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Clinical Trial Details — Status: Recruiting

Administrative data

NCT number NCT01740869
Other study ID # HE12-021
Secondary ID Autism uanl
Status Recruiting
Phase Phase 1/Phase 2
First received November 22, 2012
Last updated June 3, 2015
Start date November 2012
Est. completion date December 2016

Study information

Verified date June 2015
Source Hospital Universitario Dr. Jose E. Gonzalez
Contact Laura Villarreal-Martinez, MD
Phone +52 81 83 48 61 36
Email dr_lauravillarreal@hotmail.com
Is FDA regulated No
Health authority Mexico: Ethics Committee
Study type Interventional

Clinical Trial Summary

The purpose of this study is to determine whether the plasticity of autologous intrathecal hematopoietic cells would improve the neurologic and the social skills of pediatric patients with autism spectrum disorders.


Description:

There is accumulating evidence that shows that the administration of hematopoietic cells into the brain in the patients with spectrum autism could help in the physiopathology of the illness.

It has been found that after introducing hematopoietic cells in the subarachnoid space of the spinal cord, these cells may be transported through the cerebrospinal fluid and can be delivered more efficiently to the injured area, when compared to the intravenous route.

Patients will be stimulated for 3 consecutive days with granulocyte colony stimulating factor (G-CSF) and then their bone marrow will be harvested according to their weight. Bone marrow will be processed in order to obtain CD34+ cells and minimize the amount of red blood cells. An inoculum of 5 to 10mL of stem cells will be infused intrathecally. Patients will be evaluated with two scales "CARS" and the "IDEA" also we will check the clinical history. On days 0, 30 and 180.


Recruitment information / eligibility

Status Recruiting
Enrollment 30
Est. completion date December 2016
Est. primary completion date November 2016
Accepts healthy volunteers No
Gender Both
Age group 5 Years to 15 Years
Eligibility Inclusion Criteria:

- children with autism spectrum DSM4-TR

Exclusion Criteria:

- Patients with neurodegenerative or autoimmune diseases.

- Patients with active infection in any organ or tissue at the time of entering the study, the onset of stimulation with G-CSF or at the procedure.

- Patients who do not sign the informed consent form.

Study Design

Allocation: Non-Randomized, Endpoint Classification: Safety/Efficacy Study, Intervention Model: Crossover Assignment, Masking: Open Label, Primary Purpose: Treatment


Related Conditions & MeSH terms


Intervention

Other:
Stem cells


Locations

Country Name City State
Mexico Hematology Service, Hospital Universitario Dr. Jose E. Gonzalez Monterrey Nuevo Leon

Sponsors (1)

Lead Sponsor Collaborator
Hospital Universitario Dr. Jose E. Gonzalez

Country where clinical trial is conducted

Mexico, 

References & Publications (10)

Felling RJ, Snyder MJ, Romanko MJ, Rothstein RP, Ziegler AN, Yang Z, Givogri MI, Bongarzone ER, Levison SW. Neural stem/progenitor cells participate in the regenerative response to perinatal hypoxia/ischemia. J Neurosci. 2006 Apr 19;26(16):4359-69. — View Citation

Goldman SA, Schanz S, Windrem MS. Stem cell-based strategies for treating pediatric disorders of myelin. Hum Mol Genet. 2008 Apr 15;17(R1):R76-83. doi: 10.1093/hmg/ddn052. Review. — View Citation

Gordon PH, Yu Q, Qualls C, Winfield H, Dillon S, Greene PE, Fahn S, Breeze RE, Freed CR, Pullman SL. Reaction time and movement time after embryonic cell implantation in Parkinson disease. Arch Neurol. 2004 Jun;61(6):858-61. — View Citation

Hayashi T, Iwai M, Ikeda T, Jin G, Deguchi K, Nagotani S, Zhang H, Sehara Y, Nagano I, Shoji M, Ikenoue T, Abe K. Neural precursor cells division and migration in neonatal rat brain after ischemic/hypoxic injury. Brain Res. 2005 Mar 15;1038(1):41-9. — View Citation

Ichim TE, Solano F, Glenn E, Morales F, Smith L, Zabrecky G, Riordan NH. Stem cell therapy for autism. J Transl Med. 2007 Jun 27;5:30. Review. — View Citation

Kulbatski I, Mothe AJ, Nomura H, Tator CH. Endogenous and exogenous CNS derived stem/progenitor cell approaches for neurotrauma. Curr Drug Targets. 2005 Feb;6(1):111-26. Review. — View Citation

Mehta T, Feroz A, Thakkar U, Vanikar A, Shah V, Trivedi H. Subarachnoid placement of stem cells in neurological disorders. Transplant Proc. 2008 May;40(4):1145-7. doi: 10.1016/j.transproceed.2008.03.026. — View Citation

Nakatomi H, Kuriu T, Okabe S, Yamamoto S, Hatano O, Kawahara N, Tamura A, Kirino T, Nakafuku M. Regeneration of hippocampal pyramidal neurons after ischemic brain injury by recruitment of endogenous neural progenitors. Cell. 2002 Aug 23;110(4):429-41. — View Citation

Rempe DA, Kent TA. Using bone marrow stromal cells for treatment of stroke. Neurology. 2002 Aug 27;59(4):486-7. — View Citation

Siniscalco D, Sapone A, Cirillo A, Giordano C, Maione S, Antonucci N. Autism spectrum disorders: is mesenchymal stem cell personalized therapy the future? J Biomed Biotechnol. 2012;2012:480289. doi: 10.1155/2012/480289. Epub 2012 Feb 13. Review. — View Citation

Outcome

Type Measure Description Time frame Safety issue
Primary IDEA Improvement Improvement in IDEA evaluation 6 months Yes
Secondary CARS improvement Improvement in CARS evaluation 6 months Yes
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