Sanford Antibiotic Guide 2012 Free Download Pdf

 

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'St John's wort' redirects here. For other uses, see. Hypericum perforatum Kingdom: Clade: Clade: Clade: Order: Family: Genus: Species: H. perforatum Hypericum perforatum Hypericum perforatum, known as perforate St John's-wort, common Saint John's wort and St John's wort, is a in the family.

The common name 'St John's wort' may be used to refer to any species of the genus. Therefore, Hypericum perforatum is sometimes called 'common St John's wort' or 'perforate St John's wort' to differentiate it.

It is a with activity and anti-inflammatory properties as an and inhibitor. Translucent dots of glandular tissue on the leaves Hypericum perforatum is native to parts of Europe and Asia but has spread to temperate regions worldwide as a. The common name 'St John's wort' comes from its traditional flowering and harvesting on, 24 June. The name Hypericum is derived from the words hyper (above) and eikon (picture), in reference to the tradition of hanging plants over religious in the home during St John's Day, to ward off evil. Perforate St John's wort is a with extensive, creeping. Its stems are erect, branched in the upper section, and can grow to 1 m high.

It has, narrow, oblong leaves that are 1–2 cm long.: 176 The leaves are yellow-green in color, with scattered translucent dots of glandular tissue. The dots are conspicuous when held up to the light, giving the leaves the 'perforated' appearance to which the plant's name refers. The flowers measure up to 2.5 cm across, have five petals, and are colored bright yellow with conspicuous black dots.: 339 The flowers appear in broad at the ends of the upper branches, between late spring and early to mid summer. The are pointed, with black glandular dots. There are many, which are united at the base into three bundles.

The pollen grains are. When flower buds (not the flowers themselves) or seed pods are crushed, a reddish/purple liquid is produced. This section needs additional citations for. Unsourced material may be challenged and removed. (January 2017) St John's wort reproduces both vegetatively and sexually. It thrives in areas with either a winter- or summer-dominant rainfall pattern; however, distribution is restricted by temperatures too low for seed germination or seedling survival.

Altitudes greater than 1500 m, rainfall less than 500 mm, and a daily mean temperature greater than 24 °C are considered limiting thresholds. Depending on environmental and climatic conditions, and rosette age, St John's wort will alter growth form and habit to promote survival. Summer rains are particularly effective in allowing the plant to grow vegetatively, following defoliation by insects or grazing.

The seeds can persist for decades in the, germinating following disturbance. Invasive species Although Hypericum perforatum is grown commercially in some regions of south east Europe, it is listed as a in more than twenty countries and has introduced populations in South and North America, and South Africa. In pastures, St John's wort acts as both a toxic and invasive weed. It replaces and vegetation to the extent of making productive land nonviable or becoming an in natural and. Ingestion by livestock such as horses, sheep, and cattle can cause photosensitization, central nervous system depression, spontaneous abortion or death. Effective herbicides for control of Hypericum include, picloram, and. In western three beetles, and have been introduced as agents.

Blossom Medical uses Common St. John's-wort has long been used in. It was known to have medical properties in and was a standard component of, from the of ' De Medicina (ca. 30 ) to the of d'Amsterdammer Apotheek in 1686.

Folk usages included oily extract ('St. John's oil') and Hypericum. Hypericum perforatum is the most potent species and it is today grown commercially for use in herbalism and. Two main compounds of interest have been studied in more detail: and.

As, it is usually taken as pills, or as tea. Standardised preparations are available, and research has mainly studied alcoholic extracts and isolated compounds.

What research data exists supports a noticeable effect in many cases of light and medium, but no significant improvement of severe depression and. The red, oily extract of H. perforatum may help heal wounds. Both hypericin and hyperforin are reported to have antibiotic properties. Justifying this view with the then-current, William Coles (1626–1662) wrote in the 17th century that: 'The little holes where of the leaves of Saint Johns wort are full, doe resemble all the pores of the skin and therefore it is profitable for all hurts and wounds that can happen thereunto.' Hypericum perforatum may also be capable of reducing the physical signs of opiate withdrawal.

Hypericum extract, by inducing both the and the (P-gp), can reduce the plasma concentrations of different agents such as, and, thus reducing the clinical efficacy of these drugs. Major depressive disorder Some studies have supported the efficacy of St John's wort as a treatment for in humans, but have not concluded it as a replacement for more studied treatments, and proper medical consultation.

A 2015 meta-analysis review concluded that it has superior efficacy to placebo in treating depression; is as effective as standard antidepressant pharmaceuticals for treating depression; and has fewer adverse effects than other antidepressants. The authors concluded that it is difficult to assign a place for St. John's wort in the treatment of depression owing to limitations in the available evidence base, including large variations in efficacy seen in trials performed in German-speaking relative to other countries. It is proposed that the mechanism of action of St.

