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phyllanthus favieri/neoplasms

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OBJECTIVE To investigate the cytotoxic effects of spray-dried extracts of Phyllanthus niruri in combination with cisplatin on two cancer cell lines. METHODS Colorectal carcinoma (HT29) and human hepatocellular carcinoma (HepG2) cells were treated with spray-dried extracts of Phyllanthus niruri
BACKGROUND The aim of this study is to investigate the effects of polyphenol extract from Phyllanthus emblica (PEEP) on cervical cancer cells and to explore the underlying mechanism. METHODS MTT assay was used to measure inhibition of proliferation of cervical cancer (HeLa) cells after treatment
Phyllanthus amarus is widely grown in this sub-continent and used traditionally to treat many common ailments. In the present study, lignan rich fraction of P. amarus extract was used on cervical cancer cell lines (HeLa, SiHa and C33A) to study it's mechanism of cell death induction. As the cells
OBJECTIVE To examine the growth inhibitory effects of Phyllanthus emblica (P. emblica) and Terminalia bellerica (T. bellerica) extracts on human hepatocellular carcinoma (HepG2), and lung carcinoma (A549) cells and their synergistic effect with doxorubicin or cisplatin. METHODS HepG2 and A549 cells
Aim: Present work was undertaken to fabricate iron oxide nanoparticles (IONPs) using a green approach for increased therapeutic efficacy. Materials & methods: Two types of IONPs were synthesized, one without any coating (IONPUC) and other coated with Phyllanthus
The aim of this study was to assess cytotoxic activity of extracts and fractions from the Paramignya trimera root (PTR) and Phyllanthus amarus (PA) against two pancreatic cancer cell lines (primary: BxPc3 and secondary: CFPAC1).The root of PT and whole
OBJECTIVE The present study was performed to investigate the effect of Phyllanthus amarus extracts on serum biochemical changes in azaserine induced pancreatic cancer in Wistar rats. METHODS Pancreatic cancer was developed in Wistar rats by intraperitoneal administration of azaserine (cancer
The present study evaluates the modulatory potential of Phyllanthus niruri on chemically induced skin carcinogenesis, and its influence on oxidative stress and the antioxidant defense system. Oral administration of P. niruri extract (PNE), during peri- (Gr. III), post- (Gr. IV), or peri- and post-
Background: The anticancer effects of Phyllanthus amarus extract on various cancer cells have been investigated, however, effect of its major constituents on HCT116 human colorectal cancer cells has not been reported.
BACKGROUND Dendritic cells (DCs) are unique antigen presenting cells (APC) which play a pivotal role in immunotherapy and induction of an effective immune response against tumors. In the present study, 80% ethanol extract of Phyllanthus amarus was used to generate tumor lysate (TLY) derived from HCT

Chlorinated englerins with selective inhibition of renal cancer cell growth.

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The chlorinated englerins (3-9) were isolated from Phyllanthus engleri and shown to selectively inhibit the growth of renal cancer cells. The compounds were shown to be extraction artifacts produced by exposure to chloroform decomposition products during their isolation. The most active compound, 3,
Phyllanthus emblica Linn. (PE) is a medicinal fruit used in many Asian traditional medicine systems for the treatment of various diseases including cancer. The present study tested the potential anticancer effects of aqueous extract of PE in four ways: (1) against cancer cell lines, (2) in vitro
Chemoprevention is an important strategy to control the process of carcinogenesis. The potential of using medicinal herbs as cancer chemopreventive nutraceuticals and functional food is promising. Thus, there is a need for exploring drugs/agents which act as chemopreventive agents. Phyllanthus
Four known lupane-type triterpenoids, glochidonol (1), glochidiol (2), lup-20(29)-ene-1beta,3beta-diol (3) and glochidone (3) were isolated from the stem bark of Glochidion zeylanicum. Previously, lupeol (5), lup-20(29)-ene-3beta,24-diol (6) and betulin (7) were isolated from the stem bark of
We identified that corilagin is a major component extracted from a well-known hepatoprotective and antiviral medicinal herb, Phyllanthus niruri L with antitumor activity. Our previous study found that corilagin inhibited the growth of ovarian cancer cells via the TGF-β/AKT/ERK signaling pathways.
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