G using cyclohexane–chloroform– methanol–diethylamine (4.5 + 4.0 + 0.5 + 1.0, v/v) as the mobile phase. Separated CPM and PM were detected under shortw
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33

El-Sayed, Y. M., E. M. Niazy, and S. H. Khidr. "High-Performance Liquid Chromatographic Method for the Quantitative Determination of Pheniramine in Plasma." Journal of Liquid Chromatography 18, no. 4 (1995): 763–77. http://dx.doi.org/10.1080/10826079508009271.

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34

Martens, Jens. "Determination of loratadine and pheniramine from human serum by gas chromatography-mass spectrometry." Journal of Chromatography B: Biomedical Sciences and Applications 673, no. 2 (1995): 183–88. http://dx.doi.org/10.1016/0378-4347(95)00267-2.

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35

Jančinová, V., M. Petríková, M. Májeková, and R. Nosál. "Effect of pheniramine, chlorpheniramine and brompheniramine on stimulated blood platelets: Structure-activity relationships." Inflammation Research 44, S1 (1995): S38—S39. http://dx.doi.org/10.1007/bf01674385.

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36

Schuster, Andreas, Carsten Götte, Günther Bernhardt, and Armin Buschauer. "Chiral separation of pheniramine-like 3-phenyl-3-heteroarylpropylamines by CE and HPLC methods." Chirality 13, no. 6 (2001): 285–93. http://dx.doi.org/10.1002/chir.1033.

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37

Balhara, Yatan PalSingh, Anju Dhawan, Raka Jain, and Manju Mehta. "A comparative study of pheniramine and lorazepam for physiological and cognitive/psychomotor task impairment." Journal of Pharmaceutical Negative Results 2, no. 2 (2011): 91. http://dx.doi.org/10.4103/0976-9234.90221.

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38

Ahmed, Farzana, Aftab Yusuf Raj, Ahmed Sayeed, Zahidul Hasan, and Muhammod Humayun Kabir. "A 3 year old baby with wasp stings-induced multiorgan dysfunction." Bangabandhu Sheikh Mujib Medical University Journal 11, no. 2 (2018): 150. http://dx.doi.org/10.3329/bsmmuj.v11i2.36259.

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<p><span>This article has no abstract. The first 100 words appear below:</span></p><p>A 3 year old healthy female baby had been stung with a swarm of wasps on her entire body while passing a coconut tree containing wasp nest at Chakoria, Cox’s Bazar. She developed severe pain and itching at the site of stings and swelling of the body within minutes. Immediately she was seen by a local physician and was treated with the injection of hydrocortisone and pheniramine maleate. On the following day, she gradually developed yellowish tint of the whole body (Figure 1), fol
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39

Botteghi, C., G. Del Ponte, and C. Marchetti. "Synthesis of an optically active pheniramine by enantioselective hydrogenation catalysed by BINAP-ruthenium (II) complexes." Journal of Molecular Catalysis 83, no. 1-2 (1993): L1—L4. http://dx.doi.org/10.1016/0304-5102(93)87001-o.

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40

Deml, I., G. Bernhardt, and A. Buschauer. "P134 separation of arpromidine analogues and their enantiomeric pheniramine-like amine precursors by capillary electrophoresis." European Journal of Pharmaceutical Sciences 2, no. 1-2 (1994): 152. http://dx.doi.org/10.1016/0928-0987(94)90307-7.

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41

Ahamad, Ishtiaque, Rajendra Prasad, and M. A. Quraishi. "Inhibition of mild steel corrosion in acid solution by Pheniramine drug: Experimental and theoretical study." Corrosion Science 52, no. 9 (2010): 3033–41. http://dx.doi.org/10.1016/j.corsci.2010.05.022.

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42

Gokalp, Orhan, Ismail Yurekli, Muge Kiray, et al. "Assessment of Protective Effects of Pheniramine Maleate on Reperfusion Injury in Lung After Distant Organ Ischemia." Vascular and Endovascular Surgery 47, no. 3 (2013): 219–24. http://dx.doi.org/10.1177/1538574413475885.

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43

Schulze, Frank R., Armin Buschauer, and Walter Schunack. "Combined histamine H1/H2 receptor antagonists: part I. Pharmacological hybrids with pheniramine- and roxatidine-like substructures." European Journal of Pharmaceutical Sciences 6, no. 3 (1998): 177–86. http://dx.doi.org/10.1016/s0928-0987(97)10018-5.

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44

Liu, C. A., C. C. Chu, J. J. Wang, and C. M. Chen. "H1 histamine blocking agents: doxylamine and pheniramine, have a potent infiltrative cutaneous analgestic effect in rat." European Journal of Anaesthesiology 30 (June 2013): 215. http://dx.doi.org/10.1097/00003643-201306001-00672.

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45

Arslan, Zakir, Eyup Serhat Çalık, Bekir Kaplan, and Elif Oral Ahiskalioglu. "The effect of pheniramine on fentanyl-induced cough: a randomized, double blinded, placebo controlled clinical study." Brazilian Journal of Anesthesiology (English Edition) 66, no. 4 (2016): 383–87. http://dx.doi.org/10.1016/j.bjane.2014.11.018.

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46

Karaman, Kerem, Erdal Birol Bostanci, Erol Aksoy, et al. "Effects of dexamethasone and pheniramine hydrogen maleate on stress response in patients undergoing elective laparoscopic cholecystectomy." American Journal of Surgery 205, no. 2 (2013): 213–19. http://dx.doi.org/10.1016/j.amjsurg.2012.05.010.

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47

Dockhorn, Robert J., and Thomas G. Duckett. "Comparison of Naphcon-A and its components (naphazoline and pheniramine) in a provocative model of allergic conjunctivitis." Current Eye Research 13, no. 5 (1994): 319–24. http://dx.doi.org/10.3109/02713689409167294.

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48

El-Gizawy, Samia M., and Abd-El-Hamed N. Ahmed. "High-performance liquid chromatographic determination of mepyramine maleate, pheniramine maleate and phenylpropanolamine hydrochloride in tablets and drops." Analyst 112, no. 6 (1987): 867. http://dx.doi.org/10.1039/an9871200867.

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49

Ali, Imran, Zeid A. Al-Othman, Abdulrahman Al-Warthan, Syed Dilshad Alam, and Javed A. Farooqi. "Enantiomeric Separation and Simulation Studies of Pheniramine, Oxybutynin, Cetirizine, and Brinzolamide Chiral Drugs on Amylose-Based Columns." Chirality 26, no. 3 (2014): 136–43. http://dx.doi.org/10.1002/chir.22276.

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50

Xu, Weifeng, Shichuan Wang, Xiaojuan Xie, Panliang Zhang та Kewen Tang. "Enantioseparation of pheniramine enantiomers by high-speed countercurrent chromatography using β-cyclodextrin derivatives as a chiral selector". Journal of Separation Science 40, № 19 (2017): 3801–7. http://dx.doi.org/10.1002/jssc.201700345.

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