Drug Database
BI

Biostim (Biostim)

✓ Approved

Sanofi S.A · therapeutic agent

What is Biostim?

Biostim is a therapeutic agent developed by Sanofi S.A. It is approved for therapeutic indications via oral (po) or topical.

Drug Profile

Brand NamesBiostim
CompanySanofi S.A
RouteOral (PO), Topical
StatusApproved

Therapeutic Indications

Biostim is developed for 3 unique indications across 3 therapeutic areas.

Therapeutic AreaConditionPhase
Infections and infestationsRespiratory tract infection✓ Approved
General disorders and administration site conditionsImpaired healing✓ Approved
Eye disordersUlcerative keratitis✓ Approved

Related Research Articles

PubMedThe Cochrane database of systematic reviews2022-11-15

Immunostimulants versus placebo for preventing exacerbations in adults with chronic bronchitis or chronic obstructive pulmonary disease.

Fraser Ashley A, Poole Phillippa P

Individuals with chronic obstructive pulmonary disease (COPD) or chronic bronchitis may experience recurrent exacerbations, which negatively impact prognosis and quality of life, and can impose a significant socioeconomic burden on the individual and wider society. Immunostimulants are a broad category of therapies that may theoretically enhance non-specific immunity against several respiratory insults, thereby reducing exacerbation risk and severity. However, evidence to date for their use in this population is limited. To determine the efficacy of immunostimulants in preventing respiratory exacerbations in adults with chronic obstructive pulmonary disease, chronic bronchitis, or both. We used standard, extensive Cochrane search methods. The latest literature search was conducted on 25 January 2022.  SELECTION CRITERIA: We included parallel randomised controlled trials (RCTs) that compared immunostimulant therapy, administered by any method and with the intention of preventing (rather than treating) exacerbations, with placebo for a minimum treatment duration of one month in adults with chronic bronchitis or COPD, or both. We excluded participants with other respiratory conditions.  DATA COLLECTION AND ANALYSIS: We used standard Cochrane methods. Our primary outcomes were number of participants with no exacerbations during the study period and all-cause mortality, secondary outcomes were respiratory-related mortality, quality of life, number of participants requiring antibiotics, exacerbation duration, respiratory-related hospitalisation duration and adverse events/side effects. We used GRADE to assess certainty of evidence for each outcome. This review included 36 studies involving 6192 participants. Studies were published between 1981 and 2015. Duration ranged from three to 14 months. The mean age of study participants varied between 35.2 and 82 years. Twelve studies examined participants with COPD only. Seventeen studies reported baseline lung function values; most indicated a moderate-to-severe degree of airflow limitation. Nineteen studies indicated inclusion of participants with a mean baseline exacerbation frequency of two or more in the preceding year. Immunostimulants investigated were OM-85, AM3, RU41740 (Biostim), Ismigen, Diribiotine CK, thymomodulin, pidotimod, D53 (Ribomunyl), Lantigen B, Symbioflor, and hyaluronan; routes of administration were oral, sublingual, and subcutaneous. The risk of bias of the included studies was mostly low or unclear. Participants receiving immunostimulants for a mean duration of six months were slightly more likely to be free of exacerbations during that time (odds ratio (OR) 1.48, 95% confidence interval (CI) 1.15 to 1.90; 15 RCTs, 2961 participants; moderate-certainty evidence). The overall number needed to treat with immunostimulants for a mean of six months, to prevent one participant from experiencing an exacerbation, was 11 (95% CI 7 to 29). This outcome was associated with a moderate degree of unexplained heterogeneity (I2 = 53%). Type of immunostimulant, baseline lung function, baseline exacerbation frequency, treatment duration, and follow-up duration did not modify the effect size, although due to heterogeneity and limited study and participant numbers within some subgroups, the validity of the subgroup treatment effect estimates were uncertain. Immunostimulants probably result in little to no difference in all-cause mortality (OR 0.64, 95% CI 0.37 to 1.10; 5 RCTs, 1558 participants; moderate-certainty evidence) and respiratory-related mortality (OR 0.40, 95% CI 0.15 to 1.07; 2 RCTs, 735 participants; low-certainty evidence) compared to placebo; however, the effects were imprecise and data quality limited the certainty of these results.  There was a small improvement in health-related quality of life, as measured by the St George's Respiratory Questionnaire (SGRQ), with immunostimulant compared to placebo (mean difference -4.59, 95% CI -7.59 to -1.59; 2 RCTs, 617 participants; very-low certainty evidence). The effect estimate just met the minimum clinically important difference (MCID) score of 4 units; however, the CI width means the possibility of a non-meaningful difference cannot be excluded. The pooled result from five studies indicated that immunostimulants likely reduce the number of participants requiring antibiotics over a mean duration of six months (OR 0.34, 95% CI 0.18 to 0.63; 542 participants; moderate-certainty evidence). This outcome had a low-to-moderate degree of heterogeneity (I2 = 38%), but the direction of effect was consistent across all studies. There was no evidence of a difference in the odds of experiencing an adverse event with immunostimulant compared to placebo, over a mean duration of six months (OR 1.01, 95% CI 0.84 to 1.21; 20 RCTs, 3780 participants; high-certainty evidence). The CI limits for the associated risk ratio (RR) did not cross thresholds for appreciable harm or benefit (RR 1.02, 95% CI 0.92 to 1.13). An additional seven studies reported no events rates in either study arm. Meta-analyses were not performed for the outcomes of exacerbation duration and respiratory-related hospitalisation duration, due to high levels of heterogeneity across the included studies (exacerbation duration: I2 = 92%; respiratory-related hospitalisation duration: I2 = 83%). Results from an effect direction plot and binomial probability test for exacerbation duration indicated that a significant proportion of studies (94% (95% CI 73% to 99%); P = 0.0002) favoured intervention, possibly indicating that immunostimulants are efficacious in reducing the mean exacerbation duration compared to placebo. However, the degree of uncertainty associated with this estimate remained high due to data quality and heterogeneity. Three studies reported mean duration of respiratory-related hospitalisation, two of which demonstrated a direction of effect that favoured immunostimulant over placebo. In participants with chronic bronchitis or COPD, we are moderately confident that treatment with immunostimulants is associated with a small reduction in the likelihood of having an exacerbation and a moderate reduction in the requirement for antibiotics. Low numbers of events limit interpretation of the effect of immunostimulants on all-cause and respiratory-related mortality. We are uncertain whether immunostimulants improve quality of life, and whether they are associated with a reduction in exacerbation and respiratory-related hospitalisation durations, although immunostimulants were generally associated with a positive effect direction in the studies that examined these outcomes. Immunostimulants appear to be safe and well-tolerated, and are not associated with an increased risk of adverse events.

PubMedPloS one2016-03-11

A Further Investigation of the Effects of Extremely Low Frequency Magnetic Fields on Alkaline Phosphatase and Acetylcholinesterase.

Silkstone Gary G, Wilson Michael T MT

Using a custom build spectrophotometer equipped with Helmholtz coils and designed to study the effects of magnetic fields on enzyme reactions in real-time we have investigated the influence of fields, from 100 μT to 10 mT and at a variety of field frequencies, on the membrane bound enzymes alkaline phosphatase and acetylcholinesterase. We have also employed other methods to apply a magnetic field, e.g. Biostim. In contrast to earlier reports we have been unable to detect any field effects on these enzymes under any field/frequency regime. We discuss possible reasons for the discrepancy between this and earlier work and note the particularly complex influence of small temperature changes that may confound analysis.

PubMedTherapie2004-09-14

[Biostim (glycoprotein extracted from Klebsiella pneumoniae)-induced Bullous pemphigoid].

Chaby Guillaume G, Dascotte-Barbeau Elodie E, Viseux Valérie V, Andréjak Michel M et al.

PubMedVaccine2004-07-13

Maturation of dendritic cells by bacterial immunomodulators.

Spisek Radek R, Brazova Jitka J, Rozkova Daniela D, Zapletalova Katerina K et al.

Dendritic cells (DC) become fully functional upon maturation by various stimuli. We tested whether an immunostimulatory effect of clinically used immunomodulators (Luivac, Biostim, Ribomunyl, Imudon, Bronchovaxom) is caused by direct DC activation. We found that Luivac, Biostim and Ribomunyl have a very high DC stimulatory potential in vitro. The level of DC activation was comparable or higher than DC maturation induced by standard maturation stimuli, Poly (I:C) or lipopolysaccharide. Treated DC had activated phenotype, reduced phagocytic activity and they induced the proliferation of allogeneic T lymphocytes. These results are important for understanding the physiology of action of these widely prescribed agents. Administration of bacterial immunomodulators should be considered with care to avoid the potential risk of inducing an autoimmune disease. They could also be used as well-defined maturating agents in the protocols used for the ex vivo production of DC-based vaccines for clinical trials.

PubMedEpidemiologie, mikrobiologie, imunologie : casopis Spolecnosti pro epidemiologii a mikrobiologii Ceske lekarske spolecnosti J.E. Purkyne2000-10-21

[Prevention of recurrence of herpes with poliovaccine].

Plesník V V, Machálek J J

In the course of 20 years in collaboration with dermatologists and doctors attending adolescents 75 patients were treated suffering for at least four years from 10 relapses of herpes labialis or genitalis every year. The usual treatment mitigated only temporarily their complaints but had no effect on the frequency of relapses. Two thirds of the patients had immunological examinations, in half of them shortage of IgA was found. Only 12 subjects had during comprehensive immunological examinations normal results. After 3-4 years immunomodulation with poliovaccine in rare instances combined with other immune preparations, the condition improved in 67 of 69 patients (97%), in two (3%) it remained unaltered. The procedure involved restricted exposure to tobacco smoke, alcohol, UV rays and sleep deficiency. After a comprehensive immunological examination immunomodulation with levamisol was started. This was followed by the administration of 2-3 drops of poliovaccine, at first every month, when the complaints receded the interval of vaccine administration was prolonged. When the complaints persisted the immunity of the organism was promoted by protection from influenza (vaccination, Remantadin) and other respiratory infections (Isoprinosin, Modimunal) and the general resistance was reinforced (Biostim). The mentioned procedure should be reserved for subjects with herpes persisting for a long time and with frequently relapsing herpes.

PubMedCasopis lekaru ceskych2000-08-23

[The chemiluminescence test in the laboratory evaluation of effects of immunostimulatory therapy].

Macurová H H, Kamínková J J, Fucíková T T, Janatková I I et al.

Number of patients treated by general practitioners with various immunomodulatory drugs has recently increased. Effects of such medication on the immune system were not usually monitored. The aim of our work was to evaluate effect of selected immunomodulatory drugs on the phagocytic and metabolic activities of the phagocytes. 51 patients (18 males and 33 females) of the average age 36 years with repeating respiratory, mycotic and herpetic infections were investigated. Immunomodulatory treatment included: Decaris (Lavamizolum), Isoprinosine (Methisoprinolum), Imudon (Lysatum bacteriale mixtum), Biostim (Klebsiella pneumoniae), and Immodin (Leukocyti dialysati lyophylysatum). Before and after treatment all patients underwent basic immunological examination IgG, IgA, IgM, C3, C4 complement components, PEG, CD3, CD4, CD8 and CD19). Phagocytotic activity was estimated by means of FAGO MSHP test with HEMA particles and by chemiluminiscence test. Chemiluminiscence was measured using ML 3000 Microtiter Plate Luminometer (Dynex), 26 healthy individuals of the corresponding age were the controls. Results were statistically evaluated by Student's t-test. Significant increase of the cellular metabolic activity was found in Decaris and Immodin treated patients (P < 0.001). Chemiluminiscence test, which evaluates the metabolic activity of phagocytes, can be used for the accurate laboratory monitoring of the effects of some immunomodulatory drugs on the natural immunity of patients.

+50 more articles available with a free account

Sign up free to view all articles →

Ask about Biostim