347
Patterson GM, Larsen LK, Moore RE (1994) Bioactive natural products from blue green algae.
J Appl Phycol 6:151–157
Perdicaris S, Vlachogianni T, Valavanidis A (2013) Bioactive natural substances from marine
sponges: new developments and prospects for future pharmaceuticals. Nat Prod Chem Res
1:114
Pereira H, Leão-Ferreira LR, Moussatché N, Teixeira VL, Cavalcanti DN, Costa LJ, Diaz R,
Frugulhetti IC (2004) Antiviral activity of diterpenes isolated from the Brazilian marine alga
Dictyota menstrualis against human immunodeficiency virus type 1 (HIV-1). Antivir Res
64:69–76
Perumal Samy R, Gopalakrishnakone P, Thwin MM, Chow TK, Bow H, Yap EH, Thong TW
(2007) Antibacterial activity of snake, scorpion and bee venoms: a comparison with purified
venom phospholipase A2 enzymes. J Appl Microbiol 102:650–659
Phillips K, Zaidan F, Elizondo OR, Lowe KL (2012) Phenotypic characterization and 16S rDNA
identification of culturable non-obligate halophilic bacterial communities from a hypersaline
lake, La Sal del Rey, in extreme South Texas (USA). Aquat Biosyst 8:1–11
Piddock LJ (2015) Teixobactin, the first of a new class of antibiotics discovered by iChip technology? J Antimicrob Chemother 70:2679–2680
Pietra F (1997) Secondary metabolites from marine microorganisms: bacteria, protozoa, algae and
fungi. Achievements and prospects. Nat Prod Rep 14:453–464
Pinheiro Da Silva F, MacHado MCC (2012) Antimicrobial peptides: clinical relevance and therapeutic implications. Peptides 36:308–314
Plaza A, Gustchina E, Baker HL, Kelly M, Bewley CA (2007) Mirabamides A–D, depsipeptides
from the sponge Siliquariaspongia mirabilis that inhibit HIV-1 fusion. J Nat Prod
70:1753–1760
Prabuseenivasan S, Jayakumar M, Ignacimuthu S (2006) In vitro antibacterial activity of some
plant essential oils. BMC Complement Altern Med 6:1
Qu XM, Steiner H, Engstrom A, Bennich H, Boman HG (1982) Insect immunity: isolation and
structure of cecropins B and D from pupae of the Chinese Oak silk moth, Antheraea Pernyi. Eur
J Biochem 127(1):219–224
Ramadhar TR, Beemelmanns C, Currie CR, Clardy J (2014) Bacterial symbionts in agricultural
systems provide a strategic source for antibiotic discovery. J Antibiot 67:53–58
Ramasamy MS, Murugan A (2005) Potential antimicrobial activity of marine mollusks from tuticorin, southeast coast of India against 40 biofilm bacteria. J Shellfish Res 24:243–251
Rashid MA, Gustafson KR, Cartner LK, Shigematsu N, Pannell LK, Boyd MR (2001)
Microspinosamide, a new HIV-inhibitory cyclic depsipeptide from the marine sponge Sidonops
microspinosa. J Nat Prod 64:117–121
Rauha JP, Remes S, Heinonen M, Hopia A, Kähkönen M, Kujala T, Pihlaja K, Vuorela H, Vuorela
P (2000) Antimicrobial effects of Finnish plant extracts containing flavonoids and other phenolic compounds. Int J Food Microbiol 56:3–12
Ravot G, Masson JM, Lefèvre F (2006) 34 applications of extremophiles: the industrial screening
of extremophiles for valuable biomolecules. Methods Microbiol 35:785–813
Rudi A, Yosief T, Loya S, Hizi A, Schleyer M, Kashman Y (2001) Clathsterol, a novel anti-HIV-1
RT sulfated sterol from the sponge Clathria species. J Nat Prod 64:1451–1453
Rule D, Cheeptham N (2013) The effects of UV light on the antimicrobial activities of cave actinomycetes. Int J Speleol 42:147–153
Saeed A, Hayek RG, SAI (2013) Antimicrobial natural products. In: Méndez-Vilas A (ed)
Microbial pathogens and strategies for combating them. Formatex Research Center, Badajoz,
pp 910–921
Sagar S, Kaur M, Minneman KP (2010) Antiviral lead compounds from marine sponges. Mar
Drugs 8:2619–2638
Saleem M, Nazir M, Ali MS, Hussain H, Lee YS, Riaz N, Jabbar A (2010) Antimicrobial natural
products: an update on future antibiotic drug candidates. Nat Prod Rep 27:238–254
Salim A, Chin Y, Kinghorn A (2008) Drug discovery from plants. In: Ramawat KG, Mérillon JM
(eds) Bioactive molecules and medicinal plants. Springer, Heidelberg, pp 1–25
13 Novel Sources of Antimicrobials
Patterson GM, Larsen LK, Moore RE (1994) Bioactive natural products from blue green algae.
J Appl Phycol 6:151–157
Perdicaris S, Vlachogianni T, Valavanidis A (2013) Bioactive natural substances from marine
sponges: new developments and prospects for future pharmaceuticals. Nat Prod Chem Res
1:114
Pereira H, Leão-Ferreira LR, Moussatché N, Teixeira VL, Cavalcanti DN, Costa LJ, Diaz R,
Frugulhetti IC (2004) Antiviral activity of diterpenes isolated from the Brazilian marine alga
Dictyota menstrualis against human immunodeficiency virus type 1 (HIV-1). Antivir Res
64:69–76
Perumal Samy R, Gopalakrishnakone P, Thwin MM, Chow TK, Bow H, Yap EH, Thong TW
(2007) Antibacterial activity of snake, scorpion and bee venoms: a comparison with purified
venom phospholipase A2 enzymes. J Appl Microbiol 102:650–659
Phillips K, Zaidan F, Elizondo OR, Lowe KL (2012) Phenotypic characterization and 16S rDNA
identification of culturable non-obligate halophilic bacterial communities from a hypersaline
lake, La Sal del Rey, in extreme South Texas (USA). Aquat Biosyst 8:1–11
Piddock LJ (2015) Teixobactin, the first of a new class of antibiotics discovered by iChip technology? J Antimicrob Chemother 70:2679–2680
Pietra F (1997) Secondary metabolites from marine microorganisms: bacteria, protozoa, algae and
fungi. Achievements and prospects. Nat Prod Rep 14:453–464
Pinheiro Da Silva F, MacHado MCC (2012) Antimicrobial peptides: clinical relevance and therapeutic implications. Peptides 36:308–314
Plaza A, Gustchina E, Baker HL, Kelly M, Bewley CA (2007) Mirabamides A–D, depsipeptides
from the sponge Siliquariaspongia mirabilis that inhibit HIV-1 fusion. J Nat Prod
70:1753–1760
Prabuseenivasan S, Jayakumar M, Ignacimuthu S (2006) In vitro antibacterial activity of some
plant essential oils. BMC Complement Altern Med 6:1
Qu XM, Steiner H, Engstrom A, Bennich H, Boman HG (1982) Insect immunity: isolation and
structure of cecropins B and D from pupae of the Chinese Oak silk moth, Antheraea Pernyi. Eur
J Biochem 127(1):219–224
Ramadhar TR, Beemelmanns C, Currie CR, Clardy J (2014) Bacterial symbionts in agricultural
systems provide a strategic source for antibiotic discovery. J Antibiot 67:53–58
Ramasamy MS, Murugan A (2005) Potential antimicrobial activity of marine mollusks from tuticorin, southeast coast of India against 40 biofilm bacteria. J Shellfish Res 24:243–251
Rashid MA, Gustafson KR, Cartner LK, Shigematsu N, Pannell LK, Boyd MR (2001)
Microspinosamide, a new HIV-inhibitory cyclic depsipeptide from the marine sponge Sidonops
microspinosa. J Nat Prod 64:117–121
Rauha JP, Remes S, Heinonen M, Hopia A, Kähkönen M, Kujala T, Pihlaja K, Vuorela H, Vuorela
P (2000) Antimicrobial effects of Finnish plant extracts containing flavonoids and other phenolic compounds. Int J Food Microbiol 56:3–12
Ravot G, Masson JM, Lefèvre F (2006) 34 applications of extremophiles: the industrial screening
of extremophiles for valuable biomolecules. Methods Microbiol 35:785–813
Rudi A, Yosief T, Loya S, Hizi A, Schleyer M, Kashman Y (2001) Clathsterol, a novel anti-HIV-1
RT sulfated sterol from the sponge Clathria species. J Nat Prod 64:1451–1453
Rule D, Cheeptham N (2013) The effects of UV light on the antimicrobial activities of cave actinomycetes. Int J Speleol 42:147–153
Saeed A, Hayek RG, SAI (2013) Antimicrobial natural products. In: Méndez-Vilas A (ed)
Microbial pathogens and strategies for combating them. Formatex Research Center, Badajoz,
pp 910–921
Sagar S, Kaur M, Minneman KP (2010) Antiviral lead compounds from marine sponges. Mar
Drugs 8:2619–2638
Saleem M, Nazir M, Ali MS, Hussain H, Lee YS, Riaz N, Jabbar A (2010) Antimicrobial natural
products: an update on future antibiotic drug candidates. Nat Prod Rep 27:238–254
Salim A, Chin Y, Kinghorn A (2008) Drug discovery from plants. In: Ramawat KG, Mérillon JM
(eds) Bioactive molecules and medicinal plants. Springer, Heidelberg, pp 1–25
13 Novel Sources of Antimicrobials
