Angelica Lucida

Bitki adı: Angelica Lucida
Bilimsel adı: Angelica lucida
Cins: Angelica
Familya: Apiaceae

Genel Bilgiler


Bilimsel Araştırmalar

Globally, urinary tract infections (UTIs) are one of the most frequent bacterial infections. Uropathogenic Escherichia coli (UPEC) are the predominant etiological agents causing community and healthcare-associated UTIs. Biofilm formation is an important pathogenetic mechanism of UPEC responsible for chronic and recurrent infections. The development of high levels of antimicrobial resistance (AMR) among UPEC has complicated therapeutic management. Newer antimicrobial agents are needed to tackle the increasing trend of AMR and inhibit biofilms. Heraclenol is a natural furocoumarin compound that inhibits histidine biosynthesis selectively. In this study, for the first time, we have demonstrated the antimicrobial and antibiofilm activity of heraclenol against UPEC. The drug reduced the bacterial load in the murine catheter UTI model by ≥4 logs. The drug effectively reduced bacterial loads in kidney, bladder, and urine samples. On histopathological examination, heraclenol treatment showed a reversal of inflammatory changes in the bladder and kidney tissues. It reduced the biofilm formation by 70%. The MIC value of heraclenol was observed to be high (1024 µg/mL), though the drug at MIC concentration did not have significant cytotoxicity on the Vero cell line. Further molecular docking revealed that heraclenol binds to the active site of the HisC, thereby preventing its activation by native substrate, which might be responsible for its antibacterial and antibiofilm activity. Since the high MIC of heraclenol is not achievable clinically in human tissues, further chemical modifications will be required to lower the drug's MIC value and increase its potency. Alternatively, its synergistic action with other antimicrobials may also be studied.

Makaleyi görüntüle
The family Apiaceae comprises approximately 3700 species of herbaceous plants, including important crops, aromatic herbs and field weeds. Here we report a study of 10 preserved historical or recent virus samples of apiaceous plants collected in the United Kingdom (UK) import interceptions from the Mediterranean region (Egypt, Israel and Cyprus) or during surveys of Australian apiaceous crops. Seven complete new genomic sequences and one partial sequence, of the apiaceous potyviruses apium virus Y (ApVY), carrot thin leaf virus (CaTLV), carrot virus Y (CarVY) and celery mosaic virus (CeMV) were obtained. When these 7 and 16 earlier complete non-recombinant apiaceous potyvirus sequences were subjected to phylogenetic analyses, they split into 2 separate lineages: 1 containing ApVY, CeMV, CarVY and panax virus Y and the other CaTLV, ashitabi mosaic virus and konjac virus Y. Preliminary dating analysis suggested the CarVY population first diverged from CeMV and ApVY in the 17th century and CeMV from ApVY in the 18th century. They also showed the "time to most recent common ancestor" of the sampled populations to be more recent: 1997 CE, 1983 CE and 1958 CE for CarVY, CeMV and ApVY, respectively. In addition, we found a new family record for beet western yellows virus in coriander from Cyprus; a new country record for carrot torradovirus-1 and a tentative novel member of genus Ophiovirus as a co-infection in a carrot sample from Australia; and a novel member of the genus Umbravirus recovered from a sample of herb parsley from Israel.

Makaleyi görüntüle
Indiscriminate and irrational use of antibiotics has created an unprecedented challenge for human civilization due to microbe's development of antimicrobial resistance. It is difficult to treat bacterial infection due to bacteria's ability to develop resistance against antimicrobial agents. Antimicrobial agents are categorized according to their mechanism of action, i.e., interference with cell wall synthesis, DNA and RNA synthesis, lysis of the bacterial membrane, inhibition of protein synthesis, inhibition of metabolic pathways, etc. Bacteria may become resistant by antibiotic inactivation, target modification, efflux pump and plasmidic efflux. Currently, the clinically available treatment is not effective against the antibiotic resistance developed by some bacterial species. However, plant-based antimicrobials have immense potential to combat bacterial, fungal, protozoal and viral diseases without any known side effects. Such plant metabolites include quinines, alkaloids, lectins, polypeptides, flavones, flavonoids, flavonols, coumarin, terpenoids, essential oils and tannins. The present review focuses on antibiotic resistance, the resistance mechanism in bacteria against antibiotics and the role of plant-active secondary metabolites against microorganisms, which might be useful as an alternative and effective strategy to break the resistance among microbes.

Makaleyi görüntüle
The first phytochemical investigation of the fruits of Angelica lucida has led to the isolation and characterization of five known coumarins (imperatorin, isoimperatorin, heraclenol, oxypeucedanin hydrate and heraclenin). All isolated compounds were identified by means of spectral and literature data. The extracts and the isolated constituents from A. lucida have been also evaluated for their antimicrobial activity against six Gram positive and negative bacteria, two oral pathogens and three human pathogenic fungi, exhibiting an interesting antimicrobial profile.

Makaleyi görüntüle
A novel potyvirus was discovered in Angelica lucida L. (wild celery) and A. genuflexa Nutt. (kneeling Angelica) (family Apiaceae) in the Matanuska- Susitna Valley, Alaska. The experimental plant host range of the virus included species in three families: Chenopodiaceae (Chenopodium amaranticolor Coste et Reyn and Chenopodium quinoa Willd.), Solanaceae (Nicotiana benthamiana Domin, and N. clevlandii Gray.), and Apiaceae (Anethum graveolens L., Apium graveolens L. var. dulce (Miller)), Daucus carota L. subspecies sativus (Hoffm.) Arcang., and Petroselinum crispum (Miller) Nyman ex A. W. Hilland). The virus contained flexuous rods with an ssRNA genome approximately 9.5-10 k nts and a CP ( approximately 35 kDa) that reacted to a universal potyvirus monoclonal antibody in Western blot analysis. The sequenced genomic 3'-end ( approximately 1850 nt) contained a potyvirus genomic arrangement that included the 3'-terminus of the NIb (nuclear inclusion) gene, the CP (coat protein) gene, and a 3'-UTR (untranslated region) attached to a poly(A)tail. The CP amino acids had between 54 and 70% identity with 12 selected members from the genus Potyvirus. Phylogenetically, the Alaskan potyvirus clustered with three other apiaceous potyviruses from Australia. The novel Alaskan virus was confined to A. lucida L. and A. genuflexa Nutt. in nature, and was classified in the genus Potyvirus, family Potyviridae, and in part named after its natural plant hosts, angelica virus Y (AnVY).

Makaleyi görüntüle

Kaynaklar ve Görseller

« Angelica keiskei Angelica Officinalis »