Safety and Efficacy of DSM 32444 Postbiotic in the Treatment of Acute Rhinosinusitis
Summary
Rhinitis is a type of upper respiratory infection with a common nasal pathology especially in Southeast Asia, which is characterized by the presence of one or more of the following symptoms: itchy nose, sneezing, runny nose, and nasal congestion. Other symptoms occasionally experienced include headache, excessive pain reaction, cough, fever. Rhinitis can be idiopathic or due to a variety of causes, including allergens, medications, endocrine/metabolic, infectious, inflammatory, and abnormal nasal structures. The treatment of acute rhinosinusitis and allergic rhinitis in hospitals is currently carried out according to the general professional guidance of the Vietnam Ministry of Health. Most patients are prescribed corticosteroids, antihistamines, and antibiotics for immediate decongestion and anti-inflammatory effects. Current concerns about antimicrobial resistance (AMR) as well as side effects of corticosteroids and antihistamines have led to an urgent need for a naturebased next generation therapeutic approach that is safe, effective and helps in addressing the issues of AMR. The goal of this interventional study is to evaluate the safety and efficacy of postbiotic nasal spray using inert bioparticles of Bacillus subtilis DSM32444 in treatment of acute rhinosinusitis; and to compare the efficacy against Neomycin/Dexamethasone//Xylometazoline administered as a nasal spray as an adjunct to Amoxicillin/Clavulanate standard treatment in patients with acute rhinosinusitis. Patients with acute rhinosinusitis who give consent to participate in the study will be randomly assigned in a 1:1 ratio to one of two groups using postbiotic of Bacillus subtilis DSM32444 nasal spray ("Sperovid") or Neomycin/ Dexamethasone nasal spray for a period of 10 days. Investigators will compare whether the nasal spray using postbiotic Bacillus subtilis DSM32444 has similar efficacy as compared to Neomycin/Dexamethasone/Xylometazoline nasal spray as an adjuvant therapy along with the standard Amoxicillin/Clavulanate regimen in patients with acute rhinosinusitis based on time to improvement of rhinosinusitis symptoms.
Timeline
- Start
- 2022-12-29
- Primary completion
- 2023-04-27
- Completion
- 2023-05-25
Publications
- Background James J, Meyer SM, Hong HA, Dang C, Linh HTY, Ferreira W, Katsande PM, Vo L, Hynes D, Love W, Banyard AC, Cutting SM. Intranasal Treatment of Ferrets with Inert Bacterial Spores Reduces Disease Caused by a Challenging H7N9 Avian Influenza Virus. Vaccines (Basel). 2022 Sep 19;10(9):1559. doi: 10.3390/vaccines10091559.
- Background de Souza RD, Batista MT, Luiz WB, Cavalcante RC, Amorim JH, Bizerra RS, Martins EG, Ferreira LC. Bacillus subtilis spores as vaccine adjuvants: further insights into the mechanisms of action. PLoS One. 2014 Jan 27;9(1):e87454. doi: 10.1371/journal.pone.0087454. eCollection 2014.
- Background Huang JM, La Ragione RM, Nunez A, Cutting SM. Immunostimulatory activity of Bacillus spores. FEMS Immunol Med Microbiol. 2008 Jul;53(2):195-203. doi: 10.1111/j.1574-695X.2008.00415.x. Epub 2008 Apr 21.
- Background Wallace DV, Dykewicz MS, Bernstein DI, Blessing-Moore J, Cox L, Khan DA, Lang DM, Nicklas RA, Oppenheimer J, Portnoy JM, Randolph CC, Schuller D, Spector SL, Tilles SA; Joint Task Force on Practice; American Academy of Allergy; Asthma & Immunology; American College of Allergy; Asthma and Immunology; Joint Council of Allergy, Asthma and Immunology. The diagnosis and management of rhinitis: an updated practice parameter. J Allergy Clin Immunol. 2008 Aug;122(2 Suppl):S1-84. doi: 10.1016/j.jaci.2008.06.003. No abstract available.
- Background Baraniuk JN. Pathogenic mechanisms of idiopathic nonallergic rhinitis. World Allergy Organ J. 2009 Jun 15;2(6):106-14. doi: 10.1097/WOX.0b013e3181aadb16.
- Background Bousquet J, Khaltaev N, Cruz AA, Denburg J, Fokkens WJ, Togias A, Zuberbier T, Baena-Cagnani CE, Canonica GW, van Weel C, Agache I, Ait-Khaled N, Bachert C, Blaiss MS, Bonini S, Boulet LP, Bousquet PJ, Camargos P, Carlsen KH, Chen Y, Custovic A, Dahl R, Demoly P, Douagui H, Durham SR, van Wijk RG, Kalayci O, Kaliner MA, Kim YY, Kowalski ML, Kuna P, Le LT, Lemiere C, Li J, Lockey RF, Mavale-Manuel S, Meltzer EO, Mohammad Y, Mullol J, Naclerio R, O'Hehir RE, Ohta K, Ouedraogo S, Palkonen S, Papadopoulos N, Passalacqua G, Pawankar R, Popov TA, Rabe KF, Rosado-Pinto J, Scadding GK, Simons FE, Toskala E, Valovirta E, van Cauwenberge P, Wang DY, Wickman M, Yawn BP, Yorgancioglu A, Yusuf OM, Zar H, Annesi-Maesano I, Bateman ED, Ben Kheder A, Boakye DA, Bouchard J, Burney P, Busse WW, Chan-Yeung M, Chavannes NH, Chuchalin A, Dolen WK, Emuzyte R, Grouse L, Humbert M, Jackson C, Johnston SL, Keith PK, Kemp JP, Klossek JM, Larenas-Linnemann D, Lipworth B, Malo JL, Marshall GD, Naspitz C, Nekam K, Niggemann B, Nizankowska-Mogilnicka E, Okamoto Y, Orru MP, Potter P, Price D, Stoloff SW, Vandenplas O, Viegi G, Williams D; World Health Organization; GA(2)LEN; AllerGen. Allergic Rhinitis and its Impact on Asthma (ARIA) 2008 update (in collaboration with the World Health Organization, GA(2)LEN and AllerGen). Allergy. 2008 Apr;63 Suppl 86:8-160. doi: 10.1111/j.1398-9995.2007.01620.x. No abstract available.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Bacillus subtilis DSM32444 | Other / unclassified | 0.2 ml | Intranasal |
| Comparator | Dexamethasone | Small molecule | 0.2 ml | Intranasal |
| Comparator | Neomycin | Unknown | 0.2 ml | Intranasal |
| Comparator | Xylometazoline | Small molecule | 0.2 ml | Intranasal |