Carneiro JNP, da Cruz RP, Campina FF, Costa MDS, Dos Santos ATL, Sales DL, Bezerra CF, da
Silva LE, de Araujo JP, do Amaral W, Rebelo RA, Begnini IM, de Lima LF, Coutinho HDM,
Morais-Braga MFB (2020) GC/MS analysis and antimicrobial activity of the Piper
mikanianum (Kunth) Steud. essential oil. Food Chem Toxicol 135:110987. https://doi.org/
10.1016/j.fct.2019.110987
Chanda S, Dudhatra S, Kaneria M (2010) Antioxidative and antibacterial effects of seeds and fruit
rind of nutraceutical plants belonging to the Fabaceae family. Food Funct 1:308–315
Chanda S, Rakholiya K (2011) Combination therapy: Synergism between natural plant extracts
and antibiotics against infectious diseases. Science against microbial pathogens: communicating current research and technological advances. Microbiol Book Series 1(13):520–529
Cheesman MJ, Ilanko A, Blonk B, Cock IE (2017) Developing new antimicrobial therapies: are
synergistic combinations of plant extracts/compounds with conventional antibiotics the
solution? Pharmacogn Rev 11(22):57–72. https://doi.org/10.4103/phrev.phrev_21_17
Cowan MM (1999) Plant products as antimicrobial agents. Clin Microbiol Rev 12(4):564–582
Costa AR, Bezerra JWA, Cruz RP, de Freitas MA, da Silva VB, Neto JC, dos Santos ATL,
Braga MFBM, da Silva LA, Rocha MI, Kamdem JP, Iriti M, Vitalin, S, Duarte AE, Barros LM
(2020) In vitro antibiotic and modulatory activity of Mesosphaerum suaveolens (L.) Kuntze
against Candida strains. Antibiotics 9:46
Cruz RP, Freitas FT, Costa S, Santos L, Thassya A, Campina FF, Pereira RLS, Bezerra JWA,
Quintans-Júnior LJ, Araújo AAS, Júnior JPS, Iriti M, Varoni EM, Menezes IRA,
Coutinho HDM, Morais-Braga MFB (2020) Effect of a-Bisabolol and Its b-Cyclodextrin
complex as TetK and NorA efflux pump inhibitors in Staphylococcus aureus strains.
Antibiotics 9:1–8
Chazdon RL (2019) Towards more effective integration of tropical forest restoration and
conservation. Biotropica 51(4):463–472
De E, Basle A, Jaquinod M, Saint N, Mallea M, Molle G et al (2001) A new mechanism of
antibiotic resistance in Enterobacteriaceae induced by a structural modification of the major
porin. Mol Microbiol 41(1):189–198
Ekalu A, Ayo RGO, Habila JD, Hamisu I (2019) A mini-review on the phytochemistry and
biological activities of selected Apocynaceae plants. J Herbmed Pharmacol 8(4):269–273.
https://doi.org/10.15171/jhp.2019.39
Fazly Bazzaz BS, Khameneh B, Zahedian Ostad MR, Hosseinzadeh H (2018) In vitro evaluation
of antibacterial activity of verbascoside, lemon verbena extract and caffeine in combination
with gentamicin against drug-resistant Staphylococcus aureus and Escherichia coli clinical
isolates. Avicenna J Phytomed 8(3):246–253
Ferreira JA, Sousa Júnior DL, Marquesa AEF, Mendesa RC (2019) Phytochemical Prospection
and analysis of the antimicrobial and in vitro modulator activity of the hydroalcoolic extract of
the leaves of Senna spectabilis. Ensaios e Ciênc 23(3):262–267. https://dx.doi.org/10.17921/
1415-6938.2019v23n3p262-267
Figueiredo FRSDN, Primo AJB, Monteiro AB, Tintino RS, Delmondes GA, Sales VS,
Rodrigues CKS, Felipe CFB, Coutinho HDM, Kerntopf MR (2018) Avaliação da atividade
moduladora e citotóxica do óleo essencial das folhas de Hyptis martiusii Benth. Revista
Ciencias de la Salud, 16(1):49–58. https://dx.doi.org/10.12804/revistas.urosario.edu.co/
revsalud/a.6489
Florão A, Budel JM, Duarte MR, Marcondes A, Rodrigues RAF, Rodrigues MVN, Santos CAM,
Weffort-Santos AM (2012) Essential oils from Baccharis species (Asteraceae) have
anti-inflammatory effects for human cells. J Essent Oil Res 24:561–570
Freitas MA, Alves AIS, Andrade JC, Andrade MCL, Dos Santos ATL, de Oliveira TF, Dos
Santos F, Buonafina MDS, Coutinho HDM, de Menezes IRA, Morais-Braga MFB, Neves RP
(2019) Evaluation of the antifungal activity of the licania rigida leaf ethanolic extract against
biofilms formed by Candida sp. isolates in acrylic resin discs. Antibiotics (Basel, Switzerland)
8(4):250. https://doi.org/10.3390/antibiotics8040250
282
L. E. da Silva et al.
Silva LE, de Araujo JP, do Amaral W, Rebelo RA, Begnini IM, de Lima LF, Coutinho HDM,
Morais-Braga MFB (2020) GC/MS analysis and antimicrobial activity of the Piper
mikanianum (Kunth) Steud. essential oil. Food Chem Toxicol 135:110987. https://doi.org/
10.1016/j.fct.2019.110987
Chanda S, Dudhatra S, Kaneria M (2010) Antioxidative and antibacterial effects of seeds and fruit
rind of nutraceutical plants belonging to the Fabaceae family. Food Funct 1:308–315
Chanda S, Rakholiya K (2011) Combination therapy: Synergism between natural plant extracts
and antibiotics against infectious diseases. Science against microbial pathogens: communicating current research and technological advances. Microbiol Book Series 1(13):520–529
Cheesman MJ, Ilanko A, Blonk B, Cock IE (2017) Developing new antimicrobial therapies: are
synergistic combinations of plant extracts/compounds with conventional antibiotics the
solution? Pharmacogn Rev 11(22):57–72. https://doi.org/10.4103/phrev.phrev_21_17
Cowan MM (1999) Plant products as antimicrobial agents. Clin Microbiol Rev 12(4):564–582
Costa AR, Bezerra JWA, Cruz RP, de Freitas MA, da Silva VB, Neto JC, dos Santos ATL,
Braga MFBM, da Silva LA, Rocha MI, Kamdem JP, Iriti M, Vitalin, S, Duarte AE, Barros LM
(2020) In vitro antibiotic and modulatory activity of Mesosphaerum suaveolens (L.) Kuntze
against Candida strains. Antibiotics 9:46
Cruz RP, Freitas FT, Costa S, Santos L, Thassya A, Campina FF, Pereira RLS, Bezerra JWA,
Quintans-Júnior LJ, Araújo AAS, Júnior JPS, Iriti M, Varoni EM, Menezes IRA,
Coutinho HDM, Morais-Braga MFB (2020) Effect of a-Bisabolol and Its b-Cyclodextrin
complex as TetK and NorA efflux pump inhibitors in Staphylococcus aureus strains.
Antibiotics 9:1–8
Chazdon RL (2019) Towards more effective integration of tropical forest restoration and
conservation. Biotropica 51(4):463–472
De E, Basle A, Jaquinod M, Saint N, Mallea M, Molle G et al (2001) A new mechanism of
antibiotic resistance in Enterobacteriaceae induced by a structural modification of the major
porin. Mol Microbiol 41(1):189–198
Ekalu A, Ayo RGO, Habila JD, Hamisu I (2019) A mini-review on the phytochemistry and
biological activities of selected Apocynaceae plants. J Herbmed Pharmacol 8(4):269–273.
https://doi.org/10.15171/jhp.2019.39
Fazly Bazzaz BS, Khameneh B, Zahedian Ostad MR, Hosseinzadeh H (2018) In vitro evaluation
of antibacterial activity of verbascoside, lemon verbena extract and caffeine in combination
with gentamicin against drug-resistant Staphylococcus aureus and Escherichia coli clinical
isolates. Avicenna J Phytomed 8(3):246–253
Ferreira JA, Sousa Júnior DL, Marquesa AEF, Mendesa RC (2019) Phytochemical Prospection
and analysis of the antimicrobial and in vitro modulator activity of the hydroalcoolic extract of
the leaves of Senna spectabilis. Ensaios e Ciênc 23(3):262–267. https://dx.doi.org/10.17921/
1415-6938.2019v23n3p262-267
Figueiredo FRSDN, Primo AJB, Monteiro AB, Tintino RS, Delmondes GA, Sales VS,
Rodrigues CKS, Felipe CFB, Coutinho HDM, Kerntopf MR (2018) Avaliação da atividade
moduladora e citotóxica do óleo essencial das folhas de Hyptis martiusii Benth. Revista
Ciencias de la Salud, 16(1):49–58. https://dx.doi.org/10.12804/revistas.urosario.edu.co/
revsalud/a.6489
Florão A, Budel JM, Duarte MR, Marcondes A, Rodrigues RAF, Rodrigues MVN, Santos CAM,
Weffort-Santos AM (2012) Essential oils from Baccharis species (Asteraceae) have
anti-inflammatory effects for human cells. J Essent Oil Res 24:561–570
Freitas MA, Alves AIS, Andrade JC, Andrade MCL, Dos Santos ATL, de Oliveira TF, Dos
Santos F, Buonafina MDS, Coutinho HDM, de Menezes IRA, Morais-Braga MFB, Neves RP
(2019) Evaluation of the antifungal activity of the licania rigida leaf ethanolic extract against
biofilms formed by Candida sp. isolates in acrylic resin discs. Antibiotics (Basel, Switzerland)
8(4):250. https://doi.org/10.3390/antibiotics8040250
282
L. E. da Silva et al.
