Havlıcan

Bitki adı: Lesser Galangal, rhizome
Bilimsel adı: Alpinia officinarum
Cins: Alpinia
Familya: Zingiberaceae
Diğer adları: Lesser Galangal

Alpinia officinarum

Genel Bilgiler


Duke – Ethnobotany

Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Eb30: 318
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Hartwell
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Eb30: 318
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Eb30: 318
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Tackholm
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke

Bilimsel Araştırmalar

Proliferative diabetic retinopathy (PDR) the sequel of diabetic retinopathy (DR), a frequent complication of diabetes mellitus (DM), is the leading cause of blindness in the working-age population. The current screening process for the DR risk is not sufficiently effective such that often the disease is undetected until irreversible damage occurs. Diabetes-associated small vessel disease and neuroretinal changes create a vicious cycle resulting in the conversion of DR into PDR with characteristic ocular attributes including excessive mitochondrial and retinal cell damage, chronic inflammation, neovascularisation, and reduced visual field. PDR is considered an independent predictor of other severe diabetic complications such as ischemic stroke. A "domino effect" is highly characteristic for the cascading DM complications in which DR is an early indicator of impaired molecular and visual signaling. Mitochondrial health control is clinically relevant in DR management, and multi-omic tear fluid analysis can be instrumental for DR prognosis and PDR prediction. Altered metabolic pathways and bioenergetics, microvascular deficits and small vessel disease, chronic inflammation, and excessive tissue remodelling are in focus of this article as evidence-based targets for a predictive approach to develop diagnosis and treatment algorithms tailored to the individual for a cost-effective early prevention by implementing the paradigm shift from reactive medicine to predictive, preventive, and personalized medicine (PPPM) in primary and secondary DR care management.

Makaleyi görüntüle
In recent decades, chemotherapies targeting apoptosis have emerged and demonstrated remarkable achievements. However, emerging evidence has shown that chemoresistance is mediated by impairing or bypassing apoptotic cell death. Several novel types of programmed cell death, such as ferroptosis, necroptosis, and pyroptosis, have recently been reported to play significant roles in the modulation of cancer progression and are considered a promising strategy for cancer treatment. Thus, the switch between apoptosis and pyroptosis is also discussed. Cancer immunotherapy has gained increasing attention due to breakthroughs in immune checkpoint inhibitors; moreover, ferroptosis, necroptosis, and pyroptosis are highly correlated with the modulation of immunity in the tumor microenvironment. Compared with necroptosis and ferroptosis, pyroptosis is the primary mechanism for host defense and is crucial for bridging innate and adaptive immunity. Furthermore, recent evidence has demonstrated that pyroptosis exerts benefits on cancer immunotherapies, including immune checkpoint inhibitors (ICIs) and chimeric antigen receptor T-cell therapy (CAR-T). Hence, in this review, we elucidate the role of pyroptosis in cancer progression and the modulation of immunity. We also summarize the potential small molecules and nanomaterials that target pyroptotic cell death mechanisms and their therapeutic effects on cancer.

Makaleyi görüntüle
Tyrosinase is a multi-copper enzyme which is widely distributed in different organisms and plays an important role in the melanogenesis and enzymatic browning. Therefore, its inhibitors can be attractive in cosmetics and medicinal industries as depigmentation agents and also in food and agriculture industries as antibrowning compounds. For this purpose, many natural, semi-synthetic and synthetic inhibitors have been developed by different screening methods to date. This review has focused on the tyrosinase inhibitors discovered from all sources and biochemically characterised in the last four decades.

Makaleyi görüntüle
Diabetes mellitus is one of the major health problems in the world, the incidence and associated mortality are increasing. Inadequate regulation of the blood sugar imposes serious consequences for health. Conventional antidiabetic drugs are effective, however, also with unavoidable side effects. On the other hand, medicinal plants may act as an alternative source of antidiabetic agents. Examples of medicinal plants with antidiabetic potential are described, with focuses on preclinical and clinical studies. The beneficial potential of each plant matrix is given by the combined and concerted action of their profile of biologically active compounds.

Makaleyi görüntüle
Cancer prevention and treatment using traditional Chinese medicines have attracted increasing interest. This study characterizes antioxidant activity and phenolic compounds of traditional Chinese medicinal plants associated with anticancer, comprising 112 species from 50 plant families. The improved ABTS(*+) method was used to systematically assess the total antioxidant capacity (Trolox equivalent antioxidant capacity, TEAC) of the medicinal extracts. The TEAC values and total phenolic content for methanolic extracts of herbs ranged from 46.7 to 17,323 micromol Trolox equivalent/100 g dry weight (DW), and from 0.22 to 50.3 g of gallic acid equivalent/100 g DW, respectively. A positive, significant linear relationship between antioxidant activity and total phenolic content (all R(2) values>/=0.95) showed that phenolic compounds were the dominant antioxidant components in the tested medicinal herbs. Major types of phenolic compounds from most of the tested herbs were preliminarily identified and analyzed, and mainly included phenolic acids, flavonoids, tannins, coumarins, lignans, quinones, stilbenes, and curcuminoids. These medicinal herbs exhibited far stronger antioxidant activity and contained significantly higher levels of phenolics than common vegetables and fruits. Traditional Chinese medicinal plants associated with anticancer might be potential sources of potent natural antioxidants and beneficial chemopreventive agents.

Makaleyi görüntüle

Kaynaklar ve Görseller

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