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horse/protirakovinový

Odkaz sa uloží do schránky
Strana 1 od 194 výsledky

Radiation therapy in horses.

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Although the diagnosis of cancer is relatively uncommon in horses, tumors do occur in this species. Surgery, radiation, and chemotherapy are traditional cancer treatments in all species. In equine patients, surgery has often been the only treatment offered; however, not all tumors can be controlled

Engineering Trojan-horse bacteria to fight cancer.

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In this issue of Blood, Massa et al demonstrated that tumor-tropic bacteria engineered to express specific cancer-related antibodies can recognize and specifically destroy the malignant cells by infecting them with toxic cargo. The findings provide an essential step in establishing the novel

Periocular sarcoid in a horse.

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A periocular nodular sarcoid of the right upper and lower eyelids was diagnosed in an 11-year-old Thoroughbred mare. Computed tomography scan revealed the extent of the tumor. The mass was surgically debulked under general anesthesia, and the affected periocular region was injected intralesionally

Supramolecular "Trojan Horse" for Nuclear Delivery of Dual Anticancer Drugs.

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Nuclear delivery and accumulation are very important for many anticancer drugs that interact with DNA or its associated enzymes in the nucleus. However, it is very difficult for neutrally and negatively charged anticancer drugs such as 10-hydroxycamptothecine (HCPT). Here we report a simple strategy

Engineered Mesenchymal Stem Cells as an Anti-Cancer Trojan Horse.

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Cell-based gene therapy holds a great promise for the treatment of human malignancy. Among different cells, mesenchymal stem cells (MSCs) are emerging as valuable anti-cancer agents that have the potential to be used to treat a number of different cancer types. They have inherent migratory

COX-2 inhibitors in prostate cancer treatment--hold your horses?

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Use of the Intratumoural Anticancer Drug Tigilanol Tiglate in Two Horses

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Tigilanol tiglate is a novel small molecule approved as a veterinary pharmaceutical in Europe for intratumoural treatment of non-metastatic, non-resectable canine mast cell tumors. The drug has a "tumor agnostic" mode of action associated with induction of an acute inflammatory response at the

Immunoglobulin A: magic bullet or Trojan horse?

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BACKGROUND Neutrophils participate in the first line of defense by executing several killing mechanisms, including phagocytosis, degranulation and the release of neutrophil extracellular traps. Additionally, they can orchestrate the adaptive immune system by secreting cytokines and chemokines.

[Comparative studies on serological properties of anti-cancer horse serum fractions].

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Senescence and NFκB: A trojan horse in tumors?

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The induction of senescence in tumor cells impairs transformation and promotes an anticancer immune response resulting from the production by senescent cells of cytokines and chemokines, an aspect known as "senescence-associated secretory phenotype" (SASP). Here we discuss recent findings regarding

Oncology's Trojan Horse: Using Viruses to Battle Cancer.

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In 2016, the American health care system was faced with more than 1.6 million new cases of cancer, and individuals older than 65 years of age will be affected disproportionately. Many older individuals are poor candidates for traditional treatments (e.g., chemotherapy, radiation) because of actual

Trojan Horse nanotheranostics with dual transformability and multifunctionality for highly effective cancer treatment.

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Nanotheranostics with integrated diagnostic and therapeutic functions show exciting potentials towards precision nanomedicine. However, targeted delivery of nanotheranostics is hindered by several biological barriers. Here, we report the development of a dual size/charge- transformable, Trojan-Horse
Betulinic acid, a pentacyclic triterpene, and its derivatives are promising compounds for cancer treatment in humans. Melanoma is not only a problem for humans but also for grey horses as they have a high potential of developing melanoma lesions coupled to the mutation causing their phenotype.

Trojan horse at cellular level for tumor gene therapies.

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Among innovative strategies developed for cancer treatments, gene therapies stand of great interest despite their well-known limitations in targeting, delivery, toxicity or stability. The success of any given gene-therapy is highly dependent on the carrier efficiency. New approaches are often

MicroRNA-A Tumor Trojan Horse for Tumor-Associated Macrophages.

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MicroRNAs (miRs) significantly contribute to the regulation of gene expression, by virtue of their ability to interact with a broad, yet specific set of target genes. MiRs are produced and released by almost every cell type and play an important role in horizontal gene regulation in the tumor
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