John's wort is due to the inhibition of reuptake of certain neurotransmitters. A 2008 of 29 clinical trials concluded that it was superior to in patients with, as effective as standard antidepressants and had fewer side-effects. According to the National Center for Complementary and Integrative Health (NCCIH) of the, it 'may help some types of depression, though the evidence is not definitive'; can limit the efficacy of prescription medicines; and can occur as a rare side effect. The NCCIH notes that combining St John's wort with certain prescription antidepressants can lead to a ', a brain chemical targeted by antidepressants. A 2016 review came to the same conclusions as the 2008 Cochrane review, but noted that the quality of evidence in regards to both effectiveness and incidence of adverse effects was reduced relative to that for conventional antidepressants.

John's wort is sometimes prescribed for mild to moderate depression, especially in children and adolescents. Side effects St John's wort is generally well tolerated, with an adverse effect profile similar to. Commonly reported adverse effects include gastrointestinal symptoms (, and ), and. The organ systems associated with adverse drug reactions to St John's wort and (an SSRI) have a similar incidence profile; most of these reactions involve the. St John's wort also decreases the levels of, such as, by speeding up its metabolism, and should not be taken by women on as it upregulates the CYP3A4 cytochrome of the system in the. St John's wort may cause. This can lead to visual sensitivity to light and to sunburns in situations that would not normally cause them.

This photosensitivity could lead to cataracts as well as sunburn. Product labeling often recommends avoidance of ultraviolet light exposure. St John's wort is associated with aggravating in people who have.

Interactions St. John's wort has interactions with medications such as, and.

Combining both St John's wort and SSRI antidepressants could lead to increased serotonin levels causing. It should not be taken with the heart medication,. Combining estrogen containing oral contraceptives with St John's wort can lead to decreased efficacy of the contraceptive and eventually unplanned pregnancies. John's wort has been known to decrease the blood concentrations of immunosuppressants ( & ), sedatives ( & ), anticoagulants , chemotherapy drugs and other medications. These are just a few of the drug interactions that St John's wort possesses.

2012

It is also known to decrease the efficacy of HIV medications, cholesterol medications, as well as transplant medications. Consumption of St.

John's wort is discouraged for those with. There is concern that people with bipolar depression taking St. John's wort may be at a higher risk for mania.

Sanford Antibiotic Guide 2012 Free Download Pdf

Pharmacokinetic St John's wort has been shown to cause multiple drug interactions through of the enzymes and. This drug-metabolizing enzyme induction results in the increased metabolism of certain drugs, leading to decreased plasma concentration and potential clinical effect.

The principal constituents thought to be responsible are and. There is strong evidence that the mechanism of action of these interactions is activation of the. St John's wort has also been shown to cause drug interactions through the of the efflux transporter. Increased P-glycoprotein expression results in decreased absorption and increased clearance of certain drugs, leading to lower plasma concentrations and impaired clinical efficacy. Examples of drugs whose effectiveness may be reduced by St. John's wort Class Drugs, (cholesterol-reducing medications), Others, Reference: Rossi, 2005; For a complete list, see and.

Pharmacodynamic In combination with other drugs that may elevate (serotonin) levels in the (CNS), St John's wort may contribute to, a potentially life-threatening adverse drug reaction. Drugs that may contribute to serotonin syndrome with St John's wort Class Drugs, (meperidine), CNS, agonists Psychedelic drugs (MDMA), (DMT), Others, Reference: Mechanism of action St. John's wort, similarly to other herbs, contains a whole host of different chemical constituents that may be pertinent to its therapeutic effects. And, two constituents of St John's wort, are and, consequently, they induce of (specifically, and ), and when they activate this. In humans, the active ingredient is also an inhibitor of, and an inducer of. Hyperforin is also a compound with, and properties. Hyperforin also has an antagonistic effect on, a type of glutamate receptor.

Moreover, St John's wort is known to the and postsynaptic and receptors, both of which are a type of. Other compounds may also play a role in St John's wort's antidepressant effects. Such compounds include:, , and pseudohypericin. In brackets is the IC 50/EC 50 value depending on whether it is an inhibitory or inductive action being exhibited, respectively. As with last note. As with last note.

As with last note. As with last note. Values given in brackets are IC 50/EC 50 depending on whether it's an inhibitory or inductive action the compound displays towards the biologic target in question. If it pertains to bacterial growth inhibition the value is MIC 50. Depends on the time frame: short-term administration causes inhibition; long-term causes induction via PXR Livestock Poisoning In large doses, St John's wort is to grazing (cattle, sheep, goats, horses). Behavioural signs of poisoning are general restlessness and skin irritation. Restlessness is often indicated by pawing of the ground, head rubbing, and occasional hindlimb weakness with knuckling over, panting, confusion, and depression.

Mania and hyperactivity may also result, including running in circles until exhausted. Observations of thick wort infestations by Australian graziers include the appearance of circular patches giving hillsides a 'crop circle' appearance, it is presumed, from this phenomenon. Animals typically seek shade and have reduced appetite. Hypersensitivity to water has been noted, and convulsions may occur following a knock to the head. Although general aversion to water is noted, some may seek water for relief.

Severe skin irritation is physically apparent, with reddening of non-pigmented and unprotected areas. This subsequently leads to itch and rubbing, followed by further inflammation, and scab formation. Lesions and inflammation that occur are said to resemble the conditions seen in. Sheep have been observed to have face swelling, dermatitis, and wool falling off due to rubbing. Lactating animals may cease or have reduced milk production; pregnant animals may. Lesions on are often apparent. Horses may show signs of, (with a comatose state), dilated pupils, and injected.

Diagnosis Increased respiration and heart rate is typically observed while one of the early signs of St John's wort poisoning is an abnormal increase in body temperature. Affected animals will lose weight, or fail to gain weight; young animals are more affected than old animals. In severe cases death may occur, as a direct result of starvation, or because of secondary disease or of lesions. Some affected animals may accidentally drown. Poor performance of suckling lambs (pigmented and non-pigmented) has been noted, suggesting a reduction in the milk production, or the transmission of a toxin in the milk. Photosensitisation Most clinical signs in animals are caused.

Plants may induce either primary or secondary photosensitisation:. primary photosensitisation directly from chemicals contained in ingested plants. secondary photosensitisation from plant-associated damage to the liver. Araya and Ford (1981) explored changes in liver function and concluded there was no evidence of Hypericum-related effect on the excretory capacity of the liver, or any interference was minimal and temporary. However, evidence of liver damage in blood plasma has been found at high and long rates of dosage. Photosensitisation causes skin inflammation by a mechanism involving a pigment or photodynamic compound, which when activated by a certain wavelength of light leads to reactions.

This leads to lesions of tissue, particularly noticeable on and around parts of skin exposed to light. Lightly covered or poorly areas are most conspicuous. Removal of affected animals from sunlight results in reduced symptoms of poisoning. Chemistry Detection in body fluids , pseudohypericin, and may be quantitated in plasma as confirmation of usage and to estimate the dosage.

These three active substituents have plasma elimination half-lives within a range of 15–60 hours in humans. None of the three has been detected in urine specimens. Chemical constituents. Chemical structure of The plant contains the following:. (e.g., biapigenin, ). (e.g., ).

(e.g., pseudohypericin, protohypericin, protopseudohypericin). (e.g., ). (unspecified, proanthocyanidins reported).

(e.g. 2-methyloctane, 2-methyldecane, ). (e.g. (3-methylbutanoic acid), ).

(e.g., ). & their analogues (e.g., ).

Miscellaneous others (e.g., kielcorin, norathyriol) The naphthodianthrones hypericin and pseudohypericin along with the phloroglucinol derivative hyperforin are thought to be among the numerous active constituents. It also contains essential oils composed mainly of. Norathyriol Research St John's wort is being studied for effectiveness in the treatment of certain.

Results from the initial studies are mixed and still inconclusive; some research has found no effectiveness, other research has found a slight lightening of symptoms. Further study is needed and is being performed. A major constituent chemical, may be useful for treatment of, although dosage, safety and efficacy have not been studied. Hyperforin has also displayed antibacterial properties against, although dosage, safety and efficacy has not been studied. Has also employed lipophilic extracts from St John's wort as a topical remedy for wounds, abrasions, burns, and.

The positive effects that have been observed are generally attributed to hyperforin due to its possible antibacterial and anti-inflammatory effects. For this reason hyperforin may be useful in the treatment of infected wounds and inflammatory skin diseases. In response to hyperforin's incorporation into a new bath oil, a study to assess potential skin irritation was conducted which found good skin tolerance of St John's wort. Hypericin and pseudohypericin have shown both antiviral and antibacterial activities. It is believed that these molecules bind non-specifically to viral and cellular membranes and can result in photo-oxidation of the pathogens to kill them. Concentrations of bioactive substances can be altered by regulating the environment during plant growth like different levels of UV-B radiation, for instance. Multiple studies have examined whether St John's wort improves some aspects of cognitive performance.

Most studies have focused on the effect in rodents. A recent meta-analysis of 13 animal studies shows that administration of St John's wort improved performance in maze tasks in rodents (assessing long term or working memory). This meta-analysis also demonstrated that the cognitive enhancing effect, while stronger for rodents who had been subjected to stress impairments, was also considerable in healthy rodents. No study in humans has yet demonstrated such nootropic effects. See also.

US National Institute of Health - National Center for Complementary and Integrative Health. Notes.