Imaging Techniques Reveal Asthma-Causing Immune Cells At Work
Main Category: Respiratory / AsthmaAlso Included In: Immune System / Vaccines; Biology / Biochemistry
Article Date: 09 Nov 2008 - 4:00 PDT
Immune cells known as eosinophils have a central role in causing asthma. Now, a team of researchers at Massachusetts General Hospital, Boston, has developed approaches to noninvasively visualize in real-time eosinophil responses in the lungs and airways of mice with a disease that mimics asthma (experimental allergic airway inflammation); they hope that these approaches might be developed to help assess the efficacy of treatments (both old and new) for the disease.
The team, led by Mikael Pittet and Ralph Weissleder, visualized eosinophils at single-cell resolution using various noninvasive real-time molecular imaging technologies (specifically, near-infrared fluorescence fiber optic bronchoscopy, intravital microscopy, and fluorescence-mediated tomography) following injection of an optical sensor that targets proteins produced by eosinophils known as MMPs. Using a combination of the sensitive optical sensor and fluorescence-mediated tomography, it was observed that dexamethasone (a drug used to treat severe asthma) decreased the number of eosinophils in the lungs of mice with allergic airway inflammation. As some of the imaging techniques have the potential to be developed for the clinic, the authors suggest that in combination with an appropriate optical sensor they might improve our ability to diagnose asthma and assess treatment efficacy.
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TITLE: Real-time assessment of inflammation and treatment response in a mouse model of allergic airway inflammation
AUTHOR CONTACT:
Mikael J. Pittet
Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Ralph Weissleder
Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.
View the PDF of this article at: https://www.the-jci.org/article.php?id=36335
Source: Karen Honey
Journal of Clinical Investigation
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Bedside Recognizing Asthmatic Lung Disorder.
posted by Sergio Stagnaro MD on 9 Nov 2008 at 4:37 amThe possibility of visualizing eosinophils at single-cell resolution using various noninvasive real-time molecular imaging technologies (specifically, near-infrared fluorescence fiber optic bronchoscopy, intravital microscopy, and fluorescence-mediated tomography) following injection of an optical sensor that targets proteins produced by eosinophils known as MMPs, could be considered a great event in today's Medicine history, although allthat occurs in mice.
Nothwithstanding, I termed - in apparently paradoxical way - today's Medicine Mean Ages of Medicine (1).We must agree about the difficulty in utilising such as expensive, highly sophysticated technology also in men after having performed it im mice! Really, physicians skilled in Quantum Biophysical Semeiotics know that, first of all, allergic disorders involve exclusively individuals positive SINCE BIRTH for "Allergic Biophysical-Semeiotic Constitution" (2,4), characterized by the presence of microcirculatory remodelling in antibody synthesis tissues (CALT, i.e., cerebrum associated lymphoid tissue, BALT, GALT, Mamma, liver, urinary bladder, spleen, a.s.o.), wherein are typical newborn-pathological, typeI, subtype b) aspecific Endoarteriolar Blocking Devices (5-7).
In addition, every lung disorder, allergic in nature, bedise eosynophyles re carachterized bt the presence of accumulation of th sub-population lymphocites Th-2: ungueal digital pressure, applied upon cutaneous related trigger-points, brings about a rapid and intense gastric aspecific reflex (= stomach dilation), typical of allergyc pathological disorders. We have to remember that the Death of Clinical Medicine parallels Medicine End. (8).
References
1. Stagnaro Sergio. Middle Ages of today’s Medicine, Overlooking Quantum-Biophysical-Semeiotic Constitutions and Related Inherited Real Risk. http://www.sciphu.com November 4, 2008. http://sciphu.com/2008/11/meadle-ages-of-todays-medicine.html
2. Stagnaro-Neri M., Stagnaro S. Introduzione alla Semeiotica Biofisica. Il Terreno Oncologico. Travel Factory, Roma, 2004. http://www.travelfactory.it/semeiotica_biofisica.htm
3. Stagnaro S., Stagnaro-Neri M., Le Costituzioni Semeiotico-Biofisiche.Strumento clinico fondamentale per la prevenzione primaria e la definizione della Single Patient Based Medicine. Travel Factory, Roma, 2004.
4. Stagnaro S., Stagnaro-Neri M., Single Patient Based Medicine.La Medicina Basata sul Singolo Paziente: Nuove Indicazioni della Melatonina. Travel Factory, Roma, 2005.
5. Stagnaro Sergio. Newborn-pathological Endoarteriolar Blocking Devices in Diabetic and Dislipidaemic Constitution and Diabetes Primary Prevention. The Lancet. March 06 2007. http://www.thelancet.com/journals/lancet/article/PIIS0140673607603316/comments?totalcomments=1
6. Stagnaro S. A clinical efficacious maneouvre, reliable in bed-side diagnosing coronary artery disease, even initial or silent, as well as "heart coronary risk". 3rd Virtual International Congress of Cardiology, FAC, http://www.fac.org.ar/tcvc/marcoesp/marcos.htm
7. Stagnaro Sergio. Hypertensive Constitution accounts for the existence of diabetics with and without Hypertension. Cardiovascular Diabetology. http://www.cardiab.com/content/5/1/19/comments
8. Stagnaro Sergio. The Death of Clinical Medicine parallels Medicine End. CMAJ 2008; 178: 1523-1524, 10 June 2008. http://www.cmaj.ca/cgi/eletters/178/12/1523
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