References
Almeida SCX, Monteiro AB, Costa GM, Viana GSB (2017) Himatanthus drasticus: a chemical
and pharmacological review of this medicinal species, commonly found in the Brazilian
northeastern region. Rev Bras Farmacognosia 27(6):788–793. https://doi.org/10.1016/j.bjp.
2017.10.002
Araújo ACJ, Freitas PR, Barbosa CRS, Muniz DF, Rocha JE, Silva ACA, Tintino CDMO,
Ribeiro-Filho J, Da Silva LE, Confortin C, Amaral W, Deschamps C, Barbosa-Filho JM,
Lima NTR, Tintino SR, Coutinho HDM (2020) GC-MS- FID characterization and antibacterial
activity of the Mikania cordifolia essential oil and limonene against MDR strains. Food Chem
Toxicol 136:111023. https://doi.org/10.1016/j.fct.2019.111023
Anand U, Jacobo-Herrera N, Altemimi A, Lakhssassi N (2019) A comprehensive review on
medicinal plants as antimicrobial therapeutics: potential avenues of biocompatible drug
discovery. Metabolites 9(11):258
Arumugam G, Swamy MK, Sinniah UR (2016) Plectranthus amboinicus (Lour.) Spreng:
botani-cal, phytochemical, pharmacological and nutritional significance. Molecules 21:369
Barbosa CRS, Da Silva ACA, Diodatto JS, Coutinho HDM (2018) Atividade antibacteriana e
efeito modulador do óleo essencial de Piper aduncum em associação com luz de led azul. Paper
presented at the XXI Semana de Iniciação Científica da URCA, Universidade Regional do
Cariri, 5–9 nov de 2018
Baratto LC, Hohlemwerger SVA, Guedes MLS, Duarte MR, Santos, CAM (2010) Himatanthus
lancifolius (Müll. Arg.) Woodson, Apocynaceae: estudo farmacobotânico de uma planta
medicinal da Farmacopeia brasileira 1ª edição. Revista Brasileira de Farmacognosia 20
(5):651–658. https://doi.org/10.1590/S0102-95X2010005000015
Basavegowda N, Patra JK, Baek KH (2020) Essential oils and mono/bi/tri-metallic nanocomposites as alternative sources of antimicrobial agents to combat multidrug-resistant pathogenic
microorganisms: an overview. Molecules 27; 25(5). pii: E1058. https://doi.org/10.3390/
molecules25051058
Beutler JA (2009) Natural products as a foundation for drug discovery. Curr Protocols Pharmacol
46(1):9–11
Bezerra CF, Rocha JE, Silva MKDN, de Freitas TS, de Sousa AK, Dos Santos ATL, da Cruz RP,
Ferreira MH, da Silva JCP, Machado AJT, Carneiro JNP, Sales DL, Coutinho HDM,
Ribeiro PRV, de Brito ES, Morais-Braga MFB (2018) Analysis by UPLC-MS-QTOF and
antifungal activity of guava (Psidium guajava L.). Food Chem Toxicol 119:122–132. https://
doi.org/10.1016/j.fct.2018.05.021
Bezerra JWA, Rodrigues FC, da Cruz RP, Silva LE, do Amaral W, Rebelo RA, Begnini IM,
Bezerra CF, Iriti M, Varoni EM, Coutinho HDM, Morais-Braga MFB, (2020) Antibiotic
potential and chemical composition of the essential oil of piper caldense C. DC. (Piperaceae).
Appl Sci 10(2):631. https://doi.org/10.3390/app10020631
Blair JM, Webber MA, Baylay AJ, Ogbolu DO, Piddock LJ (2015) Molecular mechanisms of
antibiotic resistance. Nat Rev Microbiol 13(1):42–51
Brooks TM, Mittermeier RA, Mittermeier CG, Da Fonseca GA, Rylands AB, Konstant WR,
Flick P, Pilgrim J, Oldfield S, Magin G, Hilton-Taylor C (2002) Habitat loss and extinction in
the hotspots of biodiversity. Conserv Biol 16(4):909–923
Brown D (2015) Antibiotic resistance breakers: can repurposed drugs fill the antibiotic discovery
void? Nat Rev Drug Discov 14(12):821–832
Budel JM, Wang M, Raman V, Zhao J, Khan SI, Rehman JU, Techen N, Tekwani B,
Monteiro LM, Heiden G, Takeda IJM, Farago PV, Khan IA (2018) Essential oils of five
Baccharis species: investigations on the chemical composition and biological activities.
Molecules 23(10):2620. https://doi.org/10.3390/molecules23102620
Calixto JB (2019) The role of natural products in modern drug discovery. An Acad Bras 552
Cienc. 91(3), e20190105. https://doi.org/10.1590/0001-3765201920190105
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