The diagnosis and treatment of cancer are sources of considerable psychological stress for patients and their families. Although treatments have become increasingly effective for a wide range of cancers, the initial diagnosis still involves a threat of loss of life for many patients. Even in those cases in which the prognosis for survival is good, there may be the threat of the loss of some significant aspect of personal functioning, damage to physical appearance, or loss of physical functioning (e.g., Heinrich, Schag, & Ganz, 1984). In addition to its importance in its own right, the diagnosis of cancer represents a prototype of acute, extreme stress that confronts many families. A necessary first step in research on stressors such as cancer is to document levels of psychological distress and identify individual differences among family members in order to set the stage for subsequent research on the processes that may contribute to distress.Cancer appears to present at least a short-term threat or crisis to patients, as reflected in increased symptoms of depression and anxiety near the time of diagnosis (e.g., Andersen, Andersen,
Activation of the coagulation cascade is commonly observed in the lungs of patients with both acute and chronic inflammatory and fibrotic lung disorders, as well as in animal models of these disorders. The aim of this study was to examine the contribution of the major thrombin receptor, proteinase-activated receptor-1 (PAR-1), during the acute inflammatory and chronic fibrotic phases of lung injury induced by intratracheal instillation of bleomycin in mice. Inflammatory cell recruitment and increases in bronchoalveolar lavage fluid (BALF) protein were attenuated by 56 +/- 10% (P < 0.05) and 53 +/- 12% (P < 0.05), respectively, in PAR-1-deficient (PAR-1-/-) mice compared with wild-type (WT) mice. PAR-1-/- mice were also protected from bleomycin-induced pulmonary fibrosis with total lung collagen accumulation reduced by 59 +/- 5% (P < 0.05). The protection afforded by PAR-1 deficiency was accompanied by significant reductions in pulmonary levels of the potent PAR-1-inducible proinflammatory and profibrotic mediators, monocyte chemoattractant protein-1 (MCP-1), transforming growth factor-beta-1 (TGF-beta1), and connective tissue growth factor/fibroblast-inducible secreted protein-12 (CTGF/FISP12). In addition, PAR-1 was highly expressed in inflammatory and fibroproliferative lesions in lung sections obtained from patients with fibrotic lung disease. These data show for the first time that PAR-1 signaling plays a key role in experimentally induced lung injury, and they further identify PAR-1 as one of the critical receptors involved in orchestrating the interplay between coagulation, inflammation, and remodeling in response to tissue injury.
Angiotensin II (ANG II), generated by activation of local renin-angiotensin systems, is believed to play an important role in tissue repair and remodeling, in part via transforming growth factor-beta (TGF-beta). Angiotensin-converting enzyme (ACE) inhibitors have been shown to abrogate experimental lung injury via a number of potential mechanisms; however, the potentially fibroproliferative role for ANG II in the lung has not been characterized. We hypothesized that, after lung injury, ANG II would stimulate fibroblast procollagen synthesis and promote lung collagen deposition in rats. In vitro, ANG II was a potent inducer of procollagen production in human lung fibroblasts via activation of the type 1 receptor and, at least in part, via the autocrine action of TGF-beta. After bleomycin-induced lung injury, an increase in lung ANG II concentration was observed by day 3 that preceded increases in lung collagen and was maintained until death at day 21. Administration of an ACE inhibitor (ramipril) reduced ACE activity, ANG II concentration, TGF-beta expression, and collagen deposition. Losartan (an ANG II type 1 receptor antagonist) also attenuated the increase in TGF-beta expression and lung collagen deposition. These observations suggest that ANG II, possibly generated locally within the lung, may play an important role in the fibrotic response to acute lung injury, at least in part via the action of TGF-beta. ACE inhibitors and receptor antagonists, already widely used clinically, should be assessed as potential new therapies for fibrotic lung disease.
Cognitive appraisals and coping were examined in children, adolescents, and young adults (N = 134) faced with the diagnosis of cancer in a parent. All 3 age groups perceived low personal control and high external control over their parent's illness and used relatively little problemfocused coping. Adolescents and young adults reported more emotion-focused coping and dual-focused coping (both problem-and emotion-focused in intent) than did preadolescent children. Stage and prognosis of parent's cancer were related to appraisals of greater seriousness and stressfulness, and to more avoidance; however, only appraisals of stress were related to symptoms of anxiety-depression. Emotion-focused coping was related to greater avoidance and to higher symptoms of anxiety-depression; coping and control beliefs did not interact in their association with anxiety-depression symptoms.
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