Kenneth MarkK.M.CoggeshallKenneth MarkK.M. i inni, The sepsis model: an emerging hypothesis for the lethality of inhalation anthrax, „Journal of Cellular and Molecular Medicine”, 17 (7), 2013, s. 914–920, DOI: 10.1111/jcmm.12075, PMID: 23742651, PMCID: PMC3729634 [dostęp 2023-12-30](ang.).
MartinM.BeliveauMartinM. i inni, Animal‐to‐Human Dose Translation of ANTHRASIL for Treatment of Inhalational Anthrax in Healthy Adults, Obese Adults, and Pediatric Subjects, „Clinical Pharmacology & Therapeutics”, 2023, DOI: 10.1002/cpt.3097 [dostęp 2023-12-30](ang.).
Michel R.M.R.PopoffMichel R.M.R., HolgerH.BrüggemannHolgerH., Regulatory Networks Controlling Neurotoxin Synthesis in Clostridium botulinum and Clostridium tetani, „Toxins”, 14 (6), 2022, s. 364, DOI: 10.3390/toxins14060364, PMID: 35737025, PMCID: PMC9229411 [dostęp 2023-12-30](ang.).
TanjaT.BuchacherTanjaT. i inni, Bacillus cereus extracellular vesicles act as shuttles for biologically active multicomponent enterotoxins, „Cell Communication and Signaling”, 21 (1), 2023, DOI: 10.1186/s12964-023-01132-1, PMID: 37189133, PMCID: PMC10184354 [dostęp 2023-12-30](ang.).
JanosJ.SzaboJanosJ., AttilaA.PalAttilaA., AndreaA.Szabo-NagyAndreaA., Preventing toxaemia, „The Lancet”, 357 (9274), 2001, s. 2140, DOI: 10.1016/S0140-6736(00)05215-6 [dostęp 2023-12-30](ang.).
XiaoyanX.ChenXiaoyanX. i inni, Circulating adipokine levels and preeclampsia: A bidirectional Mendelian randomization study, „Frontiers in Genetics”, 13, 2022, DOI: 10.3389/fgene.2022.935757, PMID: 36072663, PMCID: PMC9444139 [dostęp 2023-12-30].
Jenna E.J.E.BayneJenna E.J.E., Pregnancy Toxemia Therapeutic Options, „Veterinary Clinics of North America: Food Animal Practice”, 39 (2), 2023, s. 293–305, DOI: 10.1016/j.cvfa.2023.02.003 [dostęp 2023-12-30](ang.).
MasatoshiM.OkaMasatoshiM. i inni, Clinically Relevant Mesenchymal Stem/Stromal Cell Sheet Transplantation Method for Kidney Disease, „Tissue Engineering Part C: Methods”, 29 (2), 2023, s. 54–62, DOI: 10.1089/ten.tec.2022.0200 [dostęp 2023-12-30](ang.).
G.R.G.R.SmithG.R.G.R., Individual variation in botulism, „British Journal of Experimental Pathology”, 67 (4), 1986, s. 617–621, PMID: 3741778, PMCID: PMC2013050 [dostęp 2023-12-30](ang.).
Kenneth MarkK.M.CoggeshallKenneth MarkK.M. i inni, The sepsis model: an emerging hypothesis for the lethality of inhalation anthrax, „Journal of Cellular and Molecular Medicine”, 17 (7), 2013, s. 914–920, DOI: 10.1111/jcmm.12075, PMID: 23742651, PMCID: PMC3729634 [dostęp 2023-12-30](ang.).
Michel R.M.R.PopoffMichel R.M.R., HolgerH.BrüggemannHolgerH., Regulatory Networks Controlling Neurotoxin Synthesis in Clostridium botulinum and Clostridium tetani, „Toxins”, 14 (6), 2022, s. 364, DOI: 10.3390/toxins14060364, PMID: 35737025, PMCID: PMC9229411 [dostęp 2023-12-30](ang.).
TanjaT.BuchacherTanjaT. i inni, Bacillus cereus extracellular vesicles act as shuttles for biologically active multicomponent enterotoxins, „Cell Communication and Signaling”, 21 (1), 2023, DOI: 10.1186/s12964-023-01132-1, PMID: 37189133, PMCID: PMC10184354 [dostęp 2023-12-30](ang.).
XiaoyanX.ChenXiaoyanX. i inni, Circulating adipokine levels and preeclampsia: A bidirectional Mendelian randomization study, „Frontiers in Genetics”, 13, 2022, DOI: 10.3389/fgene.2022.935757, PMID: 36072663, PMCID: PMC9444139 [dostęp 2023-12-30